EP2524359A1 - Système d'acheminement de billets de valeur vers une unité de transport de billets de valeur à l'aide d'une station d'accouplement - Google Patents

Système d'acheminement de billets de valeur vers une unité de transport de billets de valeur à l'aide d'une station d'accouplement

Info

Publication number
EP2524359A1
EP2524359A1 EP11703157A EP11703157A EP2524359A1 EP 2524359 A1 EP2524359 A1 EP 2524359A1 EP 11703157 A EP11703157 A EP 11703157A EP 11703157 A EP11703157 A EP 11703157A EP 2524359 A1 EP2524359 A1 EP 2524359A1
Authority
EP
European Patent Office
Prior art keywords
value
notes
data
unit
docking station
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
EP11703157A
Other languages
German (de)
English (en)
Other versions
EP2524359B1 (fr
Inventor
Dirk Brexel
Oliver Dietz
Dietmar Molitor
Frank Lenzner
Yvonne STÖCKLE
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.)
Wincor Nixdorf International GmbH
Original Assignee
Wincor Nixdorf International 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 Wincor Nixdorf International GmbH filed Critical Wincor Nixdorf International GmbH
Publication of EP2524359A1 publication Critical patent/EP2524359A1/fr
Application granted granted Critical
Publication of EP2524359B1 publication Critical patent/EP2524359B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • 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
    • G07D11/10Mechanical details
    • G07D11/12Containers for valuable papers
    • 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
    • G07D11/10Mechanical details
    • G07D11/12Containers for valuable papers
    • G07D11/125Secure containers

Definitions

  • the invention relates to a system for taking notes of value from at least one security deposit unit and / or for supplying notes of value to the security deposit unit.
  • the security deposit unit is a cash box which is used in apparatus for handling bank notes, in particular in ATMs, automatic cash systems and / or automatic cash safes.
  • the banknotes for the payment are stored and / or the deposited banknotes are added. If a regular replacement is planned or if the cashbox has reached a minimum level or a maximum level, the cashbox is removed from the device for handling securities by a value-transporting company and fed to a cash center in which the cashbox is emptied and / or newly filled with notes of value.
  • the emptying and / or filling of the cashbox in the cash center is done manually via service employees of the transport company by a lid of the cashbox is opened and the bank notes taken and / or new banknotes are filled.
  • the system comprises a docking station which has a receiving area not secured by a vault for accommodating the security deposit unit and a control unit for controlling the docking station.
  • the docking station comprises a first transmitting and / or receiving unit for transmitting and / or receiving data, wherein this transmitting and / or receiving unit is connected to the data transmission unit via a data transmission element for transmitting received and / or transmitted data.
  • the security delivery unit has a storage element for storing data and a second sending and / or receiving unit for sending and / or receiving data.
  • the security deposit unit In a first operating state, the security deposit unit is accommodated in the receiving area of the docking station and a data transmission connection is formed between the two transmitting and / or receiving units, via which data can be transmitted between the security deposit unit and the control unit. In a second operating license stand, the security deposit unit is located outside the receiving area of the docking station and formed no data transmission connection between the two transmitting and receiving units.
  • a docking station By providing a docking station, a defined position of the value ticket transport unit is achieved, in which the value ticket transport unit can be easily and / or automatically removed and / or supplied with notes of value.
  • the provision of the two transmitting and / or receiving units and the data transmission connection between them in the first operating state ensures that data can be transmitted in a simple manner between the security deposit unit and the docking station. In this way, in particular, the memory element of the value note transport unit can be read out in a simple manner and / or new data can be written to the storage element of the security transport unit.
  • the security deposit unit is a cash box in which the bank notes are stored in stacked form.
  • the cash box is a so-called recycling money cassette, which can be supplied with notes of value as well as with notes of value.
  • the security deposit unit may also include a reel storage.
  • the docking station is designed such that in their receiving area also Safebags can be recorded.
  • the receiving area of the docking station is designed such that all transport containers used for the transport of banknotes, in particular cash boxes, reel storage and safebags, can be accommodated in it.
  • the first transmitting and / or receiving unit comprises a first connector
  • the second transmitting and / or receiving unit comprises a second connector designed to be complementary to the first connector.
  • a plug connection is made between the two connectors, via which the data can be transmitted.
  • the first connector is that connector via which the security transport unit is also connected to an ATM or other device for handling bank notes when it is inserted in the safe of the ATM or another device.
  • the data transmission connection between the value ticket transport unit and the control unit can also be designed to be wireless.
  • the security delivery unit may comprise an RFID chip.
  • the Wertscheintransporttician in particular has a first opening through which the Wertscheintransportiser notes are fed and withdrawn when the Wertscheintransportiser is used in an ATM, an automatic cash box and / or an automatic POS system and a second closable via a lid opening for manual removal and / or for manual delivery of banknotes.
  • the second opening is arranged in particular on the upper side of the value note transport unit, so that the notes of value can be removed and returned manually in a simple manner. Alternatively, the notes of value on the second opening can not be removed manually and with the help of a robot and supplied.
