WO2017145482A1 - Dispositif de manipulation de feuilles de papier - Google Patents

Dispositif de manipulation de feuilles de papier Download PDF

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Publication number
WO2017145482A1
WO2017145482A1 PCT/JP2016/085534 JP2016085534W WO2017145482A1 WO 2017145482 A1 WO2017145482 A1 WO 2017145482A1 JP 2016085534 W JP2016085534 W JP 2016085534W WO 2017145482 A1 WO2017145482 A1 WO 2017145482A1
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WO
WIPO (PCT)
Prior art keywords
withdrawal
paper sheet
banknote
paper sheets
paper
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.)
Ceased
Application number
PCT/JP2016/085534
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English (en)
Japanese (ja)
Inventor
日立オムロンターミナルソリューションズ株式会社
利典 横井
敏文 菅原
唯道 鈴木
利一 加藤
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.)
Hitachi Channel Solutions Corp
Original Assignee
Hitachi Omron Terminal Solutions Corp
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 Hitachi Omron Terminal Solutions Corp filed Critical Hitachi Omron Terminal Solutions Corp
Priority to CN201680078940.XA priority Critical patent/CN108475451B/zh
Priority to JP2018501003A priority patent/JP6584630B2/ja
Publication of WO2017145482A1 publication Critical patent/WO2017145482A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D9/00Counting coins; Handling of coins not provided for in the other groups of this subclass

Definitions

  • the present invention relates to a paper sheet handling apparatus provided with a paper sheet dispensing mechanism or a paper sheet deposit / withdrawal mechanism.
  • the paper sheet handling device includes, for example, a device having only a dispensing mechanism that discharges paper sheets to the user, or an input / output device that discharges paper sheets to the user and stores the paper sheets input by the user. Some devices have a gold mechanism.
  • a paper sheet discriminating unit for discriminating whether paper sheets are suitable for withdrawal based on a predetermined standard, a reject storage for storing rejected paper sheets that do not meet the predetermined standard, and withdrawal paper A storage room for storing leaves is required.
  • Patent Document 1 discloses a dispensing mechanism that discharges paper sheets horizontally from a dispensing port.
  • Japanese Patent Application Laid-Open No. 2003-346221 discloses an apparatus that can be changed so that the deposit function is reduced by setting and only withdrawal is performed.
  • the present invention provides a highly secure paper sheet handling apparatus that reduces costs by reducing the size of the safe, or can replace the upper mechanism of the dispensing mechanism and the upper mechanism of the depositing / dispensing mechanism. It is an object of the present invention to provide a paper sheet handling apparatus that can be diverted to the deposit / withdrawal mechanism at a low cost by using the lower mechanism.
  • a paper sheet handling apparatus includes a dispensing port portion for dispensing paper sheets, a first determination unit for determining whether paper sheets are to be dispensed, and a plurality of storage units for storing paper sheets. And a safe that holds the storage, a withdrawal port, a first determination unit, a conveyance path that connects the storage, and a paper sheet through a hole provided on the upper surface and the front side of the safe.
  • a control unit that transports the paper in a bidirectional manner on the transport path, the withdrawal port and the first determination unit are provided outside the safe, and the control unit is configured to feed the paper sheets fed out of the storage at the time of withdrawal. Is transported to the withdrawal port.
  • the upper paper sheet mechanism equipped with a withdrawal port portion, a first discriminating portion, and a first conveyance path connecting the withdrawal port portion and the first discriminating portion and extending downward is used to deposit and withdraw paper sheets.
  • Deposit / withdrawal port, second discriminating unit for discriminating paper money denomination, authenticity, and withdrawal suitability, temporary storage for temporarily storing paper sheets, deposit / withdrawal port, second discrimination It is possible to replace the upper bill mechanism equipped with a second transport path that connects the section and the temporary storage and extends downward.
  • it is a paper sheet handling apparatus equipped with a withdrawal mechanism for dispensing paper sheets or a deposit / withdrawal mechanism for depositing / withdrawing paper sheets, wherein the withdrawal mechanism is a withdrawal port for withdrawing paper sheets.
