WO2011035695A1 - 具有嵌入信息的记录介质处理设备及方法 - Google Patents

具有嵌入信息的记录介质处理设备及方法 Download PDF

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Publication number
WO2011035695A1
WO2011035695A1 PCT/CN2010/076918 CN2010076918W WO2011035695A1 WO 2011035695 A1 WO2011035695 A1 WO 2011035695A1 CN 2010076918 W CN2010076918 W CN 2010076918W WO 2011035695 A1 WO2011035695 A1 WO 2011035695A1
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WO
WIPO (PCT)
Prior art keywords
recording medium
channel
passage
sub
opening
Prior art date
Application number
PCT/CN2010/076918
Other languages
English (en)
French (fr)
Inventor
丛强滋
姜天信
郑磊
车磊
刘凯
张继刚
Original Assignee
山东新北洋信息技术股份有限公司
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
Application filed by 山东新北洋信息技术股份有限公司 filed Critical 山东新北洋信息技术股份有限公司
Priority to EP10818389.8A priority Critical patent/EP2481598A4/en
Priority to US13/497,782 priority patent/US20120224231A1/en
Publication of WO2011035695A1 publication Critical patent/WO2011035695A1/zh

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
    • B41J3/60Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for printing on both faces of the printing material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
    • B41J3/44Typewriters or selective printing mechanisms having dual functions or combined with, or coupled to, apparatus performing other functions
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H29/00Delivering or advancing articles from machines; Advancing articles to or into piles
    • B65H29/52Stationary guides or smoothers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H29/00Delivering or advancing articles from machines; Advancing articles to or into piles
    • B65H29/58Article switches or diverters
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H85/00Recirculating articles, i.e. feeding each article to, and delivering it from, the same machine work-station more than once
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition
    • G06V30/22Character recognition characterised by the type of writing
    • G06V30/224Character recognition characterised by the type of writing of printed characters having additional code marks or containing code marks
    • G06V30/2253Recognition of characters printed with magnetic ink
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2301/00Handling processes for sheets or webs
    • B65H2301/30Orientation, displacement, position of the handled material
    • B65H2301/31Features of transport path
    • B65H2301/314Closed loop
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2301/00Handling processes for sheets or webs
    • B65H2301/30Orientation, displacement, position of the handled material
    • B65H2301/33Modifying, selecting, changing orientation
    • B65H2301/333Inverting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2301/00Handling processes for sheets or webs
    • B65H2301/50Auxiliary process performed during handling process
    • B65H2301/51Modifying a characteristic of handled material
    • B65H2301/511Processing surface of handled material upon transport or guiding thereof, e.g. cleaning
    • B65H2301/5111Printing; Marking
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2404/00Parts for transporting or guiding the handled material
    • B65H2404/60Other elements in face contact with handled material
    • B65H2404/63Oscillating, pivoting around an axis parallel to face of material, e.g. diverting means
    • B65H2404/632Wedge member
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2404/00Parts for transporting or guiding the handled material
    • B65H2404/60Other elements in face contact with handled material
    • B65H2404/64Other elements in face contact with handled material reciprocating perpendicularly to face of material, e.g. pushing means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2553/00Sensing or detecting means
    • B65H2553/20Sensing or detecting means using electric elements
    • B65H2553/22Magnetic detectors, e.g. Hall detectors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/10Handled articles or webs
    • B65H2701/19Specific article or web
    • B65H2701/1912Banknotes, bills and cheques or the like

Definitions

  • the present invention claims the priority of the Chinese invention patent application filed on September 24, 2009, with the application number 200910176923.1, and the invention entitled "recording medium processing apparatus and method with embedded information” The entire disclosure of which is incorporated herein by reference.
  • TECHNICAL FIELD The present invention relates to the field of recording medium processing, and in particular to a recording medium processing apparatus and method having embedded information.
  • BACKGROUND OF THE INVENTION Securities such as checks and tickets, typically embed magnetic ink information in a recording medium during printing to prevent counterfeiting by criminals.
  • checks are widely used in buying and selling transactions and personal consumption.
  • information such as the amount of the check, the signature of the payer, and the like are recorded on the front side of the check.
  • the type of information is referred to as positive signing information.
  • the check records information such as the banking institution code, personal bank account number, and check number through magnetic ink.
  • the positive signing information of a traditional check is manually signed by the owner of the check, but in recent years, people have begun to use the printer to print positive signing information.
  • the magnetic ink characters of the check can be identified by the MICR technique using a magnetic head. For example, after receiving the check, the retail store first checks the magnetic ink on the check through the card reader, and then reads the information recorded by the magnetic ink to confirm the validity of the check. When the check is valid, the operator uses the printer to print a certificate on the back of the check, and the user name of the check is accepted.
  • US Patent No. 6,350,005 discloses a recording medium processing apparatus having implant information, the apparatus comprising: a channel along which a recording medium can be transported; an information read head disposed along the channel for reading recorded information; a print head disposed on the first side of the channel for printing information on the first surface of the recording medium; the second print head disposed on the second side of the channel opposite the first side for recording medium and a second surface of the opposite surface prints information; an insertion port, connected to the channel, the recording medium is inserted through the insertion port; a discharge port connected to the channel, the recording medium is discharged through the discharge port, and the insertion port and the discharge port are respectively disposed in each of the channels An end; wherein the first printhead is disposed between the second printhead and the 4th exit.
  • an object of the present invention is to provide a recording medium processing apparatus having embedded information, which realizes identification of magnetic information and realizes double-sided printing of a recording medium by providing a print head.
  • the present invention provides a recording medium processing apparatus having embedded information, comprising: a channel mechanism including a first passage, an annular passage, and a recording medium conveying roller thereof, wherein the first opening and the first passage of the annular passage a second opening is coupled to the end of the first passage; a first guiding mechanism for selectively conducting the first opening and the second opening of the annular passage; and processing means including a magnetic head disposed on the first passage And a print head, wherein the magnetic head is disposed at a side of the recording medium entrance and exit adjacent to the beginning of the first passage.
