Cipher issuing device and financial self-service equipment

By designing a crypto-distribution device that includes a mount, a read and write plug and a blocking mechanism, the crypto-distribution problem in the prior art that requires manual participation is solved, and fully self-service distribution is achieved, improving efficiency and security.

CN223260228UActive Publication Date: 2025-08-22WEIHAI XINBEIYANG RONGXIN SCI & TECH +1
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Patent Information

Application Number
CN202422607163.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-22
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

In the prior art, the crypto-issuing device requires staff participation, and cannot fully self-service issuance, resulting in busy business and inefficient efficiency.

Method used

A crypto-distribution device including a mounting base, a read and write plug and a blocking mechanism is designed to realize automatic read and write and self-distribution of the crypto-distribution through the movement of the crypto-distribution. The crypto-distribution of the crypto-distribution is prevented from leaving the installation cavity in the blocking position, and allows the crypto-distribution to be removed in the avoiding position.

Benefits of technology

It realizes the fully self-service distribution of ciphers, saves manpower, improves distribution efficiency, and improves security and operation convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of financial equipment, in particular to a cipherer issuing device and financial self-service equipment, the cipherer issuing device comprises a mounting base and a cipherer issuing module, the cipherer issuing module comprises a mounting cavity, a read-write plug and a blocking mechanism, the mounting cavity is arranged on the mounting base and used for placing a cipherer, and the read-write plug is arranged on the mounting cavity. The mounting cavity is provided with an opening for the cipherer to enter and exit; the read-write plug is arranged in the mounting cavity and is used for being matched with the socket of the cipherer in a plugging manner; the blocking mechanism comprises a blocking piece movably connected with the mounting base and a driving piece arranged on the mounting base, the blocking piece can move relative to the mounting base and has a blocking position and an avoiding position, and the driving piece is used for driving the blocking piece to move to the blocking position or the avoiding position; the blocking piece can prevent the cipherer from leaving the mounting cavity, when the blocking piece is located at the avoiding position, the cipherer can enter and exit from the mounting cavity through the opening, and the cipherer issuing device can achieve full-self-service issuing of the cipherer.
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Description

Technical Field

[0001] The utility model relates to the technical field of financial equipment, and in particular to a cipher issuing device and a financial self-service device. Background Art

[0002] A cipher is a financial document used for electronic signatures and digital authentication in online banking. It can ensure the confidentiality, authenticity, integrity and non-repudiation of online transactions. Customers who use a cipher for online banking can effectively avoid various risks such as hackers, fake websites, Trojans and viruses, thereby ensuring the security of online banking funds.

[0003] Currently, more and more customers are choosing to use PIN tokens for online banking. Consequently, the volume of PIN token applications is increasing. Conventional PIN token dispensing devices typically only serve as a storage device. After removing a PIN token from the device, staff must insert it into a reader / writer for read / write operations. Consequently, these conventional PIN token dispensing devices still require staff involvement during the dispensing process, preventing fully self-service PIN dispensing. Utility Model Content

[0004] The purpose of the utility model is to provide a cipher issuing device and a financial self-service device to realize the full self-service issuance of ciphers.

[0005] In one aspect, the present invention provides a cipher device dispensing device, which includes a mounting base and a cipher device dispensing module, wherein the cipher device dispensing module includes:

[0006] An installation cavity is provided on the installation seat, and the installation cavity is used to place the cipher device, and the installation cavity has an opening for the cipher device to enter and exit;

[0007] A read-write plug is disposed in the mounting cavity and is used to be plugged into and matched with the socket of the cipher;

[0008] The blocking mechanism includes a blocking member movably connected to the mounting seat and a driving member arranged on the mounting seat. The blocking member can move relative to the mounting seat and has a blocking position and an avoidance position. The driving member is used to drive the blocking member to move to the blocking position or the avoidance position. When the blocking member is at the blocking position, the blocking member can prevent the scrambler from leaving the mounting cavity. When the blocking member is at the avoidance position, the scrambler can enter and exit the mounting cavity through the opening.

[0009] As a preferred technical solution of the cipher device issuing device, the installation cavity includes a rear wall opposite to and spaced from the opening, the read-write plug is arranged on the rear wall, and the read-write plug is opposite to the opening.