  • the bill transport unit particularly includes a sensor for detecting opening of the lid. If an opening of the cover in the second operating state is detected by the sensor, manipulation data are stored in the memory element which contain information that the cover has been opened unauthorized.
  • the manipulation data includes a time stamp indicating the time of unauthorized opening of the lid in the second operating state.
  • the control unit transmits release data via the data transmission connection, so that the cover for manually filling the security delivery unit and / or for manually removing the notes of value can be opened without manipulation data being stored in the storage element. In this way, it is achieved that, in the second operating state, that is to say when the value note transport unit is removed, an unauthorized opening of the cover, and thus possible manipulation attempts, are registered and can be tracked in a timely manner.
  • By transferring the release data it is achieved that the cover can be opened in the cash center during the scheduled filling and / or emptying of the security transport unit without falsely storing manipulation data in the memory element.
  • the docking station comprises a footprint for setting up the docking station and if the receiving area has a bearing surface on which rests in the first operating state Wertscheintransportiser, and if the footprint and the support surface an angle between 10 ° and 60 °, in particular 20 ° to have each other.
  • the angle between the footprint and the support surface is achieved that the banknotes in a cashbox in which the banknotes are stacked, can not tip over when you open the lid, so that the notes of value can be removed and fed in a simple manner manually.
  • the system can comprise a separating and / or stacking module for automatically feeding in notes of value through the first opening and / or for removing the notes of value from the security deposit unit through the first opening.
  • a separating and / or stacking module for automatically feeding in notes of value through the first opening and / or for removing the notes of value from the security deposit unit through the first opening.
  • the first opening can be closed in particular via a shutter which is closed in the second operating state, so that unauthorized access to the notes of value received in the security deposit unit is not possible, and is opened in the first operating state, so that notes of value can be transported through the first opening ,
  • the Wertscheintransportussi includes in particular a sensor for detecting an opening of the blind, wherein manipulation data are stored in an opening of the blind in the second operating state in the memory element and in the first operating state, the control unit transmits via the data transmission connection release data, so that the blind for filling the Wertscheintransportiser and / or can be opened to remove bills without tampering data stored in the storage element.
  • manipulation data are stored in the memory element only in the case of unauthorized opening in the second operating state.
  • the manipulation data stored in the memory element which characterize an unauthorized opening of the first or the second opening in the second operating state, are transmitted in the first operating state to the control unit and output via a display unit to a service employee. In this way, it is achieved that the service employee is informed about manipulation attempts, and can check whether the actual value stock of Wertscheintransportiser deviated from the target stock and, if necessary, appropriate investigations can be initiated.
  • the manipulation data in the storage element are preferably released, so that the manipulation data are not retransmitted the next time the security deposit unit is inserted into a docking station and thus possibly the same manipulation attempt is repeatedly tracked.
  • data about the state of the security transport unit can be obtained via the data transmission connection, in particular data with information on the stock of the security transport unit on notes of value, data with information on the serial numbers of the notes of value, data with information about the Storage order of the notes of value, data with information on multiple deductions, maintenance data of transport elements of the security transport unit and / or maintenance data of an ink kit of the security transport unit, from the value Apparent transport unit are transmitted to the control unit.
  • the stock of the security transport unit can be checked for notes of value, so as to ensure that the actual stock also coincides with the target stock and does not contribute to any errors the payment of banknotes can come.
  • Transmission of maintenance data ensures that transport equipment, a battery, and / or an ink cartridge macular unit are serviced in a timely manner before malfunctions can occur.
  • the security deposit unit comprises stops for limiting the storage area of the security cassette for storing the notes of value, by means of which the storage area of the security cassette can be adapted to the size and thus the denomination of recorded bank notes.
  • These stops are in particular adjustable in the first operating state, so that the recorded in the Wertscheintransportiser denomination can be changed. If the position of the stops is changed in the first operating state, data with information about the position of the stops and thus data with information about the denomination of the notes of value received in the security transport unit are stored by means of the control unit in the storage element of the security delivery unit.
  • data with information about multiple prints are stored in the memory element.
  • this information includes information on whether and, if so, when and how often multiple deductions have occurred.
  • a multiple deduction is understood when inadvertently at the same time two or more notes of value of the Wertscheintransportiser, when it is used in an ATM, an automatic POS system and / or an automatic cash deposit, were removed. Since such a multiple deduction is uncertain as to how many notes were deducted, the stock of the security transport unit in the form of notes is also unknown.
  • the data with information on multiple prints are transmitted in the first operating state of the memory element to the control unit, wherein the control unit generates in response to this data output data that can be displayed via a display unit, so that a service employee is informed of the occurrence of the multiple prints and he Determine the actual stock of the notes of value recorded in the security of value trans- port by counting the notes and comparing them with the target stock.
  • the control unit operates, in particular, program data of a program for supporting a person charged with filling or emptying the security transport container Service employee, wherein via a display unit during the execution of the program data the service employee instructions are displayed.
