WO2004015708A1 - Disc with temporary disc definition structure (tdds) and temporary defect list (tdfl), and method of and apparatus for managing defect in the same - Google Patents

Disc with temporary disc definition structure (tdds) and temporary defect list (tdfl), and method of and apparatus for managing defect in the same Download PDF

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Publication number
WO2004015708A1
WO2004015708A1 PCT/KR2003/001610 KR0301610W WO2004015708A1 WO 2004015708 A1 WO2004015708 A1 WO 2004015708A1 KR 0301610 W KR0301610 W KR 0301610W WO 2004015708 A1 WO2004015708 A1 WO 2004015708A1
Authority
WO
WIPO (PCT)
Prior art keywords
area
information
data
recording
temporary defect
Prior art date
Application number
PCT/KR2003/001610
Other languages
French (fr)
Inventor
Jung-Wan Ko
Kyung-Geun Lee
Original Assignee
Samsung Electronics Co., Ltd.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from KR1020020047514A external-priority patent/KR100667747B1/en
Priority claimed from KR1020020047513A external-priority patent/KR100900969B1/en
Application filed by Samsung Electronics Co., Ltd. filed Critical Samsung Electronics Co., Ltd.
Priority to JP2004527436A priority Critical patent/JP4540476B2/en
Priority to CN038189933A priority patent/CN1675708B/en
Priority to AU2003248500A priority patent/AU2003248500A1/en
Priority to BRPI0313395A priority patent/BRPI0313395B1/en
Priority to MXPA05001548A priority patent/MXPA05001548A/en
Priority to EP03784681.3A priority patent/EP1540654B1/en
Priority to CA2494148A priority patent/CA2494148C/en
Publication of WO2004015708A1 publication Critical patent/WO2004015708A1/en

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Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B7/00Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
    • G11B7/004Recording, reproducing or erasing methods; Read, write or erase circuits therefor
    • G11B7/005Reproducing
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B20/00Signal processing not specific to the method of recording or reproducing; Circuits therefor
    • G11B20/10Digital recording or reproducing
    • G11B20/18Error detection or correction; Testing, e.g. of drop-outs
    • G11B20/1883Methods for assignment of alternate areas for defective areas
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B7/00Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
    • G11B2007/0003Recording, reproducing or erasing systems characterised by the structure or type of the carrier
    • G11B2007/0009Recording, reproducing or erasing systems characterised by the structure or type of the carrier for carriers having data stored in three dimensions, e.g. volume storage
    • G11B2007/0013Recording, reproducing or erasing systems characterised by the structure or type of the carrier for carriers having data stored in three dimensions, e.g. volume storage for carriers having multiple discrete layers
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B20/00Signal processing not specific to the method of recording or reproducing; Circuits therefor
    • G11B20/10Digital recording or reproducing
    • G11B20/18Error detection or correction; Testing, e.g. of drop-outs
    • G11B2020/1873Temporary defect structures for write-once discs, e.g. TDDS, TDMA or TDFL
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B20/00Signal processing not specific to the method of recording or reproducing; Circuits therefor
    • G11B20/10Digital recording or reproducing
    • G11B20/18Error detection or correction; Testing, e.g. of drop-outs
    • G11B20/1883Methods for assignment of alternate areas for defective areas
    • G11B2020/1893Methods for assignment of alternate areas for defective areas using linear replacement to relocate data from a defective block to a non-contiguous spare area, e.g. with a secondary defect list [SDL]
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B2220/00Record carriers by type
    • G11B2220/20Disc-shaped record carriers
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B2220/00Record carriers by type
    • G11B2220/20Disc-shaped record carriers
    • G11B2220/21Disc-shaped record carriers characterised in that the disc is of read-only, rewritable, or recordable type
    • G11B2220/215Recordable discs
    • G11B2220/218Write-once discs
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B2220/00Record carriers by type
    • G11B2220/20Disc-shaped record carriers
    • G11B2220/23Disc-shaped record carriers characterised in that the disc has a specific layer structure
    • G11B2220/235Multilayer discs, i.e. multiple recording layers accessed from the same side
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B2220/00Record carriers by type
    • G11B2220/20Disc-shaped record carriers
    • G11B2220/25Disc-shaped record carriers characterised in that the disc is based on a specific recording technology
    • G11B2220/2537Optical discs

