Multiple banknote inlet intelligent banknote dispenser
By designing an intelligent banknote dispensing machine with multiple banknote inlets, and utilizing multiple banknote inlet mechanisms and transmission channels, it achieves rapid dispensing of banknotes of various denominations, solving the problems of complex and inefficient dispensing processes in existing technologies, and improving banknote dispensing efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-17
- Publication Date
- 2026-03-20
AI Technical Summary
Existing automatic banknote dispensing devices have a complex and inefficient dispensing process when handling multiple denominations of banknotes, making it difficult to achieve rapid dispensing of multiple denominations of banknotes.
Design a smart banknote dispensing machine with multiple banknote inlets, including multiple banknote inlet mechanisms, transmission channels, counterfeit detection mechanisms, and banknote dispensing mechanisms. Banknotes are simultaneously input through multiple inlets, and the banknotes are rapidly transmitted and counterfeit detected using guide plate components, banknote feeding wheel components, and banknote twisting wheel components. The banknote dispensing mechanism can switch the exit direction.
It enables rapid banknote distribution of various denominations, improving distribution efficiency and enabling the distribution of large denomination banknotes at several times the speed of traditional devices.
Smart Images

Figure CN114550365B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of banknote dispensing equipment, and particularly relates to a multi-banknote inlet intelligent banknote dispensing machine. BACKGROUND
[0002] In today's society, although online payment methods are more and more convenient, banknotes still need to be dispensed when going to the bank or exchanging foreign currency. In particular, banknotes need to be dispensed in the foreign currency exchange process to enable users to obtain the required banknotes. At present, most financial systems need to pass through banknote counting machines, banknote counting machines and other devices to count banknotes, and need to manually dispense and count banknotes, and need to frequently open the banknote box for banknote storage and retrieval operations. With the increasing amount of banknotes processed year by year, the operation pressure on the teller is increasing. Therefore, some automatic banknote dispensing devices appear.
[0003] For example, Chinese patent 200780008008.0 discloses an automatic device for storing and dispensing a predetermined number of banknotes of a denomination, comprising an inlet for banknotes, an identification mechanism for identifying the denomination of the introduced banknotes, a plurality of LIFO boxes for storing banknotes, an outlet for banknotes, a transport mechanism for transporting banknotes between the inlet, the boxes and the outlet, a control mechanism adapted to control the transport mechanism for transferring banknotes from the inlet to the boxes during a storage step and from the boxes to the outlet during a dispensing step, the boxes being smaller in number than the predetermined number of banknote denominations, the control mechanism comprising a mechanism for storing a sequence of denominations stored in each box, and a mechanism for controlling the transport mechanism to transfer banknotes from one box to another according to the stored sequence and a dispensing request input into the device, thereby allowing banknotes to be dispensed from the boxes to the outlet according to the request.
[0004] The automatic device enters banknotes through an inlet. When dispensing banknotes, the operator inputs a banknote dispensing request through a user terminal. The processor calculates the transfer of banknotes from one roller box to another according to the data stored in the memory, which is necessary to dispense banknotes matching the request input by the operator from the outlet. The automatic device dispenses different banknotes through multiple roller boxes. The dispensing process passes through many devices, the process is complex but the line is relatively simple, the dispensing function is single, it is difficult to realize the matching of a large number of banknotes of different denominations, and the dispensing efficiency is also relatively low. SUMMARY
[0005] Therefore, a multi-banknote inlet intelligent banknote dispensing machine is provided to solve the above technical problems. The machine can simultaneously input multiple denominations of banknotes for synchronous dispensing, realize rapid dispensing of multiple denominations, and improve dispensing efficiency.
[0006] A multi-banknote inlet intelligent banknote dispensing machine comprises:
[0007] a banknote input system, comprising a plurality of banknote input mechanisms, each of which has a banknote input port;
[0008] a conveying channel, which is respectively connected to each banknote input mechanism to convey banknotes input from each banknote input port;
[0009] a banknote authentication mechanism, which is arranged on the conveying channel to receive banknotes conveyed from the conveying channel and authenticate the banknotes;
[0010] a banknote output mechanism, which is arranged at the rear end of the banknote authentication mechanism to output the authenticated banknotes to a predetermined output end.