  • a first discriminating unit that discriminates whether or not the paper sheet is dispensed, and a first transport path that connects the dispensing port unit and the first discriminating unit and extends downward as an upper paper sheet mechanism
  • the deposit / withdrawal mechanism includes a deposit / withdrawal port portion for depositing / withdrawing paper sheets, a second discrimination unit for discriminating the denomination, authenticity, and withdrawal suitability of the paper sheets, and temporarily storing the paper sheets
  • the upper paper sheet mechanism includes a storage, a deposit / withdrawal port, a second determination unit, and a second transport path that extends downward and connects the temporary storage.
  • a lower paper sheet mechanism a plurality of storage boxes for storing paper sheets, a third transport path for transporting paper sheets transported from the storage room to the upper paper sheet mechanism, a storage box, and a third Transport path Has a safe covering, the third transport path, through a hole provided on the upper surface of the safe, characterized in that it is connected to the first transport path or the second transport path.
  • the present invention it is possible to reduce the cost by reducing the size of the safe and provide a highly secure paper sheet handling apparatus. Further, by adopting a structure in which the upper mechanism of the dispensing mechanism and the upper mechanism of the depositing / dispensing mechanism can be replaced, the lower mechanism can be diverted, and it is possible to upgrade to the depositing / dispensing mechanism at a low cost.
  • the external appearance perspective view of the automatic teller machine of a present Example The functional block diagram at the time of mounting a banknote withdrawal mechanism in the automatic teller machine of a present Example.
  • Side surface sectional drawing which shows one Example of the banknote withdrawal mechanism of a present Example.
  • the control related figure of the banknote dispensing mechanism of a present Example The block diagram which shows the software structure of the banknote payment mechanism and banknote depositing / withdrawing mechanism of a present Example.
  • Side surface sectional drawing of the banknote withdrawal mechanism of a present Example The conveyance direction figure of the banknote at the time of the payment processing of the banknote payment mechanism of a present Example.
  • FIG. 1 is a perspective view showing an appearance of an automatic teller machine.
  • a card / detail that processes a user's card in communication with a card slot 102a provided on the upper front plate 101b of the main body casing 101, and prints and releases a transaction statement
  • a slip processing mechanism 102 and a passbook processing mechanism 103 that communicates with the passbook slot 103a and processes a user's passbook are provided.
  • a bill dispensing mechanism 1 for processing bills is provided at the lower part of the main body housing 101, and a customer operation unit 105 for displaying and inputting the contents of transactions is provided in the middle part.
  • Reference numeral 106 denotes a main body control unit that controls the entire automatic teller machine.
  • Reference numeral 107 denotes a transaction indicator that indicates to the user the transaction types that can be traded, such as withdrawal and balance inquiry.
  • FIG. 2 is a functional block diagram of the present embodiment.
  • the card / detail slip processing mechanism 102, the passbook processing mechanism 103, the banknote dispensing mechanism 1 and the customer operation unit 105 housed in the main body casing 101 are connected to the main body control unit 106 via the bus 106a. And performs necessary operations under the control of the main body control unit 106.
  • the main body control unit 106 is connected to the interface unit 106b, the clerk operation unit 106c, and the external storage device 106d via the bus 106a, and exchanges necessary data, but detailed description is omitted.
  • 101e shown in FIG. 2 is a power supply part which supplies electric power to said each mechanism and component.
  • FIG. 3 is a side sectional view showing the configuration of the banknote dispensing mechanism 1.
  • the banknote dispensing mechanism 1 includes a withdrawal port 20 from which a user removes banknotes, a banknote discriminating unit 30 that discriminates the number and state of banknotes, and banknotes that are not suitable for withdrawal or withdrawal at the time of withdrawal.
  • the reject box 60 that stores excessively discharged banknotes, the withdrawal safe 70 that stores and dispenses withdrawn banknotes, and the banknote discriminating unit 30, the withdrawal outlet 20, the reject storage 60, and the withdrawal safe 70.
  • it is comprised from the banknote conveyance path 50 which conveys a banknote, and the control part which is not shown in figure.
  • FIG. 1 includes a withdrawal port 20 from which a user removes banknotes, a banknote discriminating unit 30 that discriminates the number and state of banknotes, and banknotes that are not suitable for withdrawal or withdrawal at the time of withdrawal.
