WO2009095980A1 - 硬貨搬送装置および硬貨処理機 - Google Patents
硬貨搬送装置および硬貨処理機 Download PDFInfo
- Publication number
- WO2009095980A1 WO2009095980A1 PCT/JP2008/051157 JP2008051157W WO2009095980A1 WO 2009095980 A1 WO2009095980 A1 WO 2009095980A1 JP 2008051157 W JP2008051157 W JP 2008051157W WO 2009095980 A1 WO2009095980 A1 WO 2009095980A1
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- WIPO (PCT)
- Prior art keywords
- coin
- coins
- transport
- discharge gate
- unit
- Prior art date
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07D—HANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
- G07D9/00—Counting coins; Handling of coins not provided for in the other groups of this subclass
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07D—HANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
- G07D9/00—Counting coins; Handling of coins not provided for in the other groups of this subclass
- G07D9/008—Feeding coins from bulk
Definitions
- the present invention relates to a coin transport device and a coin processor.
- Various coin handling machines that handle coins, such as ticket machines that issue tickets and meal tickets, vending machines that sell goods, ATMs (Auto Tellers Machine) and CDs (Cash Dispenser) that handle deposits and withdrawals, clerk machines, etc.
- a coin transporting device is used that sandwiches and transports coins with a pair of belts.
- a first transfer path that holds a coin between a pair of belts and transfers the coin upward, and a second transfer path that transfers a coin placed on the upper surface of the belt to the entrance of the first transfer path A series of transport paths is configured.
- a roller and guides are arranged on both sides of the roller above the second conveyance path, and the guide prevents coins from entering between the belt and the one belt forming the first conveyance path. . Further, when the coin is jammed between the roller and the second transport path, the jammed coin can be taken out by reversing the transport path.
- JP 2002-367013 A first page, FIG. 1-2
- holding and transferring coins between a pair of belts uses friction between the belt and the coins, but changes in the coefficient of friction due to the dirt and deposits on the coins, and the ambient temperature Due to changes in the friction coefficient of the belt itself due to changes and secular changes, the gripping force to pinch the coins changes, making the state of coin conveyance unstable, and making it impossible to carry out accurate coin identification, sorting, etc. End up.
- the present invention has been made in view of the above, and prevents the poor conveyance of coins due to dust, foreign matter, etc., and the conveyance of coins caused by fluctuations in the friction coefficient between conventional coins and the conveyance belt. There is no instability in the state, the state of coin transportation can be stabilized, and if a coin clog occurs in the transportation path during coin transportation, the coins jammed in the transportation path are automatically taken out and recovered. It is an object of the present invention to provide a coin transport device and a coin processor that are excellent in operability and convenience.
- the coin transport device is a coin transport device that transports coins, stores coins in an unaligned state, and feeds the coins one by one, and accepts coins fed from the feed means.
- a conveyance path a conveyance body that receives coins fed into the conveyance path from the feeding means, and has a plurality of protrusions that can be pushed and conveyed one by one in the conveyance path, and drives the conveyance body
- a discharge gate that is provided in the feeding unit, allows the coins to be stored in the feeding unit in the closed state, and allows the coins in the feeding unit to be discharged to the outside in the open state.
- a discharge gate driving means for driving the discharge gate and a coin formed so as to receive the coin discharged from the discharge gate and to be able to take out the received coin from the outside of the apparatus.
- the feeding means is driven to feed the coin into the transport path
- the transport body driving means is driven to transport the coin in the transport path by the transport body.
- the driving of the feeding means is stopped, the discharge gate driving means is driven to open the discharge gate, and the transport body driving means is A controller that drives in a direction opposite to the transport direction to return coins jammed in the transport path by the transport body to the feeding means, and discharges the coins to the coin take-out section through the discharge gate. It is what.
- the coin conveying device is the coin conveying device according to claim 1, wherein the feeding means is attached to a coin inlet / outlet through which coins can enter and exit, and is attached to a rotating shaft and is inclined at a predetermined angle with respect to a horizontal direction.
- a rotating disk that is rotated at a position; a hopper that stores coins on the surface side of the rotating disk; a pick-up member that protrudes from the surface of the rotating disk and picks up the stored coins one by one; and is disposed near the coin entrance
- a small-diameter disk that receives coins picked up one by one at predetermined intervals by the pick-up member and delivers them one by one to the transport body.
- the coin transport device according to claim 3 is the coin transport device according to claim 2, wherein the discharge gate forms a part of the lower side of the hopper.
- the coin conveying device is the coin conveying device according to claim 1, wherein the control unit conveys the conveying body driving means when discharging the coins packed in the conveying path to the coin extracting unit. It is driven in the direction opposite to the conveying direction at a speed slower than the driving in the direction.
- the coin processor according to claim 5 is a coin processor that processes coins, stores coins in an unaligned state, and feeds the coins one by one, and accepts coins fed from the feeding means.
- a conveyance path a conveyance body that receives coins fed into the conveyance path from the feeding means, and has a plurality of protrusions that can be pushed and conveyed one by one in the conveyance path, and drives the conveyance body
- a discharge gate that is provided in the feeding unit, allows the coins to be stored in the feeding unit in the closed state, and allows the coins in the feeding unit to be discharged to the outside in the open state.
- the discharge gate driving means for driving the discharge gate and the coins discharged from the discharge gate are formed, and the received coins can be taken out from the outside of the coin processor.
- the feeding means When the coins are conveyed, the feeding means is driven to feed the coins into the transport path, and the transport body driving means is driven to drive the coins in the transport path by the transport body. And when the coin clogging occurs in the transport passage during the coin transport, the driving of the feeding means is stopped, the discharge gate driving means is driven to open the discharge gate, and the transport body A control unit that drives the driving unit in a direction opposite to the conveyance direction to return the coins that are jammed in the conveyance path by the conveyance body to the feeding unit, and discharges the coins to the coin dispensing unit via the discharge gate. It is equipped with.
- the coin processing machine is the coin processing machine according to claim 5, wherein the feeding means is attached to a coin inlet / outlet through which coins can enter and exit, and is attached to a rotating shaft and inclined at a predetermined angle with respect to a horizontal direction.
- a rotating disk that is rotated at a position; a hopper that stores coins on the surface side of the rotating disk; a pickup member that protrudes from the surface of the rotating disk and picks up the stored coins one by one; and is disposed near the coin entrance
- a small-diameter disk that receives coins picked up one by one at predetermined intervals by the pick-up member and delivers them one by one to the transport body.