  • the display unit is in particular a screen, preferably a touch screen.
  • the service employee can use the display unit to issue an instruction for opening the cover, information about a manipulation, information about a multiple deduction, an instruction for counting the stock of the notes of value received in the security deposit unit, a request to enter the ascertained stock of notes of value Instruction with which banknotes to fill the banknote transport container, and / or maintenance information is displayed.
  • the service employee is guided step by step so that necessary steps are executed in the correct order depending on the information stored in the storage element.
  • the security deposit unit can either be completely emptied and subsequently be refilled with banknotes or alternatively only partially or not emptied and filled up with new banknotes.
  • the storage element may contain information about the denomination of the recorded banknotes, information about the serial numbers of the banknotes, information about the storage order of the banknotes, information about the number of recorded banknotes Stored value notes, data with information about the serial number of the value transport box, the serial number of a destination device, the serial number of a source device and / or the serial number of the last docking station in which the security deposit unit was recorded.
  • the destination device is in particular that ATM, that automatic cash system and / or the one automatic cash deposit in which the security deposit unit is to be recorded next.
  • the source device is, in particular, that ATM, that automatic cash system and / or the automatic cash deposit in which the security deposit unit was last added.
  • electrical energy can also be transmitted via the plug-in connection in order to supply electrical consumers of the value-ticket transport unit. In this way it is achieved that can be dispensed with an additional connection for the transmission of electrical energy.
  • the system comprises a separating and / or stacking module for the automatic feeding of notes of value and / or for taking notes of value from the Wertscheintransportiser and a buffer from which the notes of value can be removed and the Wertscheintransportiser be supplied and / or the the notes of value taken from the Wertscheintransportiser be supplied.
  • the buffer ensures that the banknotes required for filling are available at all times and that bank notes taken from the storage unit for the banknote delivery unit are given.
  • the system comprises a counting device for determining the stock of the security deposit unit on bank notes.
  • the value to be counted is automatically removed and fed to the counting device via a transport path, so that the inventory of notes of value can be automatically determined by the counting device. After the inventory has been determined, the number of notes of value is transmitted in particular to the control unit, wherein the control unit compares the determined stock with a stored in the storage element of Wertscheintransportiser target stock.
  • control unit activates the separating and / or stacking module in such a way that the separating and / or stacking module removes all the notes of value received in the security deposit unit and feeds the target device. Furthermore, it is advantageous if the destination device transmits data with information about the number of notes of value to the control unit. In this way, it is achieved that in the case of a multiple deduction automatically the actual stock of Wertscheintransportiser can be compared to notes with the target stock, and any deviations can be detected.
  • an input and / or output unit is provided for supplying notes of value to the system and / or for removing notes of value from the system. This way, notes of value can not continue in particular, damaged and / or counterfeit banknotes as well as large denomination banknotes should be removed from the value-ticket cycle and new banknotes should be added to the value-added cycle.
  • the input and output unit is designed in particular such that both cash boxes and safebags can be received in a receiving area.
  • both pure deposit-value transport containers and recycled value-ticket transport containers can be handled and they can be filled and emptied in a value-ticket circulation.
  • Under Deposit-Wertscheintransport capableer value bank transport be understood that are filled in a device for issuing bank notes exclusively with banknotes and after filling with the banknotes only emptied but not refilled.
  • recycled banknote transport containers are again filled with notes of value after emptying and / or can both receive and issue notes of value when they are received in a device for handling notes of value. In this way, it is achieved, in particular, that only one value-ticket cycle is necessary, and thus an effective cash-cycle management is achieved.
  • the system comprises a plurality of docking stations and a plurality of separating and / or stacking modules, each dunking station each having a separating and / or stacking module.
  • Dul is assigned, which serves for supplying and for taking notes of value from a recorded in a docking Wertscheintransportussi.
  • value-note transport units accommodated in the docking stations can be fed and / or removed, in particular, at the same time. In this way it is achieved that per unit of time a larger number of value note transport units can be emptied and / or filled.
  • the withdrawn notes of value or the notes of value required for the filling are taken in particular from a single central buffer store or supplied thereto, so that overall a very effective cash cycle management is realized.
  • Figure 1 is a schematic representation of a system for
  • Figure 9 is an illustration of a sixth instruction issued by a display unit
  • Figure 10 is a schematic perspective view of a docking station
  • Figure 11 is a side view of the docking station of FIG.
  • Figure 12 is a front view of the docking station
  • FIG. 13 is a schematic perspective view of a connector of the docking station
  • Figure 14 is a schematic representation of a system for
  • FIG. 15 shows a section of a system for removing
  • FIG. 16 shows a further schematic representation of a detail of a system for supplying and withdrawing notes of value to a value note transport unit
  • FIG. 17 shows a schematic representation of a detail of a system for supplying and removing notes of value to a value note transport unit according to a further embodiment of the invention
  • Figure 18 is a schematic representation of a system for
  • Figure 19 is a schematic representation of a system for
  • FIG. 1 shows a schematic representation of a system 10 for taking notes of value from a security transport unit embodied as a cash box 12 and / or for supplying notes of value to the cash box 12.
