Dual-gate cash deposit and withdrawal insurance device
Through the combination of double gate design and induction parts, the problems of single gate failure and legacy banknotes are solved, convenient maintenance and cash omission prevention are achieved, and customer interests are protected.
Patent Information
- Application Number
- CN202211436629.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-16
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2042-11-16
AI Technical Summary
The single gate of the existing large-value deposit and withdrawal machine is prone to failure, and the deposit port is far away from the user, resulting in poor vision, which is easy to leave money and cause losses to customers.
A double gate structure is designed to control the opening and closing of the withdrawal port and the deposit port respectively. The first opening and closing gate device and the second opening and closing gate device are adopted to add manual locks and induction parts to facilitate maintenance and induction of cash in the deposit port.
It improves the service life of the gate, facilitates maintenance, avoids cash omissions, and protects customer interests.
Smart Images

Figure CN115862218B_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of deposit and withdrawal equipment, and more specifically, relates to a double-gate cash deposit and withdrawal insurance device. Background Art
[0002] Currently, the deposit and withdrawal openings of the bill dispensing module at the top of the core of the large-amount deposit and withdrawal integrated machine used in the market are separated, and the shape is relatively complex. The cash openings are distributed at two independent positions in the front and back. The front end is the withdrawal opening, and the back end is the deposit opening. A gate device for opening and closing the cash opening is provided at the cash opening. The existing gate device is a single gate, and this single gate needs to be opened both when depositing and withdrawing separately, which may lead to frequent failures of the single gate.
[0003] In actual use, jammed bill failures often occur during the deposit process. Therefore, regular maintenance is required, and the installation of the gate needs to facilitate troubleshooting after a jam occurs.
[0004] Since the deposit opening is relatively far from the position where the user stands, generally, the distance between the deposit opening and the user is more than 500 mm. In the actual operation process, it is difficult for the user to directly see the internal situation of the deposit opening for the cash opening at a long distance, resulting in the situation of leaving bills in the deposit opening. If the customer does not count the number of bills in advance, it may cause the loss of bills not taken away by the user. Summary of the Invention
[0005] The purpose of the embodiments of this application is to provide a double-gate cash deposit and withdrawal insurance device to solve the technical problems in the prior art that a single gate is prone to failure and there is a small amount of bills left in the deposit opening, causing losses to customers.
[0006] To achieve the above object, the technical solution adopted in this application is: providing a double-gate cash deposit and withdrawal insurance device, including a device main body. A core is provided inside the device main body. A withdrawal opening and a deposit opening are provided on the core. A first opening and closing gate device is provided at the withdrawal opening, and a second opening and closing gate device is provided at the deposit opening. The first opening and closing gate device includes a first main frame, a first driving member, and a first gate. The first driving member is arranged on the first main frame and drives the first gate to open and close the withdrawal opening. The second opening and closing gate device includes a second main frame, a second driving member, a second gate, a manual locking member, and a sensing member. The second main frame is slidably arranged inside the device main body. The second gate is slidably arranged on the second main frame. The second driving member is arranged on the second main frame and drives the second gate to open and close the deposit opening. The manual locking member is used to lock and unlock the sliding of the second main frame. The sensing member is used to sense the cash inside the deposit opening.
[0007] In one embodiment, the first main frame includes a first left bracket and a first right bracket. Arc-shaped brackets are provided on the inner sides of the first left bracket and the first right bracket. Arc-shaped grooves are provided on the arc-shaped brackets. The first gate is an arc-shaped gate and its two sides are slidably arranged in the arc-shaped grooves respectively.
[0008] In one embodiment, the first driving member includes a first motor, a gear set, a rotating shaft and an arc-shaped rack. The first motor is arranged on the first left bracket or the first right bracket. The two ends of the rotating shaft are rotatably arranged on the first left bracket and the first right bracket and are in transmission connection with the first motor through the gear set. A driving gear is provided on the rotating shaft. The arc-shaped rack is arranged on the inner side of the first gate and meshes with the driving gear. An opening sensor, a closing sensor and an anti-pinch safety sensor are provided on the first main frame.