- the coin processing machine according to claim 7 is the coin processing machine according to claim 6, wherein the discharge gate forms a part of the lower side of the hopper.
- the coin processing machine is the coin processing machine according to claim 5, further comprising a communication unit capable of communicating with an external device, wherein the control unit is configured to perform the communication unit after a coin clogging has occurred during coin transportation.
- the discharge gate driving means is driven to open the discharge gate in accordance with a recovery command instructed from the external device via the open device, and the transfer body driving means is driven in a direction opposite to the transfer direction.
- the coins jammed in the transport passage are returned to the feeding means, and the coins are discharged to the coin dispensing part via the discharge gate.
- the coin processing machine is the coin processing machine according to claim 8, in which the coin is stored and the stored coin is taken out according to a withdrawal command instructed from the external device via the communication means.
- a coin storage unit that can be paid out to a gold part, the coin withdrawal part is configured to receive a coin paid out from the coin storage part and to be able to take out the received coin from outside the coin processor. It is what.
- the coin processing machine is the coin processing machine according to claim 8, wherein after coin clogging occurs during coin transportation, the coin processing machine waits for a recovery command to be issued from the external device, or A setting unit is provided for setting whether to restore without waiting for a recovery command from an external device, and the control unit recovers without waiting for a recovery command from the external device by the setting unit. If a coin jam occurs during the coin transport, the coins jammed in the transport passage are not waited for a recovery command from the external device via the communication means. It is made to discharge to the said coin withdrawal part.
- the coin processing machine according to claim 11 is the coin processing machine according to claim 5, wherein when the control unit discharges the coins packed in the transport passage to the coin dispensing unit, It is driven in the direction opposite to the transport direction at a speed slower than the drive in the transport direction.
- the coin transport device of claim 1 since the coins in the transport passage are pushed and transported one by one by the protrusions of the transport body, it is possible to prevent coins from being poorly transported due to dust, foreign matters, and the like. There is no instability of the coin transport state caused by fluctuations in the friction coefficient between the coin and the transport belt, and it is possible to stabilize the coin transport state.
- the driving of the feeding means is stopped, the discharge gate driving means is driven to open the discharge gate, the transport body driving means is driven in the direction opposite to the transport direction, and the coin jammed in the transport path by the transport body Is returned to the feeding means, and coins are discharged to the coin take-out part via the discharge gate, so that the coins packed in the transfer passage can be automatically taken out and recovered, providing a operability and convenience coin transfer device it can.
- the coins stored between the rotating disk and the hopper inclined at a predetermined angle with respect to the horizontal direction are rotated.
- Picking up one by one with the pick-up member of the disk and delivering it to the transport body one by one with the small diameter disk it is possible to prevent dust, foreign matter, etc. from being fed out into the transport path, and poor coin transportation due to dust, foreign matter, etc. Can be prevented.
- the rotating disk and the hopper are opened by opening the discharge gate that forms a part of the lower side of the hopper. Coins can be reliably discharged from between.
- the conveying body driving means when the coin jammed in the conveying passage is discharged to the coin taking-out portion, the conveying body driving means is moved in the conveying direction. Since it is driven in the direction opposite to the conveying direction at a speed slower than that of the driving, even if the jammed coin is in a state of being jammed, the jammed state can be reliably eliminated.
- the coin processing machine of claim 5 since the coins in the transport passage are pushed and transported one by one by the protrusions of the transport body, it is possible to prevent coins from being poorly transported due to dust, foreign matters, etc. There is no instability of the coin transport state caused by fluctuations in the friction coefficient between the coin and the transport belt, and it is possible to stabilize the coin transport state.
- the driving of the feeding means is stopped, the discharge gate driving means is driven to open the discharge gate, the transport body driving means is driven in the direction opposite to the transport direction, and the coin jammed in the transport path by the transport body Is returned to the feeding means, and the coins are discharged to the coin dispensing part via the discharge gate, so that the coin transporting device with excellent operability and convenience can be recovered by automatically taking out the coins jammed in the transport path. Can be provided.
- the coins stored between the rotating disk and the hopper inclined at a predetermined angle with respect to the horizontal direction are rotated.
- Picking up one by one with the pick-up member of the disk and delivering it to the transport body one by one with the small diameter disk it is possible to prevent dust, foreign matter, etc. from being fed out into the transport path, and poor coin transportation due to dust, foreign matter, etc. Can be prevented.
- the communication means when communication with an external device is possible, after the coin jam occurs during the coin conveyance, the communication means is According to the recovery command instructed from the external device, the coins jammed in the conveyance path can be discharged to the coin dispensing unit.
- the coin dispensing unit that discharges coins jammed in the conveyance path is provided with a withdrawal commanded from an external device. Since it is the same as the coin dispensing unit that pays out coins to be dispensed from the coin storage unit according to the command, the usability can be improved.
- a recovery command is commanded from an external device. It is possible to arbitrarily select whether to recover after waiting for this, or to recover without waiting for a recovery command to be issued from an external device.
- the transport body driving means is transported in the transport direction. Since it is driven in a direction opposite to the conveying direction at a speed slower than the driving to, even if the jammed coin is in a state of being jammed, the jammed state can be reliably eliminated.
- the coin processing machine of the 3rd Embodiment of this invention is shown, (a) is partial sectional drawing of a coin processing machine, (b) is a rear view at the time of providing a slit in the back surface of a coin processing machine, (c) is a side view when a gate is provided on the back of the coin processor, and (d) is a side view when a discharge guide is attached to the back of the coin processor.
- FIG. 9 shows a perspective view of a coin processing machine 11 capable of performing a withdrawal process in addition to a coin deposit process using a coin transport device according to an embodiment of the present invention.
- the coin processor 11 is electrically connected to a POS register as an external device, and is used as an automatic change dispenser capable of automatically depositing and dispensing coins based on a command from the POS register. Can do.
- the machine body 12 of the coin processing machine 11 includes a frame body 13 having an open front surface and a main unit 14 that can be pulled out from the front surface of the frame body 13. On the front surface of the main unit 14, there is provided a locking unit 15 that locks and unlocks the main unit 14 accommodated in the frame 13 with a key.
- a deposit start button 18 for instructing a deposit operation is disposed in the vicinity of the slot 16 so as to be pressed.
- a payout opening 19 Through which coins are discharged from the inside of the machine body 12.