  • the banknotes are in the cashbox 12 in particular in stacked form in one or more Kay- Ehern filed.
  • the cash box 12 may also include a reel storage for storing the notes of value.
  • a safebag can additionally or alternatively be provided, from which the notes of value are taken.
  • the system 10 comprises a docking station 14 which has a receiving area 16 in which the cash box 12 is received in the operating state shown in FIG. 1 and is thus docked to the docking station 14.
  • the operating state shown in Figure 1 is therefore also referred to as a docked operating condition.
  • the cash box 12 is separated from the docking station 14 and thus not received in the receiving area 16.
  • the cash box 12 comprises a storage element 18, in which for the handling of the cash box 12 relevant logistical information is stored.
  • the memory element 18 are in particular data with information about the denomination of the notes in the cashbox 12, the number of notes of value, information about possible manipulation attempts, information on possible multiple deductions, maintenance data for the cashbox 12, a cash box ID, the target device for the the cash box 12 is determined, a serial number of the last docking station 16 in which the cash box 12 was received, and / or a serial number of the last device in which the cash box 12 was recorded stored.
  • the memory element 18 is connected to a first via a data connection 20
  • Plug connector 22 is connected, which in the docked operating state shown in Figure 1 with a complementarily formed to him second connector 24 of the Dockingsta- tion 14 is engaged, so that between the connectors 22, 24 a connector is formed, can be transmitted via the data
  • other transmitting and / or receiving units may be provided instead of connectors 22, 24.
  • both the cashbox 12 and the docking station 14 may have a transmitting and / or receiving unit for the wireless transmission and / or reception of data.
  • the cash box 12 may in particular comprise an RFID chip.
  • the system 10 further comprises a data processing unit 26, which in turn comprises a control unit 28 which is connected via a data transmission element 30 to the second connector 24, so that transferred via the connector 22, 24 connector data between the memory element 18 of the control unit 28 can be.
  • the control unit 28 is for control the docking station 14.
  • the data processing unit 26 is in particular a computer.
  • the cash box 12 comprises a first opening (not shown) and a second opening (also not shown), the second opening being closable by a lid and used for manual removal and manual feeding of banknotes.
  • the first opening is closed by a shutter and is used for removal and for supplying notes of value when the cash box 12 is inserted in an ATM, an automatic cash register system and / or an automatic cash deposit.
  • both the lid and the blind are firmly locked, so that unauthorized access to recorded in the cashbox 12 banknotes is not possible or difficult.
  • Both the cover and the blind are secured by a sensor which detects the lid and / or the blind in the undocked state and in such a case manipulation data with information about the manipulation, in particular also information about the time in the memory element 18 stores.
  • the undocked state is in particular that state in which the cashbox 12 is transported between different ATMs, automatic cash systems, automatic cash safes and / or a cash center for filling and / or emptying the cashbox 12.
  • the system 10 is arranged, in particular, in a cash center, wherein in the docked state of the cashbox 12 notes of value are taken and / or notes of value are supplied.
  • the cashbox 12 is particularly complete emptied and refilled on schedule. Alternatively, only a part of the bank notes 12 arranged in the cash box 12 can be removed and the cash box 12 merely filled up. It is also possible that no notes of value of the cash box 12 are removed and only additional notes of value are supplied.
  • release data is transmitted to the cash box 12 by the control unit 28 via the plug connection, so that the cover of the second opening can be opened without manipulation data stored in the memory element 18.
  • any ink kit that may be present in the cashbox 12 is deactivated, which would trigger the cashbox 12 if the cashbox 12 were opened unauthorizedly and would render the banknotes received in the cashbox 12 unusable by discoloration.
  • the lid of the cashbox 12 can be opened without an unauthorized access is reported, so that notes of value can be removed from the cashbox 12 and new notes of the cashbox 12 can be supplied.
  • the removal of the notes of value and the filling of the cash box 12 with new notes of value is carried out in particular by a service employee of a value-transporting company.
  • the system 10 may also include a robot that extracts and / or feeds the notes of value through the second opening.
  • multiple deduction data is transmitted, indicating whether in the operation of the cashbox 12 since the last time emptying and filling in a docking station 14, a multiple deduction has occurred.
  • a multiple deduction is understood here when several notes of value were simultaneously withdrawn from the cash box 12 during operation in an ATM. Such a multiple deduction causes the stock of notes stored in the storage element 18 to become incorrect if it can not be determined how many notes were actually withdrawn. Should the read-out of the memory element 18 show that a multiple trigger and / or a manipulation attempt has taken place, the control unit 28 transmits this information to a display unit 32 which displays the corresponding information to the service employee of the value-transporting company so that he can act accordingly.
  • the display unit 32 is in particular a screen via which the employee is shown the corresponding information.
  • the data processing unit 26 comprises an input unit 34, via which the service employee can enter information into the data processing unit 26.
