WO2018141107A1 - Terminal de dépôt et système de dépôt et de retrait - Google Patents

Terminal de dépôt et système de dépôt et de retrait Download PDF

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Publication number
WO2018141107A1
WO2018141107A1 PCT/CN2017/072947 CN2017072947W WO2018141107A1 WO 2018141107 A1 WO2018141107 A1 WO 2018141107A1 CN 2017072947 W CN2017072947 W CN 2017072947W WO 2018141107 A1 WO2018141107 A1 WO 2018141107A1
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WO
WIPO (PCT)
Prior art keywords
banknote
gear
wheel
plate
deposit
Prior art date
Application number
PCT/CN2017/072947
Other languages
English (en)
Chinese (zh)
Inventor
吕响红
黄雪
高海源
Original Assignee
深圳怡化电脑股份有限公司
深圳市怡化时代科技有限公司
深圳市怡化金融智能研究院
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 深圳怡化电脑股份有限公司, 深圳市怡化时代科技有限公司, 深圳市怡化金融智能研究院 filed Critical 深圳怡化电脑股份有限公司
Priority to CN201780000033.8A priority Critical patent/CN107004325A/zh
Priority to PCT/CN2017/072947 priority patent/WO2018141107A1/fr
Publication of WO2018141107A1 publication Critical patent/WO2018141107A1/fr

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Classifications

    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/10Mechanical details
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/10Mechanical details
    • G07D11/14Inlet or outlet ports
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F19/00Complete banking systems; Coded card-freed arrangements adapted for dispensing or receiving monies or the like and posting such transactions to existing accounts, e.g. automatic teller machines
    • G07F19/20Automatic teller machines [ATMs]
    • G07F19/202Depositing operations within ATMs

Definitions

  • the present invention belongs to the technical field of financial self-operating deposit and withdrawal devices, and particularly relates to a deposit terminal and a deposit and withdrawal system.
  • the automatic deposit and withdrawal equipment on the market in the case of deposit business, is a single banknote type, and it is necessary to set a protective banknote.
  • the operator can only Divide the cash into several parts and store it in multiple times. After each storage, the protective bank door is closed. Waiting for the automatic deposit and withdrawal device to clear the banknotes before the banknote can be opened for the next deposit, resulting in waste on the day. There may be a phenomenon that the shutter is unstable.
  • the present invention provides a deposit terminal and a deposit and withdrawal system, in view of the problem that a large amount of cash existing in an existing automatic deposit and withdrawal device needs to be stored in a divided manner and is expensive.
  • a deposit terminal including a cassette-type billing chamber and a bill transporting passage for transporting bills, the billing chamber having a billing gap and a dispensing opening for placing bills, a banknote channel connecting the banknote a gap extending in a direction away from the billing cavity, wherein the bill transporting passage is provided with a bill dispensing module for separating the bills in a single sheet, and the bill dispensing module is located in the bill transporting passage close to the bill dispensing The location of the gap.
  • the banknote chamber is formed by a first side plate, a second side plate, a carrier plate and a guide plate, and the first side plate and the second side plate are disposed in parallel with each other, and the bearing is The plate and the guide plate are disposed at an angle and disposed between the first side plate and the second side plate, and the banknote gap is located at a position where the carrier plate and the guide plate meet.
  • the carrying plate and the guiding plate are inclined at an angle to the horizontal plane to form a billing cavity whose horizontal cross-sectional area is gradually reduced from top to bottom.
  • a plurality of first supporting ridges are disposed on the carrying plate along the squeezing opening in the direction of the trajectory gap, and the guiding plate passes the slinging port to the banknote
  • a plurality of second support ribs are disposed in the gap direction.
  • the banknote dispensing module includes a separating wheel, a dividing wheel and a driving motor, wherein the separating wheel and the dividing wheel are disposed on the pair of rollers, and the separating wheel is fixedly disposed with respect to the first side plate, and the banknote is divided
  • a transmission assembly is disposed between the wheel and the driving motor to drive the rotation of the dividing wheel by a driving motor;
  • the plurality of protruding rings are disposed on the dividing wheel, and the plurality of protruding rings are spaced apart in the axial direction of the dividing wheel, and at least one ring is formed between the plurality of protruding rings a slot, the number of the separating wheels is the same as the number of the annular grooves, the separating wheels are disposed corresponding to the annular groove, and the separating wheel is tangential to the protruding ring or the separating wheel Partially trapped in the annular groove.