- a coin take-out section that receives the coins discharged from the payout opening 19 and allows the received coins to be taken out from the outside.
- a tray 20 as a coin dispensing unit is formed.
- a coin cassette unit 22 is combined with the lower part of the coin processor 11 as necessary.
- the coin cassette unit 22 includes a frame body 23 having an open front surface and a coin cassette 24 that can be pulled out from the front surface of the frame body 23.
- the coin cassette 24 stores full coins and recovered coins discharged from the main unit 14 of the coin processor 11.
- the main unit 14 includes a feeding unit 31 serving as a feeding unit that separates and feeds coins (indicated by symbol C in the figure) received from the insertion slot 16 one by one.
- a deposit transport unit 32 that transports coins fed from the unit 31 from the front side toward the rear along the left side that is one side of the machine body 12, and an identification unit 33 that identifies the coins transported by the deposit transport unit 32.
- the coins disposed along the surface and discharged from the coin storage part 35 are dispensed out 19
- the feeding portion 31 includes a rotating disk 40 that can rotate around a rotating shaft 39 at a position inclined at a predetermined angle with respect to the horizontal direction, and a surface side of the rotating disk 40.
- a hopper 41 that stores coins that are input from the input port 16 in a non-aligned state, and a small-diameter disk 42 that is disposed at a position where the coins are fed from the upper side of the rotating disk 40 to the deposit conveyance unit 32. ing.
- the feeding portion 31 is located above the tray 20 of the dispensing outlet 19.
- the rotary disk 40 is disposed so as to incline to the right at a predetermined angle with respect to the horizontal direction when viewed from the front surface of the machine body 12 by a rotation shaft 39 rotatably attached to the machine body 12 side.
- This rotating disk 40 is driven to rotate by a motor 44 in the feeding rotation direction (counterclockwise direction in FIGS. 1, 2 and 4) for feeding coins to the deposit conveyance section 32, and when a coin jam occurs. Is driven to rotate in the direction opposite to the feeding rotation direction in order to eliminate the coin jam.
- a circular high-order part 45 is formed in the central area, and an annular low-order part 46 is formed in the outer peripheral area of the high-order part 45.
- a plurality of pick-up members 48 projecting from the surface of the rotating disk 40 are provided in the lower portion 46 of the rotating disk 40 along two circumferential directions of the inner circumferential direction and the outer circumferential direction. Are arranged at a predetermined pitch.
- the pick-up member 48 picks up coins one by one at a predetermined interval to the upper area of the rotating disk 40, and pushes the picked up coins from the upper part of the rotating disk 40. And is configured to be delivered to the small-diameter disk 42. Further, the pick-up member 48 can be picked up by picking up coins when the rotating disk 40 rotates in the feeding direction, but is formed in a shape that does not catch the coins when the rotating disk 40 rotates in the direction opposite to the feeding direction. ing.
- a guide passage 51 constituting 50 is formed.
- the guide passage 51 is curved in a substantially U shape from the upper part of the rotary disk 40 and is connected to the front end portion of the deposit conveyance section 32. It is formed with guide parts 53 and 54 for guiding both sides of a coin to be conveyed on 52.
- the passage surface 52 is flush with the surface of the rotary disk 40, that is, is disposed in a state of being inclined at a predetermined angle with respect to the horizontal direction.
- One guide portion 53 is arranged from the upper region of the rotating disk 40 to the region facing the central portion of the small diameter disk 42.
- the other guide portion 54 is provided so as to be curved from the opposing region to the front end portion of the deposit conveyance portion 32 with a gap in which coins do not enter the surface of the lower portion 46 of the rotary disk 40.
- On the surface of the guide portion 54 that faces the lower portion 46 a groove portion 55 is formed through which each pickup member 48 that rotates can pass.
- the guide unit 54 is configured to receive the coin picked up by the pick-up member 48 and guide it to the deposit conveyance unit 32.
- a plurality of detection holes 57 are formed in the lower part 46 of the rotating disk 40 at a predetermined pitch along the circumferential direction.
- a residual detection sensor 58 is provided as a residual detecting means for detecting remaining coins and foreign matters without being fed out along with the presence or absence of coins through the detection hole 57 of the rotating rotating disk 40. Has been.
- the hopper 41 is formed in a shape that covers the surface side of the rotary disk 40 so as to be opposed and is opened upward so that a coin can be received from the insertion port 16.
- a discharging mechanism 60 that discharges coins and the like in the feeding unit 31 is provided at the lower part of the hopper 41.
- a discharge port 61 is formed in the lower portion of the hopper 41, and a discharge gate 62 is attached to the discharge port 61 so as to be openable and closable with an upper shaft 62a as a fulcrum.
- the discharge gate 62 is driven to open and close by a discharge gate drive motor 63 as a discharge gate drive means via a shaft 62a.
- the discharge gate 62 is opened, and the rotating disk 40 is rotated forward and backward alternately to discharge coins and the like from the hopper 41 downward.
- a chute 64 for guiding the discharged coins to the tray 20 of the payout opening 19 is disposed below the discharge port 61 and the discharge gate 62 of the hopper 41.
- the small-diameter disk 42 is rotatably disposed at a position straddling the guide passage 51 and the starting end portion of the deposit conveyance section 32 so that the surface of the small-diameter disk 42 is flush with the passage surface 52.
- a pair of protrusions 65 project from the outer peripheral edge of the small-diameter disk 42 while coming into contact with the coin and pushing out from the rotary disk 40 side toward the deposit conveyance part 32 side.
- the deposit conveyance section 32 includes a conveyance path 67 formed so as to extend rearward from the front side along the upper left side in the machine body 12, following the guide path 51. Yes.
- the conveyance passage 67 is formed by a passage surface 52 that conveys a coin surface in contact with the guide passage 51, and guide portions 53 and 54 that guide both sides of the coin that is conveyed on the passage surface 52. Is formed. Since the passage surface 52 of the transport passage 67 is flush with the surface of the rotating disk 40, the passage surface 52 is disposed so as to be inclined at a predetermined angle with respect to the horizontal direction, similar to the inclination of the rotating disk 40. Accordingly, the coins that are transported in the transport path 67 are transported in a state where they are placed on the one guide portion 53 at a position where the peripheral edge of the coins is low.
- pulleys 69 are disposed at the start and end portions of the transport passage 67 by a rotating shaft 68 that is rotatably attached to the machine body 12 side.