[0010] As an optimal technical solution for the password generator issuing device, the password generator issuing module also includes a first detection member and a second detection member, both of which are arranged on the mounting seat. When the blocking member is located in the blocking position, the blocking member cooperates with the first detection member, and the blocking member is separated from the second detection member; when the blocking member is located in the avoidance position, the blocking member is separated from the first detection member, and the blocking member cooperates with the second detection member.

[0011] As a preferred technical solution of the cipher device dispensing device, the installation cavity includes two side walls that are opposite and spaced apart, and a rear wall connected between the two side walls, the rear wall being opposite and spaced apart from the opening, and the opening being formed between the front ends of the two side walls;

[0012] Both side walls are provided with a notch connected to the opening, and the two notches are symmetrically arranged with respect to the opening, and the two notches are used to expose the cipher placed in the installation cavity.

[0013] As a preferred technical solution of the cipher issuing device, the cipher issuing device includes a plurality of the cipher issuing modules, and the plurality of the cipher issuing modules are sequentially arranged on the mounting seat along a set direction.

[0014] As a preferred technical solution for the code token issuing device, the blocking member is arranged adjacent to the opening. When the blocking member is located at the blocking position, the blocking member is located on the movement path of the code token entering and exiting the installation cavity. When the blocking member is located at the avoidance position, the blocking member exits the movement path of the code token entering and exiting the installation cavity.

[0015] As an optimal technical solution for the code generator issuing device, the blocking member includes a blocking plate, and the code generator issuing module also includes a guide groove arranged on the mounting seat and adapted to the blocking plate. The blocking plate is plugged into the guide groove. When the blocking member moves to the blocking position, the blocking plate slides along the guide groove and enters the movement path of the code generator in and out of the mounting cavity. When the blocking member moves to the avoidance position, the blocking plate slides along the guide groove and exits the movement path of the code generator in and out of the mounting cavity.

[0016] As a preferred technical solution for the password device issuing device, the driving member includes an electric push rod, the blocking member also includes a fixed plate arranged parallel to and spaced apart from the blocking plate, and a connecting plate connected between the fixed plate and the blocking plate, the fixed plate is fixedly connected to the output end of the electric push rod, and the electric push rod can drive the fixed plate to reciprocate so that the blocking plate enters or exits the movement path of the password in and out of the installation cavity.

[0017] As a preferred technical solution of the cipher device issuing device, when the blocking member is located at the blocking position, the blocking member extends into the installation cavity, and when the blocking member is located at the avoidance position, the blocking member withdraws from the installation cavity; or,

[0018] The blocking member is located outside the installation cavity, and when the blocking member is located at the blocking position, the blocking member at least partially closes the opening; when the blocking member is located at the avoiding position, the blocking member opens the opening.

[0019] The cipher device dispensing device provided by the utility model has at least the following beneficial effects:

[0020] The cipher device dispensing device includes a mounting seat and a cipher device dispensing module. The cipher device dispensing module includes a mounting cavity, a read-write plug and a blocking mechanism. The mounting cavity is arranged on the mounting seat, and the mounting cavity is used to place the cipher device. The mounting cavity has an opening for the cipher device to enter and exit; the read-write plug is arranged in the mounting cavity, and the read-write plug is used to plug and cooperate with the socket of the cipher device; the blocking mechanism includes a blocking member movably connected to the mounting seat and a driving member arranged on the mounting seat. The blocking member can move relative to the mounting seat and have a blocking position and an avoidance position. The driving member is used to drive the blocking member to move to the blocking position or the avoidance position. When the blocking member is in the blocking position, the blocking member can prevent the cipher device from leaving the mounting cavity. When the blocking member is in the avoidance position, the cipher device can enter and exit the mounting cavity through the opening. The cipher device dispensing device provided in this embodiment can automatically read and write the cipher device in the installation cavity through the cooperation of the read-write plug and the socket, without the need for staff to participate in the reading and writing of the cipher device; by placing the blocking member in the blocking position to prevent the cipher device from leaving the installation cavity, the cipher device can be prevented from being stolen or the cipher device can be taken away by the user before the read-write operation is completed; when the read-write operation on the cipher device is completed, the blocking member is driven by the driving member to move to the avoidance position, and the user can remove the cipher device that has completed reading and writing from the installation cavity, thereby realizing fully self-service dispensing of the cipher device.

