EP1297498A1 - Dispositif de traitement de produits en feuille - Google Patents

Dispositif de traitement de produits en feuille

Info

Publication number
EP1297498A1
EP1297498A1 EP01957862A EP01957862A EP1297498A1 EP 1297498 A1 EP1297498 A1 EP 1297498A1 EP 01957862 A EP01957862 A EP 01957862A EP 01957862 A EP01957862 A EP 01957862A EP 1297498 A1 EP1297498 A1 EP 1297498A1
Authority
EP
European Patent Office
Prior art keywords
sheet material
test device
test
data
checked
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
EP01957862A
Other languages
German (de)
English (en)
Other versions
EP1297498B1 (fr
Inventor
Hans-Wolfgang Kunz
Lukas LÖFFLER
Gerhard Schinzel-Reiner
Alfred Schmidt
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Giesecke and Devrient GmbH
Original Assignee
Giesecke and Devrient GmbH
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 Giesecke and Devrient GmbH filed Critical Giesecke and Devrient GmbH
Publication of EP1297498A1 publication Critical patent/EP1297498A1/fr
Application granted granted Critical
Publication of EP1297498B1 publication Critical patent/EP1297498B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D7/00Testing specially adapted to determine the identity or genuineness of valuable papers or for segregating those which are unacceptable, e.g. banknotes that are alien to a currency
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/40Device architecture, e.g. modular construction

