Banknote separation device and financial apparatus
By introducing a pickup component and a drive mechanism into the banknote sorting device, the problem of multiple banknotes being separated due to the protrusion of the lower financial medium is solved, thus improving the accuracy and efficiency of banknote sorting.
Patent Information
- Application Number
- PCT/CN2024/126517
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-02
- Filing Date
- 2024-10-22
- Publication Date
- 2025-11-20
AI Technical Summary
In the current financial equipment, when the front end of the lower layer of financial medium protrudes beyond the upper layer during the banknote sorting process, the separation wheel may separate the upper and lower layers of financial medium simultaneously, reducing the accuracy of banknote sorting.
A banknote sorting device was designed. Through the cooperation of the pickup component and the drive mechanism, the pickup component pushes the upper financial medium towards the banknote feeding channel, reducing the pressure and friction of the pickup component on the financial medium and preventing multiple financial media from being carried out overlapping.
It improves the accuracy of banknote sorting devices, reduces the probability of multiple financial instruments being carried out due to overlap, and enhances the banknote sorting effect.
Smart Images

Figure CN2024126517_20112025_PF_FP_ABST
Abstract
Description
Banknote sorting device and financial equipment
[0001] Related applications
[0002] The present application claims priority to the Chinese patent application No. 2024103957634, filed on April 2, 2024, and entitled “Banknote sorting device and financial equipment”, the content of which is incorporated herein by reference in its entirety. TECHNICAL FIELD
[0003] The present application belongs to the technical field of financial equipment, and in particular relates to a banknote sorting device and a financial equipment. BACKGROUND
[0004] When a customer performs a money depositing operation or other operation of putting a financial medium into the financial equipment on the financial equipment, an inlet channel in the financial equipment is opened to facilitate the customer to place the financial medium into the inlet channel. Usually, the customer arranges the financial medium well before placing it into the inlet channel. However, the front end of the lower financial medium may protrude from the front end of the upper financial medium when the financial medium is placed into the inlet channel. When the banknote sorting device separates the financial medium, the separating wheel of the banknote sorting device preferentially presses the lower financial medium. The pressure between the separating wheel and the financial medium is large, so that the upper and lower financial media are easily separated together in the separating process, resulting in a decrease in the banknote sorting accuracy of the banknote sorting device.
[0005] SUMMARY
[0006] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application provides a banknote sorting device and a financial equipment.
[0007] In a first aspect, the present application provides a banknote sorting device, comprising:
[0008] a rack;
[0009] a banknote receiving plate movably mounted on the rack, the banknote receiving plate being configured to place a financial medium;
[0010] a mounting frame movably mounted on the rack, the mounting frame being spaced apart from the rack and defining an inlet channel;
[0011] a pickup assembly mounted on the mounting frame, the pickup assembly being configured to push the financial medium to move;
[0012] a driving mechanism mounted on the rack, the driving mechanism being connected to the pickup assembly, and the driving mechanism being configured to drive the pickup assembly to push the financial medium to move towards the inlet channel when the banknote receiving plate is away from the mounting frame.
[0013] According to the banknote separating device provided by the embodiment of the present application, when the financial medium on the second layer protrudes from the end of the first layer close to the separating wheel, the first layer of financial medium is pushed by the pickup assembly and moves towards the direction of entering the banknote channel, and since the banknote plate is away from the mounting frame, the pressure and friction of the pickup assembly on the financial medium can be reduced, so that the pickup assembly only acts on the financial medium on the upper layer, thereby reducing the probability of multiple financial media being overlapped and taken out when the separating wheel separates the financial medium, and improving the banknote separating effect of the banknote separating device.
[0014] According to one embodiment of the present application, the driving mechanism comprises:
[0015] a driving member mounted on the mounting frame;
[0016] a transmission mechanism, an output end of the transmission mechanism being connected with the driving member, and the pickup assembly being connected with the transmission mechanism.
[0017] According to one embodiment of the present application, the transmission mechanism comprises:
[0018] a main shaft connected with the output end of the driving member;
[0019] a separating driving gear mounted on the main shaft;
[0020] a linkage gear sleeved on the pickup assembly, the linkage gear being power-coupled with the separating driving gear;
[0021] a linkage member mounted on the linkage gear, the linkage member being used to drive the linkage gear and the pickup assembly to be power-coupled when the banknote plate is away from the mounting frame.
[0022] According to one embodiment of the present application, an end surface of the linkage gear is provided with a boss protruding outward in the axial direction, and the pickup assembly is provided with a pin shaft protruding outward in the radial direction, the boss and the pin shaft abutting each other and being used to drive the pickup assembly to push the financial medium to move towards the direction of entering the banknote channel when the banknote plate is away from the mounting frame, and the inclined financial medium can be helped to be righted.
[0023] According to one embodiment of the present application, when the banknote plate and the mounting frame are close to each other, the driving mechanism is configured to drive the pickup assembly to push the financial medium to move towards the direction of entering the banknote channel.
[0024] According to one embodiment of the present application, the transmission mechanism further comprises:
[0025] a merging driving gear mounted on the main shaft;
[0026] a transmission gear mounted on the pickup assembly, the transmission gear being power coupled with the merging driving gear.
[0027] According to one embodiment of the present application, further comprising:
[0028] a first one-way bearing mounted between the separating driving gear and the main shaft;
[0029] a second one-way bearing mounted between the merging driving gear and the main shaft, and the rotatable direction of the first one-way bearing is opposite to that of the second one-way bearing.
[0030] According to one embodiment of the present application, further comprising:
[0031] a time detecting device for collecting the working time of the pickup assembly when the bill receiving plate is away from the mounting frame;
[0032] a controller electrically connected with the time detecting device and the driving mechanism, for controlling the working state of the driving mechanism based on the working time collected by the time detecting device.
[0033] According to one embodiment of the present application, the pickup assembly comprises:
[0034] a far-point pickup assembly and a near-point pickup assembly, the far-point pickup assembly and the near-point pickup assembly being distributed apart along the length direction of the bill receiving channel, and both of the far-point pickup assembly and the near-point pickup assembly being connected with the driving mechanism;
[0035] and / or,
[0036] a far-point pickup assembly and a near-point pickup assembly, the far-point pickup assembly and the near-point pickup assembly being distributed apart along the length direction of the bill receiving channel, and both of the far-point pickup assembly and the near-point pickup assembly being connected with the driving mechanism, and the far-point pickup assembly being located at one end of the mounting frame close to the entrance of the bill receiving channel, and the near-point pickup assembly being located at one end of the mounting frame away from the entrance of the bill receiving channel, and the linkage gear being sleeved on the near-point pickup assembly.
[0037] According to one embodiment of the present application, further comprising:
[0038] a separating wheel rotatably mounted on the mounting frame, the separating wheel being connected with the driving mechanism, and the driving mechanism being used to drive the separating wheel to rotate.
[0039] According to one embodiment of the present application, the driving mechanism comprises:
[0040] a driving member, which is mounted on the frame;
[0041] a transmission mechanism, an output end of which is connected with the driving member, and the banknote separating plate, the mounting frame and the separating wheel are all connected with the transmission mechanism.
[0042] According to one embodiment of the present application, the transmission mechanism comprises:
[0043] a main shaft, which is connected with the output end of the driving member, and the separating wheel is mounted on the main shaft;
[0044] a first driving wheel and a second driving wheel, the first driving wheel is mounted on the main shaft, and the second driving wheel is power-coupled with the main shaft, the first driving wheel is provided with a first protrusion which protrudes outward along the radial direction, the second driving wheel is provided with a second protrusion which protrudes outward along the radial direction, and the first protrusion and the second protrusion are used to drive the banknote separating plate and the mounting frame to separate.
[0045] According to one embodiment of the present application, the picking assembly comprises:
[0046] a vane wheel, which is mounted on the mounting frame, the distance from the axis of the vane wheel to the end of the vane of the vane wheel is greater than the vertical distance from the axis of the vane wheel to the banknote separating plate, and the vane is a flexible material member.
[0047] In a second aspect, the present application provides a financial equipment, which comprises:
[0048] a housing;
[0049] a banknote separating device as described in any of the above, which is mounted in the housing. BRIEF DESCRIPTION OF DRAWINGS
[0050] In order to more clearly illustrate the technical solutions in the embodiments of the present application or in the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort based on the disclosed drawings.
[0051] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which:
[0052] Fig. 1 is one of the structural schematic diagrams of the banknote separating device provided by the embodiments of the present application;
[0053] Fig. 2 is a second structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0054] Fig. 3 is a third structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0055] Fig. 4 is a fourth structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0056] Fig. 5 is a fifth structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0057] Fig. 6 is a sixth structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0058] Fig. 7 is a structural schematic diagram of a first driving wheel of the currency sorting device according to an embodiment of the present application;
[0059] Fig. 8 is a structural schematic diagram of a second driving wheel of the currency sorting device according to an embodiment of the present application;
[0060] Fig. 9 is a first partial structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0061] Fig. 10 is a second partial structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0062] Fig. 11 is a structural schematic diagram of a linkage gear of the currency sorting device according to an embodiment of the present application;
[0063] Fig. 12 is a third partial structural schematic diagram of the currency sorting device according to an embodiment of the present application;
[0064] Fig. 13 is a fourth partial structural schematic diagram of the currency sorting device according to an embodiment of the present application.
