WO2007085974A1 - Optical drive and method for determining a reading and/or writing position - Google Patents
Optical drive and method for determining a reading and/or writing position Download PDFInfo
- Publication number
- WO2007085974A1 WO2007085974A1 PCT/IB2007/050067 IB2007050067W WO2007085974A1 WO 2007085974 A1 WO2007085974 A1 WO 2007085974A1 IB 2007050067 W IB2007050067 W IB 2007050067W WO 2007085974 A1 WO2007085974 A1 WO 2007085974A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- frequency
- lock
- optical disc
- pll
- try
- Prior art date
Links
Classifications
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording 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
- G11B7/08—Disposition or mounting of heads or light sources relatively to record carriers
- G11B7/09—Disposition or mounting of heads or light sources relatively to record carriers with provision for moving the light beam or focus plane for the purpose of maintaining alignment of the light beam relative to the record carrier during transducing operation, e.g. to compensate for surface irregularities of the latter or for track following
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
- G11B20/10009—Improvement or modification of read or write signals
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
- G11B20/10009—Improvement or modification of read or write signals
- G11B20/10222—Improvement or modification of read or write signals clock-related aspects, e.g. phase or frequency adjustment or bit synchronisation
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
- G11B20/10009—Improvement or modification of read or write signals
- G11B20/10305—Improvement or modification of read or write signals signal quality assessment
- G11B20/10398—Improvement or modification of read or write signals signal quality assessment jitter, timing deviations or phase and frequency errors
- G11B20/10425—Improvement or modification of read or write signals signal quality assessment jitter, timing deviations or phase and frequency errors by counting out-of-lock events of a PLL
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording 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
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B2220/00—Record carriers by type
- G11B2220/20—Disc-shaped record carriers
- G11B2220/25—Disc-shaped record carriers characterised in that the disc is based on a specific recording technology
- G11B2220/2537—Optical discs
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B2220/00—Record carriers by type
- G11B2220/20—Disc-shaped record carriers
- G11B2220/25—Disc-shaped record carriers characterised in that the disc is based on a specific recording technology
- G11B2220/2537—Optical discs
- G11B2220/2541—Blu-ray discs; Blue laser DVR discs
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording 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
- G11B7/24—Record carriers characterised by shape, structure or physical properties, or by the selection of the material
- G11B7/2407—Tracks or pits; Shape, structure or physical properties thereof
- G11B7/24073—Tracks
- G11B7/24082—Meandering
Definitions
- the present invention relates to an optical drive for reading and/or writing optical discs, for example Blue Ray Disc or BDs. Furthermore, the present invention relates to a method for determining a reading and/or writing position of an optical drive.
- Optical drives usually are equipped with a laser which generates a laser beam that is focused on the optical disc by at least one lens.
- the lens can be moved in radial and vertical (focus) directions by or together with an actuator. These movements caused by the actuator are only small.
- the laser as well as the actuator are part of a so called optical pick up unit which is mounted on a sledge that is moveable in radial directions.
- the focused laser beam is reflected by the optical disc and reaches a photo detector.
- the photo detector usually consists of several photo diodes that generate electrical signals on the basis of the amount of light which they receive. These electrical signals are processed and filtered in various ways. It is known to feed output signals into (among others) two PLL units and into a servo system.
- PLL Phase Lock Loop and such a PLL unit is used to try to determine the frequency of an incoming signal. To determine the frequency of the incoming signal within a certain frequency range, the PLL unit tries to lock on to the incoming signal by a lock on process. At the end of this lock on process the PLL unit can inform whether it was able to lock on to the incoming signal, and, if yes, the frequency of the incoming signal.
- the lock on process can be executed in two ways. With the so called auto-lock process the PLL unit performs the lock on process autonomously. With the so called preset process the target or presetting frequency is provided to the PLL unit, wherein the presetting frequency is typically in the middle of the expected frequency range.
- the presetting process is usually faster than the auto-lock process.
- the task of one PLL unit can be to detect the frequency of the HF signal (if present), and the task of the other PLL unit can be to detect the frequency of a wobble signal associated to a wobbled pre-groove.
- the servo system is used to let the focused laser beam follow the track. This is realized by moving the lens by or with the actuator in radial and vertical directions and by moving the sledge carrying the actuator.
- the movement of the sledge can be monitored such that the actual position of the sledge is known during operation.
- the position information available for the sledge is not very accurate. This is particularly due to the fact that the motor assigned to the sledge works in discrete steps and that the actuator does also influence the position of the lens.
- BD Blue Ray Disc
- an optical drive comprising control means and at least three PLL units, wherein the control means are adapted to control the three PLL units to try to lock on to three different frequencies characteristic for an optical disc.