Definitions

  • the present invention relates to a device for processing sheet material, in particular banknotes, securities and the like.
  • a device for the automatic sorting of thin sheet material which has an input compartment for receiving banknotes, a separating device, a transport system, a test device arranged along the transport system and at least one storage device.
  • the sheet material is divided into fit, non-fit and indefinable cases according to the results of the test facility, the fit and non-fit sheet material being transported to different storage devices and the undetermined cases being stored in a buffer.
  • Data about the stored sheet material is stored in a data memory.
  • a protocol is created from this data, which enables a statement to be made about the undetermined cases.
  • the log is used at a manual rework station to manually evaluate and check the indeterminable cases taken from the buffer. The result of the manual check can be entered into the data memory to complete the data.
  • the known device thus has the advantage that the automatic sorting process can be continued when undetermined cases occur, since the undetermined cases are stored in a buffer and by means of the generated protocol at a later point in time or simultaneously, in parallel with the automatic sorting process , can be evaluated and checked.
  • the device can therefore be operated without interruption at maximum throughput.
  • the known device has the disadvantage that in the case of frequently occurring, indeterminable cases, an increased effort for manual post-processing at the manual post-processing station is necessary. Since the operator of the automatic sorting device frequently also carries out the postprocessing of the indeterminable cases at the manual postprocessing station in parallel with the automatic sorting, sooner or later there is an influence on the operation which reduces the throughput.
  • the manual post-processing station As a counting machine in order to relieve the operator of counting the undetermined cases.
  • the disadvantage of this is that the total amount of sheet material to be reworked manually is not reduced. If the counting machine used as a manual post-processing station can also carry out a check, the absolute amount of undetermined cases is reduced, but the operator still has to handle all undetermined cases.
  • the rate of undeterminable cases or the total amount of sheet material to be manually reworked is reduced by repeating the inspection of the sheet material.
  • an automatic return of the sheet material to a second or generally further check is provided, whereby a relief for an operator of the device is achieved.
  • the reduction in the rate of indeterminable cases or the total amount of sheet material to be manually reworked arises because at the time of a first or generally prior check of the sheet material, faults or faulty operating conditions, e.g. B. caused by tolerances or stochastic influences, normally no longer exist at the time of a second or generally further check of the sheet material or are present in a modified form. The correct checking and assignment of the sheet material is thus possible in the second or generally further check.
  • FIG. 1 shows a schematic illustration of an embodiment of a device according to the invention for processing sheet material
  • Figure 2 is a schematic representation of a detail of the device of Figure 1
  • Figure 3 shows the embodiment of Figure 1 in a sequence.
  • Figure 1 shows a schematic representation of an embodiment of a device 1 according to the invention for processing sheet material.
  • the device 1 contains an input compartment 10 for inputting a stack of sheets, a separator 20 for separating the sheets forming the stack of sheets, so that a single piece of sheet is always input into a transport system 40.
  • the transport system 40 passes through a testing device 30 in which the sheet material is checked.
  • the test device 30 is constructed in a known manner and contains, for example, optical, mechanical, magnetic and acoustic sensors which check the sheet material. If the sheet material to be checked is formed from bank notes, the test carried out by the checking device can consist, for example, of checking the authenticity of the bank notes and their condition with regard to soiling and wear. On the basis of the inspection of the sheet material carried out by the testing device 30, the sheet material is fed to various storage devices 50, 60, 51, 61, 52, 62.
  • switches 41, 42, 3 located in the transport system 40 are activated by the test device 30 depending on the test result.
  • the test device 30 contains a control unit which can be formed, for example, by a microprocessor, which takes over both the evaluation of the data supplied by the sensors and the control of the individual Components of the device 1. Deviating from this, it can be provided that in addition to a control unit in the test device 30, which evaluates the signals from the sensors, a further control unit is provided, which controls the individual components of the device 1 as a function of the results the test device 30 takes over.
  • An extension 44 of the transport system 40 indicates that the device can have further storage devices or other devices such as a shredder.
  • the storage devices 50, 60, 51, 61, 52, 62 can be formed, for example, by known spiral compartment stackers.
  • the spiral stackers have rotating units 50, 51, 52 with spirally arranged compartments into which the sheet material is introduced by the transport system 40.
  • the sheet material is removed from the individual compartments by means of a scraper device which engages in the rotating unit and is deposited and stacked in trays 60, 61, 62.
  • the separating device 10 which consists of the input compartment 10 and the separator 20