  • the first guiding mechanism includes: a first guiding plate disposed at an end of the first passage, having an initial position for conducting the first passage and one of the first opening and the second opening, and conducting the first passage a switching position with the other of the first opening and the second opening; and a first driving mechanism for driving the first guide plate to switch between the initial position and the switching position.
  • the first drive mechanism is an electromagnet drive mechanism.
  • the first driving mechanism is an elastic member, wherein one end of the elastic member is connected to the first guiding plate, and the other end is connected to the frame of the recording medium processing device.
  • the processing device further includes: a scanning module, located in the first channel, comprising at least one image sensor.
  • the first channel includes: a first sub-channel and a second sub-channel, wherein a recording medium inlet and an exit are between the first sub-channel and the second sub-channel, wherein between the first sub-channel and the second sub-channel
  • a second guiding mechanism is provided for selectively conducting the first sub-channel with the recording medium inlet or outlet or the second sub-channel.
  • the second guiding mechanism includes: a second guiding plate having a first position for conducting the recording medium inlet and outlet and the first sub-channel and a second position for conducting with the second sub-channel; the cam driving the second guiding The plate moves between the first position and the second position; and an elastic member for holding the second guide plate in the first position.
  • the recording medium processing apparatus of the present invention further includes an automatic paper feeder located upstream of the recording medium inlet and outlet at the beginning of the first passage for storing a plurality of to-be-processed recording media and inputting a plurality of to-be-processed recording media one by one The first subchannel.
  • the present invention provides a recording medium processing method having embedded information, comprising the steps of: A) reading a recording medium having embedded information in a process of entering a first channel; B) recording a medium Printing the first side; C) causing the printed recording medium to be introduced into the annular passage at the end of the first passage and then returning to the first passage to invert the recording medium; and D) causing the recording medium to be second when leaving the first passage Print on the side.
  • step A further includes: when the magnetic reading failure of the recording medium fails, the recording medium is led out from the first channel before being introduced into the annular channel.
  • the method of the present invention further includes the following steps: E) scanning the unprinted recording medium image before the step 4 is gathered; and F) scanning the printed recording medium image after the step D.
  • a recording medium processing apparatus includes a first passage (i.e., a straight passage), an annular passage, and a guiding mechanism, wherein the straight passage intersects the annular passage, and the guiding mechanism guides the recording medium to be conveyed around the annular passage, and the processing device is disposed in the straight passage
  • a first passage i.e., a straight passage
  • the straight passage intersects the annular passage
  • the guiding mechanism guides the recording medium to be conveyed around the annular passage
  • the processing device is disposed in the straight passage
  • the operation of reading embedded information, double-sided printing, and the like can be realized for an embedded information recording medium, and in particular, the circular medium is used to automatically flip the recording medium during the movement, thereby performing double-sided printing of the recording medium by using one print head.
  • the integrated processing of the recording medium with embedded information is realized, and the equipment cost is reduced.
  • the present invention has other objects, features and advantages.
  • FIG. 1 is a schematic view of a recording medium processing apparatus having embedded information in which a first guide plate is located at an initial position
  • FIG. 2 is a first guide plate of the recording medium processing apparatus shown in FIG. a schematic diagram of the switching position
  • 3a is a schematic view showing a first driving mechanism of a recording medium processing apparatus according to an embodiment of the present invention as an electromagnet mechanism, wherein a first guiding plate is located at an initial position
  • FIG. 1 is a schematic view of a recording medium processing apparatus having embedded information in which a first guide plate is located at an initial position
  • FIG. 2 is a first guide plate of the recording medium processing apparatus shown in FIG. a schematic diagram of the switching position
  • 3a is a schematic view showing a first driving mechanism of a recording medium processing apparatus according to an embodiment of the present invention as an electromagnet mechanism, wherein a first guiding plate is located at an initial position
  • FIG. 3b is a recording medium processing apparatus according to an embodiment of the present invention.
  • a driving mechanism is a schematic view of an electromagnet mechanism, wherein the first guiding plate is located at a switching position;
  • FIG. 4 is a schematic view showing a first driving mechanism of the recording medium processing device as an elastic mechanism according to an embodiment of the present invention;
  • FIG. 6 is a schematic diagram of a recording medium processing apparatus having embedded information according to a second embodiment of the present invention;
  • FIG. 7 is a diagram showing embedding of a recording medium processing apparatus according to a second embodiment of the present invention;
  • the schematic view of the recording medium processing device wherein the first guiding plate is located at the initial position, and the second guiding plate is located at the first position;
  • FIG. 8 is a schematic view of the second guiding plate of the recording medium processing device shown in FIG. 7 in the second position
  • Figure 9a is a schematic view showing the second driving mechanism of the recording medium processing apparatus shown in Figure 7 as a cam mechanism, wherein The guiding plate is located at the first position
  • FIG. 9b is a schematic view of the second driving mechanism of the recording medium processing apparatus shown in FIG. 7 as a cam mechanism, wherein the second guiding plate is located at the second position
  • FIG. 10 is a recording according to the third embodiment of the present invention.
  • FIG. 11 is a schematic diagram of a recording medium processing device with embedded information according to a fourth embodiment of the present invention.
  • First embodiment 1 and 2 show a recording medium processing apparatus according to a first embodiment of the present invention.
  • the recording medium processing apparatus includes an entrance and exit 1, a passage mechanism 2, a processing device 3, and a guide mechanism 4.
  • the passage mechanism 2 includes a first passage 21 and an annular passage 22. The beginning of the first passage 21 is connected to the inlet and outlet 1; the end of the first passage 21 meets the annular passage 22, and the annular passage 22 is separated by the first passage 21 to form two openings.
  • the guiding mechanism 4 includes a first guiding plate 41 and a first driving mechanism 42 (see Figs. 3a and 3b), and the first guiding plate 41 is located at the intersection of the annular passage 22 and the first passage 21, and is arranged with the frame of the recording medium processing apparatus.