  • the outer circumference of the protruding ring is provided with a first toothed arc segment that is connected end to end and a first smooth arc segment.
  • the number of the dividing rollers is plural, and the plurality of dividing rollers are linked by the first rotating shaft passing through the central axis thereof, and the number of the separating wheels is plural, and the plurality of separating wheels are separated.
  • the wheel is fixed by setting the fixed shaft through the central axis;
  • the first side plate extends outwardly from a position where the receiving plate and the guiding plate are in contact with each other to form a first protruding plate portion, and the second side plate is adjacent to the receiving plate and the guiding plate.
  • the deposit terminal further includes a plurality of banknote wheels, wherein the plurality of banknote wheels are linked through the central axis by providing a second rotating shaft;
  • Both ends of the second rotating shaft are respectively rotatably connected to the first protruding plate portion and the second protruding plate portion, and a portion of the banknote wheel extends circumferentially out of the inner surface of the carrier plate and extends to The banknote chamber is inside.
  • the outer circumference of the banknote wheel is provided with a second toothed arc segment that is connected end to end and a second smooth arc segment, and the length of the second toothed arc segment is greater than or equal to the pass The distance between the banknote gap and the banknote module.
  • a first gear is disposed on the first rotating shaft, and a second gear is disposed on the second rotating shaft
  • a first belt is disposed on the outer circumference between the first gear and the second gear.
  • the transmission assembly includes a third gear, a fourth gear, a fifth gear, and a second belt, the third gear is coupled to an output shaft of the drive motor, the fourth gear and the Third gear meshing
  • the second belt sleeve is disposed on an outer circumference of the fourth gear and the fifth gear, and the fifth gear is coupled to the first rotating shaft.
  • the transmission component is disposed on an outer surface of the first side plate, and one end of the first rotating shaft passes through the first side plate and is connected to the fifth gear, and the driving motor is installed at the The outer surface of the guide plate is located between the first protruding plate portion and the second protruding plate portion, and an output shaft of the driving motor passes through the first side plate and is connected to the third gear.
  • the banknote transporting channel is further provided with a driving wheel for driving the banknote to move in the banknote passage, the driving wheel passing through the central axis through the third rotating shaft, and the two ends of the third rotating shaft Rotatingly connected to the first protruding plate portion and the second protruding plate portion, one end of the third rotating shaft is rotatable through the first side plate and connected with a sixth gear, and the second belt is sleeved The outer circumferences of the fourth gear, the fifth gear, and the sixth gear.
  • an auxiliary guiding wheel is disposed at one end of the guiding plate near the bill gap, the auxiliary guiding wheel extends to the bill gap position, and the auxiliary guiding wheel and the carrying board There is a gap between them.
  • a deposit and withdrawal system comprising a deposit terminal as described above.
  • a deposit terminal is provided with a drawer type bank
  • the banknote chamber is provided with a discharge port facing the operator, and the operator can stack the banknotes into the banknote chamber.
  • the banknotes are introduced into the banknote passage through the banknote gap in the banknote chamber, and the banknote module in the banknote channel separates the banknotes in a single sheet and provides the driving force for the banknotes to be transported in the banknote passage. Therefore, the stacked banknotes are continuously introduced into the banknote passage at the gap of the banknote and further stored. If the deposit amount is large, the operator can continuously add the banknotes during the deposit process to realize the uninterrupted deposit.
  • the operator only needs to perform a deposit process after depositing, reducing the deposit time and queue time of the large amount of banknotes, thereby reducing customer dissatisfaction and conflict situations, and avoiding the situation of pinch.
  • the deposit terminal allows the operator to visually see the depositing process of the deposited banknotes, which greatly increases the operator's trust and security to the bank.
  • FIG. 1 is a schematic structural diagram of a deposit terminal according to an embodiment of the present invention.