- a deposit conveyance belt 70 as a conveyance body is suspended along a conveyance path 67.
- the deposit conveyance belt 70 is rotated in the conveyance direction in which coins are conveyed from the start side to the end side of the conveyance path 67 by a deposit conveyance belt drive motor 71 (see FIG. 10) as a conveyance body driving means for driving the pulley 69.
- a deposit conveyance belt drive motor 71 see FIG. 10
- a protrusion 72 (see FIG. 3) that pushes and conveys coins one by one protrudes at a predetermined pitch along the longitudinal direction of the belt on the surface facing the passage surface 52 of the deposit conveyance belt 70.
- the interval in the belt longitudinal direction of the plurality of protrusions 72 is set to a dimension that allows coins to be received and conveyed one by one between the protrusions 72 in the longitudinal direction of the belt.
- a gap is formed between the deposit conveyance belt 70 and the passage surface 52 so as to accept a maximum thickness coin handled by the coin processor 11, and the coin processor 11 handles the protrusion 72 and the passage surface 52.
- a gap having a size smaller than the thickness of the minimum thickness coin is formed.
- the rotation of the deposit conveyance belt 70 and the coin feeding by the rotating disk 40 and the small diameter disk 42 of the feeding unit 31 are linked, and one coin is fed from the feeding unit 31 between the adjacent protrusions 72 of the depositing conveyance belt 70. Accepted one by one.
- an identification part 33 and a plurality of branch parts 34 are arranged in this order in the transport passage 67.
- the identification unit 33 detects the material, diameter, etc. of the coin, and identifies whether it is a coin that can be received in the machine body 12 and the denomination of the accepted coin.
- the branch portion 34 located at the most upstream branch position in the transport direction of the transport passage 67 is a reject branch portion 34 that branches unacceptable coins into the airframe 12, and is branched downstream in the transport direction.
- the unit 34 is a denomination branching unit 34 for bifurcating coins that can be received in the machine body 12 into denominations, both of which have the same structure.
- the mechanism of the branch part 34 is not provided at the most downstream branch position in the transport direction, the branch part 34 branches from the terminal part of the transport path 67 by not branching.
- each branch portion 34 includes a branch member 77 that opens and closes an opening 76 formed from the passage surface 52 to the lower guide portion 53.
- the branch member 77 has a shaft 78 whose lower part is parallel to the conveying direction as a fulcrum, a coin passing position where the lower part is fitted into the opening 76 and closes the opening 76, and projects from the inside of the opening 76 toward the surface of the passage surface 52. Thus, it is supported so as to be swingable between the coin branching position where the opening 76 is opened.
- the branch member 77 is a coin passage position that is fitted and closed in the opening 76 shown in FIG. 7, the surface of the branch member 77 is flush with the passage surface 52, and the peripheral edge of the coin is placed on the surface of the branch member 77.
- a support portion 79 that functions as a part of the support guide portion 53 is formed to protrude.
- a guide portion 80 projects from the edge portion of the branching member 77 corresponding to the downstream side in the transport direction toward the back surface side.
- This guide portion 80 has an opening 76 for coins that protrude into the conveyance passage 67 and are conveyed by the deposit conveyance belt 70 in the conveyance passage 67 in a state where the branching member 77 shown in FIG. Forcibly drop into and branch.
- a solenoid 81 disposed on the back side of the passage surface 52 is connected to the guide portion 80, and the branch member 77 is switched between a coin passing position and a coin branching position by driving the solenoid 81.
- a chute 82a is provided at the position of the reject branching portion 34 in the uppermost stream in the transport direction to guide the coin branched by the branching portion 34 to the tray 20 of the payout opening 19.
- a denomination chute 82b for guiding the coins branched at each denomination branch 34 to the denomination coin storage unit 35 is disposed.
- each coin storage unit 35 includes a storage frame 84 for storing coins in an unaligned state.
- a receiving port 85 for receiving coins branched from the transfer passage 67 at the branching portion 34 is formed.
- a belt 86 that supports coins stored in a non-aligned state is disposed at the bottom of the storage frame 84. This belt 86 is suspended along the left and right direction of the machine body 12 by a roller 87 that is pivotally supported in the horizontal direction with respect to the machine body 12 and can be rotated. It is suspended so as to rise upward as it goes from the portion 32 side to the right withdrawal conveyance portion 36 side.
- a discharge port 88 for discharging the stored coins to the dispensing transport unit 36 is formed.
- a stopper 90 for restricting the coins discharged from the discharge port 88 one by one is disposed on the downstream side in the transport direction from the position of the reverse rotation roller 89 above the discharge port 88 of the belt 86.
- This stopper 90 can be moved forward and backward from the discharge port 88 by a solenoid 91 attached to the machine body 12 side, restricts the release of coins during advancement, and permits the release of coins during retraction.
- a detection unit 92 for detecting the number of coins discharged from the discharge port 88 by detecting coins passing through the discharge port 88 is disposed.
- a motor 93 that rotationally drives the belt 86 and the reverse rotation roller 89 is disposed below the belt 86.
- a plurality of coin detection sensors 94 that project detection light so as to penetrate the plurality of coin storage units 35 and detect coins in the coin storage unit 35 are arranged.
- one coin detection sensor 94 is arranged in the vicinity of the receiving port 85, and is configured as a part of a full detection unit that detects the fullness of coins stored in the coin storage unit 35. Yes.
- the dispensing transport unit 36 is an endless shape disposed along the front-rear direction of the machine body 12 on the side of the discharge port 88 side of the plurality of coin storage units 35.
- the withdrawal conveyor belt 100 is provided.
- the dispensing / conveying belt 100 rotates so that the upper surface of the dispensing / conveying belt 100 moves toward the front outlet 19 by driving a motor (not shown).
- the dispensing conveyor belt 100 is surrounded by passage walls 101 and 102 on both side surfaces and a passage wall 103 on the upper surface.
- the coins transported by the withdrawal transport belt 100 are dropped between the downstream side in the transport direction of the withdrawal transport belt 100 of the withdrawal transport section 36 and the payout opening 19.
- a discharge port 107 that can be discharged out of the machine body 12 is formed.
- the discharge port 107 is provided with a switching member 108 for switching the transfer destination of the coins transported by the dispensing transport belt 100 between the payout port 19 and the discharge port 107.