  • the individual pieces of sheet material contained in the stack of sheets are separated by the separator 20 and fed to the transport system 40 in order to be checked in the testing device 30 to become.
  • the sheet material is, for example, banknotes and these are to be sorted according to their condition
  • banknotes which have been recognized as genuine and whose condition is very good are stored in the storage device 51, 61.
  • Banknotes that have been recognized as genuine and are in good condition are deposited in the depositing device 52, 62.
  • Banknotes that have been recognized as genuine, but whose condition is bad are transported by the transport system 40, for example, via the extension 44 into a shredder, in order to be destroyed immediately.
  • the control device contained in the checking device 30 or the separate control device detects how many banknotes have been classified as very good, good or bad and have been fed to the corresponding storage devices or the shredder.
  • the denomination of the individual banknotes is recognized and in addition information about the denomination of the individual banknotes and the total value of the banknotes fed to the individual storage devices and the shredder is determined and stored for later evaluation.
  • Sheet material or banknotes which cannot be recognized by the test device 30, or whose processing in the test device 30 causes problems or whose detection is incomplete, so-called rejection, are stored and stacked in the storage device 50, 60 ,
  • the control device contained in the test device 30 or the separate control device activates a transport device 70 which is connected to the storage device 60 of the storage device 50, 60.
  • the transport device 70 is connected to the separating device 10, 20 and guides the sheet material contained in the deposit 60, or the bank notes, to the input compartment 10 of the separating device. tion 10, 20 to.
  • the sheet material or the banknotes are now again separated by the separator 20 and fed to the transport system 40 in order to be checked again by the checking device 30.
  • Banknotes can then be processed again as described above, i.e. they are again fed to the separating device 10, 20. It is also possible for the bank notes to be removed from the deposit 60 after being checked one or more times in order to be reworked by hand.
  • the banknotes that were recognized as faulty or incorrect are fed again directly into the transport system 40 in front of the checking device 30, so that they can be fed without renewed separation can be added again to the test device 30.
  • the individual 20 is stopped, so that the feeding of the banknote into the transport system 40 is possible.
  • separating device 10 it is also possible to feed the banknotes recognized as incorrect or incorrect without collecting them in the deposit 60 directly to the input compartment 10 of the separating device 10, 20.
  • a separating device is used in which the stack of sheet material inserted is not separated from above by the separating device, but from below. Faulty or incorrect banknotes can thus be placed directly on the stack of sheets, whereby the original order of the banknotes or sheets is retained.
  • the device 1 for processing sheet material is used to process sheet material or banknotes in a predetermined orientation.
  • banknotes should be placed face up. Banknotes that have a different orientation are recognized by the test device 30 or their detection is not possible since only test data for the specified orientation are available.
  • Banknotes of this type are transported under control of the control device of the checking device 30 in the transport system 40 to the switch 41 and transferred to the storage device 50, 60.
  • the banknotes collected in the deposit 60 are then, as described above, fed again by the transport device 70 to the separating device 10, 20.
  • the transport device 70 can additionally have a turning device which turns the banknotes so that they have the desired orientation and can be processed accordingly by the device 1 for processing sheet material.
  • control device contained in the test device 30, or the separate control device which stores data, for example the data of the sensors, which are obtained when checking the sheet material or the banknotes.
  • This data is of particular interest for the bank notes which cannot be checked or which are recognized as being faulty, since these data can be used in the re-check described above, the data recorded and available during the re-check with the stored data of one or more coordinate and compare previous reviews.
  • the sheet material or the banknotes may be checked correctly by means of the data combined in several checks.
  • accounting data can also be saved.
  • billing data are, for example, the data already mentioned above, such as Number of banknotes fed to the individual storage devices or their value. As described above, this data can be stored in the control device of the test device 30 or in the separate control device.
  • the saved accounting data is updated when the banknotes are checked again, i.e. the banknotes recognized during the renewed check are added to the respective accounting data for the individual storage devices or the value is changed in accordance with the recognized banknote.
  • the sheet material to be checked again, or the bank notes to be checked again is transferred by means of the transport device 70 into an input compartment 110 of the further device 100.
  • the area of the storage device 50, 60, the transport device 70 and the further input device 110 is inaccessible to the operator, since no accounting data could be determined for the sheet material contained therein. Attempts to defraud can thus be avoided.
  • FIG. 2 shows a schematic illustration of an embodiment of the device 100 for processing sheet material.