  • the reject box 60 that stores excessively discharged banknotes, the withdrawal
  • the control unit 35 of the banknote dispensing mechanism 1 is connected to the main body control unit 106 via the bus 106 a, and is connected to the main body control unit 106.
  • the banknote dispensing mechanism 1 is controlled according to the command and the state detection of the banknote dispensing mechanism 1. Moreover, the state of the banknote dispensing mechanism 1 is sent to the main body control unit 106 as necessary.
  • the control unit 35 is connected to a drive motor, an electromagnetic solenoid, or a sensor of each unit (withdrawal port 20, banknote determination unit 30, banknote conveyance path 50, reject box 60, withdrawal safe 70). The actuator is driven and controlled while monitoring the state with a sensor according to the transaction.
  • FIG. 5 is a diagram illustrating a configuration of control software incorporated in the control unit 35.
  • the main body control unit 106 issues a command to the control unit 35 via the bus 106a.
  • the communication control task 401 performs processing for receiving a command from the main body control unit 106
  • the status management task 402 decodes the command
  • the command control task 403 follows the instruction from the status management task 402. Instructions are given to the dispensing port control task 420, the bill discriminating control task 430, the bill transport path control task 450, the reject store control task 460, and the withdrawal safe control task 470 according to various commands.
  • the command control task 403 and the unit state monitoring task 490 report the result and state to the status management task 402, and the status management task 402 instructs the communication control task 401 to report the result, and communication control
  • the task 401 transmits a response to the main body control unit 106 via the bus 106a.
  • the control software includes a deposit / withdrawal port 21 for depositing / withdrawing banknotes provided only in the banknote deposit / withdrawal mechanism 2 to be described later, banknote denomination / authenticity discrimination, correctness / loss determination, serial number, etc.
  • Banknote discriminating section 31 capable of reading the unique information of the paper sheets, temporary storage 40 for temporarily storing the received banknotes until the transaction is established, and sorting for sorting the banknotes according to denomination or damage state, etc.
  • the storage 61, a counterfeit bill collection box 62 for collecting only counterfeit bills, a recycling box 80 for both deposit and withdrawal, and a loading / collection box 81 for loading and collecting bills are controlled.
  • a deposit / withdrawal port control task 421, a bill recognition unit control task 431, a temporary storage control task 440, a sorting storage control task 461, a counterfeit bill collection control task 462, a recycle storage control task 480, a loading / collection control Task 4 1 includes advance, a bill dispensing mechanism 1 and the bill receiving and dispensing mechanism 2 is adapted to be controlled by a common control software.
  • the banknote dispensing mechanism 1 includes a dispensing port 20, a banknote discriminating unit 30, a banknote transport path 50, a dispensing machine upper banking mechanism 1 a, a reject box 60, and a dispensing safe. 70 and a lower banknote mechanism 1b composed of an openable / closable transport path 90 disposed on the front surface of each storage. Further, the lower banknote mechanism 1b is mounted in a safe casing 108 made of a thick iron plate of about 50 mm, and the transport path between the dispensing machine upper banknote mechanism 1a and the lower banknote mechanism 1b is connected and transported. They are connected by a path 501h.
  • connection conveyance path 501h is provided at a position where the conveyance path 501g of the upper bill mechanism 1a of the dispensing machine upper billboard mechanism 1a of the safe casing 108 surrounding the lower bill mechanism 1b and the conveyance path 901e of the lower bill mechanism 1b are connected.
  • the hole (slit) drilled in the upper iron plate is set to be equal to or larger than the width of the banknote to pass through and the width of the transport roller attached so as to sandwich and feed out the banknote transported through the slit. Moreover, this slit passes the conveyance path which connects an upper bill mechanism and a lower bill mechanism, and it is easy for a user to take a bill withdrawn from a small upper bill mechanism compared with a lower bill mechanism.
  • the upper banknote mechanism is preferably provided on the front side (user side) of the lower banknote mechanism or on the front side (user side) of the banknote storage.
  • the drive source (motor) of a conveyance path may be provided separately in the conveyance path of the dispensing machine upper banknote mechanism 1a and the conveyance path of the lower banknote mechanism 1b, a single drive source is used and the driving force is increased. You may make it transmit with the gear provided between the conveyance paths 501g, 501h, and 901e.