- the three different frequencies can be characteristic for different areas of the optical disc.
- the transition from one area to another area and thereby the actual reading and/or writing position can be accurately determined because one PLL unit will lose its lock with reference to a first frequency, while another PLL unit will be able to lock on to a second frequency.
- the third PLL unit for example, can stay locked on to the third frequency which is characteristic for both areas of the optical drive.
- the control means can be realized by any adequate circuitry known to the person skilled in the art.
- a microprocessor can interact with adequate software and data.
- one or more of the three different frequencies can depend on the actual reading and/or writing position, i.e. the actual radius, and/or the actual rotation speed of the optical disc. If, for example, the sledge of the optical drive is moved from radius 29 mm to 58 mm (and the rotation speed of the optical disc is maintained), then the frequency of some signals can become twice as large. On the other hand, if the rotation speed is doubled (and the sledge position is maintained), then the frequency of some signals can also becomes twice as large. Therefore, the control means are preferably adapted to consider these dependencies, for example by applying one or more dynamic preset frequencies to one or more of the PLL units.
- control means are adapted to control a first PLL unit to try to lock on to a first frequency characteristic for a lead-in area of the optical disc.
- a lead-in area can be provided in the central area of the optical disc, while a lead-out area can be provided in the outer circumferential area of the optical disc. Between the lead-in area and the lead-out area the data area is usually provided.
- the first frequency is the modulation frequency of a high frequency modulated (HFM) groove provided in the lead-in area of the optical disc.
- HFM high frequency modulated
- the lead-in area comprises a specific so called PIC area (Permanent Information and Control data sub-are) with a pre-recorded HFM groove instead of a wobbled groove which is used in the data area. If the first PLL unit is able to lock on to the HFM frequency it is clear that the PIC reading position has been reached, and thus, the PIC can be read.
- control means are adapted to control a second PLL unit to try to lock on to a second frequency characteristic for a data area of the optical disc. For example, if the first PLL unit looses its lock to the HFM frequency and the second PLL unit is able to lock on to the frequency characteristic for the data area, it is clear that the data area has been reached and that reading and/or writing data can be started.
- the second frequency is preferably the wobble frequency of a wobbled groove provided in the data area of the optical disc.
- the wobble signal can be used for addressing, amongst others.
- control means are adapted to control a third PLL unit to try to lock on to a third frequency characteristic for a bit stream of data provided on the optical disc.
- This third frequency can, for example, be the frequency of the HF signal that is expected when a Blue Ray Disc is used.
- control means are preferably adapted to determine the actual reading and/or writing position on the basis of the results to try to lock on to the different frequencies. It is not compulsory that the reading and/or writing position is determined over the whole area of the optical disc. In some cases it might be sufficient to accurately determine only transitions between different areas of the disc.
- a method for determining a reading and/or writing position of an optical drive comprising the step of controlling at least three PLL units to try to lock on to three different frequencies characteristic for an optical disc. Also in this case the three different frequencies can, for example, be characteristic for different areas of the optical disc.
- the transition from one area to another area and thereby the actual reading and/or writing position can be accurately determined because one PLL unit will lose its lock with reference to a first frequency, while another PLL unit will be able to lock on to a second frequency.
- the third PLL unit for example, can stay locked on to third frequency which is characteristic for both areas of the optical drive.
- the step of controlling the at least three PLL units to try to lock on to three different frequencies characteristic for an optical disc comprises: - presetting a first PLL unit to a first frequency which corresponds to a prerecorded HFM-groove expected on the optical disc; presetting a second PLL unit to a second frequency which corresponds to a wobble frequency of a wobbled groove expected on the optical disc; presetting a third PLL unit to a third frequency which corresponds to a HF frequency of data expected on the optical disc, and waiting until at least one of the three PLL units is in lock or a time limit has expired.
- the pre-recorded HFM-groove can, for example, be arranged in a lead-in area of the disc to provide the PIC of a Blue Ray Disc.
- the wobbled groove can, for example, be provided in the data area of a Blue Ray Disc.
- the HF frequency can, for example, be associated to the expected data bit stream when a Blue Ray Disc is read.
- the method in accordance with the invention comprises the following step: determining a reading and/or writing position on the basis of the results to try to lock on to the different frequencies.
- Figure 1 shows a block diagram of an embodiment of an optical drive in accordance with the invention, wherein the illustrated optical drive is capable to carry out the method in accordance with the invention
- Figure 2 shows a flowchart illustrating an embodiment of the method in accordance with the invention.
- FIG. 1 shows an optical drive 10 in accordance with the present invention in form of a simplified block diagram, wherein only those parts are shown that are necessary to understand the present invention.
- the illustrated optical drive 10 comprises a turntable motor 46 for rotating an optical disc 26 inserted into the optical drive 10.