[0009] In one embodiment, a baffle is provided between the first left bracket and the first right bracket. A plurality of notches are provided at intervals at the upper end of the baffle. A plurality of rib plates are provided at intervals on the inner side of the first gate. Each rib plate is inserted into the corresponding notch for sliding fit.
[0010] In one embodiment, arc-shaped strips are provided on both sides of the first gate. Rollers are provided on the arc-shaped strips. The rollers are rotatably arranged in the arc-shaped grooves.
[0011] In one embodiment, the first gate device further includes a locking assembly. The locking assembly includes a locking driving member, a locking block and a locking opening and closing sensor. The locking block is rotatably arranged and is in transmission connection with the locking driving member. The locking opening and closing sensor is located at the starting point and the ending point of the rotation of the locking block. When the locking block is in a horizontal state, the locking block unlocks the first gate so that the first gate can move normally. When the locking block is in a vertical state, the locking block locks the first gate to limit the movement of the first gate.
[0012] In one embodiment, the second gate is a flat gate. The second gate is slidably arranged on the second main frame through a slide rail. A fixed bracket is provided in the equipment main body. The second main frame is slidably arranged on the fixed bracket.
[0013] In one embodiment, the second main frame includes a mounting flat bracket, a second left bracket, a second right bracket and a front bracket. The second left bracket and the second right bracket are respectively arranged on both sides of the mounting flat bracket. The two ends of the front bracket are respectively arranged at the front ends of the second left bracket and the second right bracket and a deposit opening is formed between the front bracket and the mounting flat bracket. Both sides of the second gate are slidably arranged on the second left bracket and the second right bracket through the slide rail and can open and close the deposit opening.
[0014] In one embodiment, the second driving member includes: a second motor, a synchronous belt, two belt pulleys, a clamping bracket and a control circuit main board. A strip-shaped long slot is provided on the second left bracket. The belt pulley is rotatably arranged outside the second left bracket. One end of the clamping bracket is fixed on the second gate, and the other end passes through the strip-shaped long slot and is clamped and fixed to the synchronous belt. The second motor is arranged on the installation flat bracket and is in transmission connection with one of the belt pulleys. The synchronous belt is in transmission connection with the two belt pulleys.
[0015] In one embodiment, a self-locking motor is provided on the installation flat bracket. The self-locking motor is in transmission connection with a swing block. A stop block protrudes from the swing block. A limit plate is provided at the rear end of the second gate. The self-locking motor drives the swing block to reciprocate so that the stop block releases or blocks the limit plate.
[0016] In one embodiment, a banknote blocking member is provided in the deposit opening. The sensing member includes at least four cash sensors and is respectively located on four sides of the deposit opening.
[0017] The beneficial effects of the double-gate cash deposit and withdrawal insurance device provided by the present application are as follows: Compared with the prior art, the double-gate cash deposit and withdrawal insurance device of the present application controls the opening and closing of the withdrawal opening and the deposit opening by setting the first opening and closing gate device and the second opening and closing gate device respectively, meets the states of separate deposit and separate withdrawal under different business models and ensures the service life of the gate. By setting a manual locking member to lock and unlock the sliding of the second main frame, it is convenient to perform maintenance when banknote jamming occurs. By adding a sensing member to sense the cash in the deposit opening, it can sense whether there is cash omission to remind the customer, effectively avoiding the phenomenon of cash omission and ensuring the interests of the customer. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0019] Figure 1 It is a front view structural schematic diagram of the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application;
[0020] Figure 2 It is a front view structural schematic diagram of the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application with the upper part omitted;
[0021] Figure 3Schematic rear view structure diagram of the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application with the upper part omitted;
[0022] Figure 4 Schematic structure diagram of the first opening and closing gate device and the second opening and closing gate device in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application, and the second opening and closing gate device is in an open state;
[0023] Figure 5 Schematic structure diagram of the first opening and closing gate device and the second opening and closing gate device in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application, and the second opening and closing gate device is in a closed state;
[0024] Figure 6 Schematic structure diagram of the first opening and closing gate device in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application
[0025] Figure 7 Partial exploded structure diagram of the first opening and closing gate device in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application;
[0026] Figure 8 Schematic bottom view structure diagram of the first opening and closing gate device in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application;
[0027] Figure 9 Schematic right view structure diagram of the second opening and closing gate device in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application;
[0028] Figure 10 Partial exploded structure diagram of the second opening and closing gate device in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application;
[0029] Figure 11 Schematic installation structure diagram of the sensing element in the double-gate cash deposit and withdrawal insurance device provided by the embodiment of the present application.