  • the bill conveyance path 50 passes through the bill discriminating unit 30 bidirectionally, and connects the deposit / withdrawal port 20, the reject storage 60, and the safe deposit box 70 via the conveyance paths indicated by 501g, 501h and 901e to 901h.
  • the four banknote transport paths 901e to 901h in the lower banknote mechanism 1b in front of the reject storage 60 and the safe deposit box 70 can be opened and closed so that they can be integrally opened and closed.
  • the transport path 90 is configured, and a staff member can open and close the transport path 90 to operate the reject store 60 and the recycle store 70.
  • the banknote transport path 50 is provided with passage sensors 701a to 701f, and the passage of banknotes can be detected.
  • a dispensing port portion including a dispensing port for dispensing paper sheets, a first determining unit for determining whether paper sheets are dispensed, a plurality of storages for storing paper sheets, A safe having a plurality of storages therein, a withdrawal port, a first determination unit, a transport path connecting the storages, and paper sheets through a hole provided on the upper surface and the front side of the safe
  • a control unit that transports bidirectionally on the transport path, the withdrawal port unit and the first determination unit are provided outside the safe, and the control unit is configured to remove the paper sheet fed from the storage at the time of withdrawal.
  • the banknote dispensing mechanism 1 When the banknote dispensing mechanism 1 receives a withdrawal instruction from the main body control unit 106, the banknote dispensing mechanism 1 feeds out banknotes from the dispensing safe 70 by the number instructed by the main body control unit 106. For example, when paying out banknotes from the lowermost safe box 70, the banknotes are fed one by one from the safe box 70, and the number of sheets is counted by the passage sensor 701f.
  • the fed banknotes are transported in the order of the banknote transport paths 901h to 901g, 901f, 901e, and 501h, the number of sheets is determined by the banknote determination unit 30, and transported to the dispensing port 20 through the banknote transport path 501g.
  • the feeding from the safe box 70 is stopped.
  • the number of sheets discriminated by the bill discriminating unit 30 reaches the number instructed from the main body control unit 106 and all the withdrawal bills are stacked in the withdrawal port 20, all the bill transport paths 501g, 501h, 901e, 901f, 901g, Stop 901h.
  • the dispensing port 20 has an opening and a shutter 20a at the top, and when the dispensing process is completed, the shutter 20a is opened to release a bill to the user.
  • reject collection processing of the banknote dispensing mechanism 1 will be described with reference to FIG.
  • the number of banknotes fed out is counted by one of the passage sensors 701d to 701f closest to the exit of each bank, and the passage sensors 701d to 701f accurately count the number of passed banknotes. I do n’t know.
  • the passage sensors 701d to 701f count as one.
  • the fed banknotes are transported in the order of the banknote transport paths 901h to 901g, 901f, 901e, and 501h, and the banknote determination unit 30 determines that two banknotes have passed. All the conveyance paths 501g, 501h and 901e to 901h are stopped. After the conveyance path is stopped, the motor (not shown) is rotated in the reverse direction so that the conveyance path is operated in the opposite direction to the time of withdrawal, the banknote determined to be two is conveyed to the reject box 60, and the subsequent banknotes are Transport to safe 70.
  • At least one of the storages is a reject storage for storing paper sheets that are determined to be unsuitable for withdrawal by the first determination unit, and the control unit is determined to be unsuitable for withdrawals.
  • the banknote dispensing mechanism 1 closes the shutter 20a of the dispensing port 20 when receiving a forgetting collection instruction from the main body control unit 106.
  • a sheet detection sensor provided in the withdrawal port 20 detects a sheet for a predetermined time or more.
  • One bill is fed out from the withdrawal port 20 one by one.
  • the banknotes fed out from the withdrawal port 20 are stored in the reject box through the banknote transport paths 501g, 501h, and 901e.
  • the withdrawal port portion has a separation mechanism that separates the accumulated paper sheets one by one, and when the forgetting to remove the paper sheets is detected at the withdrawal port portion, the control unit The separation mechanism separates and feeds out the paper sheets accumulated in the withdrawal port, and the first discrimination unit counts the number of fed paper sheets, and the transport path is in the direction opposite to the withdrawal direction.
  • the paper sheets that are forgotten by the user can be reliably collected by driving the paper sheets to the reject box.