  • the hinge is rotatable relative to the hinge point for communicating the second end of the first passage 21 with the first opening 22a or the second opening 22b of the annular passage 22.
  • the first guide plate 41 is provided with an initial position and a switching position.
  • the first guiding plate 41 when the first guiding plate 41 is in the initial position, the second end of the first passage 21 is communicated with the first opening 22a of the annular passage 22, and the second end of the first passage 21 and the annular passage 22 are simultaneously The second opening 22b is closed, and the recording medium can enter the annular passage 22 from the first passage 21; after the recording medium runs around the annular passage 22, the first guiding plate 41 is rotated from the initial position to the switching position, and the first passage 21 is The two ends communicate with the second opening 22b of the annular passage 22 while closing the second end of the first passage 21 with the first opening 22a of the annular passage 22, thereby enabling the recording medium to be transported from the annular passage 22 to the first passage 21 .
  • the first drive mechanism 42 is coupled to the first guide plate 41 for driving the first guide plate 41 to switch between the initial position and the switching position.
  • the first driving mechanism 42 is an electromagnet mechanism.
  • the electromagnet mechanism is connected to the first guiding plate 41, and the first guiding plate 41 is driven to rotate to the set position by controlling the electromagnet mechanism.
  • the first driving mechanism 42 can also be an elastic mechanism. As shown in FIG. 4, one end is connected to the first guiding plate 41, and the other end is connected to the frame.
  • the first guiding plate 41 is kept at the initial state under the elastic force of the elastic mechanism. Position, when the recording medium pushes the first guide plate 41 against the elastic force, the first guide plate 41 is rotated to the switching position. It is easily conceivable that the first drive mechanism 42 can also be a motor mechanism or other mechanism capable of realizing the positional switching of the first guide plate 41.
  • the passage mechanism 2 further includes a plurality of conveying rollers 23 disposed in the first passage and the annular passage for conveying the recording medium.
  • the processing device 3 includes a magnetic head 31 and a printhead 32. The magnetic head 31 is located at the beginning of the first passage 21 adjacent to the inlet and outlet 1, and the print head 32 is located at the end of the first passage 21 adjacent to the guide mechanism 4.
  • Step 4 S101: The magnetic recording medium is read into the first passage 21, and the magnetic head 31 reads magnetic information embedded in the recording medium, such as magnetic ink information, during the movement.
  • Step S102 Printing the first side of the recording medium When the recording medium is moved to the position where the print head 32 is located, the first side of the recording medium is opposed to the print head 32.
  • Step S103 Printing the second side of the recording medium After the recording medium has all entered the annular passage 22, the first guide plate 41 is rotated to the switching position. After the recording medium has been wound around the annular passage for one week, the first guiding plate 41 guides the recording medium to return to the first passage 21 from the second opening 22b.
  • FIG. 6 is a view showing a recording medium processing apparatus with embedded information according to a second embodiment of the present invention.
  • the processing device further includes a scanning module 33 located in the first channel for acquiring an image of the surface of the recording medium.
  • the scanning module 33 includes at least one image sensor for acquiring an image of the recording medium.
  • the scanning module 33 includes two oppositely disposed first image sensors 331 and second image sensors 332 for respectively acquiring the first side of the recording medium and The image of the second side.
  • FIG. 7 is a view showing a recording medium processing apparatus with embedded information according to a third embodiment of the present invention. As shown, the recording medium processing apparatus includes an entrance and exit 1, a passage mechanism 2, a processing device 3, and a guide mechanism 4.
  • the entrance 1 includes a first inlet 11 and a second inlet 12 for inputting or outputting a recording medium.
  • the passage mechanism 2 includes a first passage 21 and an annular passage 22.
  • the first channel 21 is composed of a first sub-channel 211 and a second sub-channel 212.
  • the first end of the second sub-channel 212 meets the first sub-channel 211, and the second end thereof meets the annular channel 22.
  • the intersection of the first sub-channel 211 and the second sub-channel 212 forms a set angle.
  • the first inlet and outlet 11 is located at the beginning of the first passage 21, that is, the beginning of the first sub-channel 211
  • the second inlet and outlet 12 is located at the end of the first sub-channel 211, that is, between the first sub-channel 211 and the second sub-channel 212.
  • the annular passage 22 is divided by the second sub-passage 212 to form two openings, which are referred to as a first opening 22a and a second opening 22b for convenience of description.
  • the guiding mechanism 4 includes a first guiding plate 41, a second guiding plate 43, a first driving mechanism 42 and a second driving mechanism 44, wherein the first guiding plate 41 and the first driving mechanism 42 constitute a first guiding mechanism (see Fig. 3a) And Fig.
  • the first guiding plate 41 is located at the intersection of the annular passage 22 and the second sub-channel 212, and is hinged with the frame of the recording medium processing device, and is rotatable relative to the hinge point for the second sub-channel 212
  • the two ends are in communication with the first opening 22a or the second opening 22b of the annular passage 22.
  • the first guide plate 41 is provided with an initial position and a switching position.
  • the second end of the second sub-channel 212 when the first guiding plate 41 is in the initial position, the second end of the second sub-channel 212 is connected to the first opening 22a of the annular channel 22, and the second end of the second sub-channel 212 is connected to the ring.
  • the second opening 22b of the passage 22 is closed, and the recording medium can enter the annular passage 22 from the second sub-passage 212; when the recording medium is rotated around the annular passage 22, the first guide plate 21 is rotated from the initial position to the switching position,
  • the second end of the second sub-channel 212 communicates with the second opening 22a of the annular passage 22 while the second end of the second sub-channel 212 is closed with the first opening 22a of the annular passage 22, thereby enabling the recording medium to be constituted by the annular passage 22.
  • the first drive mechanism 42 is coupled to the first guide plate 41 for driving the first guide plate 41 to switch between the initial position and the switching position.