  • FIG. 2 is an enlarged schematic view showing the structure of A in FIG. 1;
  • FIG. 3 is an enlarged schematic view showing the structure of B in FIG. 1;
  • FIG. 4 is a schematic cross-sectional view of a deposit terminal according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of an operation state of a deposit terminal according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram showing the working state of a deposit terminal according to an embodiment of the present invention.
  • FIG. 7 is another schematic structural diagram of a deposit terminal according to an embodiment of the present invention.
  • FIG. 8 is another schematic structural diagram of a deposit terminal according to an embodiment of the present invention.
  • FIG. 9 is an enlarged schematic view showing the structure of C in FIG. 8;
  • FIG. 10 is an enlarged schematic view showing the structure of D in FIG. 8;
  • FIG. 11 is a schematic structural diagram of a deposit and withdrawal system according to an embodiment of the present invention.
  • the present embodiment discloses a deposit terminal 1 including a docking type bank 10 and a banknote passage for transporting banknotes.
  • the banknote chamber 10 has a pass. a banknote gap 102 and a port 101 for dispensing banknotes, the banknote passage connecting the banknote gap 102 and extending in a direction away from the banknote chamber 10, wherein the banknote passage is provided for
  • the banknotes are separated by a single banknote dispensing module, and the banknote dispensing module is located at a position where the banknote transporting channel is adjacent to the banknote gap 102.
  • the banknote chamber 10 is of a squeezing type, and the banknotes are introduced into the banknote passage through the banknote gap 102 disposed in the banknote storage body 10, and the banknote separation module realizes uninterrupted banknote separation and transmission. That is, non-stop deposits.
  • slotting type bank 10 refers to the banknote chamber 10 directly and externally through its opening 101 The boundary is connected, and no additional protective shutter is provided.
  • the dispensing opening 101 faces the operator, and the operator can directly place the stacked banknotes in the billing chamber 10 through the dispensing opening 101, and during the deposit process. Banknotes can be added later.
  • the operator only needs to perform a deposit process after depositing, reducing the deposit time and queue between the large amount of banknotes, thereby reducing customer dissatisfaction and conflict, and avoiding the pinch.
  • the deposit terminal 1 allows the operator to visually see the depositing process of the deposited banknotes, which greatly increases the operator's trust and security to the bank.
  • the banknote chamber 10 functions to accommodate the banknotes, and the banknotes are guided to enter the banknote gap 102. Therefore, the banknote chamber 10 is not particularly limited in this embodiment.
  • the specific shape of the person skilled in the art can design its shape as needed, and other shape design that realizes the same function should also be included in the protection scope of the present invention.
  • the banknote chamber 10 is formed by the first side plate 11, the second side plate 14, the carrier plate 12 and the guide plate 13, and passes through the first side plate 11, the second side plate 14, and the carrier plate 12.
  • the guiding plate 13 surrounds the banknote forming cavity 10, the first side plate 11 and the second side plate 14 are disposed in parallel with each other, and the carrier plate 12 and the guiding plate 13 are disposed at an angle and are disposed at the first Between the one side panel 11 and the second side panel 14, and the first side panel 11 and the second side panel 14 are perpendicular to the carrier panel 12 and the guiding panel 13, the bill gap 102 is located in the bearing At the intersection of the plate 12 and the guide plate 13, the two ends of the carrier plate 12 and the guide plate 13 away from each other form the discharge port 101 with the first side plate 11 and the second side plate 14.
  • the carrier plate 12 and the guiding plate 13 are inclined at an angle to the horizontal plane, and the first side plate 11 and the first side plate
  • the two side plates 14 are respectively located on two sides of the carrier plate 12 and the guide plate 13, and form a four-sided structure of the top two sides of the mouth.
  • the top two sides of the mouth are the opening ports 101, and the horizontal cross-sectional area is gradually formed from top to bottom.
  • the reduced billing chamber 10 is located at the bottom of the bill receiving cavity 10.
  • the banknotes are placed in the banknote holding chamber 10, the banknotes are pre-laminated together, and the bottom surface of the stacked banknotes having a large area is placed on the carrier board 12 because the carrier board 12 and the guide plate 13 are both disposed obliquely, so that the stacked banknotes have a tendency to move to the transfer position of the carrier plate 12 and the guide plate 13, and the carrier plate 12 serves as a platform for carrying the banknotes, and the banknotes are guided at the same time.