[0065] Reference signs:
[0066] The currency receiving plate 100, the mounting frame 200, and the separating wheel 300;
[0067] The main shaft 410, the first driving wheel 420, the first protrusion 421, the first gear portion 422, the first avoiding portion 423, the first limiting surface 424, the cam limiting surface 425, the second driving wheel 430, the second protrusion 431, the second gear portion 432, the second avoiding portion 433, the second limiting surface 434, the shielding member 435, the merging driving gear 440, the first transition gear 450, the second transition gear 460, the separating driving gear 470, the intermediate gear set 480, the linkage gear 490, and the boss 491;
[0068] The near-point pickup assembly 500, the second transmission shaft 510, the pin shaft 511, the bearing 520, the second transmission gear 530, and the second pickup wheel 540;
[0069] The far point pickup assembly 600, the first transmission shaft 610, the first transmission gear 620, the impeller 630, and the blade 631;
[0070] The position sensor 700, the financial medium 800, and the money inlet channel 900. DETAILED DESCRIPTION
[0071] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the scope of protection of the present application.
[0072] [Corrected according to Rule 91 on 10.12.2024] The currency sorting device and the financial equipment according to the embodiments of the present application are described below with reference to FIGS. 1-13.
[0073] [Corrected according to Rule 91 on 10.12.2024] The currency sorting device according to the embodiments of the present application is provided, as shown in FIGS. 1-13, and includes a frame, a money receiving plate 100, a mounting bracket 200, a separating wheel 300, and a driving mechanism.
[0074] As shown in FIGS. 1-6, the money receiving plate 100 can have an elliptical structure, a trapezoidal structure, or other shape structures, for example, the money receiving plate 100 has a rectangular structure.
[0075] The money receiving plate 100 is movably mounted on the frame and is used to place the financial medium 800. The money receiving plate 100 can be rotatably mounted on the frame along an axis or linearly movably mounted on the frame. For example, as shown in FIGS. 1-6, the money receiving plate 100 is rotatably mounted on the frame along an axis.
[0076] As shown in FIGS. 1-6, the financial medium 800 can include, but is not limited to, paper currency, bills, and the like.
[0077] The mounting bracket 200 is movably mounted on the frame. The mounting bracket 200 can be rotatably mounted on the frame along an axis or linearly movably mounted on the frame. For example, as shown in FIGS. 1-6, the mounting bracket 200 is rotatably mounted on the frame along an axis.
[0078] As shown in FIGS. 1-6, the mounting bracket 200 is spaced apart from the money receiving plate 100 and defines the money inlet channel 900. The mounting bracket 200 and the money receiving plate 100 are vertically spaced apart, and the gap between the mounting bracket 200 and the money receiving plate 100 defines the money inlet channel 900. The customer can place the financial medium 800 in the money inlet channel 900.
[0079] As shown in FIGS. 1-6, the banknote plate 100 is rotatably installed on the frame between a first position and a second position, the mounting frame 200 is rotatably installed on the frame between a third position and a fourth position, when the banknote plate 100 is in the first position and the mounting frame 200 is in the third position, the banknote plate 100 is relatively close to the mounting frame 200, and the space of the deposit channel 900 is small; when the banknote plate 100 is in the second position and the mounting frame 200 is in the fourth position, the banknote plate 100 is relatively separated from the mounting frame 200, and the space of the deposit channel 900 is increased.
[0080] As shown in FIGS. 1-6, the separating wheel 300 is rotatably installed on the frame, and the separating wheel 300 is used to separate the plurality of financial media 800. The separating wheel 300 can be multiple, and the multiple separating wheels 300 are distributed along the width direction of the deposit channel 900. The specific structure and working state of the separating wheel 300 can refer to related technologies, and will not be described in detail here.
[0081] The side of the separating wheel 300 facing the deposit channel 900 is provided with a baffle, which is used to prevent the financial media 800 from moving towards the separating wheel 300.
[0082] A one-way bearing can be provided between the separating wheel 300 and the driving mechanism. When the driving mechanism drives the banknote plate 100 and the mounting frame 200 to be relatively separated, the driving mechanism cannot drive the separating wheel 300 to rotate; when the banknote plate 100 and the mounting frame 200 are relatively close, the driving mechanism drives the separating wheel 300 to rotate.
[0083] As shown in FIGS. 1 and 2, the driving mechanism is installed on the frame, and the driving mechanism is connected with the banknote plate 100, the mounting frame 200 and the separating wheel 300, and is used to drive the banknote plate 100 and the mounting frame 200 to be relatively separated or close, and is used to drive the separating wheel 300 to rotate.
[0084] In actual execution process, as shown in FIGS. 1 and 2, when the customer needs to place the financial media 800 into the deposit channel 900, the driving mechanism drives the banknote plate 100 and the mounting frame 200 to rotate in the direction away from each other, so as to increase the space of the deposit channel 900, the customer can place the financial media 800 into the deposit channel 900, and make the financial media 800 contact with the baffle at one end of the separating wheel 300; when the plurality of financial media 800 needs to be separated, the driving mechanism drives the banknote plate 100 and the mounting frame 200 to rotate in the direction towards each other, so as to reduce the space of the deposit channel 900, and clamp the financial media 800 by the banknote plate 100 and the mounting frame 200, at this time, the driving mechanism drives the separating wheel 300 to rotate and separates the plurality of stacked financial media 800.
[0085] According to the banknote separating device provided in the embodiments of the present application, the driving mechanism is connected with the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300, and one driving mechanism can provide power for the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300, so that the number of driving mechanisms and the number of parts can be reduced, and the production cost of the banknote separating device can be reduced.
[0086] In some embodiments, as shown in FIGS. 1-6, the driving mechanism comprises a driving member and a transmission mechanism.
[0087] As shown in FIGS. 1-6, the driving member is installed on the rack, and the driving member can be a driving motor, a rotary cylinder or other mechanism capable of driving the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300 to rotate.
[0088] As shown in FIGS. 1-6, the output end of the driving member is connected with the transmission mechanism, and the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300 are connected with the transmission mechanism.
[0089] In actual execution, when the driving mechanism drives the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300 to move, the driving member transmits power to the transmission mechanism through the output end, and since the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300 are connected with the transmission mechanism, the transmission mechanism can directly transmit power to the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300, so as to drive the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300.
[0090] By setting the driving mechanism to comprise the driving member and the transmission mechanism, the transmission mechanism can provide different and suitable power to the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300, so as to improve the operation stability of the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300.
[0091] In other embodiments, the driving mechanism can comprise a driving member, and the driving member has three output ends which are connected with the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300 one by one, so as to directly provide power to the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300 through the driving member.
[0092] In some embodiments, as shown in FIGS. 1-8, the transmission mechanism comprises a main shaft 410, a first driving wheel and a second driving wheel 430.
[0093] As shown in FIGS. 1-8, the main shaft 410 is connected with the output end of the driving member, one end of the main shaft 410 is connected with the output end of the driving member, and the other end of the main shaft 410 can be installed on the rack.
[0094] As shown in FIGS. 1-8, the separating wheel 300 is mounted on the main shaft 410, and in the case of multiple separating wheels 300, the multiple separating wheels 300 are distributed along the axial direction of the main shaft 410.
[0095] The first driving wheel is mounted on the main shaft 410, and can be mounted on the end of the main shaft 410 close to the driving member, or mounted on the end of the main shaft 410 away from the driving member, for example, as shown in FIGS. 1-8, the first driving wheel is mounted on the end of the main shaft 410 away from the driving member.
[0096] As shown in FIGS. 1-8, the second driving wheel 430 is power-coupled with the main shaft 410, and the second driving wheel 430 can be directly mounted on the main shaft 410 to achieve power-coupled connection with the main shaft 410, or can be power-coupled with the main shaft 410 through other transmission members.
[0097] As shown in FIGS. 1-8, the first driving wheel is provided with a first protrusion protruding outward in the radial direction, and the second driving wheel 430 is provided with a second protrusion 431 protruding outward in the radial direction, and the first protrusion and the second protrusion 431 are used to drive the banknote plate 100 and the mounting frame 200 to separate relative to each other.
[0098] As shown in FIGS. 1-8, the first protrusion can be in contact with the end of the banknote plate 100 away from the entrance of the cash inlet channel 900, so as to reduce the probability that the first driving wheel hinders the customer from placing the financial medium 800.
[0099] As shown in FIGS. 1-8, the first driving wheel can be located above the banknote plate 100, and the second driving wheel 430 can be located below the mounting frame 200, when the first driving wheel and the second driving wheel 430 drive the banknote plate 100 and the mounting frame 200 to separate relative to each other, the first protrusion of the first driving wheel drives the end of the banknote plate 100 away from the entrance of the cash inlet channel 900 to rotate downward, and the second protrusion 431 of the second driving wheel 430 drives the mounting frame 200 to rotate upward.
[0100] The driving member can drive the main shaft 410 to rotate in a first direction or a second direction, when the driving member drives the main shaft 410 to rotate in the first direction, the first protrusion and the second protrusion 431 drive the banknote plate 100 and the mounting frame 200 to separate relative to each other, wherein the first direction can be the counterclockwise direction in FIG. 1.
[0101] In actual implementation, when the driving mechanism needs to drive the bill receiving plate 100 and the mounting frame 200 to be relatively separated, the driving member drives the main shaft 410 to rotate in the first direction, the main shaft 410 drives the first driving wheel to rotate in the first direction, and drives the second driving wheel 430 to rotate, and when the first driving wheel and the second driving wheel 430 rotate to the first protrusion being in contact with the bill receiving plate 100 and the second protrusion 431 being in contact with the mounting frame 200, the first driving wheel and the second driving wheel 430 continue to rotate, and because the first protrusion and the second protrusion 431 protrude outward in the radial direction, the end of the bill receiving plate 100 in contact with the first protrusion rotates downward under the action of the first protrusion, and the end of the mounting frame 200 in contact with the second protrusion 431 rotates upward under the action of the second protrusion 431, so that the bill receiving plate 100 and the mounting frame 200 are relatively separated.