[0011] Further, each banknote input mechanism is sequentially provided with a banknote input table, a banknote feeding wheel assembly, a banknote twisting wheel assembly and a banknote guiding assembly between the banknote input port and the conveying channel, the banknote input table has the banknote input port, and the banknote guiding assembly is connected to the conveying channel to guide banknotes onto the conveying channel.
[0012] Further, the banknote guiding assembly comprises a guiding plate assembly, a transition plate assembly and an upper channel plate assembly, the guiding plate assembly comprises an upper guiding plate and a lower guiding plate, a guiding channel is defined between the upper guiding plate and the lower guiding plate, the guiding channel has a banknote input end connected to the banknote input table, the banknote input end is in a flared structure, the guiding channel has a banknote output end connected to the transition plate assembly, the guiding channel is tapered from the banknote input end to the banknote output end, the lower guiding plate is in a shape of a bent sliding plate, the upper channel plate assembly and the conveying channel are combined to define a banknote input receiving channel, the transition plate assembly comprises a left transition plate and a right transition plate, the left transition plate is connected to the upper guiding plate, and the right transition plate is connected to the lower guiding plate.
[0013] Further, each banknote input mechanism has a side mounting plate, the upper part of the left transition plate is rotatably mounted to the side mounting plate through a shaft, the left transition plate is rotated around the shaft to open the left transition plate in a direction away from the right transition plate, so that the gap between the left transition plate and the right transition plate is enlarged to expose the guiding channel from the bottom end.
[0014] Further, a rotatable reset or elastically reset hanging piece is arranged on at least one side of the transition plate assembly, the lower part of the left transition plate is provided with a buckle part buckled with the hanging piece, the left transition plate is buckled into the hanging piece by pressing the hanging piece and is positioned by the hanging piece, and the left transition plate is separated from the hanging piece by pressing the hanging piece.
[0015] Further, the hanging part is a hook, the end of the hanging part has a hook, the buckle part of the left transition plate is a convex column; the left transition plate includes a transition base plate, a left side plate and a right side plate, the transition base plate is an L-shaped plate, the transition base plate, the left side plate and the right side plate enclose a bucket-shaped space, the transition base plate has a roller hole, and one or more than two bill feeding rollers are arranged in the left transition plate, each bill feeding roller passes through the roller hole to contact the bill to help the bill enter the transmission channel.
[0016] Further, the bill feeding table includes a bill feeding base plate, the bill feeding wheel assembly is located below the bill feeding base plate and has two or more bill feeding wheels, the wheel circumferential surface of each bill feeding wheel has a smooth surface part and a bill pushing surface part, the bill pushing surface part has bill pushing teeth arranged along the circumferential direction, the bill pushing teeth push the bill to the bill twisting wheel assembly when the bill feeding wheel rotates, the bill twisting wheel assembly includes a lower bill twisting wheel set and an upper bill twisting wheel set, the lower bill twisting wheel set includes two or more upper bill twisting wheels, the lower bill twisting wheel set is located below the bill feeding base plate and has two or more lower bill twisting wheels corresponding to the positions of the upper bill twisting wheels, the bill feeding assembly includes an upper roller and a lower roller, and the bill feeding assembly has a support part between the upper roller and the lower roller, the surface of the support part has a microstructure to make the bill twisted by the upper roller when passing through the microstructure, and the bill enters the guide assembly one by one.
[0017] Further, the multiple bill feeding ports of the intelligent bill matching machine have side standing plates, each bill feeding mechanism is provided with a rotary reset mechanism, the rotary reset mechanism includes two mounting pieces and a rotating rod connecting the two mounting pieces, the rotating rod is mounted on the side standing plate, the rotating rod is sleeved with a torsion spring, one end of the torsion spring acts on the side standing plate, and the other end acts on the mounting piece or the bill feeding mechanism, the mounting piece is mounted on the bottom of one side edge of the bill feeding mechanism, and the bill feeding mechanism is turned over to expose the transmission channel through the rotary reset mechanism.
[0018] Further, the bill feeding mechanism includes a reversing assembly for switching to two-directional outlets, and the two-directional outlets include a bill receiving port and a bill returning port.
[0019] Further, the transmission channel includes a bill feeding receiving channel, a turning channel and a bill feeding channel, the turning channel is connected between the bill feeding receiving channel and the bill feeding channel, the bill feeding receiving channel and the bill feeding channel are parallel to each other and have opposite transmission directions, the turning channel is a vertical channel to change the transmission direction of the bill by 180 degrees, and a side cover that can be opened is mounted outside the vertical channel to seal the turning channel.