  • the further device 100 has a separator 120 which, together with the input compartment 110, forms a further separating device 110, 120.
  • the sheet material separated by the separator 120 is fed to a further transport system 140 and checked by means of a further testing device 130.
  • the function of the further test device 130 essentially corresponds to the function of the test device 30 described above in connection with the device 1.
  • the sheet material checked by the further test device 130 is further stored devices 150, 160, 151, according to the test result of the further test device 130.
  • the further test device 130 can be constructed essentially like the test device 30 that was described in connection with the device 1. This means that the further test device 130 contains sensors which check the same characteristics of the sheet material or the bank notes as the sensors contained in the test device 30. In addition, it can be provided that in the further test device 130 sensors are provided which check the features of the sheet material or the banknotes which differ from the features checked in the test device 30.
  • the further test device 130 may contain sensors that measure the weight of the sheet material to be checked, sensors that perform an odor analysis or sensors that perform a chemical analysis.
  • the further transport system 140 transports the sheet material or the banknotes in the direction of its short side, whereas they are in the transport system 40 of the device 1 can be transported in the direction of its long side.
  • the sheet material or the bank notes are checked in the further checking device 130 along the short side, whereas they are checked in the checking device 30 along the long side.
  • the transport devices 40 and 140 can also work in reverse, ie the transport device 40 transports the sheet material along its short side, whereas the transport device 140 transports the sheet material along its long side.
  • the sheet material or the bank notes are transported in the devices 1 and 100 at different speeds.
  • billing data can be ascertained in the further checking device 130, which relates to the banknotes or sheet material which have been transferred to the further storage devices 150, 160, 151, 161, 162, 180 and for completing the entire accounting data are transmitted to the test device 30 in order to supplement or change the accounting data already stored there.
  • the further checking device 130 can also be designed to carry out a static check of the sheet material or the banknotes. For this purpose, it is possible for the further transport system 140 to be stopped when there is a piece of sheet material or a bank note in the area of the test device 130.
  • a further possibility is to illuminate the transported sheet material by means of flash light or by means of stroposcopic lighting and to evaluate it by means of the sensors in the test device 130.
  • Sheet material or bank notes that were identified as faulty or incorrect after repeated checking can be removed from the tray 60 of the device 1 or the tray 162 of the device 100 and can be reworked in a known manner.
  • an external test device can be provided, to which the data of the test are transmitted by the test devices 30 and 130 in order to present them to an operator. For example, images taken from the sheet material can be displayed on a monitor so that the operator can evaluate them.
  • the external test device can also have an input device that allows the operator to enter the result of the manual check.
  • the external test device can also be arranged at remote locations, ie not in the immediate vicinity of devices 1 and 100, e.g. B. in a central bank.
  • the data of the check are then transmitted using known transmission equipment to the location of the external test facility.
  • the manual check can be carried out, for example, by checking the transmitted data or by checking the faulty or incorrect sheet material itself.
  • the data entered in this way represent accounting data which are transmitted to the control unit of the test device 30 or the separate control unit and which supplement or change the accounting data stored there.
  • sensors can be provided in the test device 130, which enable a sensory check by an operator.
  • the information about the sheet material, such as stiffness, strength, roughness, etc., recorded by the sensors, is transmitted to the external test device and made accessible to the operator.
  • a glove can be used for this, which enables the operator to carry out sensory checks, such as by scanning and sensing the sheet material.
  • the transport system 140 is stopped while the sheet material to be checked is in the further test device 130.
  • the transport system 130 is then only reactivated when, after the check, the check result is entered by the operator using the input device.
  • the test device 30 can furthermore have a sensor which determines whether more than one piece of sheet material has been removed at the same time. If it is determined by the sensor that there are exactly two pieces of sheet material that have been pulled together from the stack of sheet goods by the separating device 10, 20, it can be caused that the two the pieces of sheet material connected to one another are deposited in the storage device 50, 60 via the transport system 40 and the switch 41. The pieces of sheet material which are connected to one another are turned by means of the transport device 70 and the turning device described above, and are again input into the separating device 10, 20. When it is separated again, it is then possible either for the two connected pieces of sheet material to separate and be examined individually, or for them to be examined from the other side. In this way it is possible by means of the test device 30 to correctly check the two connected pieces of sheet material.