Definitions

  • the present invention relates to disc defect management, and more particularly, to a disc in which a temporary defect management information area and a temporary management area are formed, and a method and apparatus for managing a defect in such a disc.
  • Defect management is performed to allow a user to rewrite user data of a portion of a user data area in which a defect occurs in a new portion of the user data area of a disc, thereby compensating for a loss in data caused by the defect.
  • defect management is performed using linear replacement or slipping replacement methods.
  • linear replacement method a user data area in which a defect occurs is replaced with a spare data area having no defects.
  • slipping replacement method a user data area having a defect is slipped to use the next user data area having no defects.
  • Both linear replacement and slipping replacement methods are applicable only to discs such as a DVD-RAM/RW on which data can be repeatedly recorded and recording can be performed using a random access method.
  • the conventional linear replacement and slipping replacement methods cannot be applied to write-once discs on which recording is allowed only once.
  • the presence of defects in a disc is checked by recording data on the disc and confirming whether the data can be recorded on the disc.
  • a high-density write-once disc having a recording capacity of several dozen of GB has been introduced.
  • This type of disc can be used as a backup disc since it is not expensive and allows random access, which enables fast reading operations.
  • defect management is not available for write-once discs. Therefore, a backup operation is discontinued when a defective area (i.e., an area where a defect occurs) is detected during the backup operation because defect management on a write-once disc cannot be performed.
  • the backup operation is performed when a system is not frequently used.
  • backup operations are often performed at night when a system manager does not operate the system. In this case, it is more likely that the backup operation will be stopped because a defective area of a write-once disc is detected and the backup operation for the system will therefore not be performed in a reliable manner.
  • the present invention provides a write-once disc with a data structure which allows defect management, and a method of and apparatus for managing a defect in such a disc.
  • the present invention also provides a write-once disc with a data structure which allows defect management even if a defect occurs on the disc during recording operations, thereby rendering successful recording operations, and a method of and apparatus for managing a defect in a disc having the defect management.
  • a disc includes a defect management area in at least one of a lead-in area, a lead-out area, and an outer area; a temporary defect information area in a data area and in which temporary defect information is recorded; and a temporary defect management information area in at least one of the lead-in area, and the lead-out area.
  • a method of managing a defect in a disc includes recording defect information regarding data recorded in a recording operation, and defect information regarding data recorded in a previous recording operation as first temporary defect information in a data area of the disc; and recording the first temporary defect information and defect information regarding data recorded in a next recording operation as second temporary defect information in the data area.
  • a method of managing a defect in a disc includes recording defect information regarding data recorded in a data area of the disc according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1 st recording operation, and defect information regarding data recorded in the data area according to an n th recording operation, as n th temporary defect information in the data area; and recording defect management information for managing the n th temporary defect information as n th temporary defect management information in a temporary defect management information area, where n is an integer.
  • the method further includes recording a last recorded temporary defect information and temporary defect management information in a defect management area during finalization of the disc.
  • the recording n th temporary defect information includes recording the data in a predetermined unit; verifying the recorded data to detect an area of the disc in which a defect exists; storing in a memory information for designating an area covering the area having the defect and data recorded after the area having the defect as a defective area; recording the data in a predetermined unit after the defective area; repeating verifying and storing at least once; and reading the information from the memory and recording the read information in an n th temporary defect information area of the data area when an n th recording operation is to end.
  • the recording the n th temporary defect information further includes recording information for designating the n temporary defect information area as a defective area in the n th temporary defect information area.
  • a recording apparatus includes a recording unit that records data in a data area of a disc according to a recording operation; and a controller that controls the recording unit to record defect information regarding data, which is recorded in a data area according to a recording operation, as temporary defect information in the data area and record temporary defect management information for managing the temporary defect information in a temporary defect management information area in at least one of a lead-in area and a lead-out area of the disc.
  • a recording apparatus includes a recording unit that records data on a disc; and a controller that controls the recording unit to record defect information regarding data recorded in a data area of the disc according to a first recording operation through an n th recording operation as n th temporary defect information in the data area; and controls the recording unit to record defect management information for managing the n th temporary defect information as n th temporary defect management information in a temporary defect management information area where n is an integer.
  • a disc includes a defect management area in at least one of a lead-in area and a lead-out area; a temporary defect information area that is in a data area and in which temporary defect information is recorded; a temporary defect management information area that is in at least one of the lead-in area and the lead-out area and in which temporary defect management information for managing the temporary defect information is recorded; and a defect management area that is formed in at least one of the lead-in area and the lead-out area and in which are recorded temporary defect information last recorded in the temporary defect information area and temporary defect management information last recorded in the temporary defect management information area.
  • a disc includes a defect management area in at least one of a lead-in area, a lead-out area, and an outer area; a temporary defect information area that is in a data area and in which temporary defect information is recorded; a temporary defect management information area that is in the lead-in area, the lead-out area, and an outer area and in which is recorded temporary defect management information; and a defect management area that is in the lead-in area, the lead-out area, and the outer area and in which temporary defect information last recorded in the temporary defect information area and temporary defect management information last recorded in the temporary defect management information area are recorded.
  • a method of managing a defect in a disc includes recording defect information regarding data recorded in a data area for every recording operation as temporary defect information in the data area; recording defect management information for managing the temporary defect information as temporary defect management information in a temporary defect management information area in at least one of a lead-in area and a lead-out area; and recording the temporary defect information and the temporary defect management information in a defect management area formed in at least one of the lead-in area and the lead-out area, during finalization of the disc.
  • a method of managing a defect in a disc includes recording as n th temporary defect information in the data area defect information regarding data recorded in a data area of the disc according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1 st recording operation, and defect information regarding data recorded in the data area according to an n th recording operation; recording defect management information for managing the n th temporary defect information as n th temporary defect management information in a temporary defect management information area, where n is an integer, and recording a last recorded temporary defect information and temporary defect management information in a defect management area during finalization of the disc.
  • a recording apparatus includes a recording unit that records data in a data area of a disc according to a recording operation; and a controller that controls the recording unit to record defect information regarding the recorded data as temporary defect information in the data area; controls the recording unit to record defect management information for managing the temporary defect information as temporary defect management information in a temporary defect management information area that is in at least one of a lead-in area and a lead-out area of the disc; and controls the recording unit to record the temporary defect information and temporary defect management information in a defect management area that is formed in at least one of the lead-in area and the lead-out area.
  • a recording apparatus includes a recording unit that records data in a data area of a disc according to first through n th recording operations; and a controller that controls the recording unit to record defect information regarding the data recorded according to the first recording through n th recording operations as n th temporary defect information in the data area; controls the recording unit to record defect management information for managing the n th temporary defect information as n th temporary defect management information in a temporary defect management information area; and controls the recording unit to record a last recorded temporary defect information and temporary defect management information in a defect management area, where n is an integer.
  • a disc includes a defect management area in at least one of a lead-in area and a lead-out area; a temporary defect information area that is in a data area and in which temporary defect information is recorded; and a temporary defect management information area that is formed in at least one of the lead-in area and the lead-out area and in which temporary defect management information for managing the temporary defect information is recorded, and wherein the temporary defect information and the temporary defect management information are recorded again when a disc defect is detected using a verify-after-write method.
  • a disc includes a defect management area in at least one of a lead-in area and a lead-out area; a temporary defect information area that is in a data area and in which is recorded temporary defect information; and a temporary defect management information area that is in at least one of the lead-in area, the lead-out area, and the outer area and in which is recorded temporary defect management information is recorded, where the last recorded temporary defect information that was last recorded in the temporary defect information area and the last recorded temporary defect management information that was last recorded in the temporary defect management information area are recorded in the defect management area during finalization of the disc, and the temporary defect information and the temporary defect management information are recorded again in the temporary defect information area and the temporary defect management information area, respectively, when a disc defect is detected using the verify-after-write method.
  • a method of managing a defect in a disc includes recording as temporary defect information in a data area defect information regarding data recorded in the data area for every recording operation; recording defect management information for managing the temporary defect information in a temporary defect management information area in at least one of a lead-in area and a lead-out area; and performing a verify-after-write method on at least one of the temporary defect information and the temporary defect management information and recording the temporary defect information and the temporary defect management information again when a disc defect is detected.
  • a method of managing a defect in a disc includes recording as n th temporary defect information in a data area defect information regarding data recorded in the data area of the disc according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1 st recording operation, and defect information regarding data recorded in the data area according to an n th recording operation; recording defect management information for managing the n th temporary defect information as n th temporary defect management information in a temporary defect management information area; and performing a verify-after-write method on at least one of the n th temporary defect information and the n th temporary defect management information and recording the n th temporary defect information and the n th temporary defect management information again when a disc defect is detected, where
  • the method further includes recording a last recorded temporary defect information and temporary defect management information in a defect management area during finalization of the disc.
  • a recording apparatus includes a recording/reading unit which records data on or reads data from a data area of a disc; and a controller which controls the recording/reading unit to record as temporary defect information in the data area defect information regarding the data recorded on the disc according to a recording operation and to record defect management information for managing the temporary defect information as temporary defect management information in a temporary defect management information area in at least one of a lead-in area and a lead-out area; performs a verify-after-write method on at least one of the temporary defect information and temporary defect management information; and controls the recording/reading unit to record the temporary defect information and temporary defect management information when a disc defect is detected.
  • a recording apparatus includes a recording unit that records data on a data area of a disc; and a controller that controls the recording unit to record as n th temporary defect information in the data area defect information regarding the data recorded in the data area of the disc according to first through n th recording operations as n th temporary defect information in the data area; controls the recording unit to record defect management information for managing the n th temporary defect information as n th temporary defect management information in a temporary defect management information area; performs a verify-after-write method on at least one of the n th temporary defect information and the n th temporary defect management information; and controls the recording unit to record the n th temporary defect information and the n th temporary defect management information again when a disc defect is detected, where n is an integer.
  • FIG. 1 is a block diagram of a recording and/or reproducing apparatus according to an embodiment of the present invention
  • FIGs. 2A and 2B illustrate structures of discs according to embodiments of the present invention
  • FIG. 3 illustrates an embodiment of a structure of the discs shown in FIGS. 2A and 2B;
  • FIG. 4 illustrates an embodiment of the structure of the disc shown in FIG. 3
  • FIG. 5 is a diagram illustrating a process of recording a temporary defect list (TDFL) of the structure shown in FIG. 4 according to an embodiment of the present invention
  • FIGs. 6A and 6B illustrate data structures of a TDFL according to an embodiment of the present invention
  • FIGs. 7A and 7B illustrate the data structure of defect #i contained in a TDFL and the data structure of the TDFL shown in FIG. 4 according to an embodiment of the present invention
  • FIG. 8 illustrates the data structure of a temporary disc definition structure (TDDS) #i shown in FIG. 4
  • FIG. 9 illustrates the data structure of the TDFL #i shown in FIG. 8;
  • FIG. 10 illustrates a data structure of a disc definition structure (DDS) according to an embodiment of the invention for use in a disc shown in FIG. 3;
  • DDS disc definition structure
  • FIG. 11 illustrates a data structure of a defect list (DFL) according to an embodiment of the invention for use in a disc shown in FIG. 3;
  • DFL defect list
  • FIG. 12 is a flowchart illustrating a method of managing a defect in a disc according to an embodiment of the present invention.
  • FIG. 13 is a flowchart illustrating a method of managing a defect in a disc according to another embodiment of the present invention.
  • FIG. 14 is a flowchart illustrating a method of managing a defect in a disc according to yet another embodiment of the present invention.
  • FIG. 1 is a block diagram of a recording and/or reproducing apparatus according to an embodiment of the present invention.
  • the recording apparatus includes a recording/reading unit 1 , a controller 2, and a memory 3.
  • the recording/reading unit 1 records and/or reproduces data with respect to a disc 100, which is an embodiment of an information storage medium.
  • the recording/reading unit 1 reads the data from the disc 100 so as to verify the accuracy of the recorded data.
  • the controller 2 performs defect management according to an embodiment of the present invention. According to an embodiment, the controller 2 uses a verify-after-write method in which the data is recorded on the disc 100 in predetermined units and a defect on the disc 100 is detected by verifying the accuracy of the recorded data.
  • the controller 2 After recording of the data in the predetermined units, the controller 2 records information which indicates the position of a defective area of the disc 100. The information is recorded as temporary defect information on the disc 100. Also, the controller 2 records on the disc 100 management information, which is information used to manage the temporary defect information. The management information is recorded as temporary defect management information.
  • the predetermined recording unit may be a recording operation that is a unit of work determined according to user's intention or a type of recording work to be performed. According to this embodiment, a recording operation indicates a process in which the disc 100 is loaded into the recording apparatus, data is recorded on the disc 100, and the disc 100 is taken out from the recording apparatus.
  • the recording operation can be otherwise defined. For instance, the recording operation can be defined according to a recording time or an amount of data that is recorded as opposed to or in addition to when a user inserts or removes a disc.
  • the controller 2 During the recording operation, data is recorded and verified at least once.
  • the controller 2 when a user presses an eject button (not shown) of the recording apparatus in order to bring out the disc 100 after recording the data, the controller 2 expects the recording operation to be terminated.
  • the controller 2 creates the temporary defect information and temporary defect management information and provides the information to the recording/reading unit 1 to be recorded on the disc 100.
  • the temporary defect information which is obtained as a result of the recording and verifying by the controller 2, is stored in the memory 3.
  • the verification can be performed at other times during recording.
  • the controller 2 records the temporary defect information and the temporary defect management information in a defect management area (DMA) of the disc 100.
  • DMA defect management area
  • FIGS. 2A and 2B illustrate structures of the disc 100 according to embodiments of the present invention.
  • FIG. 2A illustrates a disc 100 that is a single record layer disc having a record layer L0.
  • the disc 100 includes a lead-in area, a data area, and a lead-out area.
  • the lead-in area is located in an inner part of the disc 100 and the lead-out area is located in an outer part of the disc 100.
  • the data area is present between the lead-in area and the lead-out area and is divided into a user data area and a spare area.
  • the user data area is an area in which the user data is recorded.
  • the spare area is a substitute area for a portion of the user data area having a defect in order to compensate for a loss in a recording area due to the defect. It is preferable, but not required in all aspects, that the spare area includes 5% of the entire data capacity of the disc 100, so that a greater amount of data can be recorded on the disc 100 on the assumption that defects may occur therein. Also, it is preferable, but not required, that the spare area is present at an end of a recording area of the disc 100. Especially, in the case of a write-once disc 100, the spare area must be located at an end of a recording area of the disc 100 so that slipping replacement can be performed while the spare area data is recorded starting from an inner part of the disc 100 continuing toward the outer part.
  • the spare area is present only between the user data area and the lead-out area. If necessary, a portion of the user data area may be used as another spare area. Specifically, according to another embodiment, more than one spare area may be formed between the user data area and the lead-out area.
  • FIG. 2B illustrates a disc 100 that has two record layers L0 and L1.
  • a lead-in area, a data area, and an outer area are sequentially formed from an inner part of the first record layer L0 to its outer part.
  • an outer area, a data area, and a lead-out area are sequentially formed from an outer part of the second record layer L1 to its inner part.
  • the lead-out area of the second record layer L1 is present in the inner part of the second record layer L1 of the disc 100 of FIG. 2B. That is, the disc 100 of FIG. 2B has an opposite track path (OTP) in which data is recorded starting from the lead-in area at an inner part of the first record layer L0 toward the outer area and continuing from the outer area of the second record layer L1 to the lead-out area at the inner part.
  • OTP opposite track path
  • FIG. 3 illustrates an example of the structure of the disc 100 embodiments shown in FIGs. 2A and 2B.
  • a DMA is present in at least one of the lead-in area, the lead-out area, and the outer area of the disc 100.
  • a temporary defect management area (TDMA) is formed in at least one of the lead-in area and the lead-out area.
  • a temporary defect information area is formed in the data area in predetermined recording units.
  • information which relates to managing defects on the disc 100 is recorded in the DMA.
  • Such information includes a structure of the disc 100 for defect management, the position of the defect information, whether the defect management is performed, and the position and size of the spare area.
  • new data is recorded after previously recorded data when the previously recorded data changes.
  • the apparatus reads data from the lead-in area and the lead-out area of the disc 100 to determine how to manage the disc 100 and record or read data on or from the disci 00.
  • an embodiment of the present invention proposes temporary defect management information and temporary defect information.
  • the temporary defect management information which is comparatively more important than the temporary defect information, is recorded in the lead-in area.
  • the temporary defect information is recorded in the data area. It is preferable, but not required, that new information is added to the previously recorded information in the temporary defect information so that all recorded information is accumulated therein.
  • the recording/reproducing apparatus reads last recorded temporary defect information and detects defects throughout the disc 100 based on the read result. Thus, information regarding the location of the last recorded temporary defect information is recorded in temporary defect management information area, where the temporary defect management information is recorded.
  • the information regarding a defect occurring in a recording unit #0 and information regarding a defect occurring in a recording unit #1 are recorded in the temporary defect management information area #0 and the temporary defect management information area #1 , respectively.
  • Defect management information for managing the temporary defect information areas #0, #1 is recorded in the temporary defect management information area. If no more data can be recorded on the disc 100 or if a user does not want to record more data on the disc 100 ( i.e., the disc 100 needs to be finalized), the temporary defect information recorded in the temporary defect information area and the temporary defect management information recorded in the temporary defect management information area are recorded in the DMA.
  • FIG. 4 illustrates structures of the disc 100 shown in FIG. 3.
  • the DMA is formed in at least one of the lead-in area, the lead-out area, and the outer area of the disc 100.
  • the disc 100 is the single record layer disc 100 as shown in FIG. 2A
  • the DMA is formed in at least of one of the lead-in area and the lead-out area.
  • the disc 100 is the double record layer disc 100 as shown in FIG.
  • the DMA is formed in at least one of the lead-in area, the lead-out area, and the outer area of the disc 100.
  • the disc 100 has a single record layer L0
  • DMAs are formed in both the lead-in area and the lead-out area
  • the disc 100 has two record layers L1 , L0
  • DMAs are formed in the lead-in area, the lead-out area, and the outer area.
  • a temporary defect list (TDFL) #0 which is a temporary defect information area corresponding to the recording operation #0, is disposed in the data area.
  • Information regarding a defect occurring in the user data recorded according to the recording operation #0 is recorded in the TDFL #0.
  • the user data according to recording operation #1 is recorded in the data area, and a TDFL #1 , which corresponds to the recording operation #1 , is disposed in the data area.
  • a TDFL #2 which corresponds to recording operation #2, is also disposed in the data area.
  • Temporary disc definition structure which is the temporary defect management information for managing the TDFLs #0 through #n, is recorded in the temporary defect management information area.
  • the TDDSs #0 through #n correspond to the TDFL #0 through #n, respectively.