[0020] Further, the multiple bill feeding ports of the multiple bill feeding mechanisms are combined for counting, simultaneous bill feeding and bill feeding in a manner that the bills on the transmission channel are not overlapped.
[0021] The multiple banknote inlet intelligent banknote matching machine has multiple banknote inlets, each banknote inlet has a banknote inlet, that is, multiple banknote inlets, and banknotes of the same denomination and value or different values can be fed at the same time, so that banknote matching can be quickly and efficiently performed, and for a small amount of banknote matching demand, even a large amount of banknote matching can be quickly and efficiently performed. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a schematic diagram of the overall internal structure of the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application.
[0023] Figure 2 It is a schematic diagram of the structure of the banknote inlet mechanism in the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application.
[0024] Figure 3 It is a schematic diagram of the side view structure of the banknote inlet mechanism in the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application.
[0025] Figure 4 It is a schematic diagram of the transition plate assembly of the banknote inlet mechanism in the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application.
[0026] Figure 5 It is a schematic diagram of the banknote inlet mechanism in the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application.
[0027] Figure 6 It is Figure 1 It is a schematic diagram of the structure of the banknote inlet mechanism in the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application.
[0028] Figure 7 It is Figure 6 It is a schematic diagram of the structure of the banknote inlet mechanism in the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application.
[0029] Figure 8 It is Figure 1 It is a schematic diagram of the structure of the banknote inlet mechanism in the multiple banknote inlet intelligent banknote matching machine of the embodiment of the present application. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0031] As Figure 1The diagram illustrates a multi-inlet intelligent banknote dispenser 100, comprising an inlet system, a transmission channel 20, a counterfeit detection mechanism 30, and a dispensing mechanism 40. The inlet system includes multiple inlet mechanisms 11, each with an inlet 12. The transmission channel 20 is connected to each inlet mechanism 11 to deliver banknotes entering through each inlet 12. The counterfeit detection mechanism 30 is located on the transmission channel 20 to receive and authenticate the banknotes delivered from the transmission channel 20. The dispensing mechanism 40 is located at the rear end of the counterfeit detection mechanism 30 to deliver the authenticated banknotes to a predetermined outlet.
[0032] Specifically, each banknote feeding mechanism 11 is provided with a banknote feeding platform 13, a banknote feeding wheel assembly 15, a banknote twisting wheel assembly 16 and a banknote guiding assembly 17 in sequence from the banknote feeding port 12 to the transmission channel 20. The banknote feeding platform 13 has the banknote feeding port 12, and the banknote guiding assembly 17 is connected to the transmission channel 20 to guide the banknotes onto the transmission channel 20.
[0033] Further, the banknote guiding assembly 17 includes a guide plate assembly, a transition plate assembly, and an upper channel plate assembly 177. The guide plate assembly includes an upper guide plate 171 and a lower guide plate 172, and a guide channel 173 is defined between the upper guide plate 171 and the lower guide plate 172. The guide channel 173 has a banknote inlet end 173a connected to the banknote inlet table 13. The banknote inlet end 173a has a flared structure. The guide channel 173 has a banknote outlet end 173b connected to the transition plate assembly. The banknote inlet end 173a to the banknote outlet end 173b of the guide channel 173 has a tapering structure. The lower guide plate 172 is in the shape of a bent sliding plate. The upper channel plate assembly 177 and the transmission channel 20 are combined vertically to define the banknote receiving channel. The transition plate assembly includes a left transition plate 174 and a right transition plate 175. The left transition plate 174 is connected to the upper guide plate 171, and the right transition plate 175 is connected to the lower guide plate 172. There is a gap between the left transition plate 174 and the right transition plate 175 to allow banknotes to pass through before being conveyed to the transmission channel 20.
[0034] like Figures 2 to 4 As shown, each banknote insertion mechanism 11 further includes a side mounting plate 117. The upper part of the left transition plate 174 is rotatably mounted on the side mounting plate 117 via a shaft 118. By rotating the left transition plate 174 about the shaft 118, the left transition plate 174 is flipped open in a direction relatively away from the right transition plate, thereby widening the gap between the left transition plate 174 and the right transition plate 175 to expose the guide channel 173 from the bottom end.