  • the shredder 180 contained in the further device 100 can be used to destroy sheet material which was recognized as genuine during the examination in the further test device 130.
  • the shredder is preferably fed sheet material which is genuine but does not meet certain criteria, such as, for example, contamination or condition.
  • the shredder 180 can also destroy all of the sheet material fed to the device 100. The recording of the individual characteristics described above can be carried out for all pieces of paper that have been destroyed.
  • the described device 1 for processing sheet material or the further device 100 for processing sheet material can also be suitable for so-called deposit processing.
  • the sheet stack contains several different individual stacks, which are separated from one another, for example, by means of separating cards.
  • the separation cards can contain information that identifies the individual partial sheet stacks, the so-called deposits.
  • This data can include, for example, an account number which the banknotes forming the stack of sheets - lo ⁇
  • information about the stack of sheets can be contained on the separating card, e.g. B. what denomination and what number of banknotes are contained in the stack of sheets.
  • the information on the separation card can e.g. B. be optically or magnetically encoded and, for example, detected by the sensors of the test devices 30 and 130.
  • the separating cards are deposited after separation by the separator 20 or 120 in the storage device 60 or 162, in which the wrong or faulty banknotes are filed.
  • the wrong or faulty banknotes of the associated deposit are then placed on the separation card. If no false or incorrect banknotes appear in a deposit, the separation card of the next deposit is placed directly on the separation card of this deposit, without there being any between these banknotes. It is therefore clearly possible to trace the origin of incorrect or incorrect banknotes.
  • the transport device 70 It is also possible to feed the stack of separating cards and banknotes or sheet material formed in this way again to the separating device 10, 20, for which purpose the stack is transferred into the input compartment 10 by means of the transport device 70, the stack of banknotes using the turning device of the transport device 70 is turned in order to get into the separating device 10, 20 in the original order. If the further processing of the stack formed in this way is to take place in the further device 100, it is not necessary to turn the stack, since the separating device 110, 120 of the further device 100 separates the stack from below. In a further embodiment it is provided that one device 100 is provided for several devices 1. In this case, the transport device 70 must be designed such that it transports the sheet material accumulated in the storage devices 50, 60 of the individual devices 1 to the input tray 110 of the further device 100.
  • Figure 3 the embodiment of Figure 1 is shown as a flow chart.
  • the comparable elements in Figures 1 and 3 have the same reference numerals.
  • a first automatic check 1 sheet material is separated 10, 20, transported 40 and checked 30. If the sheet material can be clearly assigned 41, 2, 43, it is filed 51, 61 or 52, 62 or 44. Cannot be clearly assigned 41 are made, the sheet material is deposited 50, 60 in order to be fed 70 again for a check 1.
  • the recheck can be another automatic check 100.
  • sheet material is isolated 110, 120, transported 140 and checked 130. If the sheet material can be clearly assigned 141, 142, 143, it is deposited 150, 160 or 151, 161 or destroyed 180. Cannot be uniquely assigned 141 , 142, 143, the sheet material is deposited 162. This sheet material can be reworked manually.
  • a further improvement can be achieved if a marking device, e.g. B. an inkjet printer, after which or the test devices 30, 130 is attached, which marks the sheet material which cannot be clearly assigned.
  • the marking can e.g. B. in the form of a machine-readable bar code or in the form of plain text.
  • an ink is suitable for this, which cannot be perceived by the eye of an observer, e.g. B. a fluorescent ink.
  • the leaf material can after of the first and / or repeated check are marked by the marking device.
  • the sheet material With the help of an appropriate coding of the marking applied to the sheet material, the sheet material can be clearly identified in subsequent repeated checks. This makes it possible to clearly relate measurement results from various checks.
EP01957862A 2000-06-20 2001-06-18 Dispositif de traitement de produits en feuille Expired - Lifetime EP1297498B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE10030221 2000-06-20
DE10030221A DE10030221A1 (de) 2000-06-20 2000-06-20 Vorrichtung zum Bearbeiten von Blattgut
PCT/EP2001/006854 WO2001099059A1 (fr) 2000-06-20 2001-06-18 Dispositif de traitement de produits en feuille

Publications (2)

Publication Number Publication Date
EP1297498A1 true EP1297498A1 (fr) 2003-04-02
EP1297498B1 EP1297498B1 (fr) 2004-05-26

Family

ID=7646286

Family Applications (1)

Application Number Title Priority Date Filing Date
EP01957862A Expired - Lifetime EP1297498B1 (fr) 2000-06-20 2001-06-18 Dispositif de traitement de produits en feuille

Country Status (6)

Country Link
US (1) US7152744B2 (fr)
EP (1) EP1297498B1 (fr)
AT (1) ATE268033T1 (fr)
AU (1) AU2001279670A1 (fr)
DE (2) DE10030221A1 (fr)
WO (1) WO2001099059A1 (fr)

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WO2001099059A1 (fr) 2001-12-27
EP1297498B1 (fr) 2004-05-26
ATE268033T1 (de) 2004-06-15
US7152744B2 (en) 2006-12-26
US20040225407A1 (en) 2004-11-11
AU2001279670A1 (en) 2002-01-02
DE10030221A1 (de) 2002-01-03
DE50102421D1 (de) 2004-07-01

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