[0102] By driving the bill receiving plate 100 and the mounting frame 200 to be relatively separated by using the first protrusion and the second protrusion 431, the driving mode is simple, the structure is simple, and the production cost can be reduced to a certain extent, and meanwhile, the structure of the first cam and the second cam is compact, and the overall volume and the occupied space of the currency separating device can be reduced.
[0103] In some embodiments, as shown in FIGS. 1-8, the first driving wheel includes a first gear portion, the second driving wheel 430 includes a second gear portion 432, and the driving mechanism further includes a first output shaft, the first output shaft is installed on the rack, the second driving wheel 430 is installed on the first output shaft, and the first driving wheel and the second driving wheel 430 are engaged by the first gear portion and the second gear portion 432.
[0104] The first output shaft is installed on the rack, and the first output shaft is arranged in parallel with the main shaft 410, the first driving wheel is installed on the first output shaft, and the second driving wheel 430 is installed on the first output shaft.
[0105] The first gear portion and the first protrusion can be distributed on the first driving wheel in the circumferential direction or in the axial direction, for example, the first gear portion and the first protrusion are distributed on the first driving wheel in the axial direction; the second gear portion 432 and the second protrusion 431 can be distributed on the second driving wheel 430 in the circumferential direction or in the axial direction, for example, the second gear portion 432 and the second protrusion 431 are distributed on the second driving wheel 430 in the axial direction.
[0106] In actual implementation, when the driving mechanism needs to drive the banknote plate 100 and the mounting frame 200 to be relatively separated, the driving member drives the main shaft 410 to rotate in the first direction, the main shaft 410 drives the first driving wheel to rotate in the first direction as well, and since the first driving wheel and the second driving wheel 430 are engaged through the first gear part and the second gear part 432, the first driving wheel can drive the second driving wheel 430 and the first output shaft to rotate in the second direction together, the second direction being the counterclockwise direction in FIG. 1, and when the first driving wheel and the second driving wheel 430 continue to rotate to the first protrusion being in contact with the banknote plate 100 and the second protrusion 431 being in contact with the mounting frame 200, the end of the banknote plate 100 in contact with the first protrusion rotates downward under the action of the first protrusion, and the end of the mounting frame 200 in contact with the second protrusion 431 rotates upward under the action of the second protrusion 431, so as to realize the relative separation of the banknote plate 100 and the mounting frame 200.
[0107] Through the above-mentioned first gear part, second gear part 432 and first output shaft, power can be transmitted from the first driving wheel to the second driving wheel 430 in a gear transmission manner, the transmission manner is simple and stable, and the running stability of the banknote separating device in the working process can be improved.
[0108] In some embodiments, as shown in FIGS. 1-8, a part of the first driving wheel in the circumferential direction is provided with the first gear part, a part of the second driving wheel 430 in the circumferential direction is provided with the second gear part 432, and the time for the engagement point of the first gear part and the second gear part 432 moving from the first end to the second end of the first gear part is greater than or equal to the movement time of the banknote plate 100 and the mounting frame 200 being relatively separated.
[0109] In some embodiments, as shown in FIGS. 1-8, a part of the first driving wheel in the circumferential direction is provided with the first gear part, a part of the second driving wheel 430 in the circumferential direction is provided with the second gear part 432, and the time for the engagement point of the first gear part and the second gear part 432 moving from the first end to the second end of the first gear part is greater than or equal to the movement time of the banknote plate 100 and the mounting frame 200 being relatively separated.
[0110] For example, 1 / 2 of the first driving wheel in the circumferential direction is provided with the first gear part, and the other 1 / 2 in the circumferential direction is an arc segment; 1 / 2 of the second driving wheel 430 in the circumferential direction is provided with the second gear part 432, and the other 1 / 2 in the circumferential direction is an arc segment.
[0111] When the first driving wheel and the second driving wheel 430 are engaged, the time for the engagement point of the first driving wheel and the second driving wheel 430 moving from the first end to the second end of the first gear part is greater than or equal to the time for the banknote plate 100 moving from the first position to the second position, and it can also be understood that the time for the engagement point of the first driving wheel and the second driving wheel 430 moving from the first end to the second end of the first gear part is greater than or equal to the time for the mounting frame 200 moving from the third position to the fourth position.
[0112] By setting the first gear portion on the part of the first driving wheel in the circumferential direction and the second gear portion 432 on the part of the second driving wheel 430 in the circumferential direction, the number of teeth provided on the first driving wheel and the second driving wheel 430 can be reduced while enabling the currency receiving plate 100 to move from the first position to the second position and enabling the mounting frame 200 to move from the third position to the fourth position, thereby further reducing the production cost of the currency processing device and enabling the volume of the first driving wheel and the second driving wheel 430 to be reduced.
[0113] In some embodiments, the currency processing device further comprises a first reset member and a second reset member, the first reset member being elastically connected between the side of the currency receiving plate 100 away from the mounting frame 200 and the rack, and / or the second reset member being elastically connected between the side of the mounting frame 200 away from the currency receiving plate 100 and the rack.
[0114] The first reset member can be a spring, a spring sheet or other structural member with elastic force; and the second reset member can be a spring, a carbon sheet or other structural member with elastic force.
[0115] The first reset member is elastically connected between the lower end surface of the currency receiving plate 100 and the rack, and the second reset member is elastically connected between the upper end surface of the mounting frame 200 and the rack.
[0116] In actual execution, when the driving member drives the main shaft 410 and the first driving wheel to rotate in the first direction, and the first driving wheel drives the second driving wheel 430 to rotate in the second direction, the first protrusion and the second protrusion 431 abut against the currency receiving plate 100 and the mounting frame 200 respectively, and drive the currency receiving plate 100 to rotate downward to the second position and drive the mounting frame 200 to rotate upward to the fourth position, at this time, the first reset member and the second reset member are both in the compressed state; after the customer places the financial medium 800 in the currency feeding channel 900, the driving member drives the main shaft 410 and the first driving wheel to rotate in the second direction, and the first driving wheel drives the second driving wheel 430 to rotate in the first direction, the first protrusion and the second protrusion 431 are separated from the currency receiving plate 100 and the mounting frame 200 respectively, at this time, the currency receiving plate 100 and the mounting frame 200 are reset to the first position and the third position respectively under the action of the elastic force of the first reset member and the second reset member.
[0117] By setting the first reset member and the second reset member, the currency receiving plate 100 and the mounting frame 200 can be automatically reset to the first position and the third position after the first protrusion and the second protrusion 431 are separated from the currency receiving plate 100 and the mounting frame 200, thereby reducing the mechanism for driving the currency receiving plate 100 and the mounting frame 200 to reset to the first position and the third position, and further reducing the production cost of the currency processing device.
[0118] In some embodiments, as shown in FIGS. 1-8, the first protrusion defines a cam limiting surface 425 along the circumferential side, and the cam limiting surface 425 is in contact with the rack when the note receiving plate 100 is relatively separated from the mounting rack 200.
[0119] In some embodiments, as shown in FIGS. 1-8, the first protrusion defines a cam limiting surface 425 along the circumferential side, and the cam limiting surface 425 is in contact with the rack when the note receiving plate 100 is relatively separated from the mounting rack 200.
[0120] In actual implementation, when the customer places the financial medium 800 in the note receiving channel 900, the driving member drives the main shaft 410 and the first driving wheel to rotate in the second direction, and the first driving wheel drives the second driving wheel 430 to rotate in the first direction, and the first protrusion and the second protrusion 431 are separated from the note receiving plate 100 and the mounting rack 200, respectively, at this time, the note receiving plate 100 and the mounting rack 200 are reset to the first position and the third position under the elastic force of the first reset member and the second reset member, respectively, and the cam limiting surface 425 of the first protrusion is in contact with the rack, under the driving force of the driving member, the first driving wheel continues to rotate in the second direction, and the torsional force of the cam limiting surface 425 and the rack increases, and since the rack is fixed, the first driving wheel is difficult to rotate with the main shaft 410 under the limiting action of the rack, at this time, the first driving wheel and the second driving wheel 430 stop rotating.
[0121] Through the above-mentioned arrangement of the cam limiting surface 425, the first driving wheel and the second driving wheel 430 can be limited by the cam limiting surface 425 and the rack when the first driving wheel rotates in the second direction, thereby preventing the rotation of the first driving wheel and the second driving wheel 430, and reducing the probability of disengagement of the first gear part and the second gear part 432 due to the continued rotation of the first driving wheel and the second driving wheel 430 after the note receiving plate 100 and the mounting rack 200 are reset, and further improving the transmission stability of the first driving wheel and the second driving wheel 430.
[0122] In some embodiments, the note counting device further comprises a torsion limiter installed between the first driving wheel and the main shaft 410.
[0123] In actual execution, when the client places the financial medium 800 in the currency feeding channel 900, the driving member drives the main shaft 410 and the first driving wheel to rotate in the second direction, and the first driving wheel drives the second driving wheel 430 to rotate in the first direction, and the first protrusion and the second protrusion 431 are separated from the currency receiving plate 100 and the mounting frame 200 respectively, at this time, the currency receiving plate 100 and the mounting frame 200 are reset to the first position and the third position under the elastic force of the first reset member and the second reset member respectively, and the cam limiting surface 425 of the first protrusion is in contact with the rack, under the power of the driving member, the first driving wheel continues to rotate in the second direction, the torsional force between the cam limiting surface 425 and the rack increases, and the torque between the first driving wheel and the main shaft 410 increases, when the torque between the first driving wheel and the rack increases to a threshold value, the torque limiter separates the first driving wheel and the main shaft 410, that is, the first driving wheel and the main shaft 410 can rotate freely around their own axes, since the rack is fixed, the first driving wheel remains fixed under the limiting action of the rack, and the first driving wheel has no power transmission to the second driving wheel 430, and the second driving wheel 430 remains fixed with the first driving wheel.