- a laser 40 is provided which generates a laser beam that is focused on the optical disc 26, a Blue Ray Disc in the present example, by a lens 48.
- the lens 48 can be moved in radial and vertical (focus) directions by actuator 36. These movements caused by the actuator 36 are only small.
- the laser 40 as well as the actuator 36 are part of an optical pick up unit 34 which is mounted on a sledge 44 that is moveable in radial directions.
- the focused laser beam is reflected by the optical disc 26 and reaches a photo detector 38.
- the photo detector 38 consists of several photo diodes (not shown) that generate electrical signals on the basis of the amount of light which they receive. These electrical signals are processed and filtered in various ways, wherein only the signal processing relevant to understand the present invention is indicated in Figure 1. At least one output signal of the photo detector 38 is fed to a first PLL unit 20, a second PLL unit 22, and a third PLL unit 24, wherein the three PLL units 20, 22, 24 interact with control means 12.
- control means 12 comprise a microprocessor 14 which is capable to interact with a FLASH memory 16 and a SDRAM 18. Furthermore, the output signal of the photo detector 38 is fed to a servo system 42. The servo system 42 is used to let the focused laser beam follow the track on the optical disc 26. This is realized by moving the lens 48 by or with the actuator 36 in radial and vertical directions and by moving the sledge 44 carrying the optical pick up unit 34. As it is known in the art, the movement of the sledge 44 can be monitored such that the actual position of the sledge 44 is approximately known during operation. However, as regards the actual position of the lens 48, the position information available for the sledge 44 is not very accurate.
- a recordable Blue Ray Disc comprises a lead-in area 28, a data area 30, and a lead-out area 32.
- the lead-in area 28, amongst others, comprises a prerecorded HFM groove for providing the PIC.
- This HFM groove has a different format than the wobble pre-groove provided in the data area 30.
- the optical drive 10 in accordance with the invention comprises three PLL units 20, 22, 24.
- the control means 12 control the PLL units 20, 22, 24 such that the first PLL unit 20 tries to lock on to the HFM frequency of the lead-in area 28, the second PLL unit 22 tries to lock on to the wobble frequency of the data area 30, and the third PLL unit tries to lock on to the expected HF frequency. If the first PLL unit 20 is able to lock on to the HFM frequency, the PIC can be read. If the first PLL 20 looses its lock and the second PLL unit 22 is able to lock on to the wobble frequency, the actual read and/or write position, i.e. the transition between the lead-in area 28 and the data area 30, is accurately known and the reading and/or writing of the user data can be started without delay.
- FIG. 2 shows a flowchart illustrating an embodiment of the method in accordance with the invention. The illustrated method starts in step Sl.
- step S2 the first PLL unit 20 is preset by the control means 12 to the HFM frequency.
- step S3 the second PLL unit 22 is preset by the control means 12 to the wobble frequency.
- step S4 the third PLL unit 24 is preset by the control means 12 to the expected HF frequency.
- step S5 the three PLL units 20, 22, 24 try to lock on to the respective preset frequencies.
- step S6 it is checked whether the first PLL unit 20 or the second PLL unit
- step S7 the actual read and/or write position, for example the transition between the lead-in area 28 and the data area 30 of the optical disc 26 is determined in step S7. If neither the first PLL unit 20 nor the second PLL unit 22 was able to lock on in step S6, it is checked in step S8 whether a predetermined time limit has expired.
- step S8 If the predetermined time limit has expired in step S8, the method ends in step S9. If not, the PLL units 20, 22, 24 continue to try to lock on in step S5.