  • the first drive mechanism 42 can employ an electromagnet mechanism, an elastic mechanism, or a motor mechanism.
  • the second guiding plate 43 is located at the intersection of the first sub-channel 211 and the second sub-channel 212 for guiding the recording medium to be transported in the path formed by the first sub-channel 211 and the second sub-channel 212 or at the first inlet and outlet 11, A sub-channel 211 and a second inlet/outlet 12 are formed in a path formed.
  • the previous path is referred to as the first path
  • the latter path is referred to as the second path.
  • the second guide plate 43 is provided with a first position and a second position.
  • the second drive mechanism 44 is coupled to the second guide plate 43 for driving the second guide plate 43 to switch between the first position and the second position.
  • the second drive mechanism 44 can be an electromagnet mechanism or a cam mechanism.
  • the second driving mechanism 44 is preferably an electromagnet mechanism, and its implementation is similar to that of the first driving mechanism, and will not be repeated here.
  • Figures 9a and 9b schematically show a schematic view of the second drive mechanism 44 as a cam mechanism, which is shown in partial enlarged form for clarity of presentation.
  • the second driving mechanism 44 includes a cam 441 and an elastic member 442.
  • the cam 441 is overlapped with the second guiding plate 43, the elastic member 442-end is connected to the second guiding plate 43, and the other end is recorded.
  • the media frame is connected, and under the elastic force of the elastic member 442, the second guide plate 43 always has a tendency to be located at the second position.
  • the control cam 441 By rotating the control cam 441 to the set position, the second guide plate 43 can be switched between the first position and the second position.
  • the passage mechanism 2 further includes a plurality of conveying rollers 23 disposed in the first passage 21 and the annular passage 22 for conveying the recording medium.
  • the processing device 3 includes a magnetic head 31, a print head 32, and a scanning device 33.
  • the magnetic head 31 is located at the beginning of the first sub-channel 211 adjacent to the first inlet and outlet 1, and the print head 32 is located at one end of the second sub-channel 212 adjacent to the first guide plate 41.
  • the scanning device 33 is located within the first sub-channel 211.
  • the scanning device 33 includes two oppositely disposed first image sensors 331 and second image sensors 332 for acquiring first and second surface images of the recording medium, respectively.
  • Step 4 S201: The magnetic recording medium is read into the first sub-channel 211 by the first inlet and outlet 11, and during the movement, the magnetic head 31 reads the magnetic ink information embedded in the surface of the recording medium. At this time, the second guiding plate 43 is located at the first position, and the first path is turned on to guide the recording medium into the second sub-channel 212.
  • Step S203 Printing the second surface