  • the conveyance path 501g Since the conveyance path 501g is connected to the withdrawal port 20 with a single mouth, the paper sheets entering and exiting the withdrawal port 20 are conveyed in both directions by driving the conveyance path 501g in both directions. Further, as will be described later, since a control method that takes into account the occurrence of reject paper sheets is employed, 501g does not need to be branched on the way, and is a single conveyance path. Before the banknote discriminating unit 30 discriminates that the number of banknotes is two, the transport unit 501g stops the driving unit of the transport path 501g before it is transported to the dispensing port 20, and the transport path (not shown) is stopped.
  • the 501g drive unit is driven in the opposite direction to the time of withdrawal, and the banknote is conveyed in the opposite direction to the time of withdrawal.
  • the banknote determined to be two is transported to the reject box 60, and the subsequent banknote is transported to the safe box 70.
  • conveyance path 501g needs a distance that can be stopped before the banknote determined to be two reaches the dispensing port 20.
  • the conveyance path 501g is configured to be a straight line up to the roller portion, and bend the roller portion to suppress bill jamming and increase the conveyance distance. That is, a roller part is provided at the bending point of the transport path, and the transport path between the plurality of roller parts has a linear configuration.
  • the roller section is a pair of transport rollers in which two transport rollers are paired, and the paper sheet is determined and transported by sandwiching the paper sheet with the transport roller pair. Furthermore, in order to earn time until the banknote discrimination
  • the conveyance path has a plurality of conveyance roller pairs for nipping and conveying paper sheets, and the conveyance path provided outside the safe among the conveyance paths is bent at the nipping point of the conveyance roller pair. It is possible to reduce the jam occurrence rate.
  • the length of the banknotes in the conveying direction is normal. Since it becomes long compared with the time of being conveyed, the time until it finishes passing the banknote discrimination
  • the banknote is detected by the passage sensor 701a mounted in front of the dispensing port 20 before the banknote passes through the banknote determination unit 30, it is determined that the conveyance state of the banknote is bad, and the banknote is the banknote determination unit. Even when passing 30, the conveyance path 501 g is stopped. Then, after stopping a drive unit (not shown) that drives the conveyance path 501g, a conveyance roller 301 provided at the entrance of the dispensing port 20 and a drive unit (not shown) that drives the conveyance path 501g are set at the time of withdrawal. By rotating in the reverse direction, the banknote in a bad transport state is transported to the reject box 60, and the banknote stopped before the banknote determination unit 30 is transported to the safe deposit box 70.
  • the conveyance path 501g is stopped, so that the abnormal banknote can be prevented from being stored in the withdrawal port 20.
  • the transport path 501g does not need a gate mechanism for switching the transport path.
  • a detection sensor that detects the passage of the paper sheet is provided on the conveyance path that connects the withdrawal port portion and the first discrimination portion, and the sensor is used before the discrimination processing by the first discrimination portion is completed at the time of withdrawal.
  • FIG. 11 is a functional block diagram of the present embodiment.
  • FIG. 11 since only the banknote payment mechanism 1 of the above-mentioned FIG. 2 was replaced with the banknote depositing / withdrawing mechanism 2, description is abbreviate
  • FIG. 12 is a side sectional view showing the configuration of the banknote depositing / withdrawing mechanism 2 in the automatic teller machine of FIG.
  • the banknote deposit / withdrawal mechanism 2 can read detailed information such as a deposit / withdrawal port 21 for a user to deposit and withdraw banknotes, banknote denomination / authenticity determination, correctness / loss determination, serial number, and the like.
  • the control unit 35 is connected to the main body control unit 106 of the apparatus via the bus 106 a, and the banknote depositing / withdrawing mechanism according to the command from the main body control unit 106 and the state detection of the banknote depositing / dispensing mechanism 2. 2 and the state of the banknote depositing / dispensing mechanism 2 is sent to the main body control unit 106 as necessary.
  • control unit 35 includes each unit (the deposit / withdrawal port 21, the banknote discriminating unit 31, the temporary storage box 40, the banknote transport path 50, the reject box 60, the fake ticket collection box 62, and the recycling box 80.
  • the actuator is driven and controlled while monitoring the state with the sensor according to the transaction.