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- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Optical Recording Or Reproduction (AREA)
- Moving Of The Head For Recording And Reproducing By Optical Means (AREA)
- Signal Processing For Digital Recording And Reproducing (AREA)
- Optical Head (AREA)
Abstract
Description
Claims
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP07700559A EP1979906A1 (en) | 2006-01-25 | 2007-01-10 | Optical drive and method for determining a reading and/or writing position |
JP2008551912A JP2009524898A (en) | 2006-01-25 | 2007-01-10 | Method for specifying read and / or write position and optical drive |
US12/161,874 US8023371B2 (en) | 2006-01-25 | 2007-01-10 | Optical drive and method for determining a reading and/or writing position |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP06100843 | 2006-01-25 | ||
EP06100843.9 | 2006-01-25 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2007085974A1 true WO2007085974A1 (en) | 2007-08-02 |
Family
ID=37983801
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/IB2007/050067 WO2007085974A1 (en) | 2006-01-25 | 2007-01-10 | Optical drive and method for determining a reading and/or writing position |
Country Status (7)
Country | Link |
---|---|
US (1) | US8023371B2 (en) |
EP (1) | EP1979906A1 (en) |
JP (1) | JP2009524898A (en) |
KR (1) | KR20080091819A (en) |
CN (1) | CN101375335A (en) |
TW (1) | TW200813991A (en) |
WO (1) | WO2007085974A1 (en) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103426445A (en) * | 2012-05-17 | 2013-12-04 | 飞利浦建兴数位科技股份有限公司 | Control method for spindle motor |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
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EP0920007A2 (en) * | 1997-11-28 | 1999-06-02 | Matsushita Electric Industrial Co., Ltd. | Optical disc drive, timing signal generator, and information recording and reproduction method |
WO2004066298A1 (en) * | 2003-01-24 | 2004-08-05 | Lg Electronics Inc. | Method of managing copy protection information of a recording medium, recording medium with copy protection information for contents recorded thereon, and reproducing method for the recording medium |
WO2005104120A2 (en) * | 2004-04-23 | 2005-11-03 | Koninklijke Philips Electronics N.V. | Device and method for encoding a secondary information of a secondary channel into a channel data stream of a primary channel |
Family Cites Families (13)
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JPH07272275A (en) * | 1994-03-29 | 1995-10-20 | Sony Corp | Optical disk device |
US6111712A (en) | 1998-03-06 | 2000-08-29 | Cirrus Logic, Inc. | Method to improve the jitter of high frequency phase locked loops used in read channels |
US6538966B1 (en) * | 2000-10-06 | 2003-03-25 | Hewlett-Packard Company | Accurate positioning of data marks and spaces relative to groove wobble on a rewritable optical disc |
KR100693685B1 (en) | 2000-10-31 | 2007-03-09 | 엘지전자 주식회사 | Apparatus and method for recording high density of recording medium |
US7023773B2 (en) * | 2000-11-17 | 2006-04-04 | Lg Electronics Inc. | Apparatus and method of generating optimum recording power for optical recording/reproducing apparatus |
JP2002298366A (en) | 2001-03-30 | 2002-10-11 | Sony Corp | Disk drive device |
JP2002298367A (en) | 2001-03-30 | 2002-10-11 | Sony Corp | Disk drive device |
JP2002298510A (en) * | 2001-03-30 | 2002-10-11 | Sony Corp | Disk drive |
KR100716962B1 (en) * | 2001-09-29 | 2007-05-10 | 삼성전자주식회사 | Optical disk |
JP3619509B2 (en) * | 2001-10-03 | 2005-02-09 | 松下電器産業株式会社 | Optical disk device |
DE10157332A1 (en) * | 2001-11-23 | 2003-06-05 | Thomson Brandt Gmbh | Device for recording or reproducing information with means for detecting or shifting the scanning location on a disc with a wobble track |
JP2004253056A (en) * | 2003-02-20 | 2004-09-09 | Sanyo Electric Co Ltd | Decoding device |
JP2006004502A (en) * | 2004-06-16 | 2006-01-05 | Sony Corp | Playback device and playback method |
-
2007
- 2007-01-10 JP JP2008551912A patent/JP2009524898A/en not_active Ceased
- 2007-01-10 US US12/161,874 patent/US8023371B2/en not_active Expired - Fee Related
- 2007-01-10 EP EP07700559A patent/EP1979906A1/en not_active Ceased
- 2007-01-10 WO PCT/IB2007/050067 patent/WO2007085974A1/en active Application Filing
- 2007-01-10 KR KR1020087020436A patent/KR20080091819A/en not_active Application Discontinuation
- 2007-01-10 CN CNA2007800035051A patent/CN101375335A/en active Pending
- 2007-01-22 TW TW096102334A patent/TW200813991A/en unknown
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP0920007A2 (en) * | 1997-11-28 | 1999-06-02 | Matsushita Electric Industrial Co., Ltd. | Optical disc drive, timing signal generator, and information recording and reproduction method |
WO2004066298A1 (en) * | 2003-01-24 | 2004-08-05 | Lg Electronics Inc. | Method of managing copy protection information of a recording medium, recording medium with copy protection information for contents recorded thereon, and reproducing method for the recording medium |
WO2005104120A2 (en) * | 2004-04-23 | 2005-11-03 | Koninklijke Philips Electronics N.V. | Device and method for encoding a secondary information of a secondary channel into a channel data stream of a primary channel |
Also Published As
Publication number | Publication date |
---|---|
KR20080091819A (en) | 2008-10-14 |
US20080316882A1 (en) | 2008-12-25 |
TW200813991A (en) | 2008-03-16 |
CN101375335A (en) | 2009-02-25 |
US8023371B2 (en) | 2011-09-20 |
JP2009524898A (en) | 2009-07-02 |
EP1979906A1 (en) | 2008-10-15 |
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