[0035] Further, a rotatable reset or elastic reset hanging piece 116 is arranged on at least one side of the transition plate assembly, the lower part of the left transition plate piece 174 is provided with a buckle part 115 buckled with the hanging piece 116, the left transition plate piece 174 is buckled into the hanging piece 116 by pressing the hanging piece 116 and is positioned by the hanging piece, and is buckled out of the hanging piece 116 by pressing the hanging piece 116. Specifically, the hanging piece 116 has a barb at the outer end, the buckle part 115 is in the shape of a shaft, the other end of the hanging piece 116 away from the outer end is connected by a torsion spring, and only when the hanging piece 116 is pressed downward, the hanging piece 116 is forced to rotate counterclockwise, so that the buckle part 115 slides into the hook slot 116a of the hanging piece 116 by bypassing the barb.
[0036] Specifically, the hanging piece 116 is a hook hanging piece, the hanging piece 116 has a barb 116b at the end, and the buckle part of the left transition plate piece 174 is a shaft or a convex column. The left transition plate piece 174 includes a transition base plate 174a, a left side plate 174b and a right side plate 174c, the transition base plate is an L-shaped plate, the transition base plate 174a, the left side plate 174b and the right side plate 174c form a bucket-shaped space, the transition base plate 174a has a roller hole 174e, and one or more than two bill feeding rollers 174d are arranged in the left transition plate piece 174, each bill feeding roller 174d passes through the roller hole 174e to contact the bill and help the bill enter the transmission channel 20.
[0037] As shown in Figure 2 , 3 and 5, further, the bill feeding table 13 includes a bill feeding base plate 131, the bill feeding wheel assembly 15 is located below the bill feeding base plate 131 and has two or more bill feeding wheels, the circumferential surface of each bill feeding wheel has a smooth surface part and a bill pushing surface part, the bill pushing surface part has bill pushing teeth 151 arranged along the circumferential direction, the bill feeding wheel is driven to rotate to push the bill into the bill twisting wheel assembly 16 through the bill pushing teeth 151, the bill twisting wheel assembly 16 includes a lower bill twisting wheel assembly 161 and an upper bill twisting wheel assembly 162, the lower bill twisting wheel assembly 162 includes two or more upper bill twisting wheels, the lower bill twisting wheel assembly is located below the bill feeding base plate 131 and has two or more lower bill twisting wheels corresponding to the positions of the upper bill twisting wheels. The surface of the lower bill twisting wheel assembly 161 has a microstructure to make the bill twisted by the upper bill twisting wheel when passing through the microstructure, so that the bill enters the bill guiding assembly 17 one by one.
[0038] Further, as shown in Figure 6 and 7As shown, the plurality of banknote inlet intelligent banknote dispensing machines have side vertical plates 113, each banknote inlet mechanism 11 is provided with a rotary reset mechanism, the rotary reset mechanism includes two mounting pieces 114 and a rotating rod 111 connecting the two mounting pieces 114, the rotating rod 111 is mounted on the side vertical plate 113, the rotating rod 111 is sleeved with a torsional spring 112, one end of the torsional spring 112 acts on the side vertical plate 113, and the other end acts on the mounting piece 114 or the banknote inlet mechanism 11, the mounting piece 114 is mounted on the bottom of one side edge of the banknote inlet mechanism 11, and the whole banknote inlet mechanism 11 is turned over to expose the transmission channel 20 through the rotary reset mechanism.
[0039] As shown in FIGS. Figure 1 , 2 As shown in FIGS. 7, 8, the banknote outlet mechanism 40 includes a reversing assembly 41 for switching to two-directional outlets, the two-directional outlets including a banknote receiving port 401 and a banknote returning port 402. The reversing assembly 41 includes a switching front end 411, two discharge rear ends 412, 413 in sequence according to the forward direction of the banknotes. The two discharge rear ends 412, 413 correspond to the banknote receiving port 401 and the banknote returning port 402 respectively, the switching front end 411, the two discharge rear ends 412, 413 are triangularly distributed, and the reversing assembly 41 is installed through a rotating shaft 415. The switching front end 411 and the two discharge rear ends 412, 413 have guiding arc surfaces respectively, for example, a banknote returning guiding arc surface 416 and a normal banknote dispensing guiding arc surface 417 respectively, the two guiding arc surfaces 416, 417 are respectively communicated and docked with the corresponding banknote returning port 402 and banknote receiving port 401. When the rotating shaft 415 is switched to the banknote receiving port 401 side communication, the normal banknote dispensing guiding arc surface 417 serves as an upper surface for guiding the banknotes into the banknote receiving port 401, and when the rotating shaft 415 is switched to the banknote returning port 402 side communication, the banknote returning guiding arc surface 416 serves as a lower surface for guiding the banknotes into the banknote returning port 402.