  • the separation storage 61, the loading / recovery storage 81, and the aforementioned safe deposit box 70 have the same external shape as the recycling storage 80 and each have a banknote entrance at the same position, instead of the recycling storage 80.
  • the lower banknote mechanism 1b in FIG. 12 includes one reject storage 60, one sorting storage 61, one loading / recovery storage 81, and a recycling storage 80. It can comprise so that one may be provided.
  • the banknote depositing / withdrawing mechanism 2 includes a depositing / dispensing port 21, a banknote discriminating unit 31, a temporary storage 40, a counterfeit bill collection box 62, and a banknote transport path 50.
  • the lower banknote mechanism 1b is mounted in the safe housing 108 as in the case of the banknote dispensing mechanism 1 described above, and the transport path between the dispensing machine upper banknote mechanism 1a and the lower banknote mechanism 1b is connected and transported. They are connected by a path 501h.
  • the connection transport path 501h is formed between the transport path 501i of the upper bill mechanism 2a and the transport path 901e of the lower bill mechanism 1b on the upper surface iron plate of the safe casing 108 surrounding the lower bill mechanism 1b. It is provided at the position to connect.
  • the lower bill mechanism 1b and the safe housing 108 are as described above. Further, the banknote transport path 50 bidirectionally passes through the banknote discriminating unit 31 and connects the deposit / withdrawal port 21, the reject storage 60, and the safe deposit box 70 via the transport paths indicated by 501i, 501h and 901e to 901h. .
  • the depositing process of the banknote depositing / dispensing mechanism 2 will be described with reference to FIG.
  • the shutter 21 a of the deposit / withdrawal slot 21 is opened and the user inserts the banknote into the deposit / withdrawal slot 21.
  • a partition plate 21b is provided at the deposit / withdrawal port 21, and the user inserts banknotes into the front side (side closer to the user) of the partition plate 21b.
  • the banknote deposit / withdrawal mechanism 2 automatically closes the shutter 21a when detecting the completion of the banknote insertion. Thereafter, banknotes are fed out from the deposit / withdrawal port 21 one by one.
  • the banknotes drawn out from the deposit / withdrawal port 21 pass through the conveyance path 501i, and the banknote discrimination unit 31 discriminates the unique information of the banknotes such as the number, denomination, authenticity, correctness, serial number, and the like.
  • the banknote discriminated as a normal banknote by the banknote discriminating unit 31 is transported to the temporary storage 40 through the banknote transport paths 501i, 501k, and 501l.
  • the banknote discriminated as an abnormal banknote by the banknote discriminating unit 31 passes through the banknote transport paths 501i, 501k, and 501m, and is behind the partition plate 21b in the deposit / withdrawal port 21 (the far side and the far side from the user). It is stored in.
  • the shutter 21a of the deposit / withdrawal port 21 is opened and returned to the user.
  • the banknotes are paid out from the temporary storage 40, passed through the conveyance paths 501l and 501k, and again in the banknote discriminating unit 31 to determine the number of banknotes, denomination, and authenticity.
  • the banknotes, such as the correctness, serial number, etc., are identified and the normal banknotes are stored in the recycle box 80 provided for each denomination by denomination through the transport paths 501i and 501h. Banknotes are stored in a reject box.
  • the banknote deposit / withdrawal mechanism 2 When the banknote deposit / withdrawal mechanism 2 receives a withdrawal instruction from the main body control unit 106, the banknote deposit / withdrawal mechanism 2 feeds out banknotes from the recycle box 80 by the number instructed by the main body control unit 106. For example, when paying out banknotes from the lowermost recycling box 80, the banknotes are fed out one by one from the recycling box 80, and the number of sheets is counted by the passage sensor 701f.
  • the fed banknotes are transported in the order of the banknote transport paths 901h to 901g, 901f, 901e, and 501h, and the banknote discriminating unit 31 discriminates the unique information of the banknotes such as the number of sheets, denomination, authenticity, correctness, serial number, etc. .
  • the banknote discriminated as a normal banknote by the banknote discriminating unit 31 is transported to the deposit / withdrawal port 21 through the banknote transport paths 501i, 501k, and 501m.
  • the banknotes determined to be abnormal by the banknote determination unit 31 are temporarily transported to the temporary storage 40 through the banknote transport paths 501i, 501k, 501l, and the number of sheets instructed by the main body control unit 106.