  • the gap 102 moves, and the inclined guiding plate 13 functions to support the long side of the side of the banknote, and simultaneously guides the movement of the banknote toward the carrying plate 12, and the first side plate 11 and the second side plate 14 are used.
  • the short sides of the two sides of the banknote are limited, and the distance between the first side panel 11 and the second side panel 14 is determined according to the length of different denominations of the existing currency bills, preferably slightly larger than the length of the largest banknote.
  • the distance between the first side panel 11 and the second side panel 14 is slightly larger than the length of the particular banknote.
  • the banknote located at the bottom enters the banknote gap 102
  • the banknote located at the top is moved down to fill the vacated position, and the banknote stack height in the banknote chamber 10 is lowered.
  • the unfilled banknotes can be placed on top of the remaining banknotes in the banknote chamber 10 to form a stack, and so on, until all the banknotes to be deposited are deposited.
  • the carrier plate 12 and the guiding plate 13 are disposed at right angles, which are suitable for adapting to the shape of the stacked banknotes.
  • the carrier plate 12 and the guiding plate 13 may also be disposed at an acute or obtuse angle. .
  • a plurality of first supporting ribs 121 are disposed on the carrying plate 12 along the squeezing opening 101 in the direction of the billing gap 102, and the guiding plate 13 is located along the venting opening 101
  • a plurality of second supporting ribs 131 are disposed in the direction of the bill gap 102, and the first supporting ribs 121 and the second supporting ribs 131 are in direct contact with the bills, and the surface of the carrying board 12 and the guiding plate 13 are simultaneously It is isolated from the banknotes, and reduces contamination of the carrier board 12 and the guide plate 13 by pollutants such as oil on the banknotes.
  • the dispensing module includes a separating wheel 15, a dividing roller 16 and a driving motor (not shown), the separating wheel 15 and the dividing roller 16 are disposed on the roller, and the separating wheel 15 is opposite to the first side.
  • the plate 11 is fixedly disposed, that is, the separation wheel 15 does not rotate, and the transmission assembly 20 is disposed between the dividing roller 16 and the driving motor to drive the rotation of the dividing roller 16 by the driving motor;
  • the separating wheel 15 Since the dividing roller 16 is actively rotating, the separating wheel 15 is fixedly disposed, so that relative rotation between the dividing roller 16 and the separating wheel 15 can occur, and the dividing roller 16 rotates, The separating wheel 15 is stationary; when a plurality of banknotes pass between the dividing roller 16 and the separating wheel 15, the dividing roller 16 can drive the banknote at the bottom to advance by friction, and the separating wheel 15
  • the top banknotes are subjected to a resistance opposite to the direction in which the banknotes 16 are rotated, so that the banknotes at the bottom and the banknotes at the top are separated from each other, so that the stacked banknotes are separated and enter the banknote passage in a single sheet.
  • the plurality of protruding rings 161 are disposed on the dividing roller 16, and the plurality of protruding rings 161 are spaced apart in the axial direction of the dividing roller 16, and are disposed in the plurality of protruding rings 161.
  • Forming at least one annular groove 162, the number of the separation wheels 15 is the same as the number of the annular grooves 162, and the separation wheel 15 is disposed corresponding to the annular groove 16 2 , that is, the separation wheel 15 and the
  • the protruding ring 161 on the dispensing wheel 16 is offset, and the separating wheel 15 is offset from the protruding ring 161 or the separating wheel 15 is partially trapped in the annular groove 162.
  • the width of 162 is slightly larger than the width of the separating wheel 15, and a concavo-convex slit is formed between the separating wheel 15 and the dividing roller 16, and when the banknote is caught between the separating wheel 15 and the dividing roller 16, the banknote It is deformed to adapt to the concave-convex gap, thereby increasing the stress between the separating wheel 15 and the banknotes, the dividing roller 16 and the banknotes, thereby increasing the frictional force, improving the banknote dispensing effect, and avoiding the bonding of the banknotes.