[0124] Through the setting of the torque limiter, the first driving wheel and the main shaft 410 can be separated when the torque between the first driving wheel and the main shaft 410 is too large, thereby reducing the friction loss between the first driving wheel and the main shaft 410, and reducing the influence of the first driving wheel on the rotation of the main shaft 410, and improving the operation stability of the driving mechanism.
[0125] In some embodiments, as shown in FIGS. 1-8, the first driving wheel comprises a first avoiding part connected with the first protrusion in the circumferential direction, and the first avoiding part does not protrude in the radial direction from the first protrusion; and / or, the second driving wheel 430 comprises a second avoiding part 433 connected with the second protrusion 431 in the circumferential direction, and the second avoiding part 433 does not protrude in the radial direction from the second protrusion 431.
[0126] Among them, the first avoiding part can be arranged on the first driving wheel, and the second avoiding part 433 is not arranged on the second driving wheel 430; or the first avoiding part is not arranged on the first driving wheel, and the second avoiding part 433 is arranged on the second driving wheel 430; or the first avoiding part is arranged on the first driving wheel, and the second avoiding part 433 is arranged on the second driving wheel 430, for example, as shown in FIGS. 1-8, the first avoiding part is arranged on the first driving wheel, and the second avoiding part 433 is arranged on the second driving wheel 430.
[0127] In the process of rotating the first driving wheel and the second driving wheel 430, the first avoiding part and the second avoiding part 433 always have a gap between the currency receiving plate 100 and the mounting frame 200.
[0128] The first and second avoiding portions 433 are arranged to reduce the influence of the first and second driving wheels 430 on the reset of the banknote receiving plate 100 and the mounting frame 200.
[0129] In some embodiments, one end of the mounting frame 200 is rotatably mounted on the main shaft 410.
[0130] In some embodiments, one end of the mounting frame 200 is rotatably mounted on the main shaft 410.
[0131] In the rotation of the mounting frame 200, the mounting frame 200 rotates around the main shaft 410, and the main shaft 410 is mounted on one end of the entrance of the banknote inlet channel 900. When the mounting frame 200 rotates upward around the main shaft 410, the space of the upper half of the banknote inlet channel 900 is increased, thereby further increasing the space of the banknote inlet channel 900, facilitating the customer to place the financial medium 800.
[0132] In some embodiments, as shown in FIGS. 1-8, the banknote sorting device further comprises a position sensor 700700 and a controller.
[0133] In some embodiments, as shown in FIGS. 1-8, the position sensor 700700 is mounted on the rack and is used to collect the position information of the banknote receiving plate 100. The position sensor 700700 can be mounted on the side of the rack facing the second driving wheel 430, and the second driving wheel 430 is provided with a blocking piece 435 protruding radially outward. The position sensor 700700 is used to collect the position information of the blocking piece 435, and the position information of the banknote receiving plate 100 is obtained by collecting the position information of the blocking piece 435.
[0134] In some embodiments, the position sensor 700700 can also directly collect the position information of the banknote receiving plate 100.
[0135] The controller is electrically connected with the position sensor 700700 and the driving mechanism, and is used to control the working state of the driving mechanism based on the position information collected by the position sensor 700700.
[0136] In actual execution, when the driving member drives the main shaft 410 and the first driving wheel to rotate in the first direction, the second driving wheel 430 rotates in the second direction. When the position sensor 700 collects the position information of the shielding member 435 of the second driving wheel 430, that is, the bill plate 100 is located at the second position and the mounting frame 200 is located at the fourth position, a signal is sent to the controller, the controller controls the driving member to stop, at this time, the transmission mechanism stops running, the bill plate 100 remains at the second position, and the mounting frame 200 remains at the fourth position, so that the customer can place the financial medium 800 into the larger space of the money channel 900. When the customer places the financial medium 800, the customer can send a signal to the controller through the button on the display screen, and the controller controls the driving mechanism to continue to run.
[0137] As shown in FIGS. 9 and 10, the bill separating device also comprises a picking assembly.
[0138] As shown in FIGS. 9 and 10, the picking assembly is installed on the mounting frame 200, and the picking assembly is used to push the financial medium 800 to move in the direction of the outlet of the money channel 900. Since the picking assembly is installed on the mounting frame 200, when the mounting frame 200 rotates, the picking assembly rotates together with the mounting frame 200.
[0139] As shown in FIGS. 9 and 10, the picking assembly is installed on the mounting frame 200 through the bearing 520, and the second protrusion 431 can abut against the bearing 520 of the picking assembly, so as to drive the picking assembly and the mounting frame 200 to rotate together.
[0140] As shown in FIGS. 9 and 10, the driving mechanism is connected with the picking assembly. In the case that the bill plate 100 is away from the mounting frame 200, the driving mechanism is configured to drive the picking assembly to push the financial medium 800 to move in the direction of entering the money channel 900.
[0141] In actual execution, when the customer needs to place the financial medium 800 into the money channel 900, the driving mechanism drives the bill plate 100 to move from the first position to the second position, and drives the mounting frame 200 to move from the third position to the fourth position. When the customer places the financial medium 800, the driving mechanism drives the mounting frame 200 to move from the fourth position to the third position, at this time, the bill plate 100 remains at the second position and is away from the mounting frame 200, the driving mechanism drives the picking assembly to push the financial medium 800 to move in the direction of entering the money channel 900. Finally, the driving mechanism drives the bill plate 100 to move from the second position to the first position, and drives the picking assembly to push the financial medium 800 to move in the direction of entering the money channel 900, and the separating wheel 300 separates the financial medium 800.
[0142] Since the plurality of financial media 800 are not necessarily flush when the customer places the financial media 800, for example, the lower financial media 800 protrude from the upper financial media 800 at the end close to the separating wheel 300, if the separating wheel 300 directly separates, it is possible to separate and take out two financial media 800 together.
[0143] Therefore, according to the banknote separating device provided by the embodiment of the present application, when the end of the financial media 800 close to the separating wheel 300 on the second layer protrudes from the end of the financial media 800 close to the separating wheel 300 on the first layer, the first layer of financial media 800 is pushed by the pickup assembly and moved towards the direction of entering the banknote inlet channel 900, and since the banknote supporting plate 100 is away from the mounting frame 200, the pressure and friction of the pickup assembly on the financial media 800 can be reduced, so that the pickup assembly only acts on the financial media 800 on the upper layer, thereby reducing the probability of overlapping of the plurality of financial media 800 taken out by the separating wheel 300 when separating the financial media 800, and improving the banknote separating effect of the banknote separating device.
[0144] Meanwhile, when the financial media 800 is placed in the banknote inlet channel 900 in an inclined state, one side of the end of the financial media 800 close to the separating wheel 300 is in contact with the baffle, and the other side is not in contact with the baffle, and in the process of pushing the financial media 800 by the pickup assembly, the pickup assembly exerts a force on the financial media 800, and under the action of the force exerted by the pickup assembly, the side of the end of the financial media 800 close to the separating wheel 300 in contact with the baffle cannot continue to advance, and the side not in contact with the baffle continues to advance, until both sides of the end of the financial media 800 close to the separating wheel 300 are in contact with the baffle.
[0145] It can be understood that if the inclined financial media 800 is pushed by the pickup assembly when the mounting frame 200 is relatively close to the banknote supporting plate 100, the pickup assembly exerts a greater force on the financial media 800, which is easy to cause the financial media 800 to bend, therefore, the financial media 800 is pushed by the pickup assembly when the banknote supporting plate 100 is away from the mounting frame 200, the financial media 800 can be pushed by a smaller force, thereby straightening the inclined financial media 800 while reducing the probability of bending of the financial media 800.
[0146] In some embodiments, as shown in FIGS. 9 and 10, the length of the first protrusion in the circumferential direction is greater than the length of the second protrusion 431 in the circumferential direction.
[0147] The length of the first protrusion in the circumferential direction is greater than the length of the second protrusion 431 in the circumferential direction, that is, the time of contact between the first protrusion and the banknote supporting plate 100 is greater than the time of contact between the second protrusion 431 and the mounting frame 200.
[0148] In actual implementation, when the customer needs to place the financial medium 800 into the currency feeding channel 900, the first driving wheel rotates in the first direction, the second driving wheel 430 rotates in the second direction, and the first protrusion and the currency plate 100 and the second protrusion 431 and the mounting frame 200 are in contact and drive the currency plate 100 and the mounting frame 200 to relatively separate; when the currency plate 100 is located at the second position and the mounting frame 200 is located at the fourth position, the first driving wheel and the second driving wheel 430 continue to rotate in the original direction, and since the length of the first protrusion in the circumferential direction is greater than the length of the second protrusion 431 in the circumferential direction, the second protrusion 431 is separated from the mounting frame 200 first, and when the second protrusion 431 is separated from the mounting frame 200, the first protrusion remains in contact with the currency plate 100, and after the second protrusion 431 is separated from the mounting frame 200, the mounting frame 200 returns to the third position under the action of the second return member, at this time, the currency plate 100 remains away from the mounting frame 200, and the driving mechanism drives the pickup assembly to push the financial medium 800 to move in the direction of entering the currency feeding channel 900.