  • the first guide plate 41 is rotated to the switching position. After the recording medium is wound around the annular passage, the first guide plate 41 guides the recording medium to return to the second sub-channel 212 from the second opening 22b. Since the recording medium surrounds the annular passage one week, when the recording medium moves to the position of the print head 32, The second side of the recording medium is opposed to the print head 32.
  • Step S204 Scanning the recording medium image
  • the recording medium is returned to the first sub-channel 211 under the guidance of the second guiding plate 43.
  • the control device drives the scanning device 33 to acquire the surface image of the recording medium.
  • the control device controls the second guide plate 43 to switch to the second position to turn on the second path, thereby realizing the discharge of the recording medium from the second port 12.
  • the recording medium processing device is not limited to the above workflow, and may be adjusted as needed.
  • the magnetic reading and the scanning image may be simultaneously performed, so as to acquire the image information of the original recording medium while reading the magnetic ink information embedded on the surface of the recording medium, for Electronic backup of the original recording medium.
  • an automatic paper feeding device 5 is provided at the first inlet and outlet 11, and the automatic paper feeding device 5 includes a paper cassette 51 for storing a stack of recording medium to be processed, and a separation roller 52 for A stack of recording media is fed into the first sub-channel 211 one by one.
  • the recording medium is controlled to be output from the second port, thereby realizing automatic processing of the plurality of recording media.
  • the straight channel intersects the annular channel, and the guiding mechanism is used to guide the recording medium to be transported around the annular channel, and the processing device is disposed in the straight channel, and can have embedded information.
  • the recording medium realizes operations such as reading of embedded information, double-sided printing, and the like, in particular, using the annular channel to automatically flip the recording medium during the moving process, thereby completing the double-sided printing of the recording medium by using one printing head, thereby achieving the pair
  • the comprehensive processing of the recording medium in which the information is embedded reduces the equipment cost.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Multimedia (AREA)
  • Theoretical Computer Science (AREA)
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Description

具有嵌入信息的记录介质处理设备及方法 本申请要求于 2009年 9月 24 日提交的、 申请号为 200910176923.1、 发 明名称为 "具有嵌入信息的记录介质处理设备及方法" 的中国发明专利申请 的优先权, 其全部公开内容通过引用结合至本申请中。 技术领域 本发明涉及记录介质处理领域, 具体涉及一种具有嵌入信息的记录介质 处理设备及方法。 背景技术 支票、 车票等有价证券, 在印制时通常将磁性墨水信息嵌入记录介质中 以防止被不法分子伪造。 比如支票, 广泛应用在买卖交易和个人消费中。 通常, 在支票的正面记录有支票金额、 付款人签名等信息, 为叙述方便, 将该类信息称为正面签署信息。 另外, 支票通过磁性墨水记录银行机构代码、 个人银行帐号、 支票编号等信息。 传统的支票的正面签署信息由支票的所有 人手工签写, 但是, 近年来, 人们开始使用打印机打印正面签署信息。 支票 的磁性墨水字符可以使用磁头通过 MICR技术进行识别。 比如, 零售店在接 收到支票后, 先通过读卡器检测支票上磁性墨水, 然后读取磁性墨水记录的 信息, 从而确认支票的有效性。 当确认支票有效后, 操作者使用打印机在支 票的背面打印证明、 接收支票的用户名等背书。 由于读取支票磁性墨水、 打印背书、 打印正面签署信息需要使用不同的 设备, 因而处理步骤繁瑣, 浪费处理时间。 