  • the banknotes are transported to the deposit / withdrawal port 21, the banknotes are fed out from the temporary storage 40 and transported to the reject store 60 through the transport paths 501l, 501k, 501i, 501h, and 901e.
  • the deposit / withdrawal port 21 has an opening and a shutter in the upper part, and when the dispensing process is completed, the shutter is opened to release the banknote to the user.
  • the paper sheet transaction apparatus includes a dispensing machine upper banknote mechanism 1a of the banknote dispensing mechanism 1 and a depositing / dispensing machine upper banknote mechanism 2a of the banknote depositing / dispensing mechanism 2 respectively, and includes connecting portions 510 and 511, respectively.
  • the connection parts 510 and 511 have a structure that can be connected to the common lower bill mechanism 1b. In this manner, the upper paper sheet mechanism equipped with the first delivery path that connects the withdrawal port part, the first determination part, and the withdrawal port part to the first determination part and that extends downward is loaded and unloaded.
  • Deposit / withdrawal port for depositing money
  • second discriminating unit for discriminating paper money denomination, authenticity and withdrawal suitability
  • temporary storage for temporarily storing paper sheets
  • deposit / withdrawal port 2
  • the upper bill mechanism which is connected to the discriminating unit and the second storage path connected to the temporary storage, and can be replaced, or the withdrawal mechanism or the paper sheet for dispensing the paper sheet is loaded and unloaded.
  • a sheet handling apparatus equipped with a depositing / withdrawing mechanism for depositing, wherein the dispensing mechanism includes a dispensing port for dispensing the sheet and a first determining unit for determining whether the sheet is dispensed.
  • a first conveyance path that connects the dispensing port portion and the discriminating portion and extends downward as an upper paper sheet mechanism
  • the deposit / withdrawal mechanism includes a deposit / withdrawal port portion for depositing / withdrawing paper sheets, and a paper sheet kind of denomination
  • a second discriminating unit that discriminates the authenticity and the suitability of withdrawal, a temporary storage unit that temporarily stores paper sheets, a deposit / withdrawal port unit, a second determination unit, and a temporary storage unit that are connected to each other and extend downward.
  • a dispensing path and a deposit / withdrawal mechanism which are common lower paper sheet mechanisms, and are transported from a plurality of storage boxes for storing paper sheets and the storage boxes.
  • the third transport path passes through a hole provided on the upper surface of the safe. Then, it is configured to be connected to the first conveyance path or the second conveyance path.
  • the lower mechanism can be diverted, and the deposit / withdrawal mechanism can be upgraded at a low cost.
  • the software of the withdrawal mechanism and the deposit / withdrawal mechanism it is not necessary to replace the software during the upgrade, and it can be used for both paper sheet dispensing machines and paper sheet dispensing machines with only setting changes. It becomes possible to do.
  • the banknote cassette is also shared, it becomes possible to prevent changes in cash operation due to the upgrade, and the handling and maintenance method of the banknote cassette can be maintained. Therefore, efficiency is good.
  • the control part 35 of the lower banknote mechanism 1b automatically discriminates the mounting state of the dispensing machine upper banknote mechanism 1a and the depositing / dispensing machine upper banknote mechanism 2a.
  • the banknote discriminating unit 30 is a mechanism mounted only on the dispensing machine upper banknote mechanism 1a
  • the temporary storage 40 and the banknote identification unit 31 are mechanisms mounted only on the depositing / dispensing machine upper banknote mechanism 2a.
  • the bill discriminating unit 30 and the control unit 35 are connected to each other by a cable with connectors at both ends, and the control unit 35 reads whether a bill discriminating unit 30 is mounted by reading a signal of a specific port of the connector. judge.
  • control unit 35 When the control unit 35 receives a signal indicating that the banknote discriminating unit 30 is mounted, the control unit 35 determines that the dispensing machine upper banknote mechanism 1a is mounted. Similarly, the temporary storage 40 and the banknote recognition unit 31 are also connected to the control unit 35 with cables having connectors at both ends, and the control unit 35 reads a signal from a specific port of the connector. Then, it is determined whether or not the temporary storage 40 or the bill recognition unit 31 is mounted. When the control unit 35 receives a signal indicating that the temporary storage 40 or the bill identifying unit 31 is mounted, the control unit 35 determines that the depositing / dispensing machine upper bill mechanism 2a is mounted.