[0021] On the other hand, the utility model provides a financial self-service device, including a cabinet, a control device, a human-computer interaction device and a password issuing device in any of the above-mentioned schemes, wherein the control device, the human-computer interaction device and the password issuing device are all arranged in the cabinet, and the password issuing device and the human-computer interaction device are both communicatively connected with the control device, and the human-computer interaction device includes at least one of a touch display screen, a password keyboard, a fingerprint device, an ID card recognition module and a card reading module.

[0022] The financial self-service device provided by the utility model has at least the following beneficial effects:

[0023] The financial self-service device includes the above-mentioned cipher issuing device. The reading and writing of the cipher does not require the participation of staff, and can realize the fully automatic issuance of the cipher, saving manpower and improving the efficiency of the issuance of the cipher. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a schematic diagram of the structure of the cipher device issuing device in an embodiment of the present utility model;

[0025] Figure 2 This is a cross-sectional view of a cipher device dispensing device according to an embodiment of the present invention;

[0026] Figure 3 This is an exploded view of the partial structure of the cipher device dispensing device in an embodiment of the present invention;

[0027] Figure 4 This is a partial enlarged view of the cipher device dispensing device in the embodiment of the present utility model;

[0028] Figure 5 This is a schematic diagram of the partial structure of the mounting base in the embodiment of the utility model;

[0029] Figure 6 This is a partial structural diagram of the cipher device issuing device in an embodiment of the present utility model;

[0030] Figure 7 This is a schematic structural diagram of the blocking mechanism in an embodiment of the present utility model;

[0031] Figure 8 This is a structural diagram of a financial self-service device in an embodiment of the present utility model;

[0032] Figure 9 for Figure 8 Magnified view of point A in the middle.

[0033] In the picture:

[0034] 10. Cabinet; 101. Entrance and exit; 20. Touch screen display; 30. Password keyboard; 40. Fingerprint reader; 50. ID card reader module; 60. Card reader module; 70. Password dispenser; 80. Indicator light; 90. Binding device; 100. Cash deposit and withdrawal device; 110. Note dispenser; 120. Image acquisition device; 130. Coin dispenser;

[0035] 1. Mounting seat; 11. Mounting cavity; 111. Opening; 112. Rear wall; 113. First opening; 114. Second opening; 115. Side wall; 116. Notch; 117. Bottom wall; 118. Top wall; 119. Guide groove;

[0036] 2. Read-write plug;

[0037] 3. Blocking mechanism; 31. Blocking member; 311. Blocking plate; 312. Fixing plate; 313. Connecting plate; 314. First detection plate; 315. Second detection plate; 32. Driving member;

[0038] 4. Locking member; 41. First locking member; 42. Second locking member; 43. Locking hole;

[0039] 51. First fastener; 52. Second fastener;

[0040] 61. First detection element; 62. Second detection element; 63. Third detection element; 64. Fourth detection element; 641. Transmitter; 642. Receiver;

[0041] 7. Password device; 71. Socket;

[0042] 8. Connecting wire. DETAILED DESCRIPTION

[0043] The following is a clear and complete description of the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0044] In the description of the present invention, it should be noted that the terms "center", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and are not intended to indicate or imply that the devices or elements referred to must have a specific position, be constructed and operated in a specific position, and therefore should not be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance. Among them, the terms "first position" and "second position" are two different positions, and the first feature being "above", "above" and "above" the second feature includes the first feature being directly above and obliquely above the second feature, or simply means that the first feature is at a higher level than the second feature. The first feature being "below", "below" and "below" the second feature includes the first feature being directly below and obliquely below the second feature, or simply means that the first feature is at a lower level than the second feature.

[0045] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0046] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.