美国专利 US 6,350,005提出了一种具有植入信息的记录介质处理设备, 该设备包括: 通道, 沿着通道, 记录介质可以传输; 信息读取头, 沿通道设 置, 用于读取记录信息; 第一打印头, 设置在通道的第一侧, 用于在记录介 质的第一表面打印信息; 第二打印头,设置在通道的与第一侧相对的第二侧, 用于记录介质的与第一表面相对的第二表面打印信息; 插入口, 连接至通道, 记录介质通过插入口插入; 排出口, 连接至通道, 记录介质通过排出口排出, 插入口和排出口分别设置在通道的每一末端; 其中, 第一打印头设置在第二 打印头和 4 出口之间。 在用于处理记录介质的上述装置中, 设置了两个打印头来实现记录介质 的双面打印, 使得装置的成本较高, 结构较复杂, 设备故障率增加。 发明内容 有鉴于此, 本发明的目的在于一种具有嵌入信息的记录介质处理设备, 实现磁性信息的识别和通过设置一个打印头实现记录介质的双面打印。 为此, 一方面, 本发明提供了一种具有嵌入信息的记录介质处理设备, 包括: 通道机构, 包括第一通道、 环形通道及其记录介质输送辊, 其中, 环 形通道的第一开口和第二开口与第一通道的末端相连接; 第一导向机构, 用 于第一通道与环形通道的第一开口或第二开口选择性地导通;以及处理装置 , 包括设置于第一通道的磁头和打印头, 其中, 磁头设置在邻近第一通道始端 的记录介质出入口的一侧。 进一步地, 上述第一导向机构包括: 第一导向板, 设置在第一通道的末 端, 具有导通第一通道与第一开口和第二开口二者之一的初始位置以及导通 第一通道与第一开口和第二开口二者中另一个的切换位置; 以及第一驱动机 构, 用于驱动第一导向板在初始位置和切换位置之间切换。 进一步地, 上述第一驱动机构为电磁铁驱动机构。 进一步地, 上述第一驱动机构为弹性元件, 其中, 弹性元件的一端与第 一导向板连接, 另一端与记录介质处理设备的机架连接。 进一步地, 上述处理装置还包括: 扫描模块, 位于第一通道内, 其包括 至少一图像传感器。 进一步地, 上述第一通道包括: 第一子通道和第二子通道, 其中, 第一 子通道和第二子通道之间具有记录介质出入口, 其中, 第一子通道和第二子 通道之间设有第二导向机构, 其用于第一子通道与记录介质出入口或第二子 通道选择性地导通。 进一步地, 上述第二导向机构包括: 第二导向板, 具有使记录介质出入 口与第一子通道导通的第一位置以及与第二子通道导通的第二位置; 凸轮, 驱动第二导向板在第一位置和第二位置之间移动; 以及弹性元件, 用于使第 二导向板保持在第一位置。 进一步地, 本发明的记录介质处理设备还包括自动馈纸器, 其位于第一 通道始端的记录介质出入口的上游, 用于存储多张待处理记录介质并将多张 待处理记录介质逐张输入第一子通道。 另一方面,本发明提供了一种具有嵌入信息的记录介质处理方法,包括以 下步骤: A )使具有嵌入信息的记录介质在进入第一通道的过程中进行读磁; B )对记录介质的第一面进行打印; C )使经过打印的记录介质导入第一通道 末端的环形通道后再返回第一通道以对记录介质进行翻转; 以及 D ) 使记录 介质在离开第一通道时对第二面进行打印。 进一步地, 上述步骤 A还包括: 当对记录介质读磁失败时, 使记录介质 在导入环形通道之前从第一通道导出。 进一步地, 本发明的方法还包括以下步 4聚: E ) 在步 4聚 B之前, 扫描未 打印的记录介质图像; 以及 F )在步骤 D之后, 扫描打印后的记录介质图像。 根据本发明的记录介质处理设备, 其包括第一通道(即直通道)、 环形通 道及导向机构, 直通道与环形通道交汇, 利用导向机构引导记录介质环绕环 形通道输送, 处理装置设置在直通道内, 可以对具有嵌入信息记录介质实现 读取嵌入信息、 双面打印等操作, 特别是, 利用环形通道使记录介质在移动 过程中自动翻转, 从而利用一个打印头完成记录介质的双面打印, 既实现了 对具有嵌入信息的记录介质的综合处理, 又降低了设备成本。 除了上面所描述的目的、 特征和优点之外, 本发明还有其它的目的、 特 征和优点。 下面将参照附图, 对本发明的其它的目的、 特征和效果作进一步 详细的说明。 附图说明 构成本说明书的一部分、 用于进一步理解本发明的附图示出了本发明的 优选实施例, 并与说明书一起用来说明本发明的原理。 附图中: 图 1为根据本发明第一实施例的具有嵌入信息的记录介质处理设备示意 图, 其中第一导向板位于初始位置; 图 2 为图 1 所示记录介质处理装置的第一导向板位于切换位置的示意 图; 图 3a 为根据本发明实施例的记录介质处理设备的第一驱动机构为电磁 铁机构的示意图, 其中, 第一导向板位于初始位置; 图 3b 为根据本发明实施例的记录介质处理设备的第一驱动机构为电磁 铁机构的示意图, 其中, 第一导向板位于切换位置; 图 4为根据本发明实施例的记录介质处理设备的第一驱动机构为弹性机 构的示意图; 图 5为根据本发明第一实施例的记录介质处理设备的一种工作流程图; 图 6为根据本发明第二实施例的具有嵌入信息的记录介质处理设备示意 图; 图 7为根据本发明第三实施例的具有嵌入信息的记录介质处理设备示意 图, 其中, 第一导向板位于初始位置, 第二导向板位于第一位置; 图 8 为图 7 所示记录介质处理设备的第二导向板位于第二位置的示意 图; 图 9a为图 7所示记录介质处理设备的第二驱动机构为凸轮机构示意图 , 其中第二导向板位于第一位置; 图 9b为图 7所示记录介质处理设备的第二驱动机构为凸轮机构示意图 , 其中第二导向板位于第二位置; 图 10为根据本发明第三实施例的记录介质处理设备的一种工作流程图; 以及 图 11 为根据本发明第四实施例的具有嵌入信息的记录介质处理设备示 意图。 具体实施方式 以下结合附图对本发明的实施例进行详细说明, 但是本发明可以由权利 要求限定和覆盖的多种不同方式实施。 在附图中相同的部件用相同的标号表 示。 第一实施例 图 1和图 2示出了根据本发明的第一实施例的记录介质处理设备。 如图 1和图 2所示, 记录介质处理设备包括出入口 1、 通道机构 2、 处理装置 3和 导向机构 4。 通道机构 2包括第一通道 21和环形通道 22。第一通道 21的始端与出入 口 1连接; 第一通道 21的末端与环形通道 22交汇, 环形通道 22被第一通 道 21分隔形成两个开口, 为描述方便, ΐ己作第一开口 22a和第二开口 22b。 导向机构 4包括第一导向板 41和第一驱动机构 42(参见图 3a与图 3b ), 第一导向板 41位于环形通道 22与第一通道 21 交汇处, 并与记录介质处理 设备的机架铰接, 能够相对铰接点旋转, 用于将第一通道 21 的第二端与环 形通道 22的第一开口 22a或第二开口 22b连通。 第一导向板 41设置有初始 位置和切换位置。 本实施例中, 当第一导向板 41位于初始位置时, 将第一通道 21的第二 端与环形通道 22的第一开口 22a连通, 同时将第一通道 21的第二端与环形 通道 22的第二开口 22b封闭,记录介质能够从第一通道 21进入环形通道 22; 当记录介质绕环形通道 22运行一周后, 第一导向板 41由初始位置旋转到切 换位置, 将第一通道 21第二端与环形通道 22的第二开口 22b连通, 同时将 使第一通道 21的第二端与环形通道 22的第一开口 22a封闭, 从而使记录介 质能够由环形通道 22输送至第一通道 21。 由于初始位置和切换位置属于相对位置, 因此, 在其他实施例中, 初始 位置与切换位置的设置可以与本实施例恰好相反。 