[0149] By setting the length of the first protrusion in the circumferential direction to be greater than the length of the second protrusion 431 in the circumferential direction, the state of the mounting frame 200 and the currency plate 100 can be controlled by the contact time of the first protrusion with the currency plate 100 and the second protrusion 431 with the mounting frame 200, without the need for additional structures or steps to control the mounting frame 200, thereby improving the currency separation efficiency.
[0150] In some embodiments, as shown in FIGS. 1-8, the outer periphery of the first gear portion defines a first limiting surface, and the outer periphery of the second gear portion 432 defines a second limiting surface 434, and in the case where the currency plate 100 is away from the mounting frame 200, the first limiting surface abuts and stops against the second limiting surface 434.
[0151] The first limiting surface can be a flat surface, a wavy surface, or a surface of other shape structure, and the second limiting surface 434 can be a flat surface, a wavy surface, or a surface of other shape structure, for example, as shown in FIGS. 1-8, the first limiting surface and the second limiting surface 434 are both flat surfaces.
[0152] As shown in FIGS. 1-8, the first limiting surface is located at the outer periphery of the end point of the meshing point of the first gear portion and the second gear portion 432 in the case where the first driving wheel rotates in the first direction, and the second limiting surface 434 is located at the outer periphery of the end point of the meshing point of the first gear portion and the second gear portion 432 in the case where the second driving wheel 430 rotates in the second direction.
[0153] In actual execution, when the customer needs to place the financial medium 800 into the currency feeding channel 900, the first driving wheel rotates in the first direction, the second driving wheel 430 rotates in the second direction, and the first protrusion and the currency plate 100 and the second protrusion 431 and the mounting frame 200 are in contact and drive the currency plate 100 and the mounting frame 200 to relatively separate at the same time; when the currency plate 100 is located at the second position and the mounting frame 200 is located at the fourth position, the first driving wheel and the second driving wheel 430 continue to rotate in the original direction, the second protrusion 431 is separated from the mounting frame 200, the first protrusion keeps in contact with the currency plate 100, and after the second protrusion 431 is separated from the mounting frame 200, the mounting frame 200 returns to the third position under the action of the second reset member, at this time, the first driving wheel and the second driving wheel 430 rotate to the position where the first limiting surface and the second limiting surface 434 are attached, and the first limiting surface and the second limiting surface 434 stop to limit the rotation of the first driving wheel and the second driving wheel 430.
[0154] Through the setting of the first limiting surface and the second limiting surface 434, the first driving wheel and the second driving wheel 430 can be stopped from rotating when the currency plate 100 is located at the second position and the mounting frame 200 is located at the third position, so that the currency plate 100 is kept at the second position and the mounting frame 200 is kept at the third position, to facilitate the operation of the pick-up assembly on the financial medium 800, and at the same time, the limiting structure is simple, which can reduce the production cost of the currency processing device to a certain extent.
[0155] In some embodiments, as shown in FIGS. 1-8, the length of the first limiting surface is greater than the tooth thickness of the teeth of the first gear part; and / or, the length of the second limiting surface 434 is greater than the tooth thickness of the teeth of the second gear part 432.
[0156] In some embodiments, as shown in FIGS. 1-8, the length of the first limiting surface is greater than the tooth thickness of the teeth of the first gear part; and / or, the length of the second limiting surface 434 is greater than the tooth thickness of the teeth of the second gear part 432.
[0157] It can be understood that if the length of the first limiting surface is less than or equal to the tooth thickness of the teeth of the first gear part, the first limiting surface is equivalent to a tooth, and in the process of the second gear part 432 contacting the first gear part, the teeth of the second gear part 432 can cross and mesh with the first limiting surface to rotate, so that it is difficult to limit the rotation of the first driving wheel and the second driving wheel 430, and the second limiting surface 434 is the same. Therefore, the length of the first limiting surface is set to be greater than the tooth thickness of the teeth of the first gear part, and the length of the second limiting surface 434 is set to be greater than the tooth thickness of the teeth of the second gear part 432, which can improve the limiting effect on the first driving wheel and the second driving wheel 430 and reduce the probability of slipping between the first driving wheel and the second driving wheel 430.
[0158] In some embodiments, as shown in FIGS. 1-8, the pick-up assembly is connected with the transmission mechanism.
[0159] Wherein, as shown in FIG. 1-8, the driving member is installed on the frame, and the driving member can be a driving motor, a rotary cylinder or other mechanism that can drive the bill plate 100, the mounting frame 200 and the separating wheel 300 to rotate.
[0160] As shown in FIG. 1-8, the output end of the driving member is connected with the transmission mechanism, and the pickup assembly is connected with the transmission mechanism.
[0161] In actual execution process, when the driving mechanism drives the pickup assembly to move, the driving member transmits power to the transmission mechanism through the output end, and transmits power to the pickup assembly through the transmission mechanism, so as to realize the work of the pickup assembly.
[0162] By setting the driving mechanism to include the driving member and the transmission mechanism, different and suitable power can be provided to the pickup assembly according to actual situation by using the transmission mechanism, so as to improve the operation stability of the pickup assembly.
[0163] In some embodiments, as shown in FIG. 5, the transmission mechanism further includes a separating driving gear 470, a linkage gear 490 and a linkage member.
[0164] Wherein, as shown in FIG. 5, the separating driving gear 470 is installed on the main shaft 410, and the separating driving gear 470 can rotate together with the main shaft 410.
[0165] As shown in FIG. 5, the linkage gear 490 is sleeved on the pickup assembly, and the pickup assembly can include a transmission shaft and a pickup wheel, the transmission shaft is rotatably installed on the mounting frame 200, the pickup wheel is installed on the transmission shaft, the pickup wheel is located in the bill inlet channel 900, and the linkage gear 490 is sleeved on one end of the transmission shaft close to the separating driving gear 470.
[0166] The linkage gear 490 is power-coupled with the separating driving gear 470, and the linkage gear 490 is directly engaged with the separating driving gear 470 to realize power-coupling, or the linkage gear 490 can be power-coupled with the separating driving gear 470 through an intermediate gear set 480, for example, as shown in FIG. 5, the linkage gear 490 is power-coupled with the separating driving gear 470 through the intermediate gear set 480, the intermediate gear set 480 is located between the separating driving gear 470 and the linkage gear 490, and is engaged with both the separating driving gear 470 and the linkage gear 490.
[0167] Since the main shaft 410 drives the separating driving gear 470 to rotate along the first direction when the main shaft 410 rotates along the first direction, and the pickup assembly can push the financial medium 800 to move towards the direction of entering the bill inlet channel 900 when the pickup assembly rotates along the second direction, therefore, the intermediate gear set 480 is double-numbered, so that the linkage gear 490 rotates along the second direction when driving the pickup assembly to move through the linkage member.
[0168] In some embodiments, the rotation direction of the linkage gear 490 and the number of the intermediate gear set 480 can also be determined according to the actual positions of the separating driving gear 470 and the pickup assembly.
[0169] As shown in FIG. 5, the linkage is mounted on the linkage gear 490, and is used to drive the linkage gear 490 and the pickup assembly to be power-coupled when the bill plate 100 is away from the mounting rack 200.
[0170] In actual implementation, when the customer needs to place the financial medium 800 into the currency feeding channel 900, the driving member drives the first driving wheel to rotate in the first direction and drives the second driving wheel 430 to rotate in the second direction, and the bill plate 100 and the mounting rack 200 are relatively separated by the first protrusion and the second protrusion 431, i.e., the bill plate 100 is in the second position and the mounting rack 200 is in the fourth position, in this process, the separating driving gear 470 drives the linkage gear 490 to rotate through the intermediate gear set 480, and the linkage gear 490 and the pickup assembly are not power-transmitted; after the customer places the financial medium 800, the driving member continues to drive the first driving wheel to rotate in the first direction and the second driving wheel 430 to rotate in the second direction, at this time, under the action of the first protrusion and the second protrusion 431, the mounting rack 200 moves from the fourth position to the third position, and the bill plate 100 remains in the second position, and the linkage gear 490 and the pickup assembly are also not power-transmitted; after the mounting rack 200 moves to the third position, the linkage drives the linkage gear 490 and the pickup assembly to be power-coupled, at this time, the linkage gear 490 drives the pickup assembly to rotate, and the financial medium 800 is pushed to move towards the direction of entering the currency feeding channel 900 through the rotation of the pickup assembly.
[0171] Through the above-mentioned linkage gear 490 and linkage, the state that the linkage gear 490 and the pickup assembly are not power-transmitted can be maintained when the customer places the financial medium 800 and the mounting rack 200 moves from the fourth position to the third position, so as to reduce the probability that the financial medium 800 is bent or skewed due to the rotation of the pickup assembly to push the financial medium 800 to move in the process of placing the financial medium 800, and the linkage gear 490 and the pickup assembly are power-coupled when the mounting rack 200 is in the third position and the bill plate 100 is in the second position, so as to make the pickup assembly work and improve the working efficiency of the pickup assembly.
[0172] In some embodiments, as shown in FIG. 5 and FIG. 10, the end surface of the linkage gear 490 is provided with a boss 491 protruding outward in the axial direction, and the pickup assembly is provided with a pin shaft 511 protruding outward in the radial direction, and the boss 491 and the pin shaft 511 abut and are used to drive the pickup assembly to push the financial medium 800 to move towards the direction of entering the currency feeding channel 900 when the bill plate 100 is away from the mounting rack 200.