[0047] Please refer to Figure 1 and Figure 2 This embodiment provides a cipher device dispensing device 70, which includes a mounting base 1 and a cipher device dispensing module. The cipher device dispensing module includes a mounting cavity 11, a read / write plug 2, and a blocking mechanism 3. The mounting cavity 11 is provided on the mounting base 1 and is used to accommodate the cipher device 7. The mounting cavity 11 has an opening 111 for the cipher device 7 to enter and exit. The read / write plug 2 is provided within the mounting cavity 11 and is configured to plug and mate with the socket 71 of the cipher device 7. The blocking mechanism 3 includes a blocking member 31 movably connected to the mounting base 1 and a driving member 32 provided on the mounting base 1. The blocking member 31 is movable relative to the mounting base 1 and has a blocking position and a circumventing position. The driving member 32 is configured to drive the blocking member 31 to the blocking position or the circumventing position. When the blocking member 31 is in the blocking position, it prevents the cipher device 7 from leaving the mounting cavity 11. When the blocking member 31 is in the circumventing position, the cipher device 7 can enter and exit the mounting cavity 11 through the opening 111. The cipher device dispensing device 70 provided in this embodiment can automatically read and write the cipher device 7 in the installation cavity 11 through the cooperation of the read-write plug 2 and the socket 71, without the need for staff to participate in the reading and writing of the cipher device; by placing the blocking member 31 in the blocking position to prevent the cipher device 7 from leaving the installation cavity 11, the cipher device 7 can be prevented from being stolen or the cipher device 7 can be prevented from being taken away by the user before the read-write operation is completed; when the read-write operation on the cipher device 7 is completed, the blocking member 31 is driven by the driving member 32 to move to the avoidance position, and the user can remove the cipher device 7 that has completed automatic reading and writing from the installation cavity 11, thereby realizing fully self-service dispensing of the cipher device 7.

[0048] Alternatively, see Figure 2The mounting cavity 11 includes a rear wall 112 spaced apart from and opposite to the opening 111. The read / write plug 2 is disposed on the rear wall 112, and the read / write plug 2 is disposed opposite the opening 111. With this arrangement, when inserting the cipher device 7 into the mounting cavity 11 through the opening 111, the read / write plug 2 and the socket 71 are simultaneously connected. When removing the cipher device 7 from the mounting cavity 11 through the opening 111, the read / write plug 2 and the socket 71 are simultaneously disconnected. This facilitates operation and eliminates the need for additional plugging and unplugging operations to connect or disconnect the read / write plug 2 and the socket 71. This improves the efficiency of placing the cipher device 7 into or removing it from the mounting cavity 11. Preferably, the accommodation space of the mounting cavity 11 is adapted to the outer dimensions of the cipher device 7. With this arrangement, the cipher device 7 can maintain a stable relative position to the mounting base 1 within the mounting cavity 11, thereby ensuring the stable connection between the socket 71 of the cipher device 7 and the read / write plug 2, thereby improving the reliability of the read / write operation. More preferably, the read / write plug 2 is a USB plug, and the socket 71 is a USB socket.

[0049] In other embodiments, the direction in which the reader / write plug 2 and the socket 71 are connected can also be set to form an angle with the direction in which the cipher device 7 enters the installation cavity 11 through the opening 111. For example, the installation cavity 11 further includes a bottom wall 117 perpendicular to the rear wall 112. The bottom wall 117 is used to support the cipher device 7. The reader / write plug 2 is disposed on the bottom wall 117. The direction in which the cipher device 7 enters the installation cavity 11 through the opening 111 is horizontal, and the direction in which the reader / write plug 2 and the socket 71 are connected is vertical. After the cipher device 7 enters the installation cavity 11 through the opening 111 in the horizontal direction, it is moved in the vertical direction so that the reader / write plug 2 and the socket 71 are connected in the vertical direction.

[0050] Alternatively, see Figure 2 and Figure 3 The rear wall 112 is provided with a first opening 113, through which the read / write plug 2 extends into the installation cavity 11. This arrangement facilitates the connection of the read / write plug 2 to a control device located outside the installation cavity 11 via a cable.