  • the display unit 32 and the input unit 34 are in particular integrally formed, preferably in the form of touchscreens.
  • the inventory of the cashbox 12 is read out of the storage element 18 of notes of value.
  • maintenance data can be read out and displayed to the service employee via the display unit 32 so that the latter, if necessary, can initiate the steps necessary for the maintenance.
  • the service employee removes all banknotes in the cash box 12 and feeds them to a counting device 36, which determines the stock of the bank notes.
  • the counting device 36 is in particular connected via a data transmission element 31 to the control unit 28, and transmits the determined actual stock of notes of value to the control unit 28, which compares the actual stock with the target stock stored in the storage element 18.
  • the counting device 36 can also comprise a display unit, and display the actual stock of notes of value to the service employee, who in turn enters the actual stock via the input unit 34 into the data processing unit 26, so that in the control unit 28 the actual value with the debit Stock can be compared.
  • the service employee triggers a search request to determine how this variance occurred. Additionally or alternatively, this search request can also be triggered automatically by the control unit 28.
  • the control unit 28 is connected to a central server 38, a so-called cash management server.
  • the cash management server 38 is used to manage the securities in a cash cycle management, of which the system 10 is part. In particular, the cash holdings of cash dispensers and cash boxes are managed via the cash management server and the filling and emptying intervals are optimized from various points of view. From the cash management server 38 data is transmitted to the control unit 28, which contains information about how many notes in which denomination the cash box 12 is to be filled.
  • the control unit 28 outputs corresponding information via the display unit 32 to the service employee, so that the latter knows which notes of value he has to supply to the cash box 12.
  • an order-related filling of the cash box 12 is made possible via the cash management server, that is to say that the cash box 12 may also be partially filled.
  • the service employee enters this information via the input unit 34 and the control unit 28 stores the data with the recorded denomination of the notes of value and the number of supplied notes in the storage element 18 of the cash box 12.
  • the service employee closes the lid and confirms the filling of the cashbox 12 via a corresponding input via the input unit 34. Subsequently, the cashbox 12 of the docking station 14 can be removed and an automatic teller machine, an automatic checkout system and / or an automatic cash drawer be supplied.
  • the control unit 28 works in the previously described removal and / or filling of the cashbox 12 with notes of value, in particular program data of a program for supporting the service employee during filling and emptying of the cashbox 12 from.
  • the individual steps that are executed here will be described in more detail in the following in connection with FIGS. 3 to 9.
  • FIG. 2 shows a schematic representation of a system 40 for feeding notes of value to a cash box 12 or for removing notes of value from the cash box 12 according to a second embodiment of the invention. Elements with the same structure or the same function have the same reference numerals.
  • no separately arranged data processing unit 26, in particular no computer is provided in the system 40, but the control unit 28, the display unit 32 and the input unit 34 are components of the docking station 14. In this way, a simple and compact construction of the system 40 achieved.
  • FIG. 3 shows a flow diagram of a method for taking notes of value from a cash box 12 and for filling the cash box 12 with other bank notes. The process is started in step S10.
  • step S12 the cash box 12 is inserted into the receiving area 16 of the docking station 14, and then in step S14, the connector between the first connector 22 and the second connector 24 is made.
  • the receiving area 16 of the docking station 14 is designed in particular such that the plug connection between the connectors 22, 24 is automatically produced automatically when inserting the cash box 12 into the receiving area 16.
  • step S16 the data stored in the memory element 18 are read out in step S16 and transmitted to the control unit 28 via the plug connection.
  • step S18 it is then determined by the control unit 28 on the basis of the data read out, whether a manipulation and / or multiple deduction has taken place since the last filling and / or emptying of the cash box 12 at the docking station 14. If a manipulation attempt and / or a multiple deduction have taken place, the notes of value are then removed from the cash box 12 in step S20 and subsequently supplied to a counting device 36 in step S22, in which the actual stock of the notes of value is determined. Subsequently, the determined actual inventory is transmitted to the control unit 28, and stored in the memory element 18 and in the step S16 read target stock.
  • step S24 If this comparison in step S24 reveals that there is a deviation between the actual stock and the target stock, a search request is triggered in step S26 in which it is to be determined what has happened for a manipulation and / or why a multiple deduction occurs is. Subsequently, in step S28, the stock of the cashbox 12 stored in the storage element 18 is set to zero on notes of value.
  • step S24 If, in step S24, the comparison of the actual stock and the target stock shows that there is no deviation, then branching is made directly to step S28 and the stock in the storage element 18 is set to zero.
  • step S29 If the evaluation of the data read out in step S16 in step S18 reveals that no manipulation and no multiple printing has taken place, it is checked in step S29 whether recounting is nevertheless desired or not. For this purpose, in particular, a corresponding query is displayed via the display unit 32, wherein the service employee must enter via the input unit 34, whether a recounting should be done or not. Should a re-counting be desired, the process goes to step S20. If a re-counting is not desired, the notes of value are removed in step S30 before proceeding to step S28 and without prior counting of the stock, the stock of notes stored in the storage element 18 is set to zero.