[0173] Wherein, as shown in FIG. 5 and FIG. 10, the time for the protrusion 491 to move from the position farthest from the pin shaft 511 to contact with the pin shaft 511 is greater than or equal to the time for the driving mechanism to drive the bill plate 100 and the mounting frame 200 to relatively separate and continue to drive the mounting frame 200 to move to the third position.
[0174] In actual execution, as shown in FIG. 5 and FIG. 10, when the driving mechanism drives the bill plate 100 and the mounting frame 200 to relatively separate, the separation driving gear 470 drives the linkage gear 490 to rotate through the intermediate gear set 480, and the protrusion 491 on the linkage gear 490 rotates together, and in the process, the protrusion 491 moves from the position farthest from the pin shaft 511 towards the pin shaft 511; when the driving mechanism drives the mounting frame 200 to move from the fourth position to the third position, the protrusion 491 continues to move towards the pin shaft 511; when the mounting frame 200 moves to the third position, the protrusion 491 contacts with the pin shaft 511, at this time, the main shaft 410 continues to rotate in the first direction, the first driving wheel and the second driving wheel 430 stop rotating under the action of the limiting surface, the mounting frame 200 remains stationary, the separation driving gear 470 drives the linkage gear 490 to continue to rotate, at this time, the protrusion 491 pushes the pin shaft 511 and drives the whole pickup assembly to rotate in the second direction, thereby realizing the movement of the pickup assembly.
[0175] By setting the linkage as the protrusion 491, the structure is simple, the transmission mode is simple, and the power coupling connection and disconnection between the linkage gear 490 and the pickup assembly can be facilitated.
[0176] In some embodiments, as shown in FIG. 9, in the case that the bill plate 100 and the mounting frame 200 move towards each other, the driving mechanism is configured to drive the pickup assembly to push the financial medium 800 to move in the direction of entering the cash inlet channel 900.
[0177] In actual execution, as shown in FIG. 9, after the mounting frame 200 is in the third position and the bill plate 100 is in the second position, the pickup assembly works; after the pickup assembly works is completed, the driving mechanism drives the first driving wheel to rotate in the second direction, the first protrusion separates from the bill plate 100, the bill plate 100 moves from the second position to the first position under the action of the first return member, at the same time, the driving mechanism drives the pickup assembly and the separation wheel 300 to move, so as to push the financial medium 800 to move in the direction of entering the cash inlet channel 900 when the separation wheel 300 separates the financial medium 800.
[0178] By configuring the driving mechanism to drive the pickup assembly to move the financial medium 800 towards the direction of entering the cash inlet channel 900 when the cash plate 100 and the mounting frame 200 are close to each other, one driving mechanism can be used to drive the pickup assembly to operate in different working states, the number of driving mechanisms is reduced, and the production cost of the currency sorting device is further reduced.
[0179] In some embodiments, as shown in FIG. 4, the transmission mechanism further comprises a combined driving gear 440 and a transmission gear.
[0180] As shown in FIG. 4, the combined driving gear 440 is mounted on the main shaft 410. The combined driving gear 440 can be mounted on the end of the main shaft 410 away from the separation driving gear 470, or can be mounted at other positions of the main shaft 410.
[0181] As shown in FIG. 4, the transmission gear is mounted on the pickup assembly, and the transmission gear is power-coupled with the combined driving gear 440. The transmission gear is mounted on the transmission shaft of the pickup assembly to realize power transmission between the combined driving gear 440 and the pickup assembly.
[0182] By the above-mentioned combined driving gear 440 and transmission gear, the pickup assembly can be driven to rotate in the case that the cash plate 100 is in the first position and the mounting frame 200 is in the third position by using the gear transmission mode, thereby improving the transmission stability between the pickup assembly and the driving mechanism.
[0183] In some embodiments, as shown in FIGS. 3-5, the pickup assembly comprises a far-point pickup assembly 600 and a near-point pickup assembly 500. The far-point pickup assembly 600 and the near-point pickup assembly 500 are distributed along the length direction of the cash inlet channel 900 and are connected with the driving mechanism.
[0184] As shown in FIGS. 3-5, the far-point pickup assembly 600 can comprise a first transmission shaft 610 and a first pickup wheel. The first transmission shaft 610 is rotatably mounted on the mounting frame 200, and the first pickup wheel is mounted on the first transmission shaft 610.
[0185] As shown in FIGS. 3-5, the near-point pickup assembly 500 can comprise a second transmission shaft 510 and a second pickup wheel 540. The second transmission shaft 510 is rotatably mounted on the mounting frame 200, and the second pickup wheel 540 is mounted on the second transmission shaft 510.
[0186] As shown in FIGS. 3-5, the first transmission shaft 610 and the second transmission shaft 510 are distributed on the mounting frame 200 along the length direction of the cash inlet channel 900 and are connected with the driving mechanism.
[0187] In actual execution, when the bill receiving plate 100 is located at the second position and the mounting frame 200 is located at the third position, the driving mechanism drives the near-point pickup assembly 500 and the far-point pickup assembly 600 to rotate at the same time, and the first pickup wheel and the second pickup wheel 540 push the financial medium 800 to move towards the direction of entering the cash inlet channel 900 at the same time.
[0188] Through the arrangement of the near-point pickup assembly 500 and the far-point pickup assembly 600, when the financial medium 800 enters along the length direction of the cash inlet channel 900, the near-point pickup assembly 500 and the far-point pickup assembly 600 jointly push the financial medium 800, thereby reducing the probability of stagnation of the financial medium 800 in the middle of the cash inlet channel 900 due to lack of power.
[0189] In some embodiments, as shown in FIGS. 3-5, the far-point pickup assembly 600 is located at one end of the mounting frame 200 close to the entrance of the cash inlet channel 900, the near-point pickup assembly 500 is located at one end of the mounting frame 200 away from the entrance of the cash inlet channel 900, and the linkage gear 490 is sleeved on the near-point pickup assembly 500.
[0190] In the embodiment, the far-point pickup assembly 600, the near-point pickup assembly 500 and the main shaft 410 are sequentially and spacedly arranged along the length direction of the cash inlet channel 900 towards the outlet of the cash inlet channel 900, that is, the near-point pickup assembly 500 is arranged close to the main shaft 410, and the pin shaft 511 is arranged on the second transmission shaft 510.
[0191] Since the separation driving gear 470 is mounted on the main shaft 410, and the near-point pickup assembly 500 is arranged close to the main shaft 410 relative to the far-point pickup assembly 600, the linkage gear 490 is sleeved on the second transmission shaft 510 of the near-point pickup assembly 500, thereby shortening the transmission distance between the separation driving gear 470 and the linkage gear 490, and improving the transmission efficiency and stability.
[0192] In some embodiments, as shown in FIGS. 3 and 4, the transmission gear includes a first transmission gear 620 and a second transmission gear 530.
[0193] In the embodiment, as shown in FIGS. 3 and 4, the first transmission gear 620 is mounted on the first transmission shaft 610 of the far-point pickup assembly 600, and the second transmission gear 530 is mounted on the second transmission shaft 510 of the near-point pickup assembly 500. Since the near-point pickup assembly 500 is located between the far-point pickup assembly 600 and the main shaft 410, the second transmission gear 530 is located between the first transmission gear 620 and the merging driving gear 440, and the second transmission gear 530 is power-coupled and connected with the merging driving gear 440 and the first transmission gear 620.
[0194] In actual implementation, when the client places the financial medium 800 in the currency feeding channel 900, and the currency receiving plate 100 is in the first position and the mounting frame 200 is in the third position, the driving member drives the main shaft 410 to rotate the merging driving gear 440, the merging driving gear 440 transmits power to the second transmission gear 530 and the first transmission gear 620 through gear transmission, the first transmission gear 620 and the second transmission gear 530 drive the first transmission shaft 610 and the second transmission shaft 510 to rotate, respectively, so that the first pickup wheel and the second pickup wheel 540 rotate and push the financial medium 800 to move towards the direction of entering the currency feeding channel 900.
[0195] Through the above-mentioned arrangement of the first transmission gear 620 and the second transmission gear 530, the transmission stability of the main shaft 410 driving mechanism and the near-point pickup assembly 500 and the far-point pickup assembly 600 can be improved.
[0196] In some embodiments, as shown in FIGS. 3 and 4, the transmission mechanism further comprises a first transition gear 450 and a second transition gear 460, the first transition gear 450 is installed between the merging driving gear 440 and the second transmission gear 530, and the first transition gear 450 is engaged with the merging driving gear 440 and the second transmission gear 530, respectively; and / or, the second transition gear 460 is installed between the first transmission gear 620 and the second transmission gear 530, and the second transition gear 460 is engaged with the first transmission gear 620 and the second transmission gear 530, respectively.
[0197] As shown in FIGS. 3 and 4, the first transition gear 450 is engaged between the merging driving gear 440 and the second transmission gear 530, and the second transition gear 460 is engaged between the second transmission gear 530 and the first transmission gear 620, at this time, the merging driving gear 440, the first transition gear 450, the second transmission gear 530, the second transition gear 460 and the first transmission gear 620 form a gear set.
[0198] Since the near-point pickup assembly 500, the far-point pickup assembly 600 and the main shaft 410 are respectively provided with the second transmission gear 530, the first transmission gear 620 and the separating wheel 300, the distance between the near-point pickup assembly 500, the far-point pickup assembly 600 and the main shaft 410 is large, so as to reduce the interference between the second transmission gear 530, the first transmission gear 620 and the separating wheel 300, and through the arrangement of the first transition gear 450 and the second transition gear 460, the second transmission gear 530 does not need to be directly engaged with the merging driving gear 440 and the first transmission gear 620, so that the diameters of the first transmission gear 620, the second transmission gear 530 and the merging driving gear 440 can be reduced, the rotation speed of the second transmission gear 530, the first transmission gear 620 and the separating wheel 300 can be improved, and the currency separating efficiency of the currency separating device can be improved.