[0051] Alternatively, see Figures 2 to 4The cipher key dispensing module further includes a first locking member 41 and a second locking member 42, both located outside the rear wall 112. These members are used to jointly clamp the read / write plug 2 and lock the position of the read / write plug 2 relative to the rear wall 112. This arrangement stabilizes the position of the read / write plug 2 relative to the mounting cavity 11. Consequently, when the cipher key 7 is pushed into the mounting cavity 11 through the opening 111, the read / write plug 2 can reliably engage with the socket 71 of the cipher key 7. Furthermore, when the cipher key 7 is removed from the mounting cavity 11 through the opening 111, the read / write plug 2 can reliably separate from the socket 71. Preferably, the first locking member 41 and the second locking member 42 are both detachably connected to the mounting base 1 via a first fastener 51, and the first locking member 41 and the second locking member 42 are detachably connected via a second fastener 52. The first locking member 41 and the second locking member 42 together form a locking hole 43. The size of the locking hole 43 matches the size of the read-write plug 2, and the wall of the locking hole 43 has an interference fit with the read-write plug 2, thereby reliably locking the relative position of the read-write plug 2 and the mounting cavity 11 via the first locking member 41 and the second locking member 42. In other embodiments, the cipher device dispensing module further includes a fixing member, one end of which is connected to the mounting base 1 via the first fastener 51, and the other end of which is connected to the read-write plug 2 via the second fastener 52. The first fastener 51 and the second fastener 52 can both be bolts, screws, etc.

[0052] Alternatively, see Figure 5 The mounting cavity 11 further includes two side walls 115 that are spaced apart from each other. The rear wall 112 is connected between the two side walls 115, and an opening 111 is formed between the front ends of the two side walls 115. Each side wall 115 is provided with a notch 116 that communicates with the opening 111. The two notches 116 are symmetrically arranged about the opening 111, and both notches 116 are used to expose the cipher device 7 placed in the mounting cavity 11. With this arrangement, when removing the cipher device 7 from the mounting cavity 11, the user can pinch the two ends of the cipher device 7 with two fingers through the two notches 116 and pull it out of the mounting cavity 11 to remove the cipher device 7 from the mounting cavity 11, which is simple and convenient to operate.

[0053] Alternatively, see Figure 1 、 Figure 2 and Figure 5The mounting cavity 11 further includes a top wall 118, which is parallel to and spaced from the bottom wall 117. The top wall 118 is connected between the top ends of the two side walls 115, and the bottom wall 117 is connected between the bottom ends of the two side walls 115. The rear wall 112 is connected to the rear end of the top wall 118, the rear end of the bottom wall 117, and the rear ends of the two side walls 115. The top wall 118, the bottom wall 117, the rear wall 112, and the two side walls 115 enclose the mounting cavity 11. An opening 111 is formed between the front end of the top wall 118, the front end of the bottom wall 117, and the front ends of the two side walls 115.

[0054] Optionally, the blocking member 31 is disposed adjacent to the opening 111. When the blocking member 31 is in the blocking position, the blocking member 31 is located in the path of movement of the cipher 7 into and out of the mounting cavity 11. When the blocking member 31 is in the avoiding position, the blocking member 31 is out of the path of movement of the cipher 7 into and out of the mounting cavity 11. This arrangement improves the reliability of the blocking member 31 in preventing the cipher 7 from leaving the mounting cavity 11 through the opening 111, thereby enhancing the security of the cipher dispensing device 70.

[0055] Alternatively, see Figure 1 and Figure 2 In this embodiment, when the blocking member 31 is in the blocking position, the blocking member 31 extends into the installation cavity 11. When the blocking member 31 is in the avoidance position, the blocking member 31 exits the installation cavity 11. This configuration eliminates the need for the blocking member 31 to occupy additional space, improving the compactness of the cipher device dispensing device 70 and enhancing its aesthetics. In other embodiments, the blocking member 31 may be positioned outside the installation cavity 11. When the blocking member 31 is in the blocking position, the blocking member 31 at least partially closes the opening 111. When the blocking member 31 is in the avoidance position, the blocking member 31 opens the opening 111.

[0056] Alternatively, see Figure 2 In this embodiment, when the blocking member 31 is in the blocking position, the blocking member 31 extends into the installation cavity 11 and is located between the cipher device 7 and the opening 111. In other embodiments, a limiting groove is provided on the cipher device 7. When the blocking member 31 is in the blocking position, the blocking member 31 extends into the installation cavity 11 and plugs into the limiting groove. When the blocking member 31 is in the avoidance position, the blocking member 31 is separated from the limiting groove. This configuration further improves the reliability of the blocking member 31 in preventing the cipher device 7 from leaving the installation cavity 11 through the opening 111, and improves the stability of the relative position between the cipher device 7 and the installation cavity 11, thereby improving the reliability of the plugging of the read / write plug 2 and the socket 71, and ensuring the reading and writing effect of the cipher device 7.