  • TDDSs #0 through #n it is possible to record whether a defect is managed, the size of the spare area, and information for managing TDFL #i in TDDS #i. Also, it is possible to record information regarding the position of a defective area and the corresponding position of the spare area, which is a substitute for the defective area, in a TDFL #i.
  • a cluster is allocated to each TDDS #i, and four to eight clusters are allocated to the TDFL #i.
  • This allocation is because it is preferable to record new information in units of clusters in order to update information when a minimum physical unit of record is a cluster, although the amount of TDDS#i, which is temporary defect management information, is just several K bytes. Meanwhile, it is preferable, but not required, that a total amount of defects allowed in the disc 100 is about 5 percent of the disc recording capacity.
  • the TDFL #i includes about four to eight clusters considering that information of about 8 bytes is required to record information regarding a defect and the size of a cluster is 64 Kbytes.
  • the verify-after-write method can be performed in the TDDS #i and the TDFL #i. In this case, when a defect is detected, information is recorded again in the corresponding adjacent areas.
  • FIG. 5 is a diagram illustrating a process of recording a TDFL according to an embodiment of the present invention.
  • a unit of data may be processed in units of sectors or clusters.
  • a sector denotes a minimum unit of data that is managed in a file system of a computer or an application
  • a cluster denotes a minimum unit of data that can be physically recorded on a disc at once.
  • one or more sectors constitute a cluster.
  • the physical sector is an area where a sector of data is to be recorded on the disc 100.
  • An address for detecting the physical sector is called a physical sector number (PSN).
  • the logical sector is a unit of sector for managing data in a file system or an application.
  • An address for detecting the logical sector is called a logical sector number (LSN).
  • a disc recording/reproducing apparatus such as that shown in FIG. 1 detects the position of the data to be recorded on the disc 100 using the PSN, and the whole part of data is managed in units of the LSNs in a computer or an application in order to record data on the disc 100.
  • the relationship between the LSN and the PSN is changed by the controller 2 of the recording/reproducing apparatus, based on whether the disc contains a defect and an initial position of recording data.
  • A denotes a data area in which the PSNs are allocated to a plurality of sectors (not shown) in ascending order.
  • each LSN corresponds to at least one of the PSNs, respectively.
  • the LSNs are allocated to sectors, except for a defective sector, in ascending order, the correspondence between the PSNs and the LSNs is not maintained when the disc 100 has a defective area, even if the size of a physical sector is the same as that of a logical sector.
  • 1010 through 1090 denote units of data by which a verifying work is performed after a recording work.
  • a recording apparatus records user data in section 1010, returns to the start of the section 1010, and starts checking if the user data is appropriately recorded or a defect occurs in the section 1010. If a defect is detected, an area covering the defect and data recorded after the defect in the section 1010 is designated as defect #1.
  • the recording apparatus records the user data in section 1020, returns to the start of the section 1020, and checks if the user data is appropriately recorded or a defect occurs in the start. If a defect is detected, an area covering the defect and data recorded after the defect in the section 1020 is designated as defect #2. Likewise, defect #3 is determined in section 1030. However, since a defect is not detected in section 1040, a defective area is not determined in section 1040.
  • the disc 100 according to an embodiment of the present invention is a write-once disc 100, it is desirable, but not required, that data recorded after an area having a defect is not used and an area covering data recorded after the defect is determined to be a defective area as well as the area covering the defect.
  • an area in which data is recorded after the area having the LSN i must be denoted as the LSN i-1 for data reproduction.
  • the LSN i-1 for data reproduction.
  • all of data areas after a defective area are also regarded as being defective areas, thereby increasing the efficiency of managing the logic sectors.
  • TDFL #0 is recorded in section 1050 when the recording operation #0 is expected to end after the recording and verifying of the data in the section 1040 (i.e., when a user presses an eject button of a recording apparatus or recording of user data allocated in a recording operation is completed).
  • the TDFL #0 contains information regarding the defects #1 through #3 occurring in the sections 1010 through 1040.
  • TDFL #1 is recorded in sector 1090 to correspond to recording operation #1 to contain information regarding defects #4 and #5 in sectors 1060 through 1080.
  • the TDFL #0 also contains information regarding a part of an area in which a user data is recorded according to the recording operation #0, where the part having a defect and thus being designated as a defective area.
  • the TDFL #1 contains information regarding a part of an area in which the user data recorded according to the recording operation #1 , where the part having a defect is designated as another defective area. While not required in all aspect, the TDFL #1 further contains the information recorded in the TDFL #0 according to an aspect of the invention.
  • FIGs. 6A and 6B illustrate data structures of a TDFL according to an embodiment of the present invention.
  • information regarding defects #1 through #3 is recorded in TDFL #0.
  • the information regarding the defect #1 describes the position of the defect #1
  • the information regarding the defect #2 describes the position of the defect #2
  • the information regarding the defect #3 describes the position of the defect #3.
  • information regarding TDFL #0 which indicates the position of the TDFL #0, is further recorded in the TDFL #0.
  • the TDFL #0 contains the information regarding its position and thus can be used as useful information, for example, to indicate during the reproduction of the user data that the user data is not recorded in the TDFL #0.
  • the TDFL #1 contains information regarding defects #4 and #5, in addition to the information recorded in the TDFL #0.
  • the TDFL #1 also contains information regarding the position of the TDFL #1 for the same reason that the position is indicated in the TDFL #0.
  • FIGs. 7A and 7B illustrate the data structures of information regarding defect #i contained a TDFL and information regarding TDFL #i.
  • the information regarding the defect #i includes information regarding the state, the start, reserved, and end positions of the defect #i.
  • the state information is flag information that indicates whether a present area is a defective area in which a defect occurs or is a TDFL in which is recorded temporary defect information.
  • the state information is the flag information which indicates that the present area is a defective area.
  • the start information represents the start of the present area (i.e., the start of the defect #i).
  • the end information represents the end of the present area (i.e., the end of the defect #i).
  • the reserved is referred to as an area in which recording is pending to record other information therein.
  • the information regarding the TDFL #i includes information regarding the state of and the start, reserved, and end positions of the TDFL #i.
  • the state information is flag information that indicates whether a present area is a defective area in which a defect occurs or is a TDFL in which is recorded temporary defect information.
  • the state information is the flag information which indicates that the present area is a TDFL in which is recorded temporary defect information.
  • FIG. 8 illustrates the data structure of temporary disc definition structure (TDDS) #i.
  • the TDDS #i includes an identifier, defect management mode information, a drive information pointer, a TDFL #i pointer, which points out the position of the corresponding TDFL #i, a user data physical area pointer, a user data logical area pointer, an optimal power control (OPC) pointer, and disc usage information.
  • OPC optimal power control
  • the defect management mode information indicates whether defect management is performed on the disc 100. For instance, the information describes a spare area when defect management is performed and does not describe the spare area otherwise. If defect management is not required, the information provides this fact so that more user data can be recorded in the spare area, which otherwise uses about 5% of the disc recording capacity according to an aspect of the invention.
  • the drive information pointer describes the location (e.g., the number of a first physical sector) of a drive information area (not shown) of the disc 100 according to an aspect of the present invention.
  • Drive information is obtained by conducting a test on the disc 100 with a certain disc drive, allowing the test to be skipped when data is read from the disc 100, thereby rendering fast reading operations.
  • the drive information is created to use a certain drive without testing the drive.
  • the drive information includes recording conditions, such as an identifier of a used drive and the optimum record power.
  • data is recorded in a new cluster whenever drive information is updated.
  • the TDFL #i pointer indicates the position of an area of the disc 100 where the TDFL #i is recorded (e.g., the number of a first physical sector of TDFL #i).
  • the user data physical area pointer indicates the end (e.g., the number of the last physical sector) of a data area in which user data is physically recorded.
  • the user data logical area pointer indicates the end part (e.g., the number of the last logical sector) of the data area in which user data is logically recorded. It is possible to detect the start of the data area where recording of the user data begins during a next recording operation, using the user data physical area pointer and the user data logical area pointer.
  • the OPC pointer describes the location of a test area for detecting the optimum power control.
  • the OPC pointer can also be used as information that provides a next area available when different types of drives are driven by different OPCs.
  • the disc usage information specifies whether the disc 100 is finalized (i.e., whether user data
  • FIG. 9 illustrates an embodiment of the data structure of TDFL #i.
  • the TDFL #i includes an identifier, a TDDS #i pointer, information regarding defect #n, information regarding defect #n+1 , and so on.
  • the information regarding defect #n includes information regarding start and end positions of defect #n in state information.
  • the TDDS #i pointer indicates the position of an area in which is recorded a corresponding TDDS #i.
  • the TDDS #i pointer can indicate the number of a first physical sector of the TDDS #i.
  • Information regarding the position of the TDFL #i included in the TDDS #i and information regarding the position of the TDDS #i included in the TDDS #i specify the positions of the TDFL #i and the TDDS #i which are a pair of information.
  • the above two different information can be used to verify the availability of information recorded in the TDFL #i and the TDDS #i.
  • the state information which is the information regarding defect #n, describes whether a certain area is an actual defective area or an area where defect management information is recorded.
  • the inclusion of the information regarding the defect #n into the state information is optional.
  • the information regarding the start and end positions of the defect #n may be recorded with the number of a first physical sector and the number of the last physical sector of the defective area, respectively.
  • the information regarding defect #n+1 is also recorded using the method of recording the information regarding the defect #n.
  • the verify-after-write method is performed for every several clusters. If the verify-after-write method is performed for every single cluster, the size of an area, which is designated as a defective area, is determined to be a cluster, and thus, the number of the last physical sector of the area need not be recorded.
  • FIG. 10 illustrates the data structure of a disc definition structure (DDS) to be recorded in the DMA shown in FIGs. 3 and 4.
  • the DDS includes an identifier, defect management mode information, a drive information pointer, a DFL pointer which specifies the position of a corresponding DFL, a user data physical area pointer, a user data logical area pointer, an OPC pointer, and disc usage information.
  • the defect management mode information indicates whether defect management is performed. This information describes that a spare area is not formed in the disc 100 according to the present invention when the defect management is not performed, and describes that a spare area is formed otherwise.
  • the drive information pointer specifies the position of a drive information area (not shown) of the disc 100. For example, the drive information pointer can specify the number of a first physical sector of the drive information area.
  • Drive information is obtained by conducting a test on the disc 100 with a certain drive, allowing the test to be skipped when data is read from the disc 100, thereby rendering fast reading operations.
  • the drive information is created to use a certain drive without testing the drive.
  • the drive information includes recording conditions such as an identifier of a used drive and the optimum record power.
  • data is recorded in a new cluster whenever drive information is updated.
  • the DFL pointer specifies the position of an area in which DFL is recorded (e.g., the number of a first physical sector of the DFL).
  • the user data physical area pointer indicates the end position of an area of a data area in which user data is physically recorded (e.g., the number of the last physical sector of the area in which the user data is recorded).
  • the user data logical area pointer indicates the end position of an area of a data area in which user data is physically recorded (e.g., the number of the last physical sector of the area in which the user data is recorded).
  • the OPC pointer specifies the position of a test area for detecting the optimum power control.
  • the OPC pointer can also be used as information that provides a next area available when different types of drives are driven by different OPCs.
  • the disc usage information specifies whether the disc 100 is finalized (i.e., whether user data can be further recorded in the data area).
  • FIG. 11 illustrates an embodiment of the data structure of a defect list (DFL) to be recorded in the DMA shown in FIGs. 3 and 4.
  • the DFL includes an identifier, a DDS pointer, information regarding defect #n, and information regarding defect #n+1.
  • the information regarding defect #n includes information regarding the start and end positions of defect #n in state information.
  • information regarding defect #i may be information regarding the aforementioned TDFL #i.
  • the DDS pointer points out the position of an area in which a corresponding DDS is recorded (e.g., the number of a first physical sector of the DDS).
  • the above two different information can be used to verify the availability of information recorded in the DFL and the DDS.
  • the state information which is the information regarding defect #n, describes whether a certain area is an actual defective area or an area where defect management information is recorded.
  • the inclusion of the information regarding the defect #n into the state information is optional.
  • the information regarding the start and end positions of the defect #n may be recorded with the number of a first physical sector and the number of the last physical sector of the defective area, respectively.
  • the information regarding defect #n+1 is also recorded using the method of recording the information regarding the defect #n.
  • the verify-after-write method is performed for every several clusters. If the verify-after-write method is performed for every single cluster, the size of an area, which is designated as a defective area, is determined to be a cluster, and thus, the number of the last physical sector of the area need not be recorded.
  • FIG. 12 is a flowchart illustrating a disc defect management method according to an embodiment of the present invention.
  • a recording apparatus records defect information regarding data, which is recorded according to a first recording operation, as first temporary defect information in a data area of a disc, so as to perform disc defect management.
  • the recording apparatus records the first temporary defect information and defect information regarding data, which is recorded according to a second recording operation, as second temporary defect information in the data area.
  • the recording apparatus records defect management information for managing the first and second temporary defect information in a temporary defect management information area.
  • action 1203 is performed by sequentially recording the first temporary defect information, the defect management information for managing the first temporary defect information, the first temporary defect management information, the second temporary defect information, the defect management information for managing the second temporary defect information, and the second temporary defect management information.
  • the method only records two temporary defect information and two temporary defect management information for the sake convenience. However, it is understood there is no limit to the number of temporary defect information and defect management information which can be recorded. If the number is increased, temporary defect information is accumulatively recorded in the temporary defect management information area (i.e., all of previously recorded temporary defect information are recorded together with newly recorded temporary defect information).
  • a last recorded temporary defect information and temporary defect management information may be either moved from the temporary defect management information area to a defect management area (DMA), or be maintained to be recorded in the temporary defect management information area. If the latter location is selected, a disc drive accesses the temporary defect management information area and reads the last recorded temporary defect information therefrom so as to detect a defective area of the disc.
  • DMA defect management area
  • FIG. 13 is a flowchart illustrating a disc defect management method according to another embodiment of the present invention.
  • a recording apparatus records defect information regarding data, which is recorded according to a first recording operation, as first temporary defect information in a data area of a disc, so as to perform disc defect management.
  • the recording apparatus records defect management information for managing the first temporary defect information as first temporary defect management information in a temporary defect management information area which is present in at least one of a lead-in area and a lead-out area of the disc.
  • the recording apparatus records the temporary defect information and defect information regarding data, which is recorded according to a second recording operation, as second temporary defect information in the data area.
  • the recording apparatus records management information for managing the second temporary defect information as second temporary defect management information in the temporary defect management information area.
  • it is checked whether finalization of the disc is required is checked.
  • actions 1301 through 1304 are repeated while increasing indexes given to the recording operation, the temporary defect information, and the temporary defect management information by 1. It is understood that the indexing could be numbers other than 1 or non-integers so long as the index changes so as to reflect different recording operations being performed. While not required in all aspects, all of previously recorded temporary defect information are accumulatively recorded whenever new temporary defect information is recorded.
  • a last recorded one of temporary defect management information and temporary defect information which have been recorded until action 1305, are recorded in a defect management area (DMA).
  • DMA defect management area
  • the last recorded temporary defect management information and temporary defect information are recorded as final defect management information and defect information in the DMA.
  • the final defect management information and defect information may be repeatedly recorded to increase the reliability of data detection.
  • the verify-after-write method may be performed on the final defect management information and defect information according to an embodiment of the invention. If a defect is detected from these information, an area of the disc in which the defect occurs and data recorded after the area having the defect may be regarded as being unavailable (i.e., they are designated as a defective area), and the final defect management information and defect information may be again recorded after the defective area.
  • FIG. 14 is a flowchart illustrating a method of managing a defect in a disc according to yet another embodiment of the present invention. Referring to FIG. 14, a recording apparatus records user data on a data area of a disc in units of data to facilitate the verify-after-write method, in action 1401.
  • action 1402 the data recorded in action 1401 is verified to detect an area of the disc in which a defect exists.
  • the controller 2 of FIG. 1 creates information for designating an area covering the area having the defect and data recorded after the area having the defect, as a defective area.
  • the controller 2 stores the created information as first temporary defect information in the memory 3 of FIG. 1.
  • action 1405 it is checked whether a recording operation is expected to end. If it is determined in action 1405 that the recording operation is not likely to end, actions 1401 through 1404 are repeated before the end of the recording operation.
  • the controller 2 reads the first temporary defect information from the memory 3 and records the first temporary defect information in a first temporary defect information area TDFL #0 of the data area.
  • information for designating the first temporary defect information area TDFL #0 as a defective area is further recorded in the first temporary defect information area TDFL #0.
  • the controller 2 records management information for managing the first temporary defect information area TDFL #0 as first temporary defect management information TDDS #0 in a temporary defect management information area.
  • action 1409 it is checked whether the disc is to be finalized.
  • actions 1401 through 1408 are repeated before the finalization while increasing indexes given to the temporary defect information, the temporary defect information area, and the temporary defect management information by 1.
  • all of previously recorded temporary defect information are accumulatively recorded whenever new temporary defect information is recorded. It is understood that other numbers (including non-integers) could be used for the index so long as the index changes reflect different recording operations being performed.
  • a last recorded temporary defect information TDFL #i and temporary defect management information TDDS #i are recorded as final defect information DFL and defect management information DDS, respectively, in a defect management area (DMA).
  • the final defect information (DFL) and defect management information (DDS) may be repeatedly recorded in the DMA several times so as to increase the reliability of data detection.
  • the verify-after-write method may be performed on the final defect information (DFL) and final defect management information (DDS) according to an aspect of the invention. If a defect is detected from the DFL and DDS, an area covering an area of the disc in which the defect occurs and data recorded after the area having the defect, may be regarded as being unavailable (i.e., be designated as a defective area), and the DFL and DDS may be again recorded after the defective area.
  • DFL final defect information
  • DDS final defect management information
  • the aforementioned defect management may be embodied as a computer program that can be run by a computer. Codes and code segments, which constitute the computer program, can be easily reasoned by a computer programmer in the art.
  • the program is stored in a computer readable medium. When the program is read and run by a computer such as the controller 2 shown in FIG. 1 , the defect management is performed.
  • the computer-readable medium may be on a magnetic recording medium, an optical recording medium, a carrier wave medium or any other medium from which a computer can recognize a program.
  • the computer can be a general or special purpose computer and can utilize the program encoded on firmware.
  • the present invention provides a defect management method that is applicable to a recordable disc, such as a write-once disc.
  • a temporary defect information area is included in a data area of a disc, and therefore, defect information is accumulatively recorded in the temporary defect information area regardless of the disc recording capacity.
  • only temporary defect information is read from the last temporary defect information area and the read information is recorded in a DMA, thereby enabling efficient use of the DMA whose recording capacity is limited. Accordingly, it is possible to record user data even on a write-once disc while performing defect management thereon, thereby backup operations can be more stably performed without interruptions.
  • a pointer which specifies the position of a corresponding TDDS #i
  • a pointer which specifies the position of TDFL #i
  • a pointer which specifies the position of TDFL #i
  • a pointer which specifies the position of TDFL #i
  • TDDS #i is recorded in the TDDS #i. Therefore, it is possible to crosscheck the relationship between the TDFL #i and the TDDS #i. For the same reason, it is possible to crosscheck the relationship between a DDS and a DFL.
  • defect management mode information is contained in the TDDS #i and the DDS and allows selective defect management, thereby successfully performing recording operations irrespective of recording environment conditions.
  • the recording and/or reproducing unit 1 shown in FIG. 1 could include a low wavelength, high numerical aperture type unit usable to record dozens of gigabytes of data on the disc 100.
  • Examples of such units include, but are not limited to, those units using light wavelengths of 405 nm and having numerical apertures of 0.85, those units compatible with Blu-ray discs, and/or those units compatible with Advanced Optical Discs (AOD).
  • AOD Advanced Optical Discs