第一驱动机构 42与第一导向板 41连接, 用于驱动第一导向板 41在初 始位置和切换位置之间切换。 优选地, 第一驱动机构 42是电磁铁机构, 如图 3a、 图 3b所示, 电磁铁 机构与第一导向板 41连接, 通过控制电磁铁机构, 驱动第一导向板 41转动 到设定位置。 当然, 第一驱动机构 42也可以是弹性机构, 如图 4所示, 其一端与第 一导向板 41 连接, 另一端与机架连接, 在弹性机构弹力作用下第一导向板 41 保持在初始位置, 当记录介质克服弹性力推动第一导向板 41 , 使第一导 向板 41旋转至切换位置。 容易想到, 第一驱动机构 42 还可以是电机机构或者能够实现第一导向 板 41位置切换的其它机构。 通道机构 2还包括若千输送辊 23, 设置在第一通道及环形通道内, 用于 输送记录介质。 处理装置 3包括磁头 31和打印头 32。磁头 31位于邻近出入口 1的第一 通道 21的始端, 打印头 32位于邻近导向机构 4的第一通道 21的末端。 下面结合图 5 说明本发明第一实施例提供的记录介质处理设备工作过 程。 为了叙述方便, 将记录介质的两面分别记作记录介质第一面和记录介质 第二面。 步 4聚 S101 : 读磁 记录介质进入第一通道 21 , 移动过程中磁头 31读取记录介质中嵌入的 磁性信息, 如磁墨水信息。 步骤 S102: 打印记录介质第一面 当记录介质运动到打印头 32所在位置时, 记录介质第一面与打印头 32 相对。 当记录介质移动到打印位置后, 控制装置驱动打印头 32 动作, 在记 录介质移动过程中, 打印头 32 在记录介质第一面打印设定信息。 此时, 第 一导向板 41位于初始位置, 引导记录介质由第一开口 22a进入环形通道 22。 步骤 S103: 打印记录介质第二面 当记录介质全部进入环形通道 22后, 第一导向板 41旋转至切换位置。 ΐ己录介质绕环形通道一周后, 第一导向板 41 引导 ΐ己录介质由第二开口 22b 返回第一通道 21。 由于记录介质环绕环形通道一周, 因此, 当记录介质运动到打印头 32 所在位置时, 记录介质第二面与打印头 32 相对; 当记录介质移动到打印位 置后, 控制装置驱动打印头 32 动作, 在记录介质移动过程中, 打印头在记 录介质第二面打印设定信息。 步骤 S104: 输出记录介质 当记录介质第二面打印完毕后, 记录介质由第一通道始端的出入口 1排 出记录介质处理设备。 第二实施例 图 6为根据本发明第二实施例的具有嵌入信息的记录介质处理设备示意 图。 本实施例与本发明第一实施例的区别在于处理装置还包括扫描模块 33 , 位于第一通道内, 用于获取记录介质表面图像。 扫描模块 33 包括至少一个 用于获取记录介质图像的图像传感器, 优选地, 扫描模块 33 包括两个相对 设置的第一图像传感器 331和第二图像传感器 332 , 分别用于获取记录介质 第一面和第二面的图像。 第三实施例 图 7为根据本发明第三实施例的具有嵌入信息的记录介质处理设备示意 图。 如图所示, 记录介质处理设备包括出入口 1、 通道机构 2、 处理装置 3 和导向机构 4。 出入口 1 包括第一出入口 11和第二出入口 12 , 用于输入或输出记录介 质。 通道机构 2包括第一通道 21和环形通道 22。第一通道 21由第一子通道 211和第二子通道 212组成。 第二子通道 212第一端与第一子通道 211交汇, 其第二端与环形通道 22交汇。第一子通道 211和第二子通道 212交汇处形成 设定夹角。 第一出入口 11位于第一通道 21的始端, 即第一子通道 211的始端, 第 二出入口 12位于第一子通道 211 的末端, 即第一子通道 211和第二子通道 212之间。 环形通道 22被第二子通道 212分隔形成两个开口, 为描述方便, 记作第一开口 22a和第二开口 22b。 导向机构 4包括第一导向板 41、 第二导向板 43、 第一驱动机构 42和第 二驱动机构 44 , 其中, 第一导向板 41和第一驱动机构 42构成第一导向机构 (参见图 3a与图 3b ), 第二导向板 43和第二驱动机构 44构成第二导向机构 (参见图 9a与图 9b )。 第一导向板 41位于环形通道 22与第二子通道 212交汇处, 并与记录介 质处理设备的机架铰接, 能够相对铰接点旋转, 用于将第二子通道 212的第 二端与环形通道 22的第一开口 22a或第二开口 22b连通。 第一导向板 41设 置有初始位置和切换位置。 本实施例中, 当第一导向板 41位于初始位置时, 将第二子通道 212 的 第二端与环形通道 22的第一开口 22a连通, 同时将第二子通道 212的第二 端与环形通道 22的第二开口 22b封闭, 记录介质能够从第二子通道 212进 入环形通道 22; 当 ΐ己录介质绕环形通道 22运行一周后, 第一导向板 21由初 始位置旋转到切换位置, 将第二子通道 212第二端与环形通道 22 的第二开 口 22a连通, 同时将第二子通道 212的第二端与环形通道 22的第一开口 22a 封闭, 从而使记录介质能够由环形通道 22输送至第二子通道 212。 第一驱动机构 42与第一导向板 41连接, 用于驱动第一导向板 41在初 始位置和切换位置之间切换。 第一驱动机构 42 可以釆用电磁铁机构、 弹性 机构或电机机构。 第二导向板 43位于第一子通道 211与第二子通道 212交汇处,用于引导 记录介质在第一子通道 211和第二子通道 212形成的路径中输送或者在第一 出入口 11、 第一子通道 211和第二出入口 12形成的路径中输送。 为描述方便, 将前一路径记作第一路径, 将后一路径记作第二路径。 第 二导向板 43设置有第一位置和第二位置。当第二导向板 43位于第一位置时, 将第一路径导通, 同时封闭第二路径, 见图 8; 当第二导向板 43位于第二位 置时, 将第二路径导通, 同时封闭第一路径。 第二驱动机构 44与第二导向板 43连接, 用于驱动第二导向板 43在第 一位置和第二位置之间切换。 第二驱动机构 44 可以是电磁铁机构或凸轮机 构。 第二驱动机构 44优选为电磁铁机构, 其实现方式与第一驱动机构相似, 此处不再复述。 图 9a和图 9b示意性地示出了第二驱动机构 44为凸轮机构的示意图,为 了表达清晰, 图 9a和图 9b以局部放大的形式示出。 如图 9a、 图 9b所示, 第二驱动机构 44包括凸轮 441和弹性元件 442 , 凸轮 441与第二导向板 43搭接, 弹性元件 442—端与第二导向板 43连接, 另一端与记录介质机架连接, 在弹性元件 442 弹力作用下, 第二导向板 43 始终有位于第二位置的趋势。 通过控制凸轮 441旋转到设定位置, 使第二导 向板 43可以在第一位置和第二位置切换。 通道机构 2还包括若千输送辊 23 ,设置在第一通道 21及环形通道 22内, 用于输送记录介质。 处理装置 3 包括磁头 31、 打印头 32和扫描装置 33。 磁头 31位于邻近 第一出入口 1的第一子通道 211始端,打印头 32位于第二子通道 212中邻近 第一导向板 41 的一端。 扫描装置 33位于第一子通道 211 内。 扫描装置 33 包括两个相对设置的第一图像传感器 331和第二图像传感器 332, 分别用于 获取记录介质第一面和第二面图像。 下面结合图 10和图 11说明根据本发明第三实施例的记录介质处理设备 工作流程。 