[0057] Alternatively, see Figure 2 、 Figure 6 and Figure 7The blocking member 31 includes a blocking plate 311. The cipher key dispensing module further includes a guide slot 119 disposed on the mounting base 1 and adapted to the blocking plate 311. The blocking plate 311 is plugged into the guide slot 119. When the blocking member 31 moves to the blocking position, the blocking plate 311 slides along the guide slot 119 and enters the movement path of the cipher key 7 in and out of the mounting cavity 11. When the blocking member 31 moves to the avoidance position, the blocking plate 311 slides along the guide slot 119 and exits the movement path of the cipher key 7 in and out of the mounting cavity 11. This arrangement ensures that the blocking plate 311 can reliably enter or exit the movement path of the cipher key 7 in and out of the mounting cavity 11 under the drive of the driving member 32. Furthermore, when the blocking member 31 is in the blocking position, the limiting action of the sidewall 115 of the guide slot 119 on the blocking plate 311 ensures the positional stability of the blocking plate 311 relative to the mounting base 1, further enhancing the security of the cipher key dispensing device 70. Specifically, in this embodiment, when the blocking member 31 moves from the avoidance position to the blocking position, the blocking plate 311 extends into the installation cavity 11 along the guide groove 119 and is located on the movement path of the cipher 7 entering and exiting the installation cavity 11; when the blocking member 31 moves from the blocking position to the avoidance position, the blocking plate 311 exits the installation cavity 11 along the guide groove 119.

[0058] Alternatively, see Figure 6 and Figure 7 The driving member 32 includes an electric push rod, and the blocking member 31 also includes a fixed plate 312 arranged parallel to and spaced apart from the blocking plate 311, and a connecting plate 313 connected between the fixed plate 312 and the blocking plate 311. The fixed plate 312 is fixedly connected to the output end of the electric push rod, and the electric push rod can drive the fixed plate 312 to reciprocate so that the blocking member 31 moves between the blocking position and the avoidance position. In this arrangement, the electric push rod drives the blocking plate 311 to move via the fixed plate 312 and the connecting plate 313 in turn, thereby reducing the restrictions on the setting position of the electric push rod relative to the opening 111 and improving the flexibility of the setting position of the electric push rod. In other embodiments, the driving member 32 may also include a cylinder, or include a motor, a gear connected to the motor, a rack meshing with the gear, and the rack connected to the fixed plate 312.

[0059] Alternatively, see Figure 6The cipher dispensing module further includes a first detection member 61 and a second detection member 62, both disposed on the mounting base 1. When the blocking member 31 is in the blocking position, the blocking member 31 engages with the first detection member 61 and separates from the second detection member 62. When the blocking member 31 is in the avoidance position, the blocking member 31 separates from the first detection member 61 and engages with the second detection member 62. With this arrangement, the position of the blocking member 31 can be determined by the engagement of the blocking member 31 with the first detection member 61 or the second detection member 62, so that the driving member 32 can reliably drive the blocking member 31 to the blocking position or the avoidance position. Specifically, when the blocking member 31 is in the blocking position, the first detection member 61 cooperates with the blocking member 31 and outputs a first detection signal, and the second detection member 62 separates from the blocking member 31 and outputs a second detection signal. When the blocking member 31 is in the avoidance position, the first detection member 61 separates from the blocking member 31 and outputs a third detection signal, and the second detection member 62 cooperates with the blocking member 31 and outputs a fourth detection signal, thereby being able to reliably judge whether the blocking member 31 is in the blocking position or the avoidance position based on the transmission signals of the first detection member 61 and the second detection member 62.

[0060] Alternatively, please continue to refer to Figure 6 The first detection member 61 and the second detection member 62 are both micro switches. The blocking member 31 includes a first detection plate 314 and a second detection plate 315. The first detection plate 314 is connected to the connecting plate 313 at an angle, and the second detection plate 315 is connected to the fixed plate 312 at an angle. When the blocking member 31 is in the blocking position, the first detection plate 314 cooperates with the blocking member 31. When the blocking member 31 moves to the avoidance position, the second detection plate 315 cooperates with the blocking member 31.