[0030] Among them, the reference numerals in the figure:
[0031] 1. Equipment main body; 11. Movement; 12. Withdrawal opening; 13. Deposit opening; 2. First opening and closing gate device; 21. First main frame; 211. First left support; 212. First right support; 213. Arc-shaped frame; 214. Arc-shaped groove; 22. First driving member; 221. First motor; 222. Gear set; 223. Rotating shaft; 224. Arc-shaped rack; 225. Driving gear; 226. Closing sensor; 227. Opening sensor; 228. Anti-pinch safety sensor; 23. First gate; 231. Rib plate; 232. Arc-shaped strip; 233. Roller; 24. Baffle; 241. Notch; 25. Locking assembly; 251. Locking driving member; 252. Locking block; 253. Locking opening and closing sensor; 3. Second opening and closing gate device; 31. Second main frame; 311. Installation flat support; 312. Second left support; 313. Second right support; 314. Front support; 315. Strip-shaped long groove; 316. Brush strip; 317. Left auxiliary support; 318. Right auxiliary support; 32. Second driving member; 321. Second motor; 322. Synchronous belt; 323. Belt pulley; 324. Clamping support; 325. Control circuit main board; 326. Position sensor; 327. Anti-pinch opposed sensor; 33. Second gate; 331. Limit plate; 34. Manual lock; 35. Inductive member; 351. Front inductive support; 352. Rear inductive support; 353. Cash sensor; 354. Copy-blocking member; 36. Slide rail; 37. Fixed support; 38. Self-locking motor; 39. Swing block; 391. Block; 392. Detection sensor. Detailed implementation manners
[0032] In order to make the technical problems, technical solutions and beneficial effects to be solved by this application clearer and more understandable, the following further details this application in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not used to limit this application.
[0033] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.
[0034] It should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to this application.
[0035] In addition, the terms "first" and "second" are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of this application, "a plurality" means two or more, unless otherwise specifically defined.
[0036] As Figures 1 - 11 shown, a double-gate cash deposit and withdrawal insurance device provided by an embodiment of this application will now be described. This double-gate cash deposit and withdrawal insurance device includes a device main body 1. Inside the device main body 1, there is a machine core 11. On the machine core 11, there are a withdrawal opening 12 and a deposit opening 13. Structures such as a display screen and a password cabinet door provided on the device main body 1 and the machine core 11 are all prior arts and will not be described in detail here.
[0037] In this embodiment, its main improvement lies in that a first opening and closing gate device 2 is provided at the withdrawal opening 12, and a second opening and closing gate device 3 is provided at the deposit opening 13; the first opening and closing gate device 2 and the second opening and closing gate device 3 can work independently, so as to meet the states of separate deposit and separate withdrawal under different business models and ensure the service life of the gates.
[0038] In this embodiment, as Figures 2 - 8 shown, in this embodiment, the first opening and closing gate device 2 includes a first main frame 21, a first driving member 22, and a first gate 23. The first main frame 21 is arranged inside the device main body 1, and the first driving member 22 is arranged on the first main frame 21 and drives the first gate 23 to open and close the withdrawal opening 12.