步 4聚 S201 : 读磁 记录介质由第一出入口 11 进入第一子通道 211 , 移动过程中, 磁头 31 读取记录介质表面嵌入的磁墨水信息。 此时第二导向板 43 位于第一位置, 将第一路径导通, 将记录介质引导进入第二子通道 212。 步骤 S202: 打印第一面 当记录介质运动到打印头所在位置时, 记录介质第一面与打印头相对。 当记录介质移动到打印位置后, 控制装置驱动打印头动作, 在记录介质移动 过程中, 打印头在记录介质第一面打印设定信息。 此时, 第一导向板 41 位 于初始位置, 引导记录介质由第一开口 22a进入环形通道 22。 步骤 S203: 打印第二面 当记录介质全部进入环形通道 22后, 第一导向板 41旋转至切换位置。 记录介质绕环形通道一周后, 第一导向板 41 引导记录介质由第二开口 22b 返回第二子通道 212 , 由于记录介质环绕环形通道一周, 因此, 当记录介质 运动到打印头 32所在位置时, 记录介质第二面与打印头 32相对; 当记录介 质移动到打印位置后, 控制装置驱动打印头 32 动作, 在记录介质移动过程 中, 打印头在记录介质第二面打印设定信息。 步骤 S204: 扫描记录介质图像 ΐ己录介质在第二导向板 43引导下返回第一子通道 211 , 在 ΐ己录介质移动 过程中, 控制装置驱动扫描装置 33获取记录介质表面图像。 步骤 S205: 输出记录介质 当扫描装置获取记录介质第一面和 /或第二面图像后,记录介质由第一出 入口 11或第二出入口 12排出记录介质处理设备。 当记录介质由第二出入口 12排出时, 控制装置控制第二导向板 43切换至第二位置, 使第二路径导通, 从而实现记录介质由第二出入口 12排出。 需要说明的是, 上述工作流程仅为优选实施方式的一种, 记录介质处理 设备不限于上述工作流程, 可以根据需要调整。 优选地, 在步骤 S201 中, 在记录介质移动过程中, 可以同时进行读磁 及扫描图像, 以便在读取记录介质表面嵌入的磁墨水信息的同时, 获取原始 记录介质的图像信息, 用于对原始记录介质的电子备份。 优选地, 在第一出入口 11设置自动馈纸装置 5, 自动馈纸装置 5包括纸 盒 51和分纸辊 52, 纸盒 51用于存储一叠待处理记录介质, 分纸辊 52用于 将一叠记录介质逐一送入第一子通道 211。 当上述执行完步 4聚 S204后, 控制 记录介质由第二出入口 出, 从而实现多张 ΐ己录介质的自动处理。 通过以上描述可以看出, 在本发明的 ΐ己录介质处理设备中, 直通道与环 形通道交汇, 利用导向机构引导记录介质环绕环形通道输送, 处理装置设置 在直通道内, 可以对具有嵌入信息的记录介质实现嵌入信息的读取、 双面打 印等操作, 特别是, 利用环形通道使对记录介质在移动过程中自动翻转, 从 而利用一个打印头完成记录介质的双面打印, 既实现了对具有嵌入信息的记 录介质的综合处理, 又降氏了设备成本。 以上仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本领域 的技术人员来说, 本发明可以有各种更改和变化。 凡在本发明的 ^"神和原则 之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明的保护范围 之内。

Claims

权 利 要 求 书
1. 一种具有嵌入信息的记录介质处理设备,其特征在于, 包括:
通道机构 ( 2 ), 包括第一通道( 21 )、 环形通道( 22 )及记录介质输 送辊 (23 ), 其中, 所述环形通道 (22) 的第一开口 (22a) 和第二开口 (22b) 与所述第一通道 (21 ) 的末端相连接;
第一导向机构(41、 42), 用于所述第一通道(21 )与所述环形通道 (22) 的第一开口 (22a) 或第二开口 (22b) 选择性地导通; 以及
处理装置 (3), 包括设置于所述第一通道 (21 ) 的磁头 (31 ) 和打 印头 (32), 其中, 所述磁头 (31 )设置在邻近所述第一通道(21 )始端 的记录介质出入口 ( 11 ) 的一侧。
2. 根据权利要求 1所述的具有嵌入信息的记录介质处理设备,其特征在于, 所述第一导向机构 (41、 42) 包括:
第一导向板(41 ), 设置在所述第一通道(21 ) 的末端, 具有导通第 一通道与第一开口 (22a) 和第二开口 (22b) 二者之一的初始位置以及 导通第一通道与第一开口 (22a) 和第二开口 (22b) 二者中另一个的切 换位置; 以及
第一驱动机构( 42 ), 用于驱动所述第一导向板 ( 41 )在所述初始位 置和所述切换位置之间切换。
3. 根据权利要求 2所述的具有嵌入信息的记录介质处理设备,其特征在于, 所述第一驱动机构 (42) 为电磁铁驱动机构。
4. 根据权利要求 2所述的具有嵌入信息的记录介质处理设备,其特征在于, 所述第一驱动机构 (42) 为弹性元件, 其中, 所述弹性元件的一端 与所述第一导向板 (41 ) 连接, 另一端与所述记录介质处理设备的机架 连接。
5. 根据权利要求 1所述的具有嵌入信息的记录介质处理设备,其特征在于, 所述处理装置 (3 ) 还包括:
扫描模块(33), 位于所述第一通道(21 ) 内, 其包括至少一图像传 感器。
6. 根据权利要求 1所述的具有嵌入信息的记录介质处理设备,其特征在于, 所述第一通道 (21) 包括:
第一子通道(211 )和第二子通道(212), 其中, 第一子通道(211) 和第二子通道 (212) 之间具有记录介质出入口 ( 12),
其中, 所述第一子通道 (211) 和第二子通道 (212) 之间设有第二 导向机构(43、 44), 用于所述第一子通道(211 )与记录介质出入口( 12) 或第二子通道 (212) 选择性地导通。
7. 根据权利要求 6所述的具有嵌入信息的记录介质处理设备,其特征在于, 还包括:
自动馈纸器, 位于所述第一通道(21 )始端的记录介质出入口 ( 11) 上游, 用于存储多张待处理记录介质并将所述多张待处理记录介质逐张 输入所述第一子通道 (211)。
8. 根据权利要求 6所述的具有嵌入信息的记录介质处理设备,其特征在于, 所述第二导向机构 (43、 44) 包括:
第二导向板(43),具有使记录介质出入口( 12)与第一子通道(211 ) 导通的第一位置以及与第二子通道 (212) 导通的第二位置;
凸轮 (441), 驱动所述第二导向板 (43) 在所述第一位置和第二位 置之间移动; 以及
弹性元件 (442), 用于使所述第二导向板 (43) 保持在所述第一位 置。
9. 一种具有嵌入信息的记录介质处理方法,其特征在于, 包括以下步 4聚:
A )使具有嵌入信息的记录介质在进入第一通道的过程中进行读磁;
B )对读磁后的所述记录介质的第一面进行打印;
C ) 使经过打印的记录介质导入所述第一通道末端的环形通道后再 返回第一通道以对所述记录介质进行翻转; 以及
D )使所述记录介质在离开所述第一通道时对其第二面进行打印。
10. 居权利要求 9所述的具有嵌入信息的记录介质处理方法,其特征在于, 步骤 A还包括: 当对所述记录介质读磁失败时, 使所述记录介质在导入环形通道之 前从第一通道导出。
11. 根据权利要求 9所述的具有嵌入信息的记录介质处理方法,其特征在于, 还包括:
E )在所述步骤 B之前, 扫描未打印的记录介质图像; 以及
F )在所述步驟 D之后, 扫描打印后的记录介质图像。
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