[0040] The receiving slot 401 is used to receive the normal output, the matching distribution of the currency, while the reject slot 402 is used to receive the excess, the authentication of the excluded currency or the poor quality of the currency. Further, the transmission channel 20 includes the receiving channel, the turning channel and the output channel, the turning channel is connected between the receiving channel and the output channel, the receiving channel and the output channel are parallel to each other and the transmission direction is opposite, the turning channel is a vertical channel to make the currency change 180 degrees in the transmission direction, and the turning channel is sealed by the side cover which can be opened outside the turning channel. The receiving channel has the lower channel plate assembly 27 which is parallel to the upper channel plate assembly 177 and the plate member is spaced apart, the outside of the lower channel plate assembly 27 is provided with the track 28 which drives the plurality of currency feeding rollers 26 to transport the currency. The plurality of currency feeding rollers 26 protrude from the currency feeding wheel hole of the lower channel plate assembly 27, the turning channel and the output channel are also provided with the conveying plate 25, the conveying plate 25 is also provided with the currency feeding wheel hole, and the plurality of currency feeding rollers 26 are in the currency feeding wheel hole, the corresponding sides of the turning channel and the output channel are provided with the track 28 to drive the plurality of currency feeding rollers 26 to rotate synchronously and drive the currency to move forward.
[0041] Further, the plurality of currency receiving ports 12 of the plurality of currency receiving mechanisms 11 are combined to count, simultaneously receive the currency and make the currency on the transmission channel 20 not overlap, that is, the currency is driven by the currency feeding roller 26 to move along the surface of the lower channel plate assembly 27 and the conveying plate 25. In addition, as shown in Figure 1 and 6 The outlet end of the authentication mechanism 30 and the reversing assembly 41 are also provided with the uphill conveying assembly 32, the uphill conveying assembly 32 includes the upper conveying member 33 and the lower conveying member 34, the upper conveying member 33 and the lower conveying member 34 are respectively provided with the conveying roller 35 to drive the currency to move forward, the front end of the upper conveying member 33 has the flip-up plate 36, the outside of the flip-up plate 36 is provided with the lug 37, the lug 37 has the hook member to be hooked on the clamping member 38, and the lug 37 is pulled by the tension spring 39. In use, in order to clean the gap between the upper conveying member 33 and the lower conveying member 34, the lug 37 is disengaged from the hook member to flip up the entire upper conveying member 33, so as to facilitate cleaning. The inside of the upper conveying member 33 is preferably provided with the same structure as the rotating reset mechanism to flip up, which will not be described here.
[0042] The multiple banknote input port intelligent banknote matching machine 100 has multiple banknote input mechanisms 11, each of which has a banknote input port 12, i.e. has multiple banknote input ports 12, and can input banknotes of the same denomination and value or different values at the same time, thereby being able to quickly and efficiently match banknotes. For a small number of banknote matching requirements, even large-denomination banknotes can be matched at a speed higher than that of traditional methods.
[0043] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can make equivalent replacements or changes within the technical range disclosed by the present application according to the technical solution and inventive concept of the present application, which should be covered within the protection scope of the present application.