[0039] In this embodiment, as Figures 2 - 5 and Figures 9 - 11As shown in the figure, the second opening and closing gate device 3 includes a second main frame 31, a second driving member 32, a second gate 33, a manual locking member 34 and a sensing member 35. Among them, the second main frame 31 is slidably arranged in the equipment main body 1, the second gate 33 is slidably arranged on the second main frame 31, the second driving member 32 is arranged on the second main frame 31 and drives the second gate 33 to open and close the deposit opening 13. The manual locking member 34 is used to lock and unlock the sliding of the second main frame 31, and the sensing member 35 is used to sense the cash in the deposit opening 13. The second opening and closing gate device 3 has two working states. The first is the normal deposit state. At this time, the second main frame 31 is locked by the manual locking member 34 and cannot slide. The second driving member 32 drives the second gate 33 to reciprocate on the second main frame 31 to open and close the deposit opening 13 to realize the deposit function. When there are bad phenomena such as banknote jams, the equipment maintenance personnel open the upper box body or cabinet door of the equipment main body 1, lift the manual locking member 34 to cancel the restriction of the manual locking member 34 on the second main frame 31, and then the equipment maintenance personnel push the second main frame 31 backward to separate the second opening and closing gate device 3 from the deposit opening 13 of the core 11, so that the equipment maintenance personnel can repair the jammed core 11. The operation is simple and the maintenance is convenient and fast. The function of the sensing member 35 is to sense whether there is any remaining cash in the deposit opening 13. If it senses that there is still remaining cash, the voice broadcast of the equipment main body 1 will remind the customer to take it to avoid losses to the customer's interests.
[0040] Compared with the prior art, the double-gate cash deposit and withdrawal insurance equipment provided in this embodiment controls the opening and closing of the withdrawal opening 12 and the deposit opening 13 by setting the first opening and closing gate device 2 and the second opening and closing gate device 3 respectively, meets the states of separate deposit and separate withdrawal under different business models and ensures the service life of the gate. By setting the manual locking member 34 to lock and unlock the sliding of the second main frame 31, it is convenient to perform maintenance when there is a banknote jam. By adding the sensing member 35 to sense the cash in the deposit opening 13, it can sense whether there is any cash omission to remind the customer, effectively avoiding the phenomenon of cash omission and ensuring the interests of the customer.
[0041] In this embodiment, as Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 and Figure 8As shown in the figure, the first main frame 21 includes a first left bracket 211 and a first right bracket 212. The first left bracket 211 and the first right bracket 212 are fan-shaped brackets and are respectively arranged on both sides of the movement 11. Arc-shaped brackets 213 are provided on the inner sides of the first left bracket 211 and the first right bracket 212. Arc-shaped grooves 214 are provided on the arc-shaped brackets 213. The first gate 23 is an arc-shaped gate and its two sides are respectively slidably arranged in the arc-shaped grooves 214. The function of the arc-shaped grooves 214 is to ensure that the first gate 23 makes a stable arc-shaped reciprocating motion so that the first gate 23 can open and close the withdrawal opening 12. A cross plate is provided between the first left bracket 211 and the first right bracket 212. An opening sensor 227 is arranged at the lower end of the cross plate, and a closing sensor 226 is arranged at the upper end of the cross plate. When the opening sensor 227 senses the first gate 23, it means that the first gate 23 is in the open state. When the closing sensor 226 senses the first gate 23, the first gate 23 is in the closed state( Figure 6 For the closed state of the first gate 23). An anti-pinch safety sensor 228 is provided on the tops of the first left bracket 211 and the first right bracket 212. The anti-pinch safety sensor 228 is a transmissive sensor. The anti-pinch safety sensor 228 is used to sense whether there is still a user taking cash inside the first gate 23. When the anti-pinch safety sensor 228 senses the user's hand, the first gate 23 is kept in the open state to avoid pinching the user.
[0042] In this embodiment, as Figure 6 、 Figure 7 and Figure 8 shown, the first driving member 22 includes a first motor 221, a gear set 222, a rotating shaft 223 and an arc-shaped rack 224; among them, the first motor 221 is arranged on the first left bracket 211 or the first right bracket 212. In this embodiment, the first motor 221 is arranged on the first right bracket 212. The two ends of the rotating shaft 223 are rotatably arranged on the first left bracket 211 and the first right bracket 212, and one end of the rotating shaft 223 is in transmission connection with the first motor 221 through the gear set 222. The gear set 222 is a reduction gear set 222. Two driving gears 225 are arranged at intervals on the rotating shaft 223. Two arc-shaped racks 224 are arranged and fixed on the inner side of the first gate 23. The arc-shaped racks 224 are engaged with the driving gears 225; when the first motor 221 rotates forward, the rotating shaft 223 is driven to rotate through the gear set 222. When the rotating shaft 223 rotates, the driving gears 225 are driven to rotate, so as to drive the arc-shaped rack 224 to move in an arc, realizing the opening of the first gate 23; when the first motor 221 rotates reversely, the rotating shaft 223 is driven to rotate through the gear set 222. When the rotating shaft 223 rotates, the driving gears 225 are driven to rotate, so as to drive the arc-shaped rack 224 to move in an arc, realizing the closing of the first gate 23.