  • the outer circumference of the protruding ring 161 is provided with a first tooth-shaped arc segment 1611 that is connected end to end and a first smooth The arc segment 1612, the friction between the first toothed arc segment 1611 and the banknote is relatively large, the friction between the first smooth arc segment 1612 and the banknote is small, and the dividing roller 16 is rotated to
  • the contact between the first toothed arc segment 1611 and the banknote can drive the banknote to advance, and the banknote roller 16 rotates to the first smooth arc segment 1612 to contact the banknote, so that the banknote is not advanced, and the banknotes are separated to form a separation.
  • the first toothed arc segment 1611 is provided with a tooth pattern, is made of rubber material, or other material having a large frictional force, such as silica gel; the first smooth arc segment 1612
  • a plastic material having a small frictional force, or other materials such as metal conventional material replacement by those skilled in the art should also be included in the scope of the present invention.
  • the outer ring of the separating wheel 15 is rubber or other material having a large frictional force, such as silica gel.
  • the number of the dispensing rollers 16 is plural, and the plurality of dividing rollers 16 are disposed in the same straight line along the extending direction of the billing gap 102, which is beneficial to share the friction force on the bills and force the bills to be forced.
  • the plurality of dividing rollers 16 are linked by the first rotating shaft 163 through the central axis thereof, and the rotation of the first rotating shaft 163 drives the rotation of the plurality of dividing rollers 16, and the number of the separating wheels 15 is plural.
  • the plurality of separation wheels 15 are interlocked by providing a fixed shaft 151 through the central axis thereof.
  • the first side plate 11 extends outward from a position where it contacts the carrier plate 12 and the guide plate 13 to form a first protruding plate portion 111, and the second side plate 14 is guided by the carrier plate 12 and the guide plate 12
  • the position at which the plates 13 meet is outwardly extended to form a second protruding plate portion 141, on the side of the carrying plate 12 and the guiding plate 13 facing away from the banknote receiving chamber 10
  • a mounting area is formed between the one side plate 11 and the second side plate 14 for receiving the banknote passage and other transmission members, and the two ends of the first rotating shaft 163 are respectively rotatably connected to the first
  • the two ends of the fixing shaft 151 are respectively fixed on the first protruding plate portion 111 and the second protruding plate portion 141, and the first rotating shaft 163 is the same
  • the carrier plate 12 and the guide plate 13 are parallel, and the fixed shaft 151 is parallel with the carrier plate 12 and the
  • the deposit terminal 1 further includes a plurality of banknotes, the plurality of banknotes 17 are connected through the central axis of the second rotating shaft 173, and the rotation of the plurality of banknotes 17 is driven by the rotation of the second rotating shaft 173;
  • Both ends of the second rotating shaft 173 are rotatably connected to the first protruding plate portion 111 and the second protruding plate portion 141, respectively, and the second rotating shaft 173 is parallel to the carrier plate 12 and
  • the guide plate 13 faces the banknote wheel 17 toward the banknote gap 102.
  • the carrier plate 12 is provided with a plurality of strip-shaped through holes 122, and the strip-shaped through holes 122 are provided with two blocks.
  • Block 123 a portion of the banknote wheel 17 circumferentially passes through the strip-shaped through hole 122 and extends into the banknote chamber 10, and the banknote wheel 17 passes through the strip-shaped through hole 122 The height of the portion is greater than the height of the stop 123.
  • a portion of the banknote wheel 17 that passes through the strip-shaped through hole 122 rotates in a direction of the banknote gap 102, and the banknotes of the banknote-carrying chamber 10 are rubbed by the banknote wheel 17
  • the force acts to move the banknotes in the direction of the banknote gap 102 to assist the banknote insertion.
  • the outer circumference of the banknote wheel 17 is provided with a second toothed arc segment 171 and a second smooth arc segment 172 which are connected end to end.
  • the friction between the second toothed arc segment 171 and the banknote is relatively large, the friction between the second smooth arc segment 172 and the banknote is small, and the banknote wheel 17 is rotated to
  • the contact between the second toothed arc segment 171 and the banknote can drive the banknote to advance, and the banknote wheel 17 rotates until the second smooth arc segment 172 contacts the banknote, so that the banknote is not advanced, and the banknote is pushed and formed.