Claims
1. A smart banknote dispensing machine with multiple banknote inlets, characterized in that, include: A banknote insertion system, comprising multiple banknote insertion mechanisms, each having a banknote inlet; A transmission channel, which is connected to each banknote entry mechanism to transport banknotes entering through each banknote entry port; A counterfeit detection mechanism is located on the transmission channel to receive banknotes transmitted from the transmission channel and to detect the counterfeits of the banknotes. The dispensing unit is located behind the counterfeit detection unit to deliver the counterfeit-detected banknotes to the designated exit point. Each banknote feeding mechanism is sequentially equipped with a banknote feeding platform, a banknote feeding wheel assembly, a banknote twisting wheel assembly, and a banknote guiding assembly from the banknote feeding port to the transmission channel. The banknote feeding platform has the banknote feeding port. The banknote guiding assembly connects to the transmission channel to guide the banknotes onto the transmission channel. The banknote guiding assembly includes a guide plate assembly, a transition plate assembly, and an upper channel plate assembly. The guide plate assembly includes an upper guide plate and a lower guide plate, which define a guide channel. The guide channel has a banknote feeding end that connects to the banknote feeding platform. The banknote feeding end has a flared structure. The guide channel has a banknote discharging end that connects to the transition plate assembly. The guide channel has a tapering structure from the banknote feeding end to the banknote discharging end. The lower guide plate is in the shape of a bent sliding plate. The upper channel plate assembly and the transmission channel are combined vertically to define the banknote receiving channel. The transition plate assembly includes a left-hand... The system includes a left transition plate and a right transition plate. The left transition plate is connected to the upper guide plate, and the right transition plate is connected to the lower guide plate. Each banknote insertion mechanism has a side mounting plate. The upper part of the left transition plate is rotatably mounted to the side mounting plate via an axis. By rotating the left transition plate around the axis, the left transition plate is flipped open in a direction relatively away from the right transition plate, thereby widening the gap between the left and right transition plates to expose the guide channel from the bottom. At least one side of the transition plate assembly is equipped with a rotatable or elastically repositionable hanger. The lower part of the left transition plate is provided with a fastener for fastening with the hanger. The left transition plate is fastened into the hanger by pressing it and is positioned by the hanger, and is also disengaged from the hanger by pressing it. The banknote dispensing mechanism includes a reversing assembly for switching to two-directional outlets, each outlet including a banknote receiving port and a banknote ejection port.
2. The intelligent banknote dispensing machine with multiple banknote inlets as described in claim 1, characterized in that, The hanging component is a hook-and-loop fastener with a barb at the end. The fastener of the left transition plate is a protruding post. The left transition plate includes a transition base plate, a left side plate, and a right side plate. The transition base plate is an L-shaped plate. The transition base plate, the left side plate, and the right side plate form a bucket-shaped space. The transition base plate has roller holes. The left transition plate contains one or more banknote feeding rollers. Each banknote feeding roller passes through the roller hole to contact the banknote and help it enter the transmission channel.
3. The intelligent banknote dispensing machine with multiple banknote inlets as described in claim 1, characterized in that, The banknote feeding platform includes a banknote feeding pad. The banknote feeding wheel assembly is located below the banknote feeding pad and has two or more banknote feeding wheels. Each banknote feeding wheel has a smooth surface and a banknote-dispensing surface on its circumference. The banknote-dispensing surface has banknote-dispensing teeth arranged along the circumference. When the banknote feeding wheel rotates, the banknotes are pushed to the banknote twisting wheel assembly by the banknote-dispensing teeth. The banknote twisting wheel assembly includes a lower banknote twisting wheel group and an upper banknote twisting wheel group. The lower banknote twisting wheel group includes two or more upper banknote twisting wheels. The lower banknote twisting wheel group is located below the banknote feeding pad and has two or more lower banknote twisting wheels at positions corresponding to each upper banknote twisting wheel.
4. The intelligent banknote dispensing machine with multiple banknote inlets as described in claim 1, characterized in that, The intelligent banknote dispensing machine with multiple banknote inlets has a side plate. Each banknote inlet mechanism is equipped with a rotation and reset mechanism. The rotation and reset mechanism includes two mounting plates and a rotating rod connecting the two mounting plates. The rotating rod is mounted on the side plate and is fitted with a torsion spring. One end of the torsion spring acts on the side plate, and the other end acts on the mounting plate or the banknote inlet mechanism. The mounting plate is mounted on the bottom edge of one side of the banknote inlet mechanism. The rotation and reset mechanism causes the entire banknote inlet mechanism to flip to the side to expose the transmission channel.
5. The intelligent banknote dispensing machine with multiple banknote inlets as described in claim 1, characterized in that, The transmission channel includes a banknote receiving channel, a turning channel, and a banknote dispensing channel. The turning channel connects the banknote receiving channel and the banknote dispensing channel. The banknote receiving channel and the banknote dispensing channel are parallel to each other and have opposite transmission directions. The turning channel is a vertical channel that allows the banknote to be turned 180 degrees in the transmission direction. A flip-open side cover is installed on the outside of the vertical channel to seal the turning channel. Multiple banknote inlets of multiple banknote infeeding mechanisms are combined and counted, and banknotes are fed in simultaneously in a manner that prevents banknotes on the transmission channel from overlapping.
Citation Information
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