[0043] In this embodiment, as Figure 6 andFigure 7 As shown, a baffle 24 is provided between the first left bracket 211 and the first right bracket 212, a plurality of notches 241 are provided at intervals on the upper end of the baffle 24, a plurality of ribs 231 are provided at intervals on the inner side of the first gate 23, each rib 231 is inserted into a corresponding notch 241 for sliding fit, and the ribs 231 and the notches 241 serve as limiting guides to ensure the stability of the arc motion of the first gate 23.
[0044] In this embodiment, arc strips 232 are provided on both sides of the first gate 23, and rollers 233 are provided on the arc strips 232. A plurality of rollers 233 may be provided, and the rollers 233 are rollingly arranged in the arc groove 214. The function of the rollers 233 is to reduce friction and facilitate smoother movement of the first gate 23. The arc strips 232 are fixed to the first gate 23 by screws.
[0045] In this embodiment, if Figure 6 As shown, the first gate device 2 also includes a locking assembly 25, which is arranged on the transverse plate between the first left bracket 211 and the first right bracket 212. Specifically, the locking assembly 25 includes a locking drive 251, a locking block 252 and a locking opening and closing sensor 253; wherein the locking block 252 is a long strip block, the middle rotation of the locking block 252 is arranged on the transverse plate and the locking block 252 is connected to the locking drive 251 in a transmission manner, wherein the locking drive 251 includes a locking motor, a pulley and a synchronous belt, two pulleys are arranged, one is arranged on the locking block 252, and the other is connected to the locking motor in a transmission manner, and the synchronous belt is used to connect the two pulleys in a transmission manner, so that the locking motor can drive the locking block 252 to rotate forward and reverse (clockwise and counterclockwise) when rotating forward and reverse.
[0046] In this embodiment, two locking and opening / closing sensors 253 are provided and are respectively located at the starting point and the ending point of the rotation of the locking block 252. An induction flap is provided on the locking block 252. When the locking block 52 rotates, it cooperates with the locking and opening / closing sensors 253 through the induction flap to realize the position docking of the locking block 252. In this embodiment, the rotation angle of the locking block 252 is 90°. When the locking block 252 is in a horizontal state, the height of the locking block 252 is lower than that of the first gate 23. The locking block 252 unlocks the first gate 23 to enable the normal movement of the first gate 23. When the locking block 252 is in a vertical state, the height of the locking block 252 is higher than the lower end of the first gate 23. In this way, the locking block 252 blocks the first gate 23, and the locking block (252) locks the first gate (22) to restrict the movement of the first gate 23; when the first gate 23 is in a closed state, the locking block 252 is in a vertical state, which blocks the first gate 23 and prevents customers or others from pushing the first gate 23 externally. When the first gate 23 needs to be opened, first move the locking block 252 to a horizontal state to ensure that the first gate 23 can be opened normally.
[0047] As Figure 4 , Figure 5 , Figure 9 , Figure 10 and Figure 11 As shown in the figures, in this embodiment, the second gate 33 is a flat gate. The second gate 33 is slidably arranged on the second main frame 31 through a slide rail 36. A fixed bracket 37 is provided inside the equipment main body 1. The second main frame 31 is slidably arranged on the fixed bracket 37. The second main frame 31 can be slidably arranged on the fixed bracket 37 by means of a guide rail or guiding. When the second main frame 31 slides, the entire second opening / closing gate device 3 moves, separating the second opening / closing gate device 3 from the movement mechanism 11, which is convenient for maintenance; when the position of the second main frame 31 is limited, the second gate 33 makes a reciprocating linear movement relative to the second main frame 31 to realize the opening and closing of the deposit opening 13.