  • the second dispensing arc segment 171 is provided with a rod, a rubber material, or other material having a large frictional force, such as a silica gel; and the second smooth arc segment 172 is a smooth arc.
  • the shape is a plastic material with less friction, or other materials with less friction, such as metal; conventional material replacement by those skilled in the art should also be included in the protection scope of the present invention.
  • the length of the second toothed arc segment 171 is greater than or equal to the distance between the banknote gap 102 and the banknote module to ensure that the banknote wheel 17 can rotate during one rotation.
  • the banknotes are sent from the banknote gap 102 to the banknote dispensing module for dispensing.
  • the first rotating shaft 163 is provided with a first gear 164
  • the second rotating shaft 173 is provided with a second gear 174, between the first gear 164 and the second gear 174.
  • the outer circumference is sleeved with a first belt 19, and the inner circumference of the first belt 19 is provided with a rod.
  • the first shaft 163 and the second shaft 173 are linked by the first belt 19, that is, the first shaft 163.
  • the rotation of the second rotating shaft 173 can be rotated, and the rotating directions of the first rotating shaft 163 and the second rotating shaft 173 are the same, so that the dividing roller 16 and the cutting wheel 17 rotate in the same direction.
  • the transmission assembly 20 includes a third gear 201, a fourth gear 202, a fifth gear 203, and a second belt 206.
  • the third gear 201 is coupled to an output shaft of the drive motor, and the fourth gear 202 is engaged with the third gear 201, the second belt 206 is sleeved on the outer circumference of the fourth gear 202 and the fifth gear 203, and the inner ring of the second belt 206 is provided with a rod, the fifth A gear 203 is coupled to the first rotating shaft 163.
  • the output shaft drives the third gear 201 to rotate
  • the fourth gear 202 is a double-layer gear, including a first toothed disk 2021 and a second toothed disk 2022, the first The toothed disc 2021 is for engaging with the third gear 201, and the second toothed disc 2022 is for engaging with the second belt 206, so that the third gear 201 rotates to drive the fourth gear 202 to rotate.
  • the fourth gear 202 drives the second belt 206 to circulate, and the second belt 206 drives the fifth gear 203 to rotate, thereby driving the first rotating shaft 163 to rotate, that is, driving the dividing wheel 16 to rotate. Drive the operation of the banknote module.
  • the transmission assembly 20 is disposed on a side of the first side plate 11 facing away from the billing cavity 10, and one end of the first rotating shaft 163 can be rotated out of the first side plate 11 and
  • the fifth gear 203 is connected, and the driving motor is mounted on the outer surface of the guide plate 13 and located between the first protruding plate portion 111 and the second protruding plate portion 141, and the output shaft of the driving motor passes through the outlet.
  • the first side plate 11 is connected to the third gear 201.
  • the transmission assembly 20 is optionally provided with one or more steering wheels 205, the outer circumference of the steering wheel 205 Abutting against the outer ring of the second belt 206 for adjusting the extending direction and tension of the second belt 206.
  • the end of the first rotating shaft 163 passing through the first side plate 11 is further provided with a hand wheel 165 for manual force rotation.
  • the banknote transporting passage is further provided with a driving wheel 18 for driving the movement of the banknote in the banknote passage, the driving wheel 18 passing through the central axis through the third rotating shaft 181, and the two rotating shafts 181
  • the end is rotatably connected to the first protruding plate portion 111 and the second protruding plate portion 141, and one end of the third rotating shaft 181 is rotatable through the first side plate 11 and connected with the sixth gear 204.
  • the second belt 206 is sleeved on the outer circumferences of the fourth gear 202, the fifth gear 203, and the sixth gear 204.
  • the driving wheel 18 is located in the rear section of the bill transfer wheel 16, the number of teeth of the sixth gear 204 is smaller than the number of teeth of the fifth gear 203, and the fifth gear 203 and the sixth The gears 204 are sleeved in the inner ring of the second belt 206, so that the rotation speed of the sixth gear 204 is greater than the rotation speed of the fifth gear 203, that is, the rotation speed of the third rotation shaft 181 is greater than the first
  • the rotating shaft 163, the rotating speed of the driving wheel 18 is larger than the dividing roller 16, which facilitates the rapid transfer of the single banknotes separated by the dividing roller 16 out of the banknote passage, so as to prevent the separated banknotes from overlapping in the banknote passage.