- the bottom plate 111 of the main unit 14 located below the discharge port 107 is formed with an opening 112 for storing the coins discharged from the discharge port 107 in the coin cassette 24.
- the coin storage unit 35 when the coin storage unit 35 is full or when the coins in the coin storage unit 35 are collected, the coins are discharged one by one from the coin storage unit 35, and the coins discharged from the coin storage unit 35 are withdrawn and conveyed.
- the portion 36 can be transported to the discharge port 107 and collected in the coin cassette 24.
- FIG. 10 shows a block diagram of the coin processor 11, and 121 is a control unit that controls the entire coin processor 11.
- the control unit 121 includes an identification unit 33, a sensor group 122 including various sensors that detect coins at each position in the coin processor 11, a setting unit 123 that performs various settings, and a communication unit that can communicate with the POS register. 124 is connected.
- the sensor group 122 includes, for example, a plurality of coin position detection sensors 125 (see FIG. 4) that are provided along the residual detection sensor 58 of the feeding unit 31 and the transport path 67 and detect the position of the coins that are transported in the transport path 67. ), The detection unit 92 of the coin storage unit 35, the coin detection sensor 94, and the like.
- the setting means 123 detects the clogging during the coin conveyance in which the coin fed out from the feeding unit 31 is being conveyed by the conveyance path 67, and then waits for the restoration command to be issued from the POS register, or recovers the POS. It is possible to select and set whether to restore without waiting for the restoration command to be issued from the register.
- control unit 121 controls the feeding unit 31, the depositing / conveying unit 32, the branching unit 34, the coin storage unit 35, the dispensing / conveying unit 36, the discharging mechanism 60, and the like.
- the control unit 121 controls the coin processor 11 based on a command from the POS register, and has various functions for controlling the coin processor 11, but some of the functions are as follows. Show.
- Coins are stored in the feeding unit 31 that has previously driven the discharge gate drive motor 63 to close the discharge gate 62, and the feed unit 31 and the deposit conveyance belt drive motor 71 are driven so that the deposit conveyance belt 70 can move inside the conveyance path 67.
- the driving of the feeding unit 31 is stopped, the discharge gate drive motor 63 is driven, and the discharge gate 62 is opened.
- the rotary disc 40 and the small-diameter disc 42 are rotated in the direction opposite to the feeding direction, and the deposit conveyance belt drive motor 71 is driven in the direction opposite to the conveyance direction, and the coins jammed in the conveyance path 67 by the deposit conveyance belt 70 are collected.
- the communication means 124 is used to Waiting for a recovery command to be issued, the coins jammed in the transport passage 67 are returned to the feeding unit 31 and discharged to the tray 20 of the payout port 19, while the setting unit 123 issues a recovery command from the POS register. If it is set to recover without waiting for the coin to be recovered, it is not necessary to wait for a recovery command from the POS register via the communication means 124 after the coin jam is detected during the coin transfer. A function of returning coins packed in the transport passage 67 to the feeding portion 31 and discharging them to the tray 20 of the payout opening 19.
- the deposit conveyance belt drive motor 71 is moved in the direction opposite to the conveyance direction at a speed slower than driving in the conveyance direction. Function to drive.
- the coin processor 11 is connected to the POS register and operates according to a command of the POS register.
- This POS register has an operation that is operated by the cashier and an operation that is operated by the customer, and the operation is the same in either operation.
- the operator who is a cashier or customer, pays out the purchased goods at the POS register and pays the payment.
- the amount of payment is input from the POS register to the coin processor 11.
- the coin paid as the settlement money by the cashier or customer operator is inserted into the slot 16, and the deposit start button 18 is pressed.
- the feeding unit 31 and the deposit transport unit 32 are driven to start the depositing operation.
- the coins inserted into the insertion slot 16 are guided to fall into the hopper 41 and fall into the surface of the rotating disk 40.
- the rotating disk 40 and the small diameter disk 42 are rotated by the start of the depositing operation, and the coins are picked up one by one by the pickup members 48 protruding from the surface of the rotating disk 40 and guided from the upper part of the rotating disk 40. It is sent to the passage 51 and delivered to the small diameter disk 42 one by one. Coins received by the protrusions 65 of the small-diameter disk 42 are fed one by one into the transport passage 67 of the deposit transport section 32.
- the deposit conveyance belt 70 rotates by the start of the deposit operation, and coins fed one by one by the projections 65 of the small-diameter disk 42 of the feeding unit 31 are arranged between the adjacent projections 72 of the deposit conveyance belt 70. And the inside of the conveyance path 67 is conveyed toward the downstream side in the conveyance direction while pushing the coin with the protrusion 72.
- the coins transported in the transport passage 67 are identified by the identification unit 33.
- the identification unit 33 if it is a reject coin such as an unacceptable or unrecognizable coin that cannot be accepted into the machine body 12, or a coin that is not allowed to be deposited in advance, it is positioned at the most upstream in the transport direction. Branches from the conveyance path 67 at the reject branch 34 for rejection.
- the solenoid 81 is driven to project the branch member 77 from the opening 76 toward the surface of the passage surface 52 as shown in FIG. Then, the coin is conveyed to the coin distribution position where the opening 76 is opened, and the coin conveyed by the deposit conveyance belt 70 is forcibly dropped into the opening 76 by the guide portion 80 of the branching member 77. Branch at. The coins branched at the reject branch 34 are returned to the tray 20 of the payout opening 19 through the chute 82a so that the operator can take them out.
- the coin is conveyed to the position of the branch unit 34 of the corresponding denomination and denominated from the conveyance path 67.
- the branch member 77 is in the coin passing position where the opening part 76 is fitted and closed, so that the coin is on the upstream side. It passes through the position of each branch part 34 that is located, and can be branched at the branch part 34 of the corresponding type.
- the branching operation at this type-specific branching portion 34 is the same as that of the branching portion 34 for reject coins.
- the coins branched at these denomination branching units 34 are dropped and stored in the coin storage unit 35 of the corresponding denomination.
- the detection signal output from the residual detection sensor 58 for detecting coins on the rotating disk 40 has not been output for a predetermined time and the coin is not identified by the identification unit 33 for a predetermined time, the coin inserted into the insertion slot 16 It is determined that the above process has been completed, and the driving of the feeding unit 31 and the deposit conveyance unit 32 is stopped.