[0199] In some embodiments, as shown in FIG. 3 and FIG. 4, the diameter of the first transition gear 450 is greater than the diameter of the first transmission gear 620; and / or, the diameter of the second transition gear 460 is greater than the diameter of the second transmission gear 530.
[0200] According to the formula of gear transmission ratio, in a pair of meshing gears, the gear with larger diameter has lower rotation speed, and the gear with smaller diameter has higher rotation speed. Therefore, by setting the diameter of the first transition gear 450 to be greater than the diameter of the first transmission gear 620, and setting the diameter of the second transition gear 460 to be greater than the diameter of the second transmission gear 530, the rotation speed of the second transmission gear 530, the first transmission gear 620 and the separating wheel 300 can be further increased, and the banknote sorting efficiency of the banknote sorting device can be improved.
[0201] In some embodiments, the banknote sorting device further comprises a first one-way bearing and a second one-way bearing.
[0202] The first one-way bearing is installed between the separating driving gear 470 and the main shaft 410, the second one-way bearing is installed between the merging driving gear 440 and the main shaft 410, and the rotatable direction of the first one-way bearing is opposite to the rotatable direction of the second one-way bearing.
[0203] The rotatable direction of the first one-way bearing is the first direction, and the rotatable direction of the second one-way bearing is the second direction.
[0204] In actual execution process, when the customer needs to place the financial medium 800 into the banknote feeding channel 900, the driving member drives the main shaft 410 to rotate in the first direction, the main shaft 410 drives the first driving wheel and the second driving wheel 430 to rotate, and makes the mounting frame 200 and the banknote receiving plate 100 relatively separate, at the same time, the main shaft 410 drives the separating driving gear 470 to rotate under the action of the first one-way bearing, the separating driving gear 470 drives the linkage gear 490 to rotate through the intermediate gear set 480, and the main shaft 410 cannot drive the merging driving gear 440 to rotate under the action of the second one-way bearing.
[0205] When the banknote receiving plate 100 moves from the first position to the second position, and the mounting frame 200 moves from the third position to the fourth position, the controller stops the driving member under the action of the signal of the position sensor 700700; when the customer places the financial medium 800, the controller controls the driving member to continue to rotate in the first direction, at this time, the banknote receiving plate 100 remains in the second position, and the mounting frame 200 moves from the fourth position to the third position.
[0206] When the mounting frame 200 moves to the fourth position and remains in the fourth position, the boss 491 on the linkage gear 490 rotates to contact the pin shaft 511 of the near-point pickup assembly 500, the linkage gear 490 continues to rotate and drives the near-point pickup assembly 500 to rotate in the second direction by pushing the pin shaft 511, at this time, the second transmission gear 530 on the near-point pickup assembly 500 is also driven to rotate in the second direction, the first transition gear 450 and the second transition gear 460 engaged with the second transmission gear 530 are all driven to rotate in the first direction, under the action of the first transition gear 450 and the second transition gear 460, the first transmission gear 620 and the combined driving gear 440 rotate in the second direction, since the rotatable direction of the second one-way bearing between the combined driving gear 440 and the main shaft 410 is the second direction, the combined driving gear 440 and the main shaft 410 can rotate freely when the main shaft 410 rotates in the first direction.
[0207] When the near-point pickup assembly 500 and the far-point pickup assembly 600 complete the work, the driving member drives the main shaft 410 to rotate in the second direction, at this time, the combined driving gear 440 rotates with the main shaft 410, the separate driving gear 470 rotates freely with the main shaft 410, the combined driving gear 440 drives the near-point pickup assembly 500 and the far-point pickup assembly 600 to rotate in the second direction through the first transition gear 450 and the second transition gear 460, respectively, to push the financial medium 800 to move in the direction of entering the cash inlet channel 900, since the pin shaft 511 is arranged on the second transmission shaft 510 of the near-point pickup assembly 500, the pin shaft 511 also rotates in the second direction, and the pin shaft 511 drives the linkage gear 490 to rotate in the second direction by pushing the boss 491 after contacting the boss 491, the linkage gear 490 drives the separate driving gear 470 to rotate in the second direction through the intermediate gear set 480.
[0208] Through the arrangement of the first one-way bearing and the second one-way bearing, the near-point pickup assembly 500 can be synchronously driven and delayed by the combined driving gear 440 and the separate driving gear 470 on the main shaft 410, the structure is simple, and the production cost can be reduced to a certain extent.
[0209] In some embodiments, the cash sorting device further comprises a time detection device and a controller.
[0210] The time detection device can be a time relay, a time controller, or other time detection devices, and is used to collect the working time of the pickup assembly when the cash receiving plate 100 is away from the mounting frame 200. The time detection device can be used to collect the working time of the near-point pickup assembly 500, or can be used to collect the working time of the far-point pickup assembly 600.
[0211] The controller is electrically connected with the time detecting device and the driving mechanism, and is configured to control the working state of the driving mechanism based on the working time collected by the time detecting device.
[0212] In actual execution, when the banknote receiving plate 100 is located at the second position and the mounting frame 200 is located at the third position, the driving mechanism drives the near-point pickup assembly 500 and the far-point pickup assembly 600 to rotate, at this time, the time detecting device starts to collect the working time of the pickup assembly, when the working time of the pickup assembly collected by the time detecting device reaches the target time, a signal is sent to the controller, and the controller controls the driving member to drive the main shaft 410 to rotate in the second direction, so as to relatively close the banknote receiving plate 100 and the mounting frame 200.
[0213] As shown in FIG. 12, the banknote sorting device provided by the embodiment of the present application further comprises an impeller 630.
[0214] As shown in FIG. 12, the impeller 630 is installed on the mounting frame 200, and the impeller 630 can be the first pickup wheel of the far-point pickup assembly 600, that is, the impeller 630 is installed on the first transmission shaft 610 of the far-point pickup assembly 600 and is installed on the mounting frame 200 through the first transmission shaft 610.
[0215] The blades 631 of the impeller 630 can have an elliptical structure, a triangular structure or other shape structures, for example, as shown in FIG. 12, the blades 631 have a rectangular structure.
[0216] As shown in FIG. 12, the blades 631 of the impeller 630 are made of flexible material, and the blades 631 can be made of rubber, textile material or other flexible material.
[0217] As shown in FIG. 12, the distance from the axis of the impeller 630 to the end of the blade 631 of the impeller 630 is greater than the vertical distance from the axis of the impeller 630 to the banknote receiving plate 100, that is, when the blade 631 is perpendicular to the banknote receiving plate 100, the end of the blade 631 is bent, and when the blade 631 is in a straightened state, the blade 631 can still contact the surface of the banknote receiving plate 100 near the vertical point of the blade 631 and the banknote receiving plate 100.
[0218] In actual implementation, since the distance from the axis of the impeller 630 to the end of the blade 631 of the impeller 630 is greater than the vertical distance from the axis of the impeller 630 to the banknote receiving plate 100, a section of the banknote receiving plate 100 in the length direction is located in the rotation range of the impeller 630. When the customer places the financial medium 800 into the bill accepting channel 900, and the end of the financial medium 800 towards the impeller 630 is located in the rotation range of the impeller 630 except the vertical point, the blade 631 of the impeller 630 can still contact the surface of the banknote receiving plate 100, that is, the financial medium 800 located at the position can still be driven by the blade 631 of the impeller 630 to move towards the direction of entering the bill accepting channel 900.
[0219] It can be understood that if the first pickup wheel is a circular wheel, the contact between the first pickup wheel and the banknote receiving plate 100 is linear contact, that is, the straight line where the lowest first pickup wheel is located contacts the banknote receiving plate 100, resulting in that the circular wheel can contact the financial medium 800 in a smaller range.
[0220] According to the banknote sorting device provided in the embodiments of the present application, the financial medium 800 is pushed by the impeller 630 to move towards the direction of entering the bill accepting channel 900, which can increase the contact range with the financial medium 800, thereby facilitating the pushing of the financial medium 800 close to the entrance of the bill accepting channel 900 to the outlet of the bill accepting channel 900, and improving the banknote sorting effect and efficiency of the banknote sorting device.
[0221] In some embodiments, as shown in FIG. 12, the impeller 630 is multiple, and the multiple impellers 630 are distributed along the axis direction of the impeller 630.
[0222] As shown in FIG. 12, the multiple impellers 630 are distributed along the axis direction of the first transmission shaft 610, and the multiple impellers 630 are all located in the bill accepting channel 900.
[0223] The impeller 630 can be two or other numbers, for example, as shown in FIG. 12, the impeller 630 is two, and the two impellers 630 are distributed along the width direction of the bill accepting channel 900.
[0224] By setting the impeller 630 as multiple, the multiple impellers 630 can be used to simultaneously apply force to the financial medium 800, thereby improving the moving speed of the financial medium 800 in the bill accepting channel 900, and further improving the banknote sorting efficiency of the banknote sorting device.
[0225] In some embodiments, as shown in FIG. 12, the blade 631 is multiple, and the multiple blades 631 are distributed along the circumferential direction of the impeller 630.
[0226] As shown in FIG. 12, the blade 631 can be four, and the four blades 631 are uniformly distributed along the circumferential direction of the impeller 630. The blade 631 can also be other numbers.