  • control unit determines whether it is a withdrawal mechanism or a deposit / withdrawal mechanism based on the configuration information of the upper paper sheet mechanism, so that the amount of setting work after replacement is reduced and the upgrade operation can be completed quickly. Is possible.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Separation, Sorting, Adjustment, Or Bending Of Sheets To Be Conveyed (AREA)
  • Controlling Sheets Or Webs (AREA)

Abstract

La présente invention concerne un dispositif de manipulation de feuilles de papier qui est caractérisé en ce qu'il comprend une unité de commande pour le transport bidirectionnel de feuilles de papier sur un chemin de transport et en ce qu'il comporte une pluralité de rangements pour la conservation des feuilles de papier dans un coffret-caisse en tant que mécanisme inférieur, et un troisième chemin de transport pour le transport des feuilles de papier transportées depuis les rangements vers un mécanisme supérieur à travers des trous percés sur une surface supérieure et une surface avant du coffret-caisse, et caractérisé en ce qu'en tant que mécanisme supérieur, un mécanisme à feuilles de papier supérieur comprenant une partie d'ouverture de retrait pour la sortie des feuilles de papier, une première partie de discrimination, et un premier chemin de transport qui est relié à la partie d'ouverture de retrait et à la première partie de discrimination et qui s'étend vers le bas peut être remplacé par un mécanisme de billets supérieur équipé d'une partie d'ouverture de dépôt et de retrait pour l'entrée et la sortie des feuilles de papier, d'une deuxième partie de discrimination, d'une archive temporaire pour la conservation temporaire des feuilles de papier, et d'un deuxième chemin de transport qui est relié à la partie d'ouverture de dépôt et de retrait, à la deuxième partie de discrimination et à l'archive temporaire, et qui s'étend vers le bas.
PCT/JP2016/085534 2016-02-25 2016-11-30 Dispositif de manipulation de feuilles de papier Ceased WO2017145482A1 (fr)

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CN201680078940.XA CN108475451B (zh) 2016-02-25 2016-11-30 纸张类处理装置
JP2018501003A JP6584630B2 (ja) 2016-02-25 2016-11-30 紙葉類取扱装置

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IN201611006490 2016-02-25
IN201611006490 2016-02-25

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WO2025150370A1 (fr) * 2023-01-27 2025-07-17 Glory Ltd. Dispositif de manipulation de feuille et procédé de manipulation de feuille

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WO2008050461A1 (fr) * 2006-10-24 2008-05-02 Glory Ltd. Compteur de feuille
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JP5169474B2 (ja) * 2008-05-19 2013-03-27 沖電気工業株式会社 紙幣入出金機
JP5294959B2 (ja) * 2009-04-16 2013-09-18 日立オムロンターミナルソリューションズ株式会社 紙葉類処理装置
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JPH05342454A (ja) * 1992-06-10 1993-12-24 Toshiba Corp 貨幣処理装置
JP2000506298A (ja) * 1996-03-13 2000-05-23 シーメンス ニクスドルフ インフオルマチオーンスジステーメ アクチエンゲゼルシヤフト 現金自動支払機
JP2004258972A (ja) * 2003-02-26 2004-09-16 Oki Electric Ind Co Ltd 紙幣搬送機構
WO2008050461A1 (fr) * 2006-10-24 2008-05-02 Glory Ltd. Compteur de feuille
JP2010079376A (ja) * 2008-09-24 2010-04-08 Universal Entertainment Corp 紙葉類処理装置
JP2012099146A (ja) * 2012-02-07 2012-05-24 Hitachi Omron Terminal Solutions Corp 紙幣入出金機
JP2014182431A (ja) * 2013-03-18 2014-09-29 Oki Electric Ind Co Ltd 貨幣処理装置

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2025150370A1 (fr) * 2023-01-27 2025-07-17 Glory Ltd. Dispositif de manipulation de feuille et procédé de manipulation de feuille

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CN108475451A (zh) 2018-08-31
JPWO2017145482A1 (ja) 2018-11-15
JP6584630B2 (ja) 2019-10-02
CN108475451B (zh) 2020-02-07

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