[0048] Specifically, the second main frame 31 includes an installation flat bracket 311, a second left bracket 312, a second right bracket 313 and a front bracket 314. The second left bracket 312 and the second right bracket 313 are respectively arranged on both sides of the installation flat bracket 311. The two ends of the front bracket 314 are respectively arranged at the front ends of the second left bracket 312 and the second right bracket 313, and a deposit opening 13 is formed between the front bracket 314 and the installation flat bracket 311. The two sides of the second gate 33 are slidably arranged on the second left bracket 312 and the second right bracket 313 through the slide rail 36 and can open and close the deposit opening 13. A brush strip 316 is further provided on the front bracket 314. The function of the brush strip 316 is to prevent cash from getting stuck in the gaps of the movement mechanism 11.
[0049] Specifically, the second driving member 32 includes: a second motor 321, a synchronous belt 322, two pulleys 323, a clamping bracket 324 and a control circuit main board 325. Among them, a strip-shaped long slot 315 is provided on the second left bracket 312, two pulleys 323 are arranged at intervals and rotated on the outside of the second left bracket 312, one end of the clamping bracket 324 is fixed on the second gate 33, and the other end passes through the strip-shaped long slot 315 and is clamped and fixed with the synchronous belt 322, the second motor 321 is arranged on the mounting flat bracket 311 and is transmission-connected with one of the pulleys 323, and the synchronous belt 322 is transmission-connected with the two pulleys 323. The control circuit main board 325 is arranged on the mounting flat bracket 311, the clamping bracket 324 includes an L-shaped bracket, a clamping tooth plate and a screw, one end of the L-shaped bracket is fixed on the second gate 33, and the other end passes through the strip-shaped long slot 315 and cooperates with the clamping tooth plate to clamp the synchronous belt 322 and is fixed by screws. When the second motor 321 rotates forwards and reverses, it drives the pulley 323 to rotate, realizing the movement of the synchronous belt 322, thereby the synchronous belt 322 drives the second gate 33 to slide back and forth linearly through the clamping bracket 324, thereby realizing the opening and closing of the deposit port 13.
[0050] A sensing sheet is provided on the second gate 33 , and a position sensor 326 is provided on the mounting bracket 311 . The sensing sheet and the position sensor 326 cooperate to sense the opening and closing state of the second gate 33 .
[0051] Anti-hand pinching sensors 327 are provided at the front ends of the second left bracket 312 and the second right bracket 313, so that when the customer's hand is still in the deposit port 13, the second gate 33 will not be closed to avoid pinching the user.
[0052] In this embodiment, in order to prevent the customer from externally pushing the second gate 33 to move, a self-locking motor 38 is provided on the mounting flat bracket 311. The self-locking motor 38 is drivingly connected to a swing block 39. A stopper 391 protrudes from the swing block 39. A limit plate 331 is provided at the rear end of the second gate 33. The self-locking motor 38 drives the swing block 39 to reciprocate so that the stopper 391 releases or blocks the limit plate 331. The moving direction of the swing block 39 is perpendicular to the moving direction of the second gate 33. The swing block 39 is slidably disposed on the upper surface of the mounting flat bracket 311. A rack is provided on one side of the swing block 39. The self-locking motor 38 is disposed on the lower surface of the mounting flat bracket 311 and the output shaft extends to the upper surface of the mounting flat bracket 311. A gear meshing with the rack is provided on the output shaft. When the self-locking motor 38 rotates forward, it drives the swing block 39 to move to one side, causing the stopper 391 to be misaligned with the limit plate 331, so that the second gate 33 can slide open; when the self-locking motor 38 rotates in reverse, it drives the swing block 39 to move to the other side, causing the stopper 391 and the limit plate 331 to be in the same straight line. In this way, the stopper 391 blocks the limit plate 331, making the second gate 33 unable to slide and keeping the second gate 33 in a closed state, preventing the customer from pushing the second gate 33 externally. Two detection sensors 392 are provided on the mounting flat bracket 311. The two detection sensors 392 are respectively located at both ends of the swing block 39. When the swing block 39 moves to the position of the detection sensor 392, it stops moving. The function of the detection sensor 392 is to limit the movement stroke of the swing block 39.