  • step S32 it is determined in step S32, whether a filling of the cash box 12 is desired.
  • the control unit 28 in particular evaluates data transmitted by the cash management server 38 with information about the desired filling of the cashbox 12. If a refilling of the cash box 12 is provided, the number and the denomination of the notes of value to be supplied to the cash box 12 are displayed in step S34.
  • the service agent After the service agent has supplied the desired number of notes to the cash box 12 in step S36 and has closed the lid of the second opening, the service agent enters a confirmation via the input unit 34 in step S38, whereupon the control unit 28 enters the new stock of cash in step S40 in the memory element 18 stores. Subsequently, the cash box is removed from the docking station 14 in step S42 and thereby the plug connection between the connectors 22, 24 separated.
  • step S32 If, on the other hand, it should be determined in step S32 that no refilling is desired, the process goes directly to step S42 and the cash box 12 is removed from the docking station 14.
  • Monetary- cassette 12 can now be the designated ATM, the provided automatic cash deposit and / or provided automatic cash register system.
  • the banknotes of the cashbox 12 can also be supplied without having previously taken out all notes of value. Only in the presence of a multiple deduction and / or a manipulation attempt, it is imperative to remove all banknotes of the cashbox, so as to determine the current stock.
  • Figures 4 to 9 show illustrations of instructions displayed to the service person via the display unit 32, which assist the service employee in draining and filling the cash box 12 and guiding it step by step, so that the error probability is reduced.
  • the service employee Via the display shown in FIG. 4, the service employee is requested to insert a cash box 12 into the receiving area 16 of the docking station 14.
  • the service employee is informed via the display shown in FIG. 5 that the read-out of the storage element 18 of the cashbox 12 has revealed that a manipulation attempt of the cashbox 12 has taken place since the last time the cashbox 12 was inserted into a docking station 14. Furthermore, the service technician is prompted by pressing a button on a touch screen. showed OK button 42 to confirm the progress of the procedure. Alternatively, the button can also be activated via a pointing device, such as a computer mouse, or an external keyboard.
  • the service employee is informed via the display shown in FIG. 6 that the stock of the cashbox 12 is not secured on banknotes. This may be the case if the readout of the memory element 18 has revealed that a manipulation attempt and / or a multiple trigger has taken place. Therefore, the service employee is prompted to open the lid of the cash box 12, to count the notes of value, to determine the actual stock, and to compare the determined actual stock with the target stock.
  • the service employee can enter via field 46 how many banknotes in which denomination he has supplied to the cashbox 12, so that after confirming the entries via the OK button 44, the control unit 28 receives data with corresponding information in FIG can store the memory element 18.
  • the service employee is requested to remove the cash box 12 from the dunking station 14. Via the display shown in FIG. 9, the service employee is informed that the cashbox 12 is not functioning. is proficient and the service employee is requested to remove the cash box 12 and to inform a competent technician.
  • FIGS. 4 to 9 are merely exemplary and serve to illustrate the program with which the service employee is guided step by step during the filling and emptying by the execution of the program data of the control unit 28. Both the optical design of the display, as well as the contents of the displayed information may be formed differently than shown in Figures 4 to 9.
  • FIG. 10 shows a schematic perspective view of a docking station 14.
  • the receiving area 16 of the docking station 14 is limited by three wall elements 50 to 54 and by a support surface 56.
  • the cash box 12, not shown in FIG. 10 is inserted into the receiving area 16 in the direction of the arrow PI, wherein the cash box 12 rests on the supporting surface 56 in the docked state. Furthermore, the cash box 12 is guided over rails arranged laterally on the wall elements 50, 52, one of which is denoted by the reference numeral 58 by way of example.
  • a plug connection between the connector 22 of the cashbox 12 and the connector 24 of the docking station 14 is automatically made.
  • the docking station 14 includes a footprint 60 on which the docking station 14 is set up.
  • the support surface 56 and the support surface 60 preferably have an angle in the range between 10 ° and 60 ° to each other.
  • This angled support surface 56 ensures that in the recorded in the docking station 14 cash box 12 stacked notes of value can not tip over when you open the lid, but remain in stacked form in the cashbox 12. In this way, the removal of the notes of value is simplified. In particular, this ensures that if the cashbox 12 is to be supplied only notes of value, without previously recorded notes are removed, this is easily possible without the inclusion of new notes of value is overturned by overturned already recorded notes of value.
  • the docking station 14 comprises a red LED 62 and a green LED 64, the red LED 62 illuminating when the reading of the data stored in the memory element 18 indicates that a tampering attempt has been made and the green LED 64 lights up unless a tampering attempt is made is.
  • FIG. 11 shows a side view of the docking station 14 according to FIG.
  • FIG. 12 shows a front view of the docking station 14 according to FIGS. 10 and 11.
  • Figure 13 shows a section of the docking station 14 with a view of the connector 24.
  • the connector 24 is in particular constructed identically with those connectors through which the cashbox 12 is connected to an ATM when the cashbox 12 is received in a vault of the ATM.