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  • Engineering & Computer Science (AREA)
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  • Signal Processing For Digital Recording And Reproducing (AREA)
  • Optical Recording Or Reproduction (AREA)
  • Management Or Editing Of Information On Record Carriers (AREA)

Abstract

A disc with a temporary defect management information area and a defect management area includes a defect management area that is present in at least one of a lead-in area, a lead-out area, and an outer area, a temporary defect information area which is formed in the data area and in which temporary defect information is recorded, and a temporary defect management information area which is present in at least one of the lead-in area, and the lead-out area. Accordingly, it is possible to record user data in a recordable disc, especially, a write-once disc, while performing defect management thereon, thereby enabling efficient use of a defect management area having a limited recording capacity.

Description

DISC WITH TEMPORARY DISC DEFINITION STRUCTURE (TDDS)
AND TEMPORARY DEFECT LIST (TDFL), AND METHOD OF AND
APPARATUS FOR MANAGING DEFECT IN THE SAME
Technical Field
The present invention relates to disc defect management, and more particularly, to a disc in which a temporary defect management information area and a temporary management area are formed, and a method and apparatus for managing a defect in such a disc.
Background Art
Defect management is performed to allow a user to rewrite user data of a portion of a user data area in which a defect occurs in a new portion of the user data area of a disc, thereby compensating for a loss in data caused by the defect. In general, defect management is performed using linear replacement or slipping replacement methods. In the linear replacement method, a user data area in which a defect occurs is replaced with a spare data area having no defects. In the slipping replacement method, a user data area having a defect is slipped to use the next user data area having no defects.
Both linear replacement and slipping replacement methods are applicable only to discs such as a DVD-RAM/RW on which data can be repeatedly recorded and recording can be performed using a random access method. In other words, the conventional linear replacement and slipping replacement methods cannot be applied to write-once discs on which recording is allowed only once. In general, the presence of defects in a disc is checked by recording data on the disc and confirming whether the data can be recorded on the disc. However, once the data is recorded on a write-once disc, it is impossible to overwrite new data and manage defects therein. Meanwhile, after the development of CD-R and DVD-R, a high-density write-once disc having a recording capacity of several dozen of GB has been introduced. This type of disc can be used as a backup disc since it is not expensive and allows random access, which enables fast reading operations. However, defect management is not available for write-once discs. Therefore, a backup operation is discontinued when a defective area (i.e., an area where a defect occurs) is detected during the backup operation because defect management on a write-once disc cannot be performed.
In general, the backup operation is performed when a system is not frequently used. Thus, backup operations are often performed at night when a system manager does not operate the system. In this case, it is more likely that the backup operation will be stopped because a defective area of a write-once disc is detected and the backup operation for the system will therefore not be performed in a reliable manner.
Disclosure of the Invention
The present invention provides a write-once disc with a data structure which allows defect management, and a method of and apparatus for managing a defect in such a disc.
The present invention also provides a write-once disc with a data structure which allows defect management even if a defect occurs on the disc during recording operations, thereby rendering successful recording operations, and a method of and apparatus for managing a defect in a disc having the defect management.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention. According to an aspect of the present invention, a disc includes a defect management area in at least one of a lead-in area, a lead-out area, and an outer area; a temporary defect information area in a data area and in which temporary defect information is recorded; and a temporary defect management information area in at least one of the lead-in area, and the lead-out area.
According to another aspect of the present invention, a method of managing a defect in a disc includes recording defect information regarding data recorded in a recording operation, and defect information regarding data recorded in a previous recording operation as first temporary defect information in a data area of the disc; and recording the first temporary defect information and defect information regarding data recorded in a next recording operation as second temporary defect information in the data area.
According to yet another aspect of the present invention, a method of managing a defect in a disc includes recording defect information regarding data recorded in a data area of the disc according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1st recording operation, and defect information regarding data recorded in the data area according to an nth recording operation, as nth temporary defect information in the data area; and recording defect management information for managing the nth temporary defect information as nth temporary defect management information in a temporary defect management information area, where n is an integer.
It is preferable, but not required, that the method further includes recording a last recorded temporary defect information and temporary defect management information in a defect management area during finalization of the disc. It is preferable, but not required, that the recording nth temporary defect information includes recording the data in a predetermined unit; verifying the recorded data to detect an area of the disc in which a defect exists; storing in a memory information for designating an area covering the area having the defect and data recorded after the area having the defect as a defective area; recording the data in a predetermined unit after the defective area; repeating verifying and storing at least once; and reading the information from the memory and recording the read information in an nth temporary defect information area of the data area when an nth recording operation is to end.
It is more preferable, but not required that the recording the nth temporary defect information further includes recording information for designating the n temporary defect information area as a defective area in the nth temporary defect information area.
According to still another aspect of the present invention, a recording apparatus includes a recording unit that records data in a data area of a disc according to a recording operation; and a controller that controls the recording unit to record defect information regarding data, which is recorded in a data area according to a recording operation, as temporary defect information in the data area and record temporary defect management information for managing the temporary defect information in a temporary defect management information area in at least one of a lead-in area and a lead-out area of the disc.
According to still another aspect of the present invention, a recording apparatus includes a recording unit that records data on a disc; and a controller that controls the recording unit to record defect information regarding data recorded in a data area of the disc according to a first recording operation through an nth recording operation as nth temporary defect information in the data area; and controls the recording unit to record defect management information for managing the nth temporary defect information as nth temporary defect management information in a temporary defect management information area where n is an integer.
According to still another aspect of the present invention, a disc includes a defect management area in at least one of a lead-in area and a lead-out area; a temporary defect information area that is in a data area and in which temporary defect information is recorded; a temporary defect management information area that is in at least one of the lead-in area and the lead-out area and in which temporary defect management information for managing the temporary defect information is recorded; and a defect management area that is formed in at least one of the lead-in area and the lead-out area and in which are recorded temporary defect information last recorded in the temporary defect information area and temporary defect management information last recorded in the temporary defect management information area.
According to still another aspect of the present invention, a disc includes a defect management area in at least one of a lead-in area, a lead-out area, and an outer area; a temporary defect information area that is in a data area and in which temporary defect information is recorded; a temporary defect management information area that is in the lead-in area, the lead-out area, and an outer area and in which is recorded temporary defect management information; and a defect management area that is in the lead-in area, the lead-out area, and the outer area and in which temporary defect information last recorded in the temporary defect information area and temporary defect management information last recorded in the temporary defect management information area are recorded.
According to still another aspect of the present invention, a method of managing a defect in a disc includes recording defect information regarding data recorded in a data area for every recording operation as temporary defect information in the data area; recording defect management information for managing the temporary defect information as temporary defect management information in a temporary defect management information area in at least one of a lead-in area and a lead-out area; and recording the temporary defect information and the temporary defect management information in a defect management area formed in at least one of the lead-in area and the lead-out area, during finalization of the disc.
According to still another aspect of the present invention, a method of managing a defect in a disc includes recording as nth temporary defect information in the data area defect information regarding data recorded in a data area of the disc according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1st recording operation, and defect information regarding data recorded in the data area according to an nth recording operation; recording defect management information for managing the nth temporary defect information as nth temporary defect management information in a temporary defect management information area, where n is an integer, and recording a last recorded temporary defect information and temporary defect management information in a defect management area during finalization of the disc.
According to still another aspect of the present invention, a recording apparatus includes a recording unit that records data in a data area of a disc according to a recording operation; and a controller that controls the recording unit to record defect information regarding the recorded data as temporary defect information in the data area; controls the recording unit to record defect management information for managing the temporary defect information as temporary defect management information in a temporary defect management information area that is in at least one of a lead-in area and a lead-out area of the disc; and controls the recording unit to record the temporary defect information and temporary defect management information in a defect management area that is formed in at least one of the lead-in area and the lead-out area.
According to still another aspect of the present invention, a recording apparatus includes a recording unit that records data in a data area of a disc according to first through nth recording operations; and a controller that controls the recording unit to record defect information regarding the data recorded according to the first recording through nth recording operations as nth temporary defect information in the data area; controls the recording unit to record defect management information for managing the nth temporary defect information as nth temporary defect management information in a temporary defect management information area; and controls the recording unit to record a last recorded temporary defect information and temporary defect management information in a defect management area, where n is an integer.
According to still another aspect of the present invention, a disc includes a defect management area in at least one of a lead-in area and a lead-out area; a temporary defect information area that is in a data area and in which temporary defect information is recorded; and a temporary defect management information area that is formed in at least one of the lead-in area and the lead-out area and in which temporary defect management information for managing the temporary defect information is recorded, and wherein the temporary defect information and the temporary defect management information are recorded again when a disc defect is detected using a verify-after-write method.
According to still another aspect of the present invention, a disc includes a defect management area in at least one of a lead-in area and a lead-out area; a temporary defect information area that is in a data area and in which is recorded temporary defect information; and a temporary defect management information area that is in at least one of the lead-in area, the lead-out area, and the outer area and in which is recorded temporary defect management information is recorded, where the last recorded temporary defect information that was last recorded in the temporary defect information area and the last recorded temporary defect management information that was last recorded in the temporary defect management information area are recorded in the defect management area during finalization of the disc, and the temporary defect information and the temporary defect management information are recorded again in the temporary defect information area and the temporary defect management information area, respectively, when a disc defect is detected using the verify-after-write method.
According to still another aspect of the present invention, a method of managing a defect in a disc includes recording as temporary defect information in a data area defect information regarding data recorded in the data area for every recording operation; recording defect management information for managing the temporary defect information in a temporary defect management information area in at least one of a lead-in area and a lead-out area; and performing a verify-after-write method on at least one of the temporary defect information and the temporary defect management information and recording the temporary defect information and the temporary defect management information again when a disc defect is detected.
It is preferable, but not required, that the method further includes recording the temporary defect information and the temporary defect management information in a defect management area in the lead-in area and the lead-out area. According to still another aspect of the present invention, a method of managing a defect in a disc includes recording as nth temporary defect information in a data area defect information regarding data recorded in the data area of the disc according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1st recording operation, and defect information regarding data recorded in the data area according to an nth recording operation; recording defect management information for managing the nth temporary defect information as nth temporary defect management information in a temporary defect management information area; and performing a verify-after-write method on at least one of the nth temporary defect information and the nth temporary defect management information and recording the nth temporary defect information and the nth temporary defect management information again when a disc defect is detected, where n is an integer.
It is preferable, but not required, that the method further includes recording a last recorded temporary defect information and temporary defect management information in a defect management area during finalization of the disc.
According to still another aspect of the present invention, a recording apparatus includes a recording/reading unit which records data on or reads data from a data area of a disc; and a controller which controls the recording/reading unit to record as temporary defect information in the data area defect information regarding the data recorded on the disc according to a recording operation and to record defect management information for managing the temporary defect information as temporary defect management information in a temporary defect management information area in at least one of a lead-in area and a lead-out area; performs a verify-after-write method on at least one of the temporary defect information and temporary defect management information; and controls the recording/reading unit to record the temporary defect information and temporary defect management information when a disc defect is detected.
According to still another aspect of the present invention, a recording apparatus includes a recording unit that records data on a data area of a disc; and a controller that controls the recording unit to record as nth temporary defect information in the data area defect information regarding the data recorded in the data area of the disc according to first through nth recording operations as nth temporary defect information in the data area; controls the recording unit to record defect management information for managing the nth temporary defect information as nth temporary defect management information in a temporary defect management information area; performs a verify-after-write method on at least one of the nth temporary defect information and the nth temporary defect management information; and controls the recording unit to record the nth temporary defect information and the nth temporary defect management information again when a disc defect is detected, where n is an integer.
Brief Description of the Drawings
The above and/or other aspects and/or advantages of the present invention will become more apparent and more readily appreciated by describing in detail embodiments thereof with reference to the accompanying drawings in which:
FIG. 1 is a block diagram of a recording and/or reproducing apparatus according to an embodiment of the present invention;
FIGs. 2A and 2B illustrate structures of discs according to embodiments of the present invention; FIG. 3 illustrates an embodiment of a structure of the discs shown in FIGS. 2A and 2B;
FIG. 4 illustrates an embodiment of the structure of the disc shown in FIG. 3; FIG. 5 is a diagram illustrating a process of recording a temporary defect list (TDFL) of the structure shown in FIG. 4 according to an embodiment of the present invention;
FIGs. 6A and 6B illustrate data structures of a TDFL according to an embodiment of the present invention; FIGs. 7A and 7B illustrate the data structure of defect #i contained in a TDFL and the data structure of the TDFL shown in FIG. 4 according to an embodiment of the present invention;
FIG. 8 illustrates the data structure of a temporary disc definition structure (TDDS) #i shown in FIG. 4; FIG. 9 illustrates the data structure of the TDFL #i shown in FIG. 8;
FIG. 10 illustrates a data structure of a disc definition structure (DDS) according to an embodiment of the invention for use in a disc shown in FIG. 3;
FIG. 11 illustrates a data structure of a defect list (DFL) according to an embodiment of the invention for use in a disc shown in FIG. 3;
FIG. 12 is a flowchart illustrating a method of managing a defect in a disc according to an embodiment of the present invention;
FIG. 13 is a flowchart illustrating a method of managing a defect in a disc according to another embodiment of the present invention; and FIG. 14 is a flowchart illustrating a method of managing a defect in a disc according to yet another embodiment of the present invention.
Best mode for carrying out the Invention
Reference will now be made in detail to the present embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the like elements throughout. The embodiments are described below in order to explain the present invention by referring to the figures.
FIG. 1 is a block diagram of a recording and/or reproducing apparatus according to an embodiment of the present invention. Referring to FIG. 1 , the recording apparatus includes a recording/reading unit 1 , a controller 2, and a memory 3. The recording/reading unit 1 records and/or reproduces data with respect to a disc 100, which is an embodiment of an information storage medium. When recording the data, the recording/reading unit 1 reads the data from the disc 100 so as to verify the accuracy of the recorded data. The controller 2 performs defect management according to an embodiment of the present invention. According to an embodiment, the controller 2 uses a verify-after-write method in which the data is recorded on the disc 100 in predetermined units and a defect on the disc 100 is detected by verifying the accuracy of the recorded data.
After recording of the data in the predetermined units, the controller 2 records information which indicates the position of a defective area of the disc 100. The information is recorded as temporary defect information on the disc 100. Also, the controller 2 records on the disc 100 management information, which is information used to manage the temporary defect information. The management information is recorded as temporary defect management information. Here, the predetermined recording unit may be a recording operation that is a unit of work determined according to user's intention or a type of recording work to be performed. According to this embodiment, a recording operation indicates a process in which the disc 100 is loaded into the recording apparatus, data is recorded on the disc 100, and the disc 100 is taken out from the recording apparatus. However, it is understood that the recording operation can be otherwise defined. For instance, the recording operation can be defined according to a recording time or an amount of data that is recorded as opposed to or in addition to when a user inserts or removes a disc.
During the recording operation, data is recorded and verified at least once. According to an embodiment, when a user presses an eject button (not shown) of the recording apparatus in order to bring out the disc 100 after recording the data, the controller 2 expects the recording operation to be terminated. Next, the controller 2 creates the temporary defect information and temporary defect management information and provides the information to the recording/reading unit 1 to be recorded on the disc 100. The temporary defect information, which is obtained as a result of the recording and verifying by the controller 2, is stored in the memory 3. However, the verification can be performed at other times during recording.
If the recording of data on the disc 100 is completed (i.e., no more data will be recorded on the disc 100 and the disc 100 is finalized, the controller 2 records the temporary defect information and the temporary defect management information in a defect management area (DMA) of the disc 100.
FIGS. 2A and 2B illustrate structures of the disc 100 according to embodiments of the present invention. In detail, FIG. 2A illustrates a disc 100 that is a single record layer disc having a record layer L0. The disc 100 includes a lead-in area, a data area, and a lead-out area. The lead-in area is located in an inner part of the disc 100 and the lead-out area is located in an outer part of the disc 100. The data area is present between the lead-in area and the lead-out area and is divided into a user data area and a spare area. The user data area is an area in which the user data is recorded. The spare area is a substitute area for a portion of the user data area having a defect in order to compensate for a loss in a recording area due to the defect. It is preferable, but not required in all aspects, that the spare area includes 5% of the entire data capacity of the disc 100, so that a greater amount of data can be recorded on the disc 100 on the assumption that defects may occur therein. Also, it is preferable, but not required, that the spare area is present at an end of a recording area of the disc 100. Especially, in the case of a write-once disc 100, the spare area must be located at an end of a recording area of the disc 100 so that slipping replacement can be performed while the spare area data is recorded starting from an inner part of the disc 100 continuing toward the outer part.
In the shown embodiment, the spare area is present only between the user data area and the lead-out area. If necessary, a portion of the user data area may be used as another spare area. Specifically, according to another embodiment, more than one spare area may be formed between the user data area and the lead-out area.
FIG. 2B illustrates a disc 100 that has two record layers L0 and L1. A lead-in area, a data area, and an outer area are sequentially formed from an inner part of the first record layer L0 to its outer part. Also, an outer area, a data area, and a lead-out area are sequentially formed from an outer part of the second record layer L1 to its inner part. Unlike the single record layer disc 100 of FIG. 2A, the lead-out area of the second record layer L1 is present in the inner part of the second record layer L1 of the disc 100 of FIG. 2B. That is, the disc 100 of FIG. 2B has an opposite track path (OTP) in which data is recorded starting from the lead-in area at an inner part of the first record layer L0 toward the outer area and continuing from the outer area of the second record layer L1 to the lead-out area at the inner part.
FIG. 3 illustrates an example of the structure of the disc 100 embodiments shown in FIGs. 2A and 2B. Referring to FIG. 3, a DMA is present in at least one of the lead-in area, the lead-out area, and the outer area of the disc 100. Also, a temporary defect management area (TDMA) is formed in at least one of the lead-in area and the lead-out area. A temporary defect information area is formed in the data area in predetermined recording units.
In general, information which relates to managing defects on the disc 100 is recorded in the DMA. Such information includes a structure of the disc 100 for defect management, the position of the defect information, whether the defect management is performed, and the position and size of the spare area. For a write-once disc 100, new data is recorded after previously recorded data when the previously recorded data changes. In general, when the disc 100 is loaded into a recording/reproducing apparatus such as that shown in FIG. 1 , the apparatus reads data from the lead-in area and the lead-out area of the disc 100 to determine how to manage the disc 100 and record or read data on or from the disci 00. However, if the amount of data recorded in the lead-in area increases, a longer time will be spent preparing the recording or reproducing of the data after loading the disc 100. Accordingly, an embodiment of the present invention proposes temporary defect management information and temporary defect information.
Specifically, only the temporary defect management information, which is comparatively more important than the temporary defect information, is recorded in the lead-in area. The temporary defect information is recorded in the data area. It is preferable, but not required, that new information is added to the previously recorded information in the temporary defect information so that all recorded information is accumulated therein. The recording/reproducing apparatus reads last recorded temporary defect information and detects defects throughout the disc 100 based on the read result. Thus, information regarding the location of the last recorded temporary defect information is recorded in temporary defect management information area, where the temporary defect management information is recorded.
More specifically, the information regarding a defect occurring in a recording unit #0 and information regarding a defect occurring in a recording unit #1 are recorded in the temporary defect management information area #0 and the temporary defect management information area #1 , respectively. Defect management information for managing the temporary defect information areas #0, #1 is recorded in the temporary defect management information area. If no more data can be recorded on the disc 100 or if a user does not want to record more data on the disc 100 ( i.e., the disc 100 needs to be finalized), the temporary defect information recorded in the temporary defect information area and the temporary defect management information recorded in the temporary defect management information area are recorded in the DMA.
The reason for recording the temporary defect management information and the temporary defect information in the DMA again will now be explained. When no more data will be recorded on the disc 100 (i.e., the disc 100 needs to be finalized), the temporary defect management information, which has been updated several times, and the temporary defect information recorded in the data area are moved to the DMA of the lead-in area. Thus, it is possible to have faster reading of information recorded on the disc 100. Also, it is possible to increase the reliability of the information by recording the defect management information in a plurality of areas.
In this embodiment, the defect information recorded in the temporary defect information areas #0 through #i-1 is again recorded in temporary defect information area #i. Therefore, it is sufficient to read the defect information from the last temporary defect information area and to again record the read information in the DMA during the finalization of the disc 100. FIG. 4 illustrates structures of the disc 100 shown in FIG. 3. Referring to FIG. 4, the DMA is formed in at least one of the lead-in area, the lead-out area, and the outer area of the disc 100. When the disc 100 is the single record layer disc 100 as shown in FIG. 2A, the DMA is formed in at least of one of the lead-in area and the lead-out area. When the disc 100 is the double record layer disc 100 as shown in FIG. 2B, the DMA is formed in at least one of the lead-in area, the lead-out area, and the outer area of the disc 100. By way of example, if the disc 100 has a single record layer L0, DMAs are formed in both the lead-in area and the lead-out area, and if the disc 100 has two record layers L1 , L0, DMAs are formed in the lead-in area, the lead-out area, and the outer area.