[0053] In this embodiment, a left auxiliary bracket 317 is installed on the second left bracket 312 by screws, and a right auxiliary bracket 318 is installed on the second right bracket 313 by screws. The manual lock 34 is disposed on the right auxiliary bracket 318. The manual lock 34 is a spring pin. When unlocking, the equipment maintenance personnel lift the spring pin upward to separate it from the movement mechanism 11 below, so that the right auxiliary bracket 318 can slide.
[0054] Specifically, a banknote blocking member 354 is provided inside the deposit slot 13, which is used to prevent banknotes from getting stuck in the gaps of the cash processing module 11. A front induction bracket 351 and a rear induction bracket 352 are provided on the cash processing module 11. The front induction bracket 351 is arranged at the front end of the deposit slot 13, and the rear induction bracket 352 is arranged at the rear end of the deposit slot 13. The left auxiliary bracket 317 is arranged on the left side of the deposit slot 13, and the right auxiliary bracket 318 is arranged on the right side of the deposit slot 13. The induction member 35 includes at least four cash sensors 353, which are respectively located on the four sides of the deposit slot 13. The cash sensor 353 on the left side is arranged on the left auxiliary bracket 317, the cash sensor 353 on the right side is arranged on the right auxiliary bracket 318, the cash sensor 353 on the front side is arranged on the front induction bracket 351, and the cash sensor 353 on the rear side is arranged on the rear induction bracket 352. In this way, the cash sensors 353 can comprehensively sense the cash inside the deposit slot 13 to avoid omission of cash.
[0055] Among them, the positions of the front induction bracket 351, the rear induction bracket 352 and the banknote blocking member 354 are fixed. The spring pin passes through the right auxiliary bracket 318 and is inserted into the front induction bracket 351. When it is necessary to push the second opening and closing gate device 3 backward for maintenance, the spring pin is lifted upward so that the spring pin is separated from the front induction bracket 351, so that the second opening and closing gate device 3 can slide backward as a whole and be separated from the cash processing module 11, which is convenient for maintenance.
[0056] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. Dual-gate cash deposit and withdrawal insurance device, including a device main body (1), a core (11) is arranged inside the device main body (1), a withdrawal opening (12) and a deposit opening (13) are arranged on the core (11), and it is characterized in that: A first opening and closing gate device (2) is provided at the withdrawal opening (12), and a second opening and closing gate device (3) is provided at the deposit opening (13); the first opening and closing gate device (2) includes a first main frame (21), a first driving member (22) and a first gate (23), the first driving member (22) is arranged on the first main frame (21) and drives the first gate (23) to open and close the withdrawal opening (12), the second opening and closing gate device (3) includes a second main frame (31), a second driving member (32), a second gate (33), a manual locking member (34) and a sensing member (35), the second main frame (31) is slidably arranged in the equipment main body (1), the second gate (33) is slidably arranged on the second main frame (31), the second driving member (32) is arranged on the second main frame (31) and drives the second gate (33) to open and close the deposit opening (13), the manual locking member (34) is used to lock and unlock the sliding of the second main frame (31), and the sensing member (35) is used to sense the cash in the deposit opening (13); The second gate (33) is a flat gate, and the second gate (33) is slidably arranged on the second main frame (31) through a slide rail (36), and a fixed bracket (37) is arranged in the equipment main body (1), and the second main frame (31) is slidably arranged on the fixed bracket (37); The second main frame (31) includes an installation flat bracket (311), a second left bracket (312), a second right bracket (313) and a front bracket (314), the second left bracket (312) and the second right bracket (313) are respectively arranged on both sides of the installation flat bracket (311), both ends of the front bracket (314) are respectively arranged at the front ends of the second left bracket (312) and the second right bracket (313), and a deposit opening (13) is formed between the front bracket (314) and the installation flat bracket (311), and both sides of the second gate (33) are slidably arranged on the second left bracket (312) and the second right bracket (313) through the slide rail (36) and can open and close the deposit opening (13); The second driving member (32) includes: a second motor (321), a synchronous belt (322), two belt pulleys (323), a clamping bracket (324) and a control circuit main board (325), a strip-shaped long groove (315) is arranged on the second left bracket (312), the belt pulley (323) is rotatably arranged on the outside of the second left bracket (312), one end of the clamping bracket (324) is fixed on the second gate (33), and the other end passes through the strip-shaped long groove (315) and is clamped and fixed with the synchronous belt (322), the second motor (321) is arranged on the installation flat bracket (311) and is in transmission connection with one of the belt pulleys (323), and the synchronous belt (322) is in transmission connection with the two belt pulleys (323); A brush strip (316) is further arranged on the front bracket (314).