  • the construction of the connectors 22, 24 and the production of the plug connection between the connectors 22, 24 is known from the document WO 2009 127629 AI, the contents of which are hereby incorporated by reference into the present description.
  • FIG. 14 shows a schematic representation of a system 70 for feeding and / or removing notes of value from a cash box 12 according to a further embodiment of the invention.
  • the banknotes of the cashbox 12 are not manually fed and / or manually removed, but automatically with the aid of a separating and / or stacking module 72 of the docking station 14 supplied first opening of the cashbox 12 and the cashbox 12 removed.
  • the shutter of the first opening is opened when inserting the cashbox 12 into the docking station 14, so that the notes of value of the cashbox 12 removed from the separating and / or stacking module 72 and / or this can be supplied.
  • the separating and / or stacking module 72 is connected via a transport path 74 to a value note buffer 76, in which the cash box 12 withdrawn notes of value are stored and / or are removed from the cash box 12 to be delivered notes of value.
  • a deratiges singulation and / or Stapelungsmoduls is from the document WO 2009/127648 A2, the contents of which are hereby incorporated by reference into the present specification.
  • FIG. 15 shows a section of a system for feeding and / or removing banknotes from cash cassettes according to a further embodiment of the invention.
  • the system according to this embodiment comprises not only one docking station 14 but a total of 16 docking stations in which 16 cash cassettes can be accommodated at the same time.
  • One of these docking stations is exemplarily denoted by the reference numeral 78, one of the recorded cash boxes by the reference numeral 80 by way of example.
  • the docking stations 78 are arranged in a 4x4 matrix, so that a compact design is achieved.
  • more or fewer than 16 docking stations 78 may be provided and / or the designated docking stations 78 may be arranged differently.
  • Each docking station 78 in each case has a separating and / or stacking module, via which the cashbox received in the respective docking station 78 can be supplied with the notes of value and / or removed.
  • the withdrawn banknotes are in particular all fed to a single central value note buffer 76 and / or the notes of value to be supplied are all taken from a central value note buffer 76.
  • notes of value of different denominations can be stored sorted by denominations.
  • the arrangement 82 consisting of a plurality of docking stations 78 shown in FIG. 15 is also referred to as a rack.
  • FIG. 16 shows a schematic representation of a rack 84 of a system for feeding and / or removing securities from cash boxes according to a further embodiment of the invention.
  • the rack 84 comprises four docking stations 86, in each of which a cash box 88 is received, from which 90 notes of value can be taken and / or notes of value can be fed by means of a respective separation and / or stacking module 90.
  • the separating and / or stacking modules 90 of the docking stations 86 are each connected to the value note buffer 76 via a separate transport path 92 to 98, so that at the same time notes of value are placed between the respective items. lungs and stack modules 90 and the value note buffer 76 can be transported.
  • FIG. 17 shows a schematic representation of a rack 100 according to a further embodiment of the invention.
  • the singulation and / or stack modules 90 are connected to the value note buffer 76 via a vertical transport path 102.
  • a more compact design of the system is achieved.
  • FIG. 18 shows a schematic representation of a section of a system for feeding banknotes to cash cassettes and / or for removing banknotes from cash cassettes according to a further embodiment of the invention.
  • the rack 104 comprises three docking stations 106 to 110, which each comprise a separating and / or stacking module 112 to 116 and are connected to a switch 120 via a transport path 118.
  • notes of value taken from the cash boxes 106 to 110 are supplied to the value note buffer 76 or value notes are stored in the value note buffer 76 and supplied to the notes of value received in the docking stations 106 to 110.
  • FIG. 18 shows a schematic representation of a section of a system for feeding banknotes to cash cassettes and / or for removing banknotes from cash cassettes according to a further embodiment of the invention.
  • the rack 104 comprises three docking stations 106 to 110, which each comprise a separating and / or stacking module 112 to 116 and are connected to a switch 120 via a transport path 118
  • the value note buffer 76 comprises five storage areas 120 to 130, one of which, for example, holds five euro banknotes, one for the receipt of ten euro banknotes, one for the reception of euro banknotes 20 euro banknotes, one to hold 50 euro banknotes and one to accept 100 euro banknotes.
  • the system comprises an input and output unit 132, via which the bank notes taken from the cash cassettes received in the docking stations 106 to 110 can be output from the system, which are not to be stored in the value note buffer 76.
  • Such notes are, in particular, banknotes that are damaged, suspected of being forged, and / or have a high face value, and thus are rarely needed for withdrawal at ATMs.
  • notes of value in particular via safebags, can be supplied to the system via the input and output unit 132.
  • the banknotes stacked in the Safebag are separated during feeding.
  • Notes of value supplied via the input and output unit 132 are temporarily stored, in particular, in the value note buffer 76, before they are then fed into the cash cassettes accommodated in the docking stations 106 to 110 as required.