After recording the user data in the data area according to recording operation #0, a temporary defect list (TDFL) #0, which is a temporary defect information area corresponding to the recording operation #0, is disposed in the data area. Information regarding a defect occurring in the user data recorded according to the recording operation #0 is recorded in the TDFL #0. Similarly, the user data according to recording operation #1 is recorded in the data area, and a TDFL #1 , which corresponds to the recording operation #1 , is disposed in the data area. A TDFL #2, which corresponds to recording operation #2, is also disposed in the data area.
Temporary disc definition structure (TDDS), which is the temporary defect management information for managing the TDFLs #0 through #n, is recorded in the temporary defect management information area. The TDDSs #0 through #n correspond to the TDFL #0 through #n, respectively. Using the TDDSs #0 through #n, it is possible to record whether a defect is managed, the size of the spare area, and information for managing TDFL #i in TDDS #i. Also, it is possible to record information regarding the position of a defective area and the corresponding position of the spare area, which is a substitute for the defective area, in a TDFL #i.
For a high-density disc on which information of several dozen GB bytes can be recorded, it is desirable, but not required, that a cluster is allocated to each TDDS #i, and four to eight clusters are allocated to the TDFL #i. This allocation is because it is preferable to record new information in units of clusters in order to update information when a minimum physical unit of record is a cluster, although the amount of TDDS#i, which is temporary defect management information, is just several K bytes. Meanwhile, it is preferable, but not required, that a total amount of defects allowed in the disc 100 is about 5 percent of the disc recording capacity. For instance, the TDFL #i includes about four to eight clusters considering that information of about 8 bytes is required to record information regarding a defect and the size of a cluster is 64 Kbytes.
According to an aspect of the invention, the verify-after-write method can be performed in the TDDS #i and the TDFL #i. In this case, when a defect is detected, information is recorded again in the corresponding adjacent areas.
FIG. 5 is a diagram illustrating a process of recording a TDFL according to an embodiment of the present invention. Here, a unit of data may be processed in units of sectors or clusters. A sector denotes a minimum unit of data that is managed in a file system of a computer or an application, and a cluster denotes a minimum unit of data that can be physically recorded on a disc at once. In general, one or more sectors constitute a cluster.
There are two types of sectors: a physical sector and a logical sector. The physical sector is an area where a sector of data is to be recorded on the disc 100. An address for detecting the physical sector is called a physical sector number (PSN). The logical sector is a unit of sector for managing data in a file system or an application. An address for detecting the logical sector is called a logical sector number (LSN). A disc recording/reproducing apparatus such as that shown in FIG. 1 detects the position of the data to be recorded on the disc 100 using the PSN, and the whole part of data is managed in units of the LSNs in a computer or an application in order to record data on the disc 100. The relationship between the LSN and the PSN is changed by the controller 2 of the recording/reproducing apparatus, based on whether the disc contains a defect and an initial position of recording data.
Referring to FIG. 5, A denotes a data area in which the PSNs are allocated to a plurality of sectors (not shown) in ascending order. In general, each LSN corresponds to at least one of the PSNs, respectively. However, since the LSNs are allocated to sectors, except for a defective sector, in ascending order, the correspondence between the PSNs and the LSNs is not maintained when the disc 100 has a defective area, even if the size of a physical sector is the same as that of a logical sector.
Referring to FIG. 5, 1010 through 1090 denote units of data by which a verifying work is performed after a recording work. In detail, a recording apparatus records user data in section 1010, returns to the start of the section 1010, and starts checking if the user data is appropriately recorded or a defect occurs in the section 1010. If a defect is detected, an area covering the defect and data recorded after the defect in the section 1010 is designated as defect #1. Next, the recording apparatus records the user data in section 1020, returns to the start of the section 1020, and checks if the user data is appropriately recorded or a defect occurs in the start. If a defect is detected, an area covering the defect and data recorded after the defect in the section 1020 is designated as defect #2. Likewise, defect #3 is determined in section 1030. However, since a defect is not detected in section 1040, a defective area is not determined in section 1040.
Because the disc 100 according to an embodiment of the present invention is a write-once disc 100, it is desirable, but not required, that data recorded after an area having a defect is not used and an area covering data recorded after the defect is determined to be a defective area as well as the area covering the defect. Assuming that the LSN /" is allocated to an area in which the data is recorded after an area having a. defect in order to use the data, an area in which data is recorded after the area having the LSN i must be denoted as the LSN i-1 for data reproduction. However, if there is a section to which the LSNs are not allocated in ascending order, it is not easy to manage the logic sectors. Therefore, in this embodiment, all of data areas after a defective area are also regarded as being defective areas, thereby increasing the efficiency of managing the logic sectors.
TDFL #0 is recorded in section 1050 when the recording operation #0 is expected to end after the recording and verifying of the data in the section 1040 (i.e., when a user presses an eject button of a recording apparatus or recording of user data allocated in a recording operation is completed). The TDFL #0 contains information regarding the defects #1 through #3 occurring in the sections 1010 through 1040. Similarly, TDFL #1 is recorded in sector 1090 to correspond to recording operation #1 to contain information regarding defects #4 and #5 in sectors 1060 through 1080. The TDFL #0 also contains information regarding a part of an area in which a user data is recorded according to the recording operation #0, where the part having a defect and thus being designated as a defective area. Also, the TDFL #1 contains information regarding a part of an area in which the user data recorded according to the recording operation #1 , where the part having a defect is designated as another defective area. While not required in all aspect, the TDFL #1 further contains the information recorded in the TDFL #0 according to an aspect of the invention.
FIGs. 6A and 6B illustrate data structures of a TDFL according to an embodiment of the present invention. Referring to FIGs. 6A and 6B, information regarding defects #1 through #3 is recorded in TDFL #0. The information regarding the defect #1 describes the position of the defect #1 , the information regarding the defect #2 describes the position of the defect #2, and the information regarding the defect #3 describes the position of the defect #3. Further, information regarding TDFL #0, which indicates the position of the TDFL #0, is further recorded in the TDFL #0.
Since the user data is not recorded in the TDFL #0, it is not required to read the information recorded in the TDFL #0 during reproduction of the user data. That is, for the reproduction of the user data, it is meaningless to distinguish between defective area #i and the TDFL #0 because the user data is not contained in these area. The TDFL #0 contains the information regarding its position and thus can be used as useful information, for example, to indicate during the reproduction of the user data that the user data is not recorded in the TDFL #0.
The TDFL #1 contains information regarding defects #4 and #5, in addition to the information recorded in the TDFL #0. The TDFL #1 also contains information regarding the position of the TDFL #1 for the same reason that the position is indicated in the TDFL #0.
FIGs. 7A and 7B illustrate the data structures of information regarding defect #i contained a TDFL and information regarding TDFL #i. Referring to FIGs. 7A and 7B, the information regarding the defect #i includes information regarding the state, the start, reserved, and end positions of the defect #i. In general, the state information is flag information that indicates whether a present area is a defective area in which a defect occurs or is a TDFL in which is recorded temporary defect information. In the information regarding the defect #i, the state information is the flag information which indicates that the present area is a defective area. The start information represents the start of the present area (i.e., the start of the defect #i). The end information represents the end of the present area (i.e., the end of the defect #i). The reserved is referred to as an area in which recording is pending to record other information therein.
The information regarding the TDFL #i includes information regarding the state of and the start, reserved, and end positions of the TDFL #i. In general, the state information is flag information that indicates whether a present area is a defective area in which a defect occurs or is a TDFL in which is recorded temporary defect information. In the information regarding the TDFL #i, the state information is the flag information which indicates that the present area is a TDFL in which is recorded temporary defect information.
FIG. 8 illustrates the data structure of temporary disc definition structure (TDDS) #i. Referring to FIG. 8, the TDDS #i includes an identifier, defect management mode information, a drive information pointer, a TDFL #i pointer, which points out the position of the corresponding TDFL #i, a user data physical area pointer, a user data logical area pointer, an optimal power control (OPC) pointer, and disc usage information.
The defect management mode information indicates whether defect management is performed on the disc 100. For instance, the information describes a spare area when defect management is performed and does not describe the spare area otherwise. If defect management is not required, the information provides this fact so that more user data can be recorded in the spare area, which otherwise uses about 5% of the disc recording capacity according to an aspect of the invention. The drive information pointer describes the location (e.g., the number of a first physical sector) of a drive information area (not shown) of the disc 100 according to an aspect of the present invention.
Drive information is obtained by conducting a test on the disc 100 with a certain disc drive, allowing the test to be skipped when data is read from the disc 100, thereby rendering fast reading operations. In other words, the drive information is created to use a certain drive without testing the drive. In this embodiment, the drive information includes recording conditions, such as an identifier of a used drive and the optimum record power. In the case of a write-once disc, data is recorded in a new cluster whenever drive information is updated. Thus, if information regarding an area of the disc 100 in which the next drive information is to be recorded is known in advance, it is possible to reduce time required to perform preliminary operations in order to read or reproduce data from or on the disc 100. For this reason, it is useful to record such drive information on a disc.
The TDFL #i pointer indicates the position of an area of the disc 100 where the TDFL #i is recorded (e.g., the number of a first physical sector of TDFL #i). The user data physical area pointer indicates the end (e.g., the number of the last physical sector) of a data area in which user data is physically recorded. The user data logical area pointer indicates the end part (e.g., the number of the last logical sector) of the data area in which user data is logically recorded. It is possible to detect the start of the data area where recording of the user data begins during a next recording operation, using the user data physical area pointer and the user data logical area pointer. The OPC pointer describes the location of a test area for detecting the optimum power control. The OPC pointer can also be used as information that provides a next area available when different types of drives are driven by different OPCs. The disc usage information specifies whether the disc 100 is finalized (i.e., whether user data can be further recorded in the data area).
FIG. 9 illustrates an embodiment of the data structure of TDFL #i. Referring to FIG. 9, the TDFL #i includes an identifier, a TDDS #i pointer, information regarding defect #n, information regarding defect #n+1 , and so on. The information regarding defect #n includes information regarding start and end positions of defect #n in state information.
The TDDS #i pointer indicates the position of an area in which is recorded a corresponding TDDS #i. For instance, the TDDS #i pointer can indicate the number of a first physical sector of the TDDS #i.
Information regarding the position of the TDFL #i included in the TDDS #i and information regarding the position of the TDDS #i included in the TDDS #i specify the positions of the TDFL #i and the TDDS #i which are a pair of information. Thus, the above two different information can be used to verify the availability of information recorded in the TDFL #i and the TDDS #i.
The state information, which is the information regarding defect #n, describes whether a certain area is an actual defective area or an area where defect management information is recorded. The inclusion of the information regarding the defect #n into the state information is optional. The information regarding the start and end positions of the defect #n may be recorded with the number of a first physical sector and the number of the last physical sector of the defective area, respectively. The information regarding defect #n+1 is also recorded using the method of recording the information regarding the defect #n.
In an embodiment of the invention, the verify-after-write method is performed for every several clusters. If the verify-after-write method is performed for every single cluster, the size of an area, which is designated as a defective area, is determined to be a cluster, and thus, the number of the last physical sector of the area need not be recorded.
FIG. 10 illustrates the data structure of a disc definition structure (DDS) to be recorded in the DMA shown in FIGs. 3 and 4. Referring to FIG. 10, the DDS includes an identifier, defect management mode information, a drive information pointer, a DFL pointer which specifies the position of a corresponding DFL, a user data physical area pointer, a user data logical area pointer, an OPC pointer, and disc usage information.
The defect management mode information indicates whether defect management is performed. This information describes that a spare area is not formed in the disc 100 according to the present invention when the defect management is not performed, and describes that a spare area is formed otherwise. The drive information pointer specifies the position of a drive information area (not shown) of the disc 100. For example, the drive information pointer can specify the number of a first physical sector of the drive information area.
Drive information is obtained by conducting a test on the disc 100 with a certain drive, allowing the test to be skipped when data is read from the disc 100, thereby rendering fast reading operations. In other words, the drive information is created to use a certain drive without testing the drive. In this embodiment, the drive information includes recording conditions such as an identifier of a used drive and the optimum record power. In the case of a write-once disc, data is recorded in a new cluster whenever drive information is updated. Thus, if information regarding an area of the disc 100 in which the next drive information is to be recorded is known in advance, it is possible to reduce time required to perform preliminary operations in order to read or reproduce data from or on the disc 100. For this reason, it is useful to record such drive information on a disc. The DFL pointer specifies the position of an area in which DFL is recorded (e.g., the number of a first physical sector of the DFL). The user data physical area pointer indicates the end position of an area of a data area in which user data is physically recorded (e.g., the number of the last physical sector of the area in which the user data is recorded). The user data logical area pointer indicates the end position of an area of a data area in which user data is physically recorded (e.g., the number of the last physical sector of the area in which the user data is recorded). With the user data physical area pointer and the user data logical area pointer, it is possible to know the start of an area in which user data is to be recorded during a next recording operation. The OPC pointer specifies the position of a test area for detecting the optimum power control. The OPC pointer can also be used as information that provides a next area available when different types of drives are driven by different OPCs. The disc usage information specifies whether the disc 100 is finalized (i.e., whether user data can be further recorded in the data area).
FIG. 11 illustrates an embodiment of the data structure of a defect list (DFL) to be recorded in the DMA shown in FIGs. 3 and 4. Referring to FIG. 11 , the DFL includes an identifier, a DDS pointer, information regarding defect #n, and information regarding defect #n+1. The information regarding defect #n includes information regarding the start and end positions of defect #n in state information. Here, information regarding defect #i may be information regarding the aforementioned TDFL #i.
The DDS pointer points out the position of an area in which a corresponding DDS is recorded (e.g., the number of a first physical sector of the DDS). Information regarding the position of the DFL included in the DDS and information regarding the position of the DDS included in the DFL, specify the positions of the DFL and the DDS which are a pair of information. Thus, the above two different information can be used to verify the availability of information recorded in the DFL and the DDS.
The state information, which is the information regarding defect #n, describes whether a certain area is an actual defective area or an area where defect management information is recorded. The inclusion of the information regarding the defect #n into the state information is optional. The information regarding the start and end positions of the defect #n may be recorded with the number of a first physical sector and the number of the last physical sector of the defective area, respectively. The information regarding defect #n+1 is also recorded using the method of recording the information regarding the defect #n.
In an embodiment of the invention, the verify-after-write method is performed for every several clusters. If the verify-after-write method is performed for every single cluster, the size of an area, which is designated as a defective area, is determined to be a cluster, and thus, the number of the last physical sector of the area need not be recorded.
Hereinafter, embodiments of a disc defect management method according to the present invention will be described.
FIG. 12 is a flowchart illustrating a disc defect management method according to an embodiment of the present invention. Referring to FIG. 12, in action 1201 , a recording apparatus records defect information regarding data, which is recorded according to a first recording operation, as first temporary defect information in a data area of a disc, so as to perform disc defect management. In action 1202, the recording apparatus records the first temporary defect information and defect information regarding data, which is recorded according to a second recording operation, as second temporary defect information in the data area. In action 1203, the recording apparatus records defect management information for managing the first and second temporary defect information in a temporary defect management information area. In detail, action 1203 is performed by sequentially recording the first temporary defect information, the defect management information for managing the first temporary defect information, the first temporary defect management information, the second temporary defect information, the defect management information for managing the second temporary defect information, and the second temporary defect management information.
As described, the method only records two temporary defect information and two temporary defect management information for the sake convenience. However, it is understood there is no limit to the number of temporary defect information and defect management information which can be recorded. If the number is increased, temporary defect information is accumulatively recorded in the temporary defect management information area (i.e., all of previously recorded temporary defect information are recorded together with newly recorded temporary defect information).
During finalization of the disc, a last recorded temporary defect information and temporary defect management information may be either moved from the temporary defect management information area to a defect management area (DMA), or be maintained to be recorded in the temporary defect management information area. If the latter location is selected, a disc drive accesses the temporary defect management information area and reads the last recorded temporary defect information therefrom so as to detect a defective area of the disc.
FIG. 13 is a flowchart illustrating a disc defect management method according to another embodiment of the present invention. Referring to FIG. 13, in action 1301 , a recording apparatus records defect information regarding data, which is recorded according to a first recording operation, as first temporary defect information in a data area of a disc, so as to perform disc defect management. In action 1302, the recording apparatus records defect management information for managing the first temporary defect information as first temporary defect management information in a temporary defect management information area which is present in at least one of a lead-in area and a lead-out area of the disc. In action 1303, the recording apparatus records the temporary defect information and defect information regarding data, which is recorded according to a second recording operation, as second temporary defect information in the data area. In action 1304, the recording apparatus records management information for managing the second temporary defect information as second temporary defect management information in the temporary defect management information area. In action 1305, it is checked whether finalization of the disc is required is checked.
In action 1306, if it is determined in action 1305 that finalization of the disc is not required, actions 1301 through 1304 are repeated while increasing indexes given to the recording operation, the temporary defect information, and the temporary defect management information by 1. It is understood that the indexing could be numbers other than 1 or non-integers so long as the index changes so as to reflect different recording operations being performed. While not required in all aspects, all of previously recorded temporary defect information are accumulatively recorded whenever new temporary defect information is recorded.
In action 1307, if it is determined in action 1305 that the disc is required to be finalized, a last recorded one of temporary defect management information and temporary defect information, which have been recorded until action 1305, are recorded in a defect management area (DMA). In other words, the last recorded temporary defect management information and temporary defect information are recorded as final defect management information and defect information in the DMA. The final defect management information and defect information may be repeatedly recorded to increase the reliability of data detection.
Further, the verify-after-write method may be performed on the final defect management information and defect information according to an embodiment of the invention. If a defect is detected from these information, an area of the disc in which the defect occurs and data recorded after the area having the defect may be regarded as being unavailable (i.e., they are designated as a defective area), and the final defect management information and defect information may be again recorded after the defective area. FIG. 14 is a flowchart illustrating a method of managing a defect in a disc according to yet another embodiment of the present invention. Referring to FIG. 14, a recording apparatus records user data on a data area of a disc in units of data to facilitate the verify-after-write method, in action 1401. In action 1402, the data recorded in action 1401 is verified to detect an area of the disc in which a defect exists. In action 1403, the controller 2 of FIG. 1 creates information for designating an area covering the area having the defect and data recorded after the area having the defect, as a defective area. In action 1404, the controller 2 stores the created information as first temporary defect information in the memory 3 of FIG. 1. In action 1405, it is checked whether a recording operation is expected to end. If it is determined in action 1405 that the recording operation is not likely to end, actions 1401 through 1404 are repeated before the end of the recording operation.
In action 1406, if it is determined in action 1405 that the recording operation is likely to end (i.e., when the recording of the user data is complete by a user input or according to the recording operation), the controller 2 reads the first temporary defect information from the memory 3 and records the first temporary defect information in a first temporary defect information area TDFL #0 of the data area. In action 1407, information for designating the first temporary defect information area TDFL #0 as a defective area is further recorded in the first temporary defect information area TDFL #0. In action 1408, the controller 2 records management information for managing the first temporary defect information area TDFL #0 as first temporary defect management information TDDS #0 in a temporary defect management information area.
In action 1409, it is checked whether the disc is to be finalized. In action 1410, if it is determined in action 1409 that the disc is not required to be finalized, actions 1401 through 1408 are repeated before the finalization while increasing indexes given to the temporary defect information, the temporary defect information area, and the temporary defect management information by 1. Here, all of previously recorded temporary defect information are accumulatively recorded whenever new temporary defect information is recorded. It is understood that other numbers (including non-integers) could be used for the index so long as the index changes reflect different recording operations being performed.
In action 1411 , if it is determined in action 1409 that finalization of the disc is required, a last recorded temporary defect information TDFL #i and temporary defect management information TDDS #i are recorded as final defect information DFL and defect management information DDS, respectively, in a defect management area (DMA). The final defect information (DFL) and defect management information (DDS) may be repeatedly recorded in the DMA several times so as to increase the reliability of data detection.
Further, the verify-after-write method may be performed on the final defect information (DFL) and final defect management information (DDS) according to an aspect of the invention. If a defect is detected from the DFL and DDS, an area covering an area of the disc in which the defect occurs and data recorded after the area having the defect, may be regarded as being unavailable (i.e., be designated as a defective area), and the DFL and DDS may be again recorded after the defective area.
The aforementioned defect management may be embodied as a computer program that can be run by a computer. Codes and code segments, which constitute the computer program, can be easily reasoned by a computer programmer in the art. The program is stored in a computer readable medium. When the program is read and run by a computer such as the controller 2 shown in FIG. 1 , the defect management is performed. Here, the computer-readable medium may be on a magnetic recording medium, an optical recording medium, a carrier wave medium or any other medium from which a computer can recognize a program. Moreover, the computer can be a general or special purpose computer and can utilize the program encoded on firmware.
Industrial Applicability
As described above, the present invention provides a defect management method that is applicable to a recordable disc, such as a write-once disc. In the method, a temporary defect information area is included in a data area of a disc, and therefore, defect information is accumulatively recorded in the temporary defect information area regardless of the disc recording capacity. Also, during finalization of the disc, only temporary defect information is read from the last temporary defect information area and the read information is recorded in a DMA, thereby enabling efficient use of the DMA whose recording capacity is limited. Accordingly, it is possible to record user data even on a write-once disc while performing defect management thereon, thereby backup operations can be more stably performed without interruptions. In particular, a pointer, which specifies the position of a corresponding TDDS #i, is recorded in TDFL #i and a pointer, which specifies the position of TDFL #i, is recorded in the TDDS #i. Therefore, it is possible to crosscheck the relationship between the TDFL #i and the TDDS #i. For the same reason, it is possible to crosscheck the relationship between a DDS and a DFL. Further, defect management mode information is contained in the TDDS #i and the DDS and allows selective defect management, thereby successfully performing recording operations irrespective of recording environment conditions.
In addition, it is understood that, in order to achieve a recording capacity of several dozen gigabytes, the recording and/or reproducing unit 1 shown in FIG. 1 could include a low wavelength, high numerical aperture type unit usable to record dozens of gigabytes of data on the disc 100. Examples of such units include, but are not limited to, those units using light wavelengths of 405 nm and having numerical apertures of 0.85, those units compatible with Blu-ray discs, and/or those units compatible with Advanced Optical Discs (AOD).
While described in terms of a write-once disc, it is understood that the method can be used with rewritable media or where the medium has write-once and rewritable portions.
Although a few embodiments of the present invention have been shown and described, it would be appreciated by those skilled in the art that changes may be made in this embodiment without departing from the principles and spirit of the invention, the scope of which is defined in the claims and their equivalents.