- the pick-up member 48 of the rotating disk 40 falls from the lower side of the rotating disk 40 to the upper side of the rotating disk 40 while it is dropped, or the foreign object is removed by the picking-up member 48. Even if the pickup is picked up, the foreign matter cannot be transferred to the protrusion 64 of the small-diameter disk 42 and falls, so that the foreign matter remains on the rotating disc 40.
- transformation coin etc. in which the external shape has deformed are also included.
- the identification unit 33 does not identify the coins for a predetermined time, so foreign matter remains.
- the discharge gate 62 of the hopper 41 is opened, the discharge port 61 of the hopper 41 is opened, and the foreign matter on the rotating disk 40 is discharged.
- the foreign matter discharged from the feeding unit 31 is returned to the tray 20 of the payout port 19 through the chute 64 so that the operator can take it out.
- the overflow coin is stored in the coin storage unit. Since it cannot be stored in 35, if the coin collecting operation from the coin storage unit 35 is not performed, the next deposit transaction cannot be performed, and the suspension of the deposit transaction due to full detection is one factor that hinders efficient operation. Therefore, when it is detected that the coin storage unit 35 is full during coin transfer, the switching member 108 of the dispensing transfer unit 36 is switched to the direction of guiding the coin to the discharge port 107 side to detect fullness.
- the coins are discharged one by one from the coin storage unit 35, and the coins discharged from the coin storage unit 35 are transported to the discharge port 107 by the dispensing transport unit 36 and collected in the coin cassette 24. Thereby, it is also possible to continue the processing without interrupting the deposit transaction.
- the coin jam detection means 126 detects that a coin jam has occurred. The fact that a coin jam has been detected is transmitted to the POS register through the communication means 124 and is notified by the notification means of the POS register.
- the setting means 123 is set in advance to wait for the restoration command from the POS register to be restored, the occurrence of coin clogging is confirmed.
- the operator who has performed the operation of instructing the recovery using the POS register and instructing the recovery instruction from the POS register via the communication means 124 starts the recovery operation.
- the setting means 123 is set so as to restore without waiting for the restoration command from the POS register to be instructed, it is detected via the communication means 124 after the coin jam is detected during the coin conveyance.
- the recovery operation is started without waiting for the recovery command from the POS register.
- the discharge gate drive motor 63 of the feeding unit 31 is driven to open the discharge gate 62, and the rotary disk 40 and the small-diameter disk 42 are fed out.
- the deposit conveyance belt drive motor 71 of the deposit conveyance unit 32 is driven in the direction opposite to the conveyance direction to rotate the deposit conveyance belt 70 in the direction opposite to the conveyance direction.
- the picking member 48 of the rotating disk 40 can move the coins being fed to the lower part of the rotating disk 40 and be discharged.
- the small-diameter disk 42 in the direction opposite to the feeding direction the coins that are being fed by the protrusions 65 of the small-diameter disk 42 and the coins that are returned from the transport passage 67 can be taken into the feeding portion 31.
- the deposit conveyance belt 70 By rotating the deposit conveyance belt 70 in the direction opposite to the conveyance direction, the coins remaining in the conveyance path 67 including the coins jammed in the conveyance path 67 by the protrusion 72 of the deposit conveyance belt 70 are removed. It is pushed and conveyed toward the feeding unit 31 and returned to the feeding unit 31. At this time, by driving the deposit conveyance belt drive motor 71 in a direction opposite to the conveyance direction at a speed slower than driving in the conveyance direction, the torque of the deposit conveyance belt drive motor 71 is secured, and the jammed coins are strongly Even in the state of being bitten, the biting state can be reliably eliminated, and further, the occurrence of biting of coins moving in the direction opposite to the transport direction can be prevented.
- the rotation of the rotary disk 40 and the small-diameter disk 42 is stopped and the deposit conveyance belt 70 of the deposit conveyance unit 32 is stopped.
- the rotation is stopped, and the discharge gate drive motor 63 of the feeding unit 31 is driven to close the discharge gate 62.
- a good coin processor 11 can be provided.
- the place where the coins packed in the transport passage 67 are discharged is common with the tray 20 of the payout outlet 19 for paying out the coins withdrawn from the coin storage section 35, the convenience for the operator can be improved.
- the belt 86 is rotated by the drive of the motor 93 and the reverse rotation roller 89 is rotated in reverse, and the non-aligned coins on the belt 86 are aligned in one layer and one row by the reverse rotation roller 89.
- the stopper 91 is retracted from the discharge port 88 by the solenoid 91, the coins to be discharged are detected by the detection unit 92, and the number of discharged sheets is counted.
- the solenoid 91 causes the stopper 90 to enter the discharge port 88 to forcibly stop the coin discharge and stop the driving of the motor 93 to perform the discharge operation. To stop.
- the coins discharged from the discharge port 88 of the coin storage unit 35 are paid out to the tray 20 of the payout opening 19 by the payment transfer belt 100 of the payment transfer unit 36.
- the overflow coin may be discharged from the back of the machine body 12 to the outside. This can be applied to, for example, an operation in which the coin cassette unit 22 is not arranged below the coin processor 11.
- FIG. 11 shows a second embodiment in which overflow coins are discharged from the rear surface of the airframe 12 to the outside.
- the coin processor 11 detects that the coin storage unit 35 is full during the coin transport, the coin processor 11 transports the overflow coin to the rear end of the transport path 67, and the slit 131 provided on the back surface of the machine body 12 (Refer to FIG. 11 (b)), a gate 132 (see FIG. 11 (c)) provided on the back of the machine body 12 so as to be openable and closable, and a discharge guide 133 (FIG. 11 (d)) attached to the back of the machine body 12. (See below).
- a storage unit for storing the overflow coins to be discharged is disposed on the back of the machine body 12.
- FIG. 12 shows a third embodiment in which overflow coins are discharged from the rear surface of the fuselage 12 to the outside.
- the coin processor 11 detects that the coin storage unit 35 is full during the coin transfer, it stores the corresponding coin from the coin storage unit 35 of the corresponding denomination, but stores it from the coin storage unit 35.
- the coins are discharged to the withdrawal transport unit 36, the withdrawal transport unit 36 is driven in the direction opposite to the transport direction, and the overflow coins are transported to the rear end of the withdrawal transport unit 36.
- the slit 141 (see FIG. 12 (b)) provided on the back surface of the machine body 12, the gate 142 (see FIG.
- a storage unit for storing the overflow coins to be discharged is disposed on the back of the machine body 12.