  • the feeding of notes of value via the input and output compartment is necessary, in particular, when more notes of value are required for filling the cash boxes via the docking stations 106 to 110 than are supplied to the value note buffer 76 by the emptying of the cash boxes received in the docking stations 106 to 110 ,
  • the docking station 106 to 110 can each have a counting device. tion of counting the number of withdrawn notes of value.
  • FIG. 19 shows a schematic illustration of a system 140 for feeding banknotes to cash cassettes and for removing banknotes from cash cassettes according to a further embodiment of the invention.
  • the system 140 includes a first rack 142 that includes four docking stations, one of which is designated by reference numeral 144, by way of example. Through the first rack 142 notes of value can be fed to the system 140. For this purpose, 144 bill transport containers are taken in the docking stations, which notes of value are taken, which are then fed to a value note buffer 76.
  • the banknote transport containers can be cash cassettes, reel storages or safe bags. The bill transport containers can come from both the deposit and the recycling cycle.
  • Memory 76 supplied.
  • the value note buffer 76 comprises 16 storage bins, one of which is denoted by the reference numeral 148 by way of example.
  • the system 140 includes an input tray 150 via which notes of value may be supplied to the system 140 individually or in a batch, the notes deposited via the input tray 150, after being checked by a sensor 146, also being added to the value note buffer 76.
  • the system 140 includes a second rack 150 which, in the exemplary embodiment shown in FIG. 19, comprises 16 docking stations, one of which is denoted by the reference numeral 152 by way of example.
  • the docking stations 152 of the second rack 150 serve for filling the depository transport containers received in them.
  • the docking station 152 of the second rack 150 is connected to the buffer memory 76 via transport paths.
  • the second rack 150 can both empty cash boxes as well as partially filled cash boxes that need only be filled, fed.
  • the cash boxes are filled in particular with about 1400 notes of value.
  • the notes of value required for filling the cash cassettes received in the second rack 150 are taken from the value note buffer 76.
  • the value notes required for this purpose are supplied to the value note buffer 76, in particular via deposit value transport containers, via the first rack 142, preferably via safebags.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Pile Receivers (AREA)
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  • Business, Economics & Management (AREA)
  • Accounting & Taxation (AREA)
  • Finance (AREA)
  • Controlling Sheets Or Webs (AREA)

Abstract

L'invention concerne un système (10) de prélèvement de billets de valeur dans au moins une unité de transport de billets de valeur (12) et/ou d'acheminement de billets de valeur vers l'unité de transport de billets de valeur (12). Le système (10) comporte une station d'accouplement (14) comprenant une zone de réception (16) non sécurisée par un coffre-fort, pour la réception de l'unité de transport de billets de valeur, et une unité de commande (28) pour commander la station d'accouplement (14). La station d'accouplement (14) comporte une première unité d'émission et/ou de réception (24) pour émettre et/ou recevoir des données, la première unité d'émission et/ou de réception (24) étant reliée à l'unité de commande (28) au moyen d'un élément de transmission de données (30). L'unité de transport de billets de valeur (12) comporte un élément mémoire (18) et une deuxième unité d'émission et/ou de réception (12) pour émettre et/ou recevoir des données. Dans un premier état de fonctionnement, l'unité de transport de billets de valeur (12) est reçue dans la zone de réception (16) de la station d'accouplement (14) et une liaison de transmission de données est réalisée entre la première et la deuxième unité d'émission et/ou de réception (22, 24). Dans un deuxième état de fonctionnement, l'unité de transport de billets de valeur (12) est disposée en dehors de la zone de réception (16) de la station d'accouplement (14) de telle manière qu'aucune liaison de transmission de données n'est réalisée entre la première et la deuxième unité d'émission et/ou de réception (22, 24).
EP11703157.5A 2010-01-14 2011-01-14 Système d'acheminement de billets de valeur vers une unité de transport de billets de valeur à l'aide d'une station d'accouplement Active EP2524359B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102010004669A DE102010004669A1 (de) 2010-01-14 2010-01-14 System zum Zuführen von Wertscheinen zu der Wertscheintransporteinheit mit Hilfe einer Dockingstation
PCT/EP2011/050463 WO2011086158A1 (fr) 2010-01-14 2011-01-14 Système d'acheminement de billets de valeur vers une unité de transport de billets de valeur à l'aide d'une station d'accouplement

Publications (2)

Publication Number Publication Date
EP2524359A1 true EP2524359A1 (fr) 2012-11-21
EP2524359B1 EP2524359B1 (fr) 2018-03-21

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US (1) US9214048B2 (fr)
EP (1) EP2524359B1 (fr)
KR (1) KR101903794B1 (fr)
DE (1) DE102010004669A1 (fr)
WO (1) WO2011086158A1 (fr)

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Also Published As

Publication number Publication date
KR101903794B1 (ko) 2018-10-02
US9214048B2 (en) 2015-12-15
EP2524359B1 (fr) 2018-03-21
DE102010004669A1 (de) 2011-07-21
US20120323361A1 (en) 2012-12-20
KR20120123395A (ko) 2012-11-08
WO2011086158A1 (fr) 2011-07-21

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