Claims

What is claimed is:
1. A disc for use with a recording and/or reproducing apparatus, the disc comprising: a defect management area in at least one of a lead-in area, a lead-out area, and an outer area of the disc and in which defect management information is recordable; a data area in which data is recorded; a temporary defect information area which is in the data area and which includes temporary defect information regarding the recorded data in the data area; and a temporary defect management information area which is in at least one of the lead-in area, and the lead-out area and which is used by the recording and/or reproducing apparatus to access the temporary defect information.
2. The disc of claim 1 , wherein the data is recorded in recording operations in corresponding portions of the data area, and, each portion includes a temporary defect information area for the corresponding recording operation.
3. The disc of claim 1 , wherein the temporary defect information in the temporary defect information area includes: first information regarding a defect in data recorded according to a present recording operation, and second information regarding a defect in data recording according to a previous recording operation.
4. A method of managing a defect in a disc, the disc comprising a data area, the method comprising: recording as first temporary defect information in the data area defect information regarding data recorded in a current recording operation, and defect information regarding data recorded in a previous recording operation; and recording as second temporary defect information in the data area the first temporary defect information and defect information regarding data recorded in a next recording operation.
5. The method of claim 4, further comprising: after the recording as the first temporary defect information, recording as first temporary defect management information in a temporary defect management information area defect management information for managing the first temporary defect information, and after the recording as the second temporary defect information, recording as second temporary management information in the temporary defect management information area defect management information for managing the second temporary defect information, wherein the temporary defect management information area is formed in at least one of the lead-in area, the lead-out area, and the outer area of the disc.
6. A method of managing a defect in a disc, the disc comprising a data area, the method comprising: recording as nth temporary defect information in the data area defect information regarding data recorded in the data area according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1st recording operation, and defect information regarding data recorded in the data area according to an nth recording operation; and recording as nth temporary defect management information in a temporary defect management information area defect management information for managing the nth temporary defect information, wherein n is an integer.
7. The method of claim 6, further comprising: during finalization of the disc, recording a last recorded temporary defect information and a last recorded temporary defect management information in a defect management area of the disc.
8. The method of claim 6, wherein the temporary defect management information area is in at least one of a lead-in area, a lead-out area, and an outer area of the disc.
9. The method of claim 6, wherein the recording as the nth temporary defect information comprises: recording first data in a predetermined unit; verifying the recorded data to detect an area of the disc in which a defect exists; storing in a memory information for designating as a defective area an area including the area having the defect and another area which includes other data recorded after the area having the defect; recording second data in the predetermined unit after the defective area; repeating the verifying and the storing at least once with respect to the second data; and when the nth recording operation is to end, reading the information from the memory and recording the read information in an nth temporary defect information area of the data area.
10. The method of claim 9, wherein the recording as the nth temporary defect information further comprises recording information for designating the nth temporary defect information area as a defective area in the nth temporary defect information area.
11. A recording and/or reproducing apparatus which transfers data with respect to a disc, the disc including a data area and at least one of a lead-in area and a lead-out area, the apparatus comprising: a recording unit that records the data in the data area of according to a recording operation; and a controller that controls the recording unit to: record as temporary defect information in the data area of the disc defect information regarding the data recorded during the recording operation, and record temporary defect management information for managing the temporary defect information in a temporary defect management information area that is in at least one of the lead-in area and the lead-out area.
12. The recording and/or reproducing apparatus of claim 11 , wherein the controller further controls the recording unit to accumulatively record in the temporary defect information additional defect information regarding additional data recorded according to a previous recording operation.
13. A recording and/or reproducing apparatus which transfers • data with respect to a disc, the disc including a data area and at least one of a lead-in area and a lead-out area, the apparatus comprising: a recording unit that records data in the data area according to first through nth recording operations; and a controller that controls the recording unit to: record as nth temporary defect information in the data area defect information regarding data recorded in the data area according to the first through nth recording operations; and record as n temporary defect management information in a temporary defect management information area defect management informa gttiioonn ffoorr mmaannaaggiinngg tthhee n nth temporary defect information, wherein n is an integer.
14. The recording and/or reproducing apparatus of claim 13, further comprising: a reading unit that reads the data recorded on the disc; and a memory, wherein the controller further: controls the recording unit to record the data in a predetermined unit, detects an area having a defect on the disc by uses the reading unit to read and verify the recorded data, stores in the memory information for designating as a defective area the area having the defect and an area in which is recorded data recorded after the area having the defect, and when the nth recording operation is to end, reads the information from the memory and controls the recording unit to record the read information in an nth temporary defect information area.
15. The recording and/or reproducing apparatus of claim 14, wherein the controller further controls the recording unit to further record information for designating the nth temporary defect information area as the defective area in the nth temporary defect information area.
16. A disc for use with a recording and/or reproducing apparatus, the disc comprising: a defect management area in at least one of a lead-in area and a lead-out area of the disc and which includes defect management information used by the recording and/or reproducing apparatus; a data area of the disc in which data is recorded; a temporary defect information area that is in the data area and includes temporary defect information regarding the recorded data in the data area; and a temporary defect management information area that is in at least one of the lead-in area and the lead-out area and includes temporary defect management information used by the recording and/or reproducing apparatus for managing the temporary defect information, wherein the defect management information of the defect management area includes a last recorded temporary defect management information that was last recorded in the temporary defect information area and a last recorded temporary defect management . information that was last recorded in the temporary defect management information area.
17. The disc of claim 16, wherein the data is recorded in recording operations in corresponding portions of the data area, and, each portion includes a temporary defect information area for the corresponding recording operation.
18. The disc of claim 16, wherein the temporary defect information in the temporary defect information area includes: first information regarding a defect in data recorded according to a present recording operation, and second information regarding a defect in data recording according to a previous recording operation.
19. A disc for use with a recording and/or reproducing apparatus, the disc comprising: a defect management area formed in at least one of a lead-in area, a lead-out area, and an outer area of the disc and which includes defect management information used by the recording and/or reproducing apparatus; a data area in which data is recorded; a temporary defect information area that is in the data area and includes temporary defect information regarding the recorded data in the data area; and a temporary defect management information area that is in the lead-in area, the lead-out area, and the outer area and includes temporary defect management information used by the recording and/or reproducing apparatus to access the temporary defect information, wherein the defect management information of the defect management area includes a last recorded temporary defect information that was last recorded in the temporary defect information area and a last recorded temporary defect management information that was last recorded in the temporary defect management information area.
20. The disc of claim 19, wherein the data is recorded in recording operations in corresponding portions of the data area, and, each portion includes a temporary defect information area for the corresponding recording operation.
21. The disc of claim 19, wherein the temporary defect information in the temporary defect information area includes: first information regarding a defect in data recorded in a present recording operation, and second information regarding a defect in data recorded in previous recording operations.
22. A method of managing a defect in a disc, the disc comprising a data area and at least one of a lead-in area and a lead-out area, the method comprising: recording as temporary defect information in the data area defect information regarding data recorded in the data area for every recording operation; recording as temporary defect management information in a temporary defect management information area defect management information for managing the temporary defect information, the temporary defect management information area being in at least one of the lead-in area and the lead-out area; and during finalization of the disc, recording the temporary defect information and the temporary defect management information in a defect management area formed in at least one of the lead-in area and the lead-out area.
23. A method of managing a defect in a disc, the disc comprising a data area, the method comprising: recording as nth temporary defect information in the data area defect information regarding data recorded in the data area according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1st recording operation, and defect information regarding data recorded in the data area according to an nth recording operation; recording as nth temporary defect management information in a temporary defect management information area defect management information for managing the nth temporary defect information, where n is an integer; during finalization of the disc, recording the nth temporary defect information and the nth temporary defect management information in a defect management area.
24. The method of claim 23, wherein the temporary defect management information area is in at least one of a lead-in area and a lead-out area, and the lead-in area, the lead-out area, and an outer area of the disc.
25. The method of claim 23, wherein the recording as the nth temporary defect information comprises: recording first data in a predetermined unit; verifying the recorded first data to detect an area having a defect; storing in a memory information for designating as a defective area an area including the area having the defect and another area in which additional data is recorded after the area having the defect; recording second data in the predetermined unit after the defective area; repeating the verifying and the storing at least once with respect to the second data; and when the nth recording operation is to end, reading the information from the memory and recording the read information in an nth temporary defect information area of the data area.
26. The method of claim 25, wherein the recording as the nth temporary defect information further comprises recording in the nth temporary defect information area information for designating the nth temporary defect information area as a defective area.
27. A recording and/or reproducing apparatus which transfers data with respect to a disc, the disc including a data area and at least one of a lead-in area and a lead-out area, the apparatus comprising: a recording unit that records the data on the data area of the disc according to a recording operation; and a controller that controls the recording unit to: record as temporary defect information in the data area defect information regarding the data recorded according to the recording operation; record as temporary defect management information in a temporary defect management information area defect management information for managing the temporary defect information; and record the temporary defect information and temporary defect management information in a defect management area that is formed in at least one of the lead-in area and the lead-out area, wherein the temporary defect management information area is in at least one of the lead-in area and the lead-out area of the disc.
28. A recording and/or reproducing apparatus which transfers data with respect to a disc, the disc including a data area and at least one of a lead-in area and a lead-out area, the apparatus comprising: a recording unit that records the data in the data area of the disc according to first through nth recording operations; and a controller that controls the recording unit to: record as nth temporary defect information in the data area defect information regarding the data recorded according to the first through nth recording operations; record as nth temporary defect management information in a temporary defect management information area defect management information for managing the nth temporary defect information; and record a last recorded temporary defect information and temporary defect management information in a defect management area, where n is an integer.
29. The recording and/or reproducing apparatus of claim 28, further comprising: a reading unit that reads the data recorded on the disc; and a memory, wherein the controller further: controls the recording unit to record the data in a predetermined unit, uses the reading unit to detect an area having a defect on the disc by reading and verifying the recorded data, stores, in the memory, information for designating a defective area to include the area having the defect and another area having other data recorded after the area having the defect as a defective area, and reads the information from the memory and controls the recording unit to record the read information in an nth temporary defect information area when the nth recording operation is to end.
30. A disc for use with a recording and/or reproducing apparatus, the disc comprising: a defect management area formed in at least one of a lead-in area and a lead-out area of the disc and which includes defect management information used by the recording and/or reproducing apparatus; a data area which includes data; a temporary defect information area in the data area and which includes temporary defect information regarding the data; and a temporary defect management information area in at least one of the lead-in area and the lead-out area and which includes temporary defect management information used by the recording and/or reproducing apparatus for managing the temporary defect information, wherein the temporary defect information and the temporary defect management information are recorded again when a disc defect is detected using a verify-after-write method.
31. The disc of claim 30, wherein the temporary defect information and the temporary defect management information are respectively again recorded in the temporary defect information area and the temporary defect management information area when a disc defect is detected using the verify-after-write method to verify the temporary defect information and the temporary defect management information.
32. The disc of claim 30, wherein the data is recorded in recording operations in corresponding portions of the data area, and, each portion includes a temporary defect information area for the corresponding recording operation.
33. The disc of claim 30, wherein the temporary defect information in the temporary defect information area includes: first information regarding a defect in data recorded according to a present recording operation, and second information regarding a defect in data recording according to a previous recording operation.
34. A disc for use with a recording and/or reproducing apparatus, the disc comprising: a defect management area formed in at least one of a lead-in area and a lead-out area of the disc and which includes defect management information used by the recording and/or reproducing apparatus; a data area which includes data; a temporary defect information area that is in the data area and which includes temporary defect information regarding the data in the data area; and a temporary defect management information area that is in at least one of the lead-in area, the lead-out area, and an outer area of the disc and which includes temporary defect management information used by the recording and/or reproducing apparatus to access the temporary defect information, wherein: a last recorded temporary defect information that was last recorded in the temporary defect information area and a last recorded temporary defect management information that was last recorded in the temporary defect management information area are again recorded in the defect management area during finalization of the disc, and the temporary defect information and the temporary defect management information are recorded again in another temporary defect information area and the temporary defect management information area, respectively, when a disc defect is detected using the verify-after-write method.
35. A method of managing a defect in a disc, the disc comprising a data area and at least one of a lead-in area and a lead-out area, the method comprising: recording as temporary defect information in the data area defect information regarding data recorded in the data area for every recording operation; recording temporary defect management information for managing the temporary defect information in a temporary defect management information area formed in at least one of the lead-in area and the lead-out area; and performing a verify-after-write method on at least one of the temporary defect information and the temporary defect management information and, if a disc defect is detected using the verify-after-write method, again recording the temporary defect information and the temporary defect management information.
36. The method of claim 35, wherein the disc comprises both a lead in and a lead out area, and the method further comprises recording the temporary defect information and the temporary defect management information in a defect management area in the lead-in area and in the lead-out area.
37. The method of claim 35, wherein the performing the verify-after-write method comprises again recording at least one of the temporary defect information and the temporary defect management information in the temporary defect information area and the temporary defect management information area.
38. A method of managing a defect in a disc, the disc comprising a data area and at least one of a lead-in area and a lead-out area, the method comprising: recording as n temporary defect information in the data area defect information regarding data recorded in the data area according to a first recording operation, defect information regarding data recorded in the data area according to a second recording operation, defect information regarding data recorded in the data area according to an n-1st recording operation, and defect information regarding data recorded in the data area according to an nth recording operation; recording defect management information for managing the nth temporary defect information as nth temporary defect management information in a temporary defect management information area of the disc; and performing a verify-after-write method on at least one of the nth temporary defect information and the nth temporary defect management information and, if a disc defect is detected according to the verify-after-write method, again recording the nth temporary defect information and the nth temporary defect management information, wherein n is an integer.
39. The method of claim 38, further comprising: during finalization of the disc, recording a last recorded temporary defect information and a last recorded temporary defect management information in a defect management area.
40. The method of claim 38, wherein the performing the verify-after-write method comprises again recording at least one of the nth temporary defect information and the nth temporary defect management information in the temporary defect information area or the temporary defect management information area.
41. The method of claim 38, wherein the recording as the nth temporary defect information comprises: recording first data in a predetermined unit; verifying the recorded first data to detect an area having a defect; storing in a memory information for designating as a defective area an area including the area having the defect and another area in which additional data recorded after the area having the defect; recording second data in the predetermined unit after the defective area; repeating the verifying and the storing at least once with respect to the second data; and when the nth recording operation is to end, reading the information from the memory and recording the read information in an nth temporary defect information area of the data area. th
42. The method of claim 41 , wherein the recording as the n temporary defect information further comprises recording in the nth temporary defect information area information for designating the nth temporary defect information area as a defective area.
43. A recording/and or reproducing apparatus for use with a disc, the disc comprising a data area and at least one of a lead-in area and a lead-out area, the apparatus comprising: a recording/reading unit which records data on and/or reads data from the data area of the disc; and a controller which: controls the recording/reading unit to record as temporary defect information in the data area defect information regarding that data recorded in the data area according to a recording operation, and controls the recording/reading unit to record as temporary defect management information in a temporary defect management information area defect management information for managing the temporary defect information, the temporary defect management information area being in at least one of the lead-in area and the lead-out area, performs a verify-after-write method on at least one of the temporary defect information and the temporary defect management information; and controls the recording/reading unit to again record the at least one of the temporary defect information and the temporary defect management information on which the verify-after-write method was performed when a disc defect is detected using the verify-after-write method.
44. The recording/and or reproducing apparatus of claim 43, wherein the controller further controls the recording/reading unit to record the temporary defect information and temporary defect management information again in the temporary defect information area or the temporary defect management information area when the disc defect is detected using the verify-after-write method.
45. A recording/and or reproducing apparatus for use with a disc, the disc comprising a data area and at least one of a lead-in area and a lead-out area, the apparatus comprising: a recording unit that records data in the data area according to th first through n recording operations; and a controller that: controls the recording unit to record as nth temporary defect information in the data area defect information regarding the data recorded according to the first through nth recording operations; controls the recording unit to record as nth temporary defect management information in a temporary defect management information area defect management information for managing the nth temporary defect information; performs a verify-after-write method on at least one of the nth temporary defect information and the nth temporary defect management information; and controls the recording unit to again record the at least one of the nth temporary defect information and the nfh temporary defect management information on which the verify-after-write method was performed when a disc defect is detected using the verify-after-write method, wherein n is an integer.
46. The recording/and or reproducing apparatus of claim 45, wherein the controller further controls the recording unit to record the nth temporary defect information and the nth temporary defect management information in the temporary defect information area and the temporary defect management information area, respectively, when the disc defect is detected.
47. The recording/and or reproducing apparatus of claim 45, further comprising a memory, and wherein the controller further: controls the recording unit to record the data in a predetermined unit and reads and verifies the recorded data to detect an area having a defect; stores in the memory information for designating as a defective area an area including the area having the defect and another area in which additional data is recorded after the area having the defect; and reads the information from the memory and controls the recording unit to record the read information in an nth temporary defect information area of the data area when the nt recording operation is to end.
48. A method of managing defects in data recorded on a disc, the disc comprising a data area, the method comprising: reviewing recorded data to detect a defect in the data recorded in the data area; and recording defect information related to the defect in the recorded data as first temporary defect information in the data area of the disc.
49. The method of claim 48, wherein the disc comprises a write once disc having a property which prevents, after the data is recorded on an area of the disc, new data from being written to the area of the disc.
50. The method of 49, further comprising: recording next defect information regarding another defect in next recorded data as second temporary defect information in the data area.
51. The method of 50, further comprising again recording the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
52. The method of 48, further comprising: recording management information regarding the recorded defect information in one of a lead-in area and a lead-out area of the disc, wherein the data area is disposed between the lead-in area and the lead-out area.
53. The method of 52, further comprising: recording next defect information regarding another defect in next recorded data as second temporary defect information in the data area; recording next management information regarding the next recorded defect information in one of the lead-in area and the lead-out area of the disc; and again recording the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
54. The method of 49, wherein the reviewing the recorded data comprises verifying the recorded data to provide a verification result, and the recording the defect information is performed after the verification result.
55. The method of 54, wherein the verifying the recorded data comprises storing the verification result in a memory other than the disc, and the recording the defect information comprises recalling the verification result from the memory to be recorded in the first temporary defect information.
56. The method of 49, wherein the disc includes a spare area in addition to the data area, and the method further comprises: if the reviewing the recorded. data indicates that there is the defect in the recorded data, re-recording the recorded data in a position within the spare area; and the recording the defect information further comprises recording information indicating the position of the re-recorded data within the spare area.
57. The method of claim 56, wherein: the recorded data is recorded in a unit in the data area, the defect does not occur in all portions of the data area corresponding to the unit of the recorded data, and the re-recorded data is re-recorded as the unit in the spare area.
58. The method of claim 57, wherein the spare area comprises 5% of an entire data capacity of the disc.
59. The method of claim 57, wherein the spare area is present at an end of the data area of the disc.
60. The method of 49, wherein the recording the defect information comprises including in the first temporary defect information a position of the defect and a position of the temporary defect information.
61. The method of 60, further comprising: recording next defect information regarding another defect in next recorded data as second temporary defect information in the data area, the next defect information including a position of the another defect detected in the next recorded data and a position of the second temporary defect information; and again recording the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
62. The method of 48, wherein the disc is a CD-R.
63. The method of 48, wherein the disc is a DVD-R.
64. The method of 48, wherein the disc is a write once disc having a storage capacity at or above 10 gigabytes.
65. The method of 48, wherein the disc is a write once disc having a storage capacity at or above 20 gigabytes.
66. A recording and/or reproducing apparatus for use with a disc, the disc comprising a data area, the apparatus comprising: a recording/reading unit to record data in a data area of the disc and to read the recorded data from the disc; and a controller to control the recording/reading unit to detect a defect in the recorded data in the data area of the disc, and to record defect information regarding the defect in the recorded data as first temporary defect information in the data area of the disc, wherein the disc comprises a write-once disc which prevents, once data is recorded in an area of the disc, other data from being written to the area of the disc.
67. The apparatus of claim 66, wherein the controller further controls the recording/reading unit to record next defect information regarding another defect in a next recorded data as second temporary defect information in the data area.
68. The apparatus of claim 67, wherein the controller further controls the recording/reading unit to again record the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
69. The apparatus of claim 66, wherein the controller further controls the recording/reading unit to record management information regarding the recorded defect information in one of a lead-in area and a lead-out area of the disc, wherein the data area is disposed between the lead-in area and the lead-out area.
70. The apparatus of claim 69, wherein the controller further controls the recording/reading unit to: record next defect information regarding next recorded data as second temporary defect information in the data area; record next management information regarding the next recorded defect information in one of the lead-in area and the lead-out area of the disc; and again record the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
71. The apparatus of claim 66, wherein the controller reviews the recorded data by verifying the recorded data to provide a verification result, and further controls the recording/reading unit to record the defect information after the verification result is provided.
72. The apparatus of claim 71 , further comprising a memory controlled by the controller, wherein the verifying the recorded data comprises storing the verification result in the memory, and the controller recalls the stored verification result from the memory to be recorded in the first temporary defect information.
73. The apparatus of claim 66, wherein the disc includes a spare area in addition to the data area, and the controller further controls the recording/reading unit to, if there is the defect in the recorded data, re-record the recorded data in a position within the spare area, and to record information in the first temporary defect information indicating the position of the re-recorded data recorded within the spare area.
74. The apparatus of claim 73, wherein: the recorded data is recorded in a unit in the data area, the defect does not occur in all portions of the data area corresponding to the unit of the recorded data, and the controller further controls the recording/reading unit to re-record the data as the unit in the spare area.
75. The apparatus of claim 66, wherein the controller further controls the recording/reading unit to allocate 5% of an entire data capacity of the disc to be the spare area.
76. The apparatus of claim 66, wherein the controller further controls the recording/reading unit to include in the first temporary defect information a position of the defect and a position of the first temporary defect information.
77. The apparatus of claim 76, wherein the controller further controls the recording/reading unit to: record next defect information regarding next recorded data as second temporary defect information in the data area, the next defect information including a position of another defect detected in the next recorded data and a position of the second temporary defect information; and again record the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
78. The apparatus of claim 66, wherein the first temporary defect information is recorded on the disc comprising one of a CD-R and a DVD-R.
79. The apparatus of claim 66, wherein the first temporary defect information is recorded on the disc having a storage capacity in excess of 20 gigabytes.
80. The apparatus of claim 66, wherein the controller controls the recording/reading unit to copy the recorded first temporary defect information from the data area to a disk management area of the disk.
81 . A computer readable medium encoded with instructions for performing a method of managing defects on a disc performed by a computer, the method including: reviewing recorded data in a data area of the disc to detect a defect in the recorded data; and recording defect information related to the defect as first temporary defect information in the data area of the disc.
82. The computer readable medium of claim 81 , wherein the disc is a write once disc having a property which prevents, after the data is recorded on an area of the disc, new data from being written to the area of the disc.
83. The computer readable medium of claim 81 , wherein the method further comprises: recording next defect information regarding another defect in next recorded data as second temporary defect information in the data area.
84. The computer readable medium of claim 83, wherein the method further comprises again recording the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
85. The computer readable medium of claim 81 , wherein the method further comprises: recording management information regarding the recorded defect information in one of a lead-in area and a lead-out area of the disc, wherein the data area is disposed between the lead-in area and the lead-out area.
86. The computer readable medium of claim 85, wherein the method further comprises: recording next defect information regarding another defect in next recorded data as second temporary defect information in the data area; recording next management information regarding the next recorded defect information in one "of the lead-in area and the lead-out area of the disc; and again recording the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
87. The computer readable medium of claim 81 , wherein the reviewing the recorded data comprises verifying the recorded data to provide a verification result, and the recording the defect information is performed after the verification result.
88. The computer readable medium of claim 87, wherein the verifying the recorded data comprises storing the verification result in a memory other than the disc, and the recording the defect information comprises recalling the verification result from the memory to be recorded in the first temporary defect information.
89. The computer readable medium of claim 87, wherein the method further comprises, wherein the disc includes a spare area in addition to the data area, and the method further comprises: if the reviewing the recorded data indicates that there is the defect in the recorded data, re-recording the recorded data in a position within the spare area; and the recording the defect information further comprises recording information indicating the position of the re-recorded data within the spare area.
90. The computer readable medium of claim 89, wherein: the recorded data is recorded in a unit in the data area, the defect does not occur in all portions of the data area corresponding to the unit of the recorded data, and the re-recorded data is re-recorded as the unit in the spare area.
91. The computer readable medium of claim 90, wherein the method further comprises allocating as the spare area 5% of an entire data capacity of the disc.
92. The computer readable medium of claim 81 , wherein the recording the defect information comprises including in the first temporary defect information a position of the defect and a position of the temporary defect information.
93. The computer readable medium of claim 92, wherein the method further comprises: recording next defect information regarding another defect in next recorded data as second temporary defect information in the data area, the next defect information including a position of the another defect detected in the next recorded data and a position of the second temporary defect information; and again recording the first temporary defect information with the next defect information so as to be included with the second temporary defect information.
94. The computer readable medium of claim 81 , wherein the method further includes copying the recorded first temporary defect information from the data area to a defect management area of the disc.
95. The computer readable medium of claim 94, wherein the copying the recorded first temporary defect information from the data area to the defect management area of the disc occurs during a finalization process after which new data cannot be recorded on the disc.
96. The computer readable medium of claim 94, wherein the disc is a write once disc.
97. A storage medium for use with a recording and/or reproducing apparatus, the medium comprising: a recording layer which comprises a lead-in area, a data area, and a lead-out area; a temporary defect information area in the data area and which includes temporary defect information; and a temporary defect management information area in at least one of the lead-in area and the lead-out area, and which includes temporary defect management information used by the recording and/or reproducing apparatus to manage the temporary defect information, wherein: the temporary defect management information includes a defect information pointer which specifies a position of the temporary defect information, and the temporary defect information includes a defect management information pointer which specifies a position of the temporary defect management information.
98. A computer readable medium encoded with instructions for performing a method of managing a defect in a storage medium performed by a computer, the method including: accumulatively recording defect information corresponding to the defect, in temporary defect information areas of the storage medium; and recording the defect information that is last recorded in the corresponding temporary defect information area, in a defect management area of the storage medium during a finalization of the storage medium.
99. The computer readable medium of claim 98, wherein the method further includes recording defect management information to manage the defect information, in temporary defect management information areas of the storage medium.
100. The computer readable medium of claim 99, wherein: the recording of the defect information includes recording the defect information having a position pointer corresponding to the defect management information, and the recording of the defect management information includes recording the defect management information having a position pointer corresponding to the defect information.
101. The computer readable medium of claim 99, wherein: the temporary defect information areas are provided in a data area of the storage medium, and the temporary defect management information areas are provided in at least one of lead-in and lead-out areas of the storage medium.
102. The computer readable medium of claim 98, wherein the storage medium is a write once storage medium or a storage medium having a write once portion.
PCT/KR2003/001610 2002-08-12 2003-08-11 Disc with temporary disc definition structure (tdds) and temporary defect list (tdfl), and method of and apparatus for managing defect in the same WO2004015708A1 (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
JP2004527436A JP4540476B2 (en) 2002-08-12 2003-08-11 Disc having temporary defect management information area and defect management area, defect management method and apparatus therefor
CN038189933A CN1675708B (en) 2002-08-12 2003-08-11 Recording method, method of for managing defect in the disc, and recording/reproducing device
AU2003248500A AU2003248500A1 (en) 2002-08-12 2003-08-11 Disc with temporary disc definition structure (tdds) and temporary defect list (tdfl), and method of and apparatus for managing defect in the same
BRPI0313395A BRPI0313395B1 (en) 2002-08-12 2003-08-11 disc for use with a recording and / or playback apparatus and defect management apparatus for data recorded on an information storage medium
MXPA05001548A MXPA05001548A (en) 2002-08-12 2003-08-11 Disc with temporary disc definition structure (tdds) and temporary defect list (tdfl), and method of and apparatus for managing defect in the same.
EP03784681.3A EP1540654B1 (en) 2002-08-12 2003-08-11 Disc with temporary disc definition structure (tdds) and temporary defect list (tdfl), and apparatus for managing defect in the same
CA2494148A CA2494148C (en) 2002-08-12 2003-08-11 Disc with temporary disc definition structure (tdds) and temporary defect list (tdfl), and method of and apparatus for managing defect in the same