  • the banknotes after the banknotes are removed from the banknote exit 103 of the banknote passage.
  • an auxiliary guide wheel 132 is disposed at one end of the guide plate 13 adjacent to the bill gap 102, the auxiliary guide wheel 132 extends to the position of the bill gap 102, and the auxiliary guide wheel 132 is A gap is left between the carrying plates 12, and the auxiliary guiding wheel 132 is passively rotated.
  • the auxiliary guiding wheels 132 guide the banknotes in the banknote receiving chamber 10 into the bill gap 102, and the same
  • the interval between the auxiliary guide wheel 132 and the carrier plate 12 limits the number of banknotes entering the banknote gap 102 at a time, avoiding too much entering the banknotes at one time, and affecting the banknote dispensing effect of the banknote dispensing module.
  • FIG. 11 another embodiment of the present invention discloses a deposit and withdrawal system including a circulation channel 3, a recycle cassette 5, a deposit terminal 1 as described above, and a withdrawal terminal 2, A billing passage 7 is disposed between the deposit terminal 1 and the circulation passage 3, and a billing passage 8 is disposed between the withdrawal terminal 2 and the circulation passage 3, and the circulation passage 3 and the recirculating cassette 5 are disposed. A first exchange channel 51 is provided between them.
  • the circulation channel 3 is a path for carrying the banknotes in the system, and the functional modules are connected, and the Tank chain transport structure.
  • the deposit and withdrawal system further includes a storage box 6 for accommodating an operator's forgotten banknotes, and a second exchange passage 61 is disposed between the storage box 6 and the circulation passage 3.
  • a first node converter 71 is disposed at a connection node of the banknote passage 7 and the circulation channel 3
  • a second node converter 81 is disposed at a connection node of the banknote channel 8 and the circulation channel 3
  • a third node converter 52 is disposed at a connection node with the circulation channel 3, and the second switching channel 6
  • a fourth node converter 62 is provided at a connection node with the circulation channel 3.
  • the first node converter 71, the second node converter 81, the third node converter 52, and the fourth node converter are used for switching between different channels, thereby implementing the functions of banknotes and banknotes.
  • the number of the recirculating cassettes 5 is plural, and the number of the retractable cassettes 5 is determined according to the number of classifications of the denominations of the banknotes. In the present embodiment, the number of the recirculating cassettes 5 is five.
  • the circulation channel 3 is provided with a banknote verification module 4 for performing banknote verification on the deposited or withdrawn banknotes, and the depositing and dispensing system may additionally provide a counting device or integrate the counting device in the money detector module 4.
  • connecting should be understood broadly, unless it is specifically defined and defined, for example, it may be a fixed connection, a detachable connection, or an integral connection

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Abstract

La présente invention concerne un terminal de dépôt comprenant une cavité de retenue de billets de banque ouverte (10) et un canal d'acheminement de billets de banque permettant d'acheminer des billets de banque. La cavité de retenue de billets de banque (10) est pourvue d'un espace de passage de billets de banque (102) et d'une ouverture (101) permettant de placer un billet de banque. Le canal d'acheminement de billets de banque est relié à l'espace de passage de billets de banque (102) et s'étend dans la direction opposée à la cavité de retenue de billets de banque (10). Un module de séparation de billets de banque destiné à séparer des billets de banque individuels est disposé dans le canal d'acheminement de billets de banque à un emplacement à proximité de l'espace de passage de billets de banque (102). En outre, l'invention concerne un système de dépôt et de retrait destiné à être utilisé par un client de façon à effectuer un dépôt d'un montant important, ce qui permet de mettre en œuvre une fonction d'ajout de billets de banque ininterrompue. Un mode de dépôt ouvert permet la surveillance d'un processus d'ajout de billets de banque et, dans le même temps, prévient les risques de capture d'une main du client par une porte de billets de banque lors de la réalisation d'un dépôt.
PCT/CN2017/072947 2017-02-06 2017-02-06 Terminal de dépôt et système de dépôt et de retrait WO2018141107A1 (fr)

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