2. The dual-gate cash deposit and withdrawal insurance device according to claim 1, characterized in that: The first main frame (21) includes a first left bracket (211) and a first right bracket (212). Arc-shaped frames (213) are provided on the inner sides of the first left bracket (211) and the first right bracket (212). Arc-shaped grooves (214) are provided on the arc-shaped frames (213). The first gate (23) is an arc-shaped gate and its two sides are slidably arranged in the arc-shaped grooves (214) respectively.
3. The double-gate cash deposit and withdrawal insurance device according to claim 2, characterized in that: The first driving member (22) includes a first motor (221), a gear set (222), a rotating shaft (223) and an arc-shaped rack (224). The first motor (221) is arranged on the first left bracket (211) or the first right bracket (212). The two ends of the rotating shaft (223) are rotatably arranged on the first left bracket (211) and the first right bracket (212) and are in transmission connection with the first motor (221) through the gear set (222). A driving gear (225) is provided on the rotating shaft (223). The arc-shaped rack (224) is arranged on the inner side of the first gate (23) and meshes with the driving gear (225). An opening sensor (227), a closing sensor (226) and an anti-pinch safety sensor (228) are provided on the first main frame.
4. The double-gate cash deposit and withdrawal insurance device according to claim 3, characterized in that: A baffle (24) is provided between the first left bracket (211) and the first right bracket (212). A plurality of notches (241) are provided at intervals at the upper end of the baffle (24). A plurality of rib plates (231) are provided at intervals on the inner side of the first gate (23). Each rib plate (231) is inserted into the corresponding notch (241) for sliding fit; Arc-shaped strips (232) are provided on both sides of the first gate (23). Rollers (233) are provided on the arc-shaped strips (232). The rollers (233) are rotatably arranged in the arc-shaped grooves (214).
5. The double-gate cash deposit and withdrawal insurance device according to claim 4, characterized in that: The first opening and closing gate device (2) further includes a locking assembly (25). The locking assembly (25) includes a locking driving member (251), a locking block (252) and a locking opening and closing sensor (253). The locking block (252) is rotatably arranged and is in transmission connection with the locking driving member (251). The locking opening and closing sensor (253) is located at the starting point and the ending point of the rotation of the locking block (252). When the locking block (252) is in a horizontal state, the locking block (252) unlocks the first gate (23) so that the first gate (23) can move normally. When the locking block (252) is in a vertical state, the locking block (252) locks the first gate (23) to restrict the movement of the first gate (23).
6. The double-gate cash deposit and withdrawal insurance device according to any one of claims 1-5, characterized in that: A self-locking motor (38) is provided on the installation flat bracket (311). The self-locking motor (38) is in transmission connection with a swing block (39). A blocking block (391) protrudes from the swing block (39). A limiting plate (331) is provided at the rear end of the second gate (33). The self-locking motor (38) drives the swing block (39) to reciprocate so that the blocking block (391) releases or blocks the limiting plate (331).
7. The double-gate cash deposit and withdrawal insurance device according to claim 1, characterized in that: A copy-blocking member (354) is provided inside the deposit slot (13), and the sensing member (35) includes at least four cash sensors (353) which are respectively located on four sides of the deposit slot (13).
Citation Information
Patent Citations
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