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KR1020020047514A KR100667747B1 (en) 2002-08-12 2002-08-12 Disc with temporary DDS and temporary DFL, and method and apparatus therefor
KR10-2002-0047514 2002-08-12
KR1020020047513A KR100900969B1 (en) 2002-08-12 2002-08-12 Method for managing defect using temporary DFL and temporary DDS, and disc thereof
KR10-2002-0047513 2002-08-12

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Cited By (31)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1547086A1 (en) * 2002-09-10 2005-06-29 Samsung Electronics Co., Ltd. Method and apparatus for adaptively allocating a spare area in a recording medium, and a recording medium having a spare area allocated using the same
EP1618560A1 (en) * 2003-05-01 2006-01-25 Samsung Electronics Co., Ltd. Method and apparatus for managing defects in recording media, and a defect managed recording medium obtained using the same method
JP2006512699A (en) * 2002-09-30 2006-04-13 エルジー エレクトロニクス インコーポレーテッド Method and apparatus for recording management information on an optical disc that can be recorded only once and an optical disc that can be recorded only once
JP2006513524A (en) * 2003-01-27 2006-04-20 エルジー エレクトロニクス インコーポレーテッド Optical disc, method and apparatus for managing defective area on optical disc
JP2006514397A (en) * 2003-02-21 2006-04-27 エルジー エレクトロニクス インコーポレーテッド Optical recording medium capable of recording only once and management method of defect management information in the optical recording medium
JP2007501488A (en) * 2003-08-05 2007-01-25 エルジー エレクトロニクス インコーポレーテッド Write-once optical disc, and method and apparatus for storing management information on optical disc and reproducing management information from optical disc
EP1836700A2 (en) * 2005-01-12 2007-09-26 LG Electronics Inc. Recording medium, and method and apparatus for recording data in the recording medium
JP2007529849A (en) * 2004-03-19 2007-10-25 エルジー エレクトロニクス インコーポレーテッド Method and apparatus for recording data on write-once recording medium
JP2008512816A (en) * 2004-09-13 2008-04-24 エルジー エレクトロニクス インコーポレーテッド Recording medium and method and apparatus for recording data on recording medium
AU2003265115B2 (en) * 2003-01-27 2009-07-16 Lg Electronics Inc. Optical disc of write once type, method, and apparatus for managing defect information on the optical disc
AU2004317315B2 (en) * 2004-03-19 2009-11-19 Lg Electronics Inc. Recording medium with physical access control (PAC) information thereon and apparatus and methods for forming, recording, and reproducing the recording medium
JP2009283131A (en) * 2002-09-30 2009-12-03 Lg Electronics Inc Write-once type optical disc, and method and apparatus for managing defective area on write-once type optical disc using tdma information
US7663997B2 (en) 2003-05-09 2010-02-16 Lg Electronics, Inc. Write once optical disc, and method and apparatus for recovering disc management information from the write once optical disc
US7668054B2 (en) 2002-12-11 2010-02-23 Lg Electronics Inc. Method of managing overwrite and method of recording management information on an optical disc write once
US7672208B2 (en) 2003-08-05 2010-03-02 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/playback management information on/from optical disc
US7673097B2 (en) 2004-03-18 2010-03-02 Lg Electronics Inc. Recording medium with overlapping segment information thereon and apparatus and methods for forming, recording, and reproducing the recording medium
AU2005222282B2 (en) * 2004-03-18 2010-03-04 Lg Electronics Inc. Recording medium with segment information thereon and apparatus and methods for forming, recording, and reproducing the recording medium
US7684293B2 (en) 2003-05-09 2010-03-23 Lg Electronics Inc. Write once optical disc, and method and apparatus for recovering disc management information from the write once optical disc
US7764581B2 (en) 2003-02-17 2010-07-27 Lg Electronics Inc. Write-once optical disc, and method and apparatus for allocating spare area on write-once optical disc
US7783829B2 (en) 2003-09-08 2010-08-24 Lg Electronics Inc. Write-once optical disc and method for recording management information thereon
US7826320B2 (en) 2003-03-04 2010-11-02 Lg Electronics Inc. Method and apparatus for recording or reproducing on or from optical medium using SBM information
US7849372B2 (en) 2003-03-13 2010-12-07 Lg Electronics Inc. Write-once recording medium and defective area management method and apparatus for write-once recording medium
CN1926624B (en) * 2004-03-19 2011-02-16 Lg电子株式会社 Apparatus and methods for recording data on recording medium and reproducing data from the recording medium
US7898918B2 (en) 2003-08-05 2011-03-01 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/reproducing management information on/from optical disc
US7911900B2 (en) 2003-09-08 2011-03-22 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording management information on the write-once optical disc
US7944783B2 (en) 2003-02-21 2011-05-17 Lg Electronics Inc. Write-once optical disc and method for managing spare area thereof
US7992057B2 (en) 2002-09-26 2011-08-02 Lg Electronics Inc. Write-once type optical disc, and method and apparatus for managing defective areas on write-once type optical disc
US8054718B2 (en) 2003-07-15 2011-11-08 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording management information thereon
JP4855402B2 (en) * 2004-06-08 2012-01-18 エルジー エレクトロニクス インコーポレイティド Method and apparatus for recording management information on a recording medium, and recording medium
US8134896B2 (en) 2003-10-20 2012-03-13 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/reproducing data on/from the optical disc
US8296529B2 (en) 2003-09-08 2012-10-23 Lg Electronics Inc. Write-once optical disc and method for recording management information thereon

Families Citing this family (49)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100579454B1 (en) 1999-04-13 2006-05-12 엘지전자 주식회사 A storage medium and apparatus and method for performing test recording on a storage medium
TWI294622B (en) * 2002-08-12 2008-03-11 Samsung Electronics Co Ltd Disc with tdds and tdfl, and method and apparatus for managing defect in the same
CA2479505C (en) 2002-09-26 2012-12-18 Lg Electronics Inc. Optical disc, method and apparatus for managing a defective area on an optical disc of write once type
CN100474403C (en) * 2002-09-26 2009-04-01 Lg电子株式会社 Method for managing defective area on write-once optical recording medium
KR100739673B1 (en) * 2002-10-10 2007-07-13 삼성전자주식회사 Method for managing defect using temporary DFL and temporary DDS
KR100667749B1 (en) * 2002-10-18 2007-01-11 삼성전자주식회사 Method and apparatus for managing defect using temporary DFL and temporary DDS, and disc thereof
US20060028923A1 (en) * 2002-12-05 2006-02-09 Koninklijke Philips Electronics, N.V. Method and apparatus for dynamic readout decision level adjustment for use in domain expansion reading
KR101008641B1 (en) 2002-12-11 2011-01-17 엘지전자 주식회사 Method and apparatus for managing overwrite on an optical disc write once
EP1576603B1 (en) * 2002-12-25 2014-03-19 Panasonic Corporation Write-once read-many information recording medium and method and apparatus for information recording and reproduction
US7372788B2 (en) * 2003-01-14 2008-05-13 Lg Electronics Inc. Method for managing defective area on write-once optical recording medium, and optical recording medium using the same
US7675828B2 (en) 2003-02-25 2010-03-09 Lg Electronics Inc. Recording medium having data structure for managing at least a data area of the recording medium and recording and reproducing methods and apparatuses
CN101241714B (en) * 2003-02-25 2013-03-13 Lg电子株式会社 Write-once optical disc, and method and apparatus for recording management information on write-once optical disc
TWI291168B (en) * 2003-02-25 2007-12-11 Lg Electronics Inc Defect management method for optical recording medium and optical recording medium using the same
US7188271B2 (en) * 2003-02-25 2007-03-06 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording management information on write-once optical disc
CN1725352B (en) * 2003-02-28 2011-02-16 日本先锋公司 Write once recording medium, recording device and reproduction device
US7385889B2 (en) * 2003-03-03 2008-06-10 Samsung Electronics Co., Ltd. Method and apparatus for managing disc defect using temporary DFL and temporary DDS including drive and disc information disc with temporary DFL and temporary DDS
US8184513B2 (en) * 2003-04-15 2012-05-22 Samsung Electronics Co., Ltd. Recording/reproducing method, recording/reproducing apparatus, optical recording medium, and computer readable recording medium having recorded thereon program for the recording/reproducing method
JP2007528564A (en) * 2003-05-09 2007-10-11 エルジー エレクトロニクス インコーポレーテッド Recording medium having data structure for managing data area, recording / reproducing method and apparatus
WO2004100155A1 (en) * 2003-05-09 2004-11-18 Lg Electronics Inc. Recording medium having data structure for managing at least a data area of the recording medium and recording and reproducing methods and apparatuses
US8223607B2 (en) 2003-07-04 2012-07-17 Lg Electronics Inc. Method and apparatus for managing a overwrite recording on optical disc write once
KR101014703B1 (en) * 2003-07-15 2011-02-21 엘지전자 주식회사 Method and apparatus for managing a defective area on optical disc
CA2532299A1 (en) * 2003-07-17 2005-01-27 Koninklijke Philips Electronics N.V. Device and method for recording information
KR20050027787A (en) * 2003-09-16 2005-03-21 삼성전자주식회사 Optical disc providing data recording status information
WO2005086598A2 (en) 2004-03-18 2005-09-22 Lg Electronics Inc. Apparatus and method for recording and/or reproducing data to/from recording medium
US7970988B2 (en) 2004-03-19 2011-06-28 Lg Electronics Inc. Recording medium with status information thereon which changes upon reformatting and apparatus and methods for forming, recording, and reproducing the recording medium
KR101113866B1 (en) 2004-03-19 2012-03-02 엘지전자 주식회사 Data structure for a recording medium and method and apparatus of recording data on the recording medium
AU2005222770B2 (en) * 2004-03-23 2010-03-04 Lg Electronics Inc. Recording medium, and method and apparatus for recording and reproducing data on/from recording medium
JP4116583B2 (en) * 2004-03-24 2008-07-09 株式会社東芝 Substrate processing method
US7916582B2 (en) * 2004-05-11 2011-03-29 Samsung Electronics Co., Ltd. Optical recording medium, recording/reproducing apparatus and method, initialization method, and reinitialization method
KR20060046157A (en) * 2004-06-21 2006-05-17 엘지전자 주식회사 Recording medium, method and apparatus for reformatting the recording medium
KR101014727B1 (en) 2004-06-23 2011-02-16 엘지전자 주식회사 Method and Apparatus for managing a overwrite in Optical write once disc
KR100667755B1 (en) * 2004-06-23 2007-01-11 삼성전자주식회사 Optical disc including a plurality of recording layers, and method and apparatus for data recording the optical disc
JP4285344B2 (en) * 2004-07-08 2009-06-24 ソニー株式会社 Information recording apparatus and method, program storage medium, and program
KR101044938B1 (en) * 2004-07-10 2011-06-28 삼성전자주식회사 Information recording medium including a plurality of recording layers and recording?reproducing apparatus
KR20060046445A (en) * 2004-07-22 2006-05-17 엘지전자 주식회사 Recording medium, method and apparatus for controlling recording/reproducing a data on/from the recording medium
KR20060010431A (en) * 2004-07-28 2006-02-02 삼성전자주식회사 Information recording medium, recording/reproducing apparatus and recording/reproducing method
KR100667758B1 (en) 2004-07-30 2007-01-11 삼성전자주식회사 Information recording medium, recording/reproducing apparatus and recording/reproducing method
KR101041811B1 (en) * 2004-08-02 2011-06-17 엘지전자 주식회사 Method and Apparatus for write / reproducing in Optical storage
KR101012378B1 (en) 2004-08-16 2011-02-09 엘지전자 주식회사 Method and Apparatus for recording / reproducing in Optical storage
WO2006031052A2 (en) 2004-09-14 2006-03-23 Lg Electronics Inc. Recording medium, and method and apparatus of recording and reproducing data on the same
US7613874B2 (en) 2004-10-14 2009-11-03 Lg Electronics, Inc. Recording medium, and a method and apparatus for overwriting data in the same
WO2006075707A1 (en) * 2005-01-14 2006-07-20 Matsushita Electric Industrial Co., Ltd. Optical disc, recording device, read-out device and method thereof
KR101227485B1 (en) 2005-11-25 2013-01-29 엘지전자 주식회사 Recording mdium, Method and Apparatus for recording defect management information on the recording medium
KR20070058292A (en) 2005-12-02 2007-06-08 엘지전자 주식회사 Recording medium, method and apparatus for recording/reproducing information on/from the recording medium
JP2008217856A (en) * 2007-02-28 2008-09-18 Fujitsu Ltd Control device, storage device, and control method
JP4544260B2 (en) * 2007-05-01 2010-09-15 ソニー株式会社 Recording medium, recording apparatus, reproducing apparatus, recording method, reproducing method
JP2009009642A (en) * 2007-06-28 2009-01-15 Hitachi Ltd Information recording and reproducing device, and information recording method
KR101683790B1 (en) * 2009-02-25 2016-12-09 삼성전자주식회사 An information storage medium, recording/reproducing apparatus and recording/reproducing method
CN103155040A (en) * 2011-02-08 2013-06-12 松下电器产业株式会社 Record/access device and record/access method