- whether or not to discharge the overflow coins from the rear surface of the airframe 12 may be arbitrarily set by the setting means 123. Further, for example, when the discharge guides 133 and 143 are attached to the machine body 12, it may be detected and automatically switched to the operation of discharging the overflow coins from the rear surface of the machine body 12 to the outside.
- the present invention is used not only for a coin processing machine such as a coin depositing machine or a coin depositing / dispensing machine, but also as a coin handling apparatus such as a money handling machine capable of processing both coins and banknotes.
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Abstract
Description
20 硬貨取出部および硬貨出金部としての受皿
31 繰出手段としての繰出部
35 硬貨収納部
39 回転軸
40 回転円盤
41 ホッパ
42 小径円盤
48 拾上部材
50 硬貨出入口
62 排出ゲート
63 排出ゲート駆動手段としての排出ゲート駆動モータ
67 搬送通路
70 搬送体としての入金搬送ベルト
71 搬送体駆動手段としての入金搬送ベルト駆動モータ
72 突起体
121 制御部
123 設定手段
124 通信手段
Claims (11)
- 硬貨を搬送する硬貨搬送装置において、
硬貨を非整列状態で貯留するとともに、貯留硬貨を1枚ずつ繰り出す繰出手段と、
前記繰出手段から繰り出された硬貨を受け入れる搬送通路と、
前記繰出手段から前記搬送通路内に繰り出された硬貨を受け取り、前記搬送通路内を1枚ずつ押動搬送可能とする複数の突起体を備えた搬送体と、
前記搬送体を駆動する搬送体駆動手段と、
前記繰出手段に設けられ、閉状態では前記繰出手段内に硬貨を貯留可能にするとともに、開状態では前記繰出手段内の硬貨を外部へ排出可能とする排出ゲートと、
前記排出ゲートを駆動する排出ゲート駆動手段と、
前記排出ゲートから排出された硬貨を受け止めるとともに、受け止めた硬貨を装置外から取り出し可能に形成された硬貨取出部と、
前記硬貨を搬送する際、前記繰出手段を駆動させて硬貨を前記搬送通路内に繰り出すとともに、前記搬送体駆動手段を駆動させて前記搬送体により前記搬送通路内の硬貨を搬送し、この硬貨搬送中に前記搬送通路内で硬貨詰まりが発生した場合、前記繰出手段の駆動を停止させ、前記排出ゲート駆動手段を駆動させて前記排出ゲートを開状態とし、前記搬送体駆動手段を搬送方向とは逆方向に駆動させて前記搬送体により前記搬送通路内に詰まった硬貨を前記繰出手段に戻し、前記排出ゲートを介して前記硬貨取出部に硬貨を排出させる制御部と
を具備していることを特徴とする硬貨搬送装置。 - 前記繰出手段は、
硬貨の出入りが可能な硬貨出入口と、
回転軸に取り付けられ水平方向に対して所定角度で傾斜する位置で回転される回転円盤と、
前記回転円盤の表面側に硬貨を貯留するホッパと、
前記回転円盤の表面から突出し、貯留硬貨を1枚ずつ拾い上げる拾上部材と、
前記硬貨出入口近傍に配設され、前記拾上部材によって所定間隔毎に1枚ずつ拾い上げられる硬貨を受け取るとともに、1枚ずつ前記搬送体へ受け渡す小径円盤とを備えた
ことを特徴とする請求項1記載の硬貨搬送装置。 - 前記排出ゲートは、前記ホッパの下側の一部を形成する
ことを特徴とする請求項2記載の硬貨搬送装置。 - 前記制御部は、前記搬送通路内に詰まった硬貨を前記硬貨取出部に排出する際、前記搬送体駆動手段を搬送方向への駆動よりも遅い速度で搬送方向とは逆方向に駆動させる
ことを特徴とする請求項1記載の硬貨搬送装置。 - 硬貨を処理する硬貨処理機において、
硬貨を非整列状態で貯留するとともに、貯留硬貨を1枚ずつ繰り出す繰出手段と、
前記繰出手段から繰り出された硬貨を受け入れる搬送通路と、
前記繰出手段から前記搬送通路内に繰り出された硬貨を受け取り、前記搬送通路内を1枚ずつ押動搬送可能とする複数の突起体を備えた搬送体と、
前記搬送体を駆動する搬送体駆動手段と、
前記繰出手段に設けられ、閉状態では前記繰出手段内に硬貨を貯留可能にするとともに、開状態では前記繰出手段内の硬貨を外部へ排出可能とする排出ゲートと、
前記排出ゲートを駆動する排出ゲート駆動手段と、
前記排出ゲートから排出された硬貨を受け止めるとともに、受け止めた硬貨を前記硬貨処理機外から取り出し可能に形成された硬貨出金部と、
前記硬貨を搬送する際、前記繰出手段を駆動させて硬貨を前記搬送通路内に繰り出すとともに、前記搬送体駆動手段を駆動させて前記搬送体により前記搬送通路内の硬貨を搬送し、この硬貨搬送中に前記搬送通路内で硬貨詰まりが発生した場合、前記繰出手段の駆動を停止させ、前記排出ゲート駆動手段を駆動させて前記排出ゲートを開状態とし、前記搬送体駆動手段を搬送方向とは逆方向に駆動させて前記搬送体により前記搬送通路内に詰まった硬貨を前記繰出手段に戻し、前記排出ゲートを介して前記硬貨出金部に硬貨を排出させる制御部と
を具備していることを特徴とする硬貨処理機。 - 前記繰出手段は、
硬貨の出入りが可能な硬貨出入口と、
回転軸に取り付けられ水平方向に対して所定角度で傾斜する位置で回転される回転円盤と、
前記回転円盤の表面側に硬貨を貯留するホッパと、
前記回転円盤の表面から突出し、貯留硬貨を1枚ずつ拾い上げる拾上部材と、
前記硬貨出入口近傍に配設され、前記拾上部材によって所定間隔毎に1枚ずつ拾い上げられる硬貨を受け取るとともに、1枚ずつ前記搬送体へ受け渡す小径円盤とを備えた
ことを特徴とする請求項5記載の硬貨処理機。 - 前記排出ゲートは、前記ホッパの下側の一部を形成する
ことを特徴とする請求項6記載の硬貨処理機。 - 外部機器と通信可能な通信手段を備え、
前記制御部は、硬貨搬送中に硬貨詰まりが発生した後、前記通信手段を介して前記外部機器から指令された復旧指令に従って、前記排出ゲート駆動手段を駆動させて前記排出ゲートを開状態とし、前記搬送体駆動手段を搬送方向とは逆方向に駆動させて前記搬送体により前記搬送通路内に詰まった硬貨を前記繰出手段に戻し、前記排出ゲートを介して前記硬貨出金部に硬貨を排出させる
ことを特徴とする請求項5記載の硬貨処理機。 - 硬貨を収納するとともに、前記通信手段を介して前記外部機器から指令された出金指令に従って、収納硬貨を前記硬貨出金部に払出可能とする硬貨収納部を備え、
前記硬貨出金部は、前記硬貨収納部から払い出された硬貨を受け止めるとともに、受け止めた硬貨を前記硬貨処理機外から取り出し可能に形成されている
ことを特徴とする請求項8記載の硬貨処理機。 - 硬貨搬送中に硬貨詰まりが発生した後、前記外部機器から復旧指令が指令されるのを待って復旧するか、前記外部機器から復旧指令が指令されるのを待たずに復旧するかを設定する設定手段を備え、
前記制御部は、前記設定手段によって前記外部機器から復旧指令が指令されるのを待たずに復旧するように設定されている場合、硬貨搬送中に硬貨詰まりが発生した後、前記通信手段を介して前記外部機器から復旧指令が指令されるのを待たず、前記搬送通路内に詰まった硬貨を前記硬貨出金部に排出させる