[0227] By arranging the blades 631 in a plurality, the pick-up efficiency of the impeller 630 on the financial media 800 can be improved, thereby improving the banknote sorting efficiency of the banknote sorting device.
[0228] In some embodiments, as shown in FIG. 12, the distance from the axis of the impeller 630 to the end of the blade 631 of the impeller 630 is greater than the distance from the axis of the near-point pick-up assembly 500 to the outer periphery of the near-point pick-up assembly 500, and the axis height of the impeller 630 is equal to the axis height of the near-point pick-up assembly 500.
[0229] In some embodiments, as shown in FIG. 12, the second pick-up wheel 540 is a circular wheel, and the distance from the axis of the near-point pick-up assembly 500 to the outer periphery of the near-point pick-up assembly 500 is equal to the distance from the axis of the second transmission shaft 510 to the outer periphery of the circular wheel.
[0230] As shown in FIG. 12, the axis height of the impeller 630 is equal to the axis height of the near-point pick-up assembly 500, i.e., the axis height of the impeller 630 is equal to the axis height of the second pick-up wheel 540.
[0231] In actual implementation, as shown in FIG. 13, when the banknote receiving plate 100 is located at the second position and the mounting frame 200 moves from the fourth position to the third position, since the axis height of the impeller 630 is equal to the axis height of the second pick-up wheel 540, and the distance from the axis of the impeller 630 to the end of the blade 631 of the impeller 630 is greater than the distance from the axis of the near-point pick-up assembly 500 to the outer periphery of the near-point pick-up assembly 500, the blade 631 of the impeller 630 preferentially contacts the surface of the banknote receiving plate 100; when the banknote receiving plate 100 is located at the second position and the mounting frame 200 is located at the third position, the blade 631 of the impeller 630 contacts the financial media 800 on the banknote receiving plate 100, and there is a gap between the second pick-up wheel 540 and the financial media 800 or the force between the second pick-up wheel 540 and the financial media 800 is small.
[0232] By arranging the distance from the axis of the impeller 630 to the end of the blade 631 of the impeller 630 to be greater than the distance from the axis of the near-point pick-up assembly 500 to the outer periphery of the near-point pick-up assembly 500, and arranging the axis height of the impeller 630 to be equal to the axis height of the near-point pick-up assembly 500, the force of the second pick-up wheel 540 on the financial media 800 when the banknote receiving plate 100 is located at the second position and the mounting frame 200 is located at the third position can be reduced, thereby facilitating the impeller 630 to adjust the position of the financial media 800.
[0233] The embodiments of the present application also provide a financial equipment, which comprises a housing and a banknote sorting device as described above.
[0234] The financial equipment can include, but is not limited to, an automatic teller machine, an automatic deposit machine, an automatic deposit and withdrawal all-in-one machine, etc.
[0235] According to the financial equipment provided by the embodiment of the present application, by using any one of the banknote separating devices, a driving mechanism can be used to provide power for the banknote supporting plate 100, the mounting frame 200 and the separating wheel 300, thereby reducing the number of driving mechanisms and the number of parts, and reducing the production cost of the banknote separating device; when the financial medium 800 located at the second layer protrudes from the end of the first layer close to the separating wheel 300, the pickup assembly can be used to push the financial medium 800 at the first layer and move it towards the direction of entering the banknote inlet channel 900, and since the banknote supporting plate 100 is away from the mounting frame 200, the pressure and friction of the pickup assembly on the financial medium 800 can be reduced, so that the pickup assembly only acts on the financial medium 800 at the upper layer, thereby reducing the probability of multiple financial media 800 being overlapped and taken out when the separating wheel 300 separates the financial medium 800, and improving the banknote separating effect of the banknote separating device; the contact range with the financial medium 800 can be increased, thereby facilitating the pushing of the financial medium 800 close to the entrance of the banknote inlet channel 900 to the outlet of the banknote inlet channel 900, and improving the banknote separating effect and efficiency of the banknote separating device.
[0236] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally of a kind and do not limit the number of objects, for example, the first object can be one or more. In addition, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the front and rear associated objects are in an "or" relationship.
[0237] In the description of the present application, it should be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0238] In the description of the present application, "first feature" and "second feature" can include one or more features.
[0239] In the description of the present application, the meaning of "a plurality of" is two or more than two.
[0240] In the description of the present application, the first feature is "on" or "under" the second feature, which can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them.
[0241] In the description of the present application, the first feature is "on", "above" and "on" the second feature, which includes that the first feature is directly above and obliquely above the second feature, or only indicates that the first feature is higher than the second feature in height.
[0242] The technical features of the above-described embodiments can be combined in any manner. In order to make the description simple, not all possible combinations of the technical features in the above-described embodiments are described, however, as long as the combinations of the technical features do not exist contradictions, they should be considered as the scope of the present application.
[0243] The above-described embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the patent scope of the application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.
Claims
1. A banknote sorting apparatus characterized by comprising: The application relates to a bill-pushing device, comprising: a rack; a bill-plate movably mounted on the rack, the bill-plate being used for placing financial media; a mounting frame movably mounted on the rack, the mounting frame being spaced apart from the rack and defining an entry channel; a pickup assembly mounted on the mounting frame, the pickup assembly being used for pushing the financial media to move; a driving mechanism mounted on the rack, the driving mechanism being connected with the pickup assembly, and the driving mechanism being configured to drive the pickup assembly to push the financial media to move towards the entry channel when the bill-plate is away from the mounting frame.
2. The currency processing apparatus of claim 1 wherein, The driving mechanism comprises: a driving member mounted on the rack; a transmission mechanism, an output end of the transmission mechanism being connected with the driving member, and the pickup assembly being connected with the transmission mechanism.
3. The currency processing apparatus of claim 2 wherein, The transmission mechanism comprises: a main shaft connected with the output end of the driving member; a separate driving gear mounted on the main shaft; a linkage gear sleeved on the pickup assembly, the linkage gear being power-coupled with the separate driving gear; a linkage member mounted on the linkage gear, the linkage member being used for driving the linkage gear and the pickup assembly to be power-coupled when the bill-plate is away from the mounting frame.
4. The currency processing apparatus of claim 3 wherein, An end surface of the linkage gear is provided with a boss protruding outward in an axial direction, and the pickup assembly is provided with a pin protruding outward in a radial direction, the boss being abutted with the pin and being used for driving the pickup assembly to push the financial media to move towards the entry channel when the bill-plate is away from the mounting frame.
5. The currency processing apparatus of claim 3 wherein, The driving mechanism is configured to drive the pickup assembly to push the financial media to move towards the entry channel when the bill-plate and the mounting frame are close to each other.
6. The currency processing apparatus of claim 5 wherein, The transmission mechanism further comprises: a combined driving gear mounted on the main shaft; a transmission gear mounted on the pickup assembly, the transmission gear being power-coupled with the combined driving gear.
7. The currency processing apparatus of claim 6 wherein, Further comprising: a first one-way bearing mounted between the separate driving gear and the main shaft; a second one-way bearing mounted between the combined driving gear and the main shaft, and a rotatable direction of the first one-way bearing being opposite to a rotatable direction of the second one-way bearing.
8. The currency processing apparatus of claim 3 wherein, The pickup assembly comprises: a far-point pickup assembly and a near-point pickup assembly, the far-point pickup assembly and the near-point pickup assembly being spaced apart along a length direction of the entry channel, and the far-point pickup assembly and the near-point pickup assembly being connected with the driving mechanism; and / or, The far point pickup assembly and the near point pickup assembly are distributed along the length direction of the banknote inlet channel, and are connected with the driving mechanism, and the far point pickup assembly is located at one end of the mounting frame close to the entrance of the banknote inlet channel, and the near point pickup assembly is located at one end of the mounting frame away from the entrance of the banknote inlet channel, and the linkage gear is sleeved on the near point pickup assembly.
9. The currency processing apparatus of any one of claims 1-8, wherein, Further comprising: Time detection device, the time detection device is used for collecting the working time of the pickup assembly when the banknote plate is away from the mounting frame; The controller is electrically connected with the time detection device and the driving mechanism, and is used for controlling the working state of the driving mechanism based on the working time collected by the time detection device.
10. The currency processing apparatus of any one of claims 1-7, wherein, Further comprising: The separation wheel is rotatably installed on the rack, and the separation wheel is connected with the driving mechanism, and the driving mechanism is used for driving the separation wheel to rotate.
11. The currency processing apparatus of claim 10 wherein, The driving mechanism comprises: The driving member is installed on the rack; The transmission mechanism is connected with the driving member, and the banknote plate, the mounting frame and the separation wheel are connected with the transmission mechanism.
12. The currency processing apparatus of claim 11 wherein, The transmission mechanism comprises: The main shaft is connected with the output end of the driving member, and the separation wheel is installed on the main shaft; The first driving wheel is installed on the main shaft, and the second driving wheel is power-coupled with the main shaft, and the first driving wheel is provided with a first protrusion protruding outward in the radial direction, and the second driving wheel is provided with a second protrusion protruding outward in the radial direction, and the first protrusion and the second protrusion are used for driving the banknote plate and the mounting frame to separate.
13. The currency processing apparatus of any one of claims 1-7, wherein, The pickup assembly comprises: The impeller is installed on the mounting frame, the distance from the axis of the impeller to the end of the blade of the impeller is greater than the vertical distance from the axis of the impeller to the banknote plate, and the blade is a flexible material piece.
14. A financial device, characterized by Comprising: The shell; The banknote separating device as claimed in any one of claims 1-13 is installed in the shell.