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4835757A (en) * 1986-08-29 1989-05-30 Kabushiki Kaisha Toshiba System for recording information onto disk medium
EP0353920A2 (en) * 1988-08-01 1990-02-07 Texaco Development Corporation Slurry-phase process to increase yield of mixed alcohols from synthesis gas
JPH1050005A (en) * 1996-07-29 1998-02-20 Nec Gumma Ltd Method for managing defect on optical disk and device therefor
WO2001075879A1 (en) * 2000-04-05 2001-10-11 Matsushita Electric Industrial Co., Ltd. Information recording device, information recording method, and program

Family Cites Families (31)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6473559A (en) * 1987-09-14 1989-03-17 Pioneer Electronic Corp Controller for automatic changer for writable disk
JPH0223417A (en) * 1988-07-13 1990-01-25 Matsushita Electric Ind Co Ltd Information recording system and information recording medium
NL9002490A (en) * 1990-03-13 1991-10-01 Philips Nv INFORMATION RECORDING DEVICE AND INFORMATION READING DEVICE.
US5548572A (en) 1995-03-31 1996-08-20 International Business Machines Corporation Spare and calibration sector management for optical WORM media
JP3585671B2 (en) * 1995-11-14 2004-11-04 シャープ株式会社 Magneto-optical recording medium and reproducing method thereof
JPH09167446A (en) * 1995-12-14 1997-06-24 Sony Corp Recording and reproducing device
US6055139A (en) * 1995-12-14 2000-04-25 Fujitsu Limited Magnetic recording medium and method of forming the same and magnetic disk drive
JPH105000A (en) 1996-06-27 1998-01-13 Hitachi Ltd Method for comparing dna amino acid sequence
JP2774793B2 (en) * 1996-12-02 1998-07-09 株式会社東芝 Information recording and playback method
JP3072722B2 (en) 1997-06-20 2000-08-07 ソニー株式会社 Data management device and data management method using flash memory and storage medium using flash memory
JPH1166751A (en) * 1997-08-18 1999-03-09 Ricoh Co Ltd Information recording and reproducing device
JP3707222B2 (en) * 1997-12-18 2005-10-19 三菱電機株式会社 Optical disc, optical disc processing apparatus, and optical disc processing method
KR100292093B1 (en) * 1998-03-02 2001-06-01 구자홍 Method of generating defected area management data of recorded media and generation device and optical recorded media thereof
JP3763974B2 (en) * 1998-07-10 2006-04-05 富士通株式会社 Storage device and recording medium
KR100433606B1 (en) 1998-10-22 2004-05-31 마쯔시다덴기산교 가부시키가이샤 Information recording medium, and method and apparatus for managing defect thereof
KR100667729B1 (en) 1998-11-10 2007-01-11 삼성전자주식회사 Disc having spare area for defect management and management information thereof, allocationg method of spare area and defect management method
MY118342A (en) 1999-02-01 2004-10-30 Matsushita Electric Ind Co Ltd Information recording medium, information recording method and information recording/reproducing system
US6387038B1 (en) * 1999-02-05 2002-05-14 St. Croix Medical, Inc. Air cell mountable support shaft
HUP0104172A3 (en) * 1999-07-15 2002-08-28 Koninkl Philips Electronics Nv Method of and device for recording information
HU229920B1 (en) * 1999-09-23 2015-01-28 Koninkl Philips Electronics Nv Method of immediate writing or reading files on a disc like recording medium
MXPA02004748A (en) * 1999-11-10 2004-01-19 Thomson Licensing Sa A method of disaster recovery for re writable disk media.
US6845473B2 (en) * 2000-04-08 2005-01-18 Samsung Electronics Co., Ltd. Method of verifying defect management area information of optical disc
CN101281772A (en) * 2002-01-22 2008-10-08 松下电器产业株式会社 Multi-layered information recording medium, information recording apparatus, and recording method
CN100514454C (en) 2002-06-07 2009-07-15 Lg电子株式会社 High density multilayered optical disk, and method for controlling spare areas according to the same and method of managing a spare area
KR20030094855A (en) 2002-06-08 2003-12-18 엘지전자 주식회사 High density multi layer optical disc and method for managing a layer formatting
TWI294622B (en) * 2002-08-12 2008-03-11 Samsung Electronics Co Ltd Disc with tdds and tdfl, and method and apparatus for managing defect in the same
KR100739673B1 (en) * 2002-10-10 2007-07-13 삼성전자주식회사 Method for managing defect using temporary DFL and temporary DDS
KR100667749B1 (en) * 2002-10-18 2007-01-11 삼성전자주식회사 Method and apparatus for managing defect using temporary DFL and temporary DDS, and disc thereof
US7385889B2 (en) * 2003-03-03 2008-06-10 Samsung Electronics Co., Ltd. Method and apparatus for managing disc defect using temporary DFL and temporary DDS including drive and disc information disc with temporary DFL and temporary DDS
JP2007528564A (en) * 2003-05-09 2007-10-11 エルジー エレクトロニクス インコーポレーテッド Recording medium having data structure for managing data area, recording / reproducing method and apparatus
JP4846566B2 (en) * 2003-05-09 2011-12-28 エルジー エレクトロニクス インコーポレイティド Optical disk that can be recorded only once, and method and apparatus for restoring management information from an optical disk that can be recorded only once

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4835757A (en) * 1986-08-29 1989-05-30 Kabushiki Kaisha Toshiba System for recording information onto disk medium
EP0353920A2 (en) * 1988-08-01 1990-02-07 Texaco Development Corporation Slurry-phase process to increase yield of mixed alcohols from synthesis gas
JPH1050005A (en) * 1996-07-29 1998-02-20 Nec Gumma Ltd Method for managing defect on optical disk and device therefor
WO2001075879A1 (en) * 2000-04-05 2001-10-11 Matsushita Electric Industrial Co., Ltd. Information recording device, information recording method, and program

Cited By (57)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1547086A4 (en) * 2002-09-10 2006-10-04 Samsung Electronics Co Ltd Method and apparatus for adaptively allocating a spare area in a recording medium, and a recording medium having a spare area allocated using the same
EP1547086A1 (en) * 2002-09-10 2005-06-29 Samsung Electronics Co., Ltd. Method and apparatus for adaptively allocating a spare area in a recording medium, and a recording medium having a spare area allocated using the same
US7992057B2 (en) 2002-09-26 2011-08-02 Lg Electronics Inc. Write-once type optical disc, and method and apparatus for managing defective areas on write-once type optical disc
US8045430B2 (en) 2002-09-30 2011-10-25 Lg Electronics Inc. Write-once type optical disc, and method and apparatus for managing defective areas on write-once type optical disc using TDMA information
JP2010176835A (en) * 2002-09-30 2010-08-12 Lg Electronics Inc Once-writabl optical disk, and method and apparatus for recording management information in the once-recordable optical disk
US7701823B2 (en) 2002-09-30 2010-04-20 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording management information on write-once optical disc
JP2006512699A (en) * 2002-09-30 2006-04-13 エルジー エレクトロニクス インコーポレーテッド Method and apparatus for recording management information on an optical disc that can be recorded only once and an optical disc that can be recorded only once
JP2009283131A (en) * 2002-09-30 2009-12-03 Lg Electronics Inc Write-once type optical disc, and method and apparatus for managing defective area on write-once type optical disc using tdma information
US7911904B2 (en) 2002-09-30 2011-03-22 Lg Electronics, Inc. Write-once optical disc, and method and apparatus for recording management information on write-once optical disc
JP4603619B2 (en) * 2002-09-30 2010-12-22 エルジー エレクトロニクス インコーポレイティド Defect area management method and apparatus using TDMA information in an optical disk that can be recorded only once and an optical disk that can be recorded only once
US7936649B2 (en) 2002-12-11 2011-05-03 Lg Electronics Inc. Method of managing overwrite and method of recording management information on an optical disc write once
US7668054B2 (en) 2002-12-11 2010-02-23 Lg Electronics Inc. Method of managing overwrite and method of recording management information on an optical disc write once
US7813243B2 (en) 2003-01-11 2010-10-12 Lg Electronics Inc. Optical disc of write once type, method, and apparatus for managing defect information on the optical disc
US8072853B2 (en) 2003-01-27 2011-12-06 Lg Electronics Inc. Optical disc of write once type, method, and apparatus for managing defect information on the optical disc
JP2006513524A (en) * 2003-01-27 2006-04-20 エルジー エレクトロニクス インコーポレーテッド Optical disc, method and apparatus for managing defective area on optical disc
AU2003265115B2 (en) * 2003-01-27 2009-07-16 Lg Electronics Inc. Optical disc of write once type, method, and apparatus for managing defect information on the optical disc
AU2003265118B2 (en) * 2003-01-27 2009-08-27 Lg Electronics Inc. Optical disc, method and apparatus for managing a defective area on an optical disc
US7764581B2 (en) 2003-02-17 2010-07-27 Lg Electronics Inc. Write-once optical disc, and method and apparatus for allocating spare area on write-once optical disc
US7944783B2 (en) 2003-02-21 2011-05-17 Lg Electronics Inc. Write-once optical disc and method for managing spare area thereof
JP4838586B2 (en) * 2003-02-21 2011-12-14 エルジー エレクトロニクス インコーポレイティド Optical recording medium capable of recording only once and management method of defect management information in the optical recording medium
US7929391B2 (en) 2003-02-21 2011-04-19 Lg Electronics Inc. Write-once optical recording medium and defect management information management method thereof
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JP2007042279A (en) * 2003-02-21 2007-02-15 Lg Electron Inc Write-once optical recording medium and defect management information management method thereof
US7826320B2 (en) 2003-03-04 2010-11-02 Lg Electronics Inc. Method and apparatus for recording or reproducing on or from optical medium using SBM information
US7849372B2 (en) 2003-03-13 2010-12-07 Lg Electronics Inc. Write-once recording medium and defective area management method and apparatus for write-once recording medium
EP1618560A4 (en) * 2003-05-01 2010-06-30 Samsung Electronics Co Ltd Method and apparatus for managing defects in recording media, and a defect managed recording medium obtained using the same method
US7876656B2 (en) 2003-05-01 2011-01-25 Samsung Electronics Co., Ltd. Method and apparatus for managing defects in recording media, a computer readable medium including computer readable code for the same, and a defect managed recording medium obtained using the same method, apparatus, and computer readable medium
EP1618560A1 (en) * 2003-05-01 2006-01-25 Samsung Electronics Co., Ltd. Method and apparatus for managing defects in recording media, and a defect managed recording medium obtained using the same method
US8107336B2 (en) 2003-05-09 2012-01-31 Lg Electronics Inc. Write once optical disc, and method and apparatus for recovering disc management information from the write once optical disc
US7663997B2 (en) 2003-05-09 2010-02-16 Lg Electronics, Inc. Write once optical disc, and method and apparatus for recovering disc management information from the write once optical disc
US7684293B2 (en) 2003-05-09 2010-03-23 Lg Electronics Inc. Write once optical disc, and method and apparatus for recovering disc management information from the write once optical disc
US8054718B2 (en) 2003-07-15 2011-11-08 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording management information thereon
JP2009104772A (en) * 2003-08-05 2009-05-14 Lg Electron Inc Apparatus and method for recording management information on writable recording medium, and apparatus and method for reproducing management information from writable recording medium
US7952972B2 (en) 2003-08-05 2011-05-31 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/playback management information on/from optical disc
JP4532588B2 (en) * 2003-08-05 2010-08-25 エルジー エレクトロニクス インコーポレイティド Apparatus and method for recording management information on writable recording medium, and apparatus and method for reproducing management information from writable recording medium
JP4532571B2 (en) * 2003-08-05 2010-08-25 エルジー エレクトロニクス インコーポレイティド System for recording management information on a recording medium and reproducing data
JP2008112577A (en) * 2003-08-05 2008-05-15 Lg Electron Inc System of recording management information on recording medium and reproducing data
US7898918B2 (en) 2003-08-05 2011-03-01 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/reproducing management information on/from optical disc
US7911905B2 (en) 2003-08-05 2011-03-22 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/reproducing management information on/from optical disc
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US7672208B2 (en) 2003-08-05 2010-03-02 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/playback management information on/from optical disc
US7783829B2 (en) 2003-09-08 2010-08-24 Lg Electronics Inc. Write-once optical disc and method for recording management information thereon
US7911900B2 (en) 2003-09-08 2011-03-22 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording management information on the write-once optical disc
US8296529B2 (en) 2003-09-08 2012-10-23 Lg Electronics Inc. Write-once optical disc and method for recording management information thereon
US8134896B2 (en) 2003-10-20 2012-03-13 Lg Electronics Inc. Write-once optical disc, and method and apparatus for recording/reproducing data on/from the optical disc
US7710853B2 (en) 2004-03-18 2010-05-04 Lg Electronics, Inc. Recording medium with segment information thereon and apparatus and methods for forming, recording, and reproducing the recording medium
US7809881B2 (en) 2004-03-18 2010-10-05 Lg Electronics Inc. Recording medium with overlapping segment information thereon and apparatus and methods for forming, recording on, and reproducing the recording medium
AU2005222282B2 (en) * 2004-03-18 2010-03-04 Lg Electronics Inc. Recording medium with segment information thereon and apparatus and methods for forming, recording, and reproducing the recording medium
US7673097B2 (en) 2004-03-18 2010-03-02 Lg Electronics Inc. Recording medium with overlapping segment information thereon and apparatus and methods for forming, recording, and reproducing the recording medium
JP2007529849A (en) * 2004-03-19 2007-10-25 エルジー エレクトロニクス インコーポレーテッド Method and apparatus for recording data on write-once recording medium
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AU2004317315B2 (en) * 2004-03-19 2009-11-19 Lg Electronics Inc. Recording medium with physical access control (PAC) information thereon and apparatus and methods for forming, recording, and reproducing the recording medium
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JP2008512816A (en) * 2004-09-13 2008-04-24 エルジー エレクトロニクス インコーポレーテッド Recording medium and method and apparatus for recording data on recording medium
EP1836700A2 (en) * 2005-01-12 2007-09-26 LG Electronics Inc. Recording medium, and method and apparatus for recording data in the recording medium
JP2008527602A (en) * 2005-01-12 2008-07-24 エルジー エレクトロニクス インコーポレイティド Recording medium, recording medium recording method and recording apparatus

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