ことを特徴とする請求項8記載の硬貨処理機。 - 前記制御部は、前記搬送通路内に詰まった硬貨を前記硬貨出金部に排出する際、前記搬送体駆動手段を搬送方向への駆動よりも遅い速度で搬送方向とは逆方向に駆動させる
ことを特徴とする請求項5記載の硬貨処理機。
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
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JP2009551333A JP5255573B2 (ja) | 2008-01-28 | 2008-01-28 | 硬貨処理機 |
EP08703966.5A EP2249316B1 (en) | 2008-01-28 | 2008-01-28 | Coin transporting device |
PCT/JP2008/051157 WO2009095980A1 (ja) | 2008-01-28 | 2008-01-28 | 硬貨搬送装置および硬貨処理機 |
US12/735,552 US8371911B2 (en) | 2008-01-28 | 2008-01-28 | Coin transporting device and coin handling machine |
CN2008801257491A CN101925933B (zh) | 2008-01-28 | 2008-01-28 | 硬币传送装置和硬币处理机 |
Applications Claiming Priority (1)
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PCT/JP2008/051157 WO2009095980A1 (ja) | 2008-01-28 | 2008-01-28 | 硬貨搬送装置および硬貨処理機 |
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WO2009095980A1 true WO2009095980A1 (ja) | 2009-08-06 |
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PCT/JP2008/051157 WO2009095980A1 (ja) | 2008-01-28 | 2008-01-28 | 硬貨搬送装置および硬貨処理機 |
Country Status (5)
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US (1) | US8371911B2 (ja) |
EP (1) | EP2249316B1 (ja) |
JP (1) | JP5255573B2 (ja) |
CN (1) | CN101925933B (ja) |
WO (1) | WO2009095980A1 (ja) |
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JP2015103057A (ja) * | 2013-11-26 | 2015-06-04 | 沖電気工業株式会社 | 硬貨処理装置 |
JP2017134708A (ja) * | 2016-01-29 | 2017-08-03 | 富士電機株式会社 | 硬貨処理装置 |
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JP5775776B2 (ja) * | 2011-09-28 | 2015-09-09 | グローリー株式会社 | 硬貨繰出装置、硬貨入出金機および硬貨繰出方法 |
JP6162393B2 (ja) * | 2012-12-04 | 2017-07-12 | グローリー株式会社 | 紙幣処理装置 |
JP2015097001A (ja) * | 2013-11-15 | 2015-05-21 | 旭精工株式会社 | 硬貨入出金装置の硬貨投入口 |
JP6725354B2 (ja) * | 2016-07-28 | 2020-07-15 | グローリー株式会社 | 紙葉類処理装置 |
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JP6934676B2 (ja) * | 2019-01-28 | 2021-09-15 | 旭精工株式会社 | 硬貨処理装置の硬貨分離送出装置 |
JP7358927B2 (ja) * | 2019-11-14 | 2023-10-11 | 沖電気工業株式会社 | 硬貨処理装置及び現金取扱装置 |
JP7199722B2 (ja) * | 2019-12-25 | 2023-01-06 | 旭精工株式会社 | 硬貨搬送振分機構及びそれを備えた硬貨識別搬送装置 |
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2008
- 2008-01-28 CN CN2008801257491A patent/CN101925933B/zh not_active Expired - Fee Related
- 2008-01-28 EP EP08703966.5A patent/EP2249316B1/en not_active Not-in-force
- 2008-01-28 JP JP2009551333A patent/JP5255573B2/ja not_active Expired - Fee Related
- 2008-01-28 WO PCT/JP2008/051157 patent/WO2009095980A1/ja active Application Filing
- 2008-01-28 US US12/735,552 patent/US8371911B2/en active Active
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
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JP2013050904A (ja) * | 2011-08-31 | 2013-03-14 | Glory Ltd | 硬貨繰り出し装置、硬貨処理機および硬貨繰り出し方法 |
JP2015103057A (ja) * | 2013-11-26 | 2015-06-04 | 沖電気工業株式会社 | 硬貨処理装置 |
JP2017134708A (ja) * | 2016-01-29 | 2017-08-03 | 富士電機株式会社 | 硬貨処理装置 |
JP2019053360A (ja) * | 2017-09-12 | 2019-04-04 | 富士電機株式会社 | 硬貨処理装置 |
JP7021480B2 (ja) | 2017-09-12 | 2022-02-17 | 富士電機株式会社 | 硬貨処理装置 |
Also Published As
Publication number | Publication date |
---|---|
US20100311315A1 (en) | 2010-12-09 |
JP5255573B2 (ja) | 2013-08-07 |
CN101925933B (zh) | 2013-03-20 |
US8371911B2 (en) | 2013-02-12 |
EP2249316B1 (en) | 2017-04-05 |
EP2249316A4 (en) | 2011-03-09 |
CN101925933A (zh) | 2010-12-22 |
JPWO2009095980A1 (ja) | 2011-05-26 |
EP2249316A1 (en) | 2010-11-10 |
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