[0061] Alternatively, see Figure 3 and Figure 4 The rear wall 112 is further provided with a second opening 114. The cipher device dispensing module further includes a third detection member 63, which is disposed on the outer side of the rear wall 112 and is configured to pass through the second opening 114 and engage with the cipher device 7 placed in the installation cavity 11. With this arrangement, the third detection member 63 can reliably determine whether the cipher device 7 is properly installed. Preferably, the third detection member 63 is a micro switch.

[0062] Alternatively, see Figure 1 and Figure 2The cipher device dispensing module also includes a fourth detection component 64 arranged adjacent to the opening 111. The fourth detection component 64 includes a transmitter 641 and a receiver 642. The transmitter 641 is arranged on one of the top wall 118 and the bottom wall 117, and the receiver 642 is arranged on the other of the top wall 118 and the bottom wall 117. When there is no cipher device 7 in the installation cavity 11, the light emitted by the transmitter 641 can be transmitted to the receiver 642, and the fourth detection component 64 emits a first presence detection signal, such as a high level, indicating that there is no cipher device 7 in the installation cavity 11 at this time; when there is a cipher device 7 in the installation cavity 11, the cipher device 7 prevents the light emitted by the transmitter 641 from being transmitted to the receiver 642, and the fourth detection component 64 emits a second presence detection signal, such as a low level, indicating that there is a cipher device 7 in the installation cavity 11 at this time, so that the detection signal emitted by the fourth detection component 64 can reliably determine whether the cipher device 7 in the installation cavity 11 has been taken away by the user.

[0063] Alternatively, see Figure 1 The cipher issuing device 70 includes a plurality of cipher issuing modules, and the plurality of cipher issuing modules are arranged along a set direction (such as Figure 1 The cipher device 70 is arranged sequentially on the mounting base 1 along the directions indicated by arrows ab in the middle. This arrangement allows the cipher device dispensing device 70 to accommodate multiple users processing cipher device dispensing services, reducing the frequency of maintenance personnel loading cipher devices 7 into the cipher device dispensing device 70. Preferably, the multiple mounting cavities 11 and the multiple drive members 32 are arranged alternately along a predetermined direction. In other embodiments, the multiple cipher device dispensing modules may also be arranged sequentially along a circumferential direction.

[0064] Please refer to Figure 8 and Figure 9 This embodiment also provides a financial self-service device, which includes a cabinet 10, a control device (not shown in the drawings), a human-computer interaction device, and a password issuing device 70. The control device, the human-computer interaction device, and the password issuing device 70 are all located in the cabinet 10, and the password issuing device 70 and the human-computer interaction device are both in communication with the control device. The human-computer interaction device includes at least one of a touch screen display 20, a password keyboard 30, a fingerprint sensor 40, an ID card recognition module 50, and a card reader module 60. The touch screen 20 is used to input operation instructions for the user, such as inputting a password issuing instruction for the user; the password keyboard 30 is used to input an account password; the ID card recognition module 50 is used to collect ID card information; and the card reader 60 is used to read bank card information. This embodiment exemplifies a solution in which the human-computer interaction device includes the touch screen 20, the password keyboard 30, the fingerprint sensor 40, the ID card recognition module 50, and the card reader 60. The financial self-service device adopts the above-mentioned cipher issuing device 70, which can realize the full-automatic issuance of ciphers 7 without the need for staff to participate in reading and writing, thus saving manpower.

[0065] For details, please refer to Figure 2 and Figure 3 In this embodiment, the read-write plug 2, the touch screen 20, and the drive member 32 are all connected to the control device through the connecting line 8. The user can choose to handle the cipher device issuance service by clicking the touch screen 20. The user inputs the cipher device issuance instruction through the touch screen 20. After the control device obtains the cipher device issuance instruction, the control device performs read and write operations on the cipher device 7 to be issued through the cooperation of the read-write plug 2 and the socket 71, and the control device controls the drive member 32 to drive the blocking member 31 to move to the avoidance position. When the user takes out the cipher device 7 through the opening 111, the control device controls the drive member 32 to drive the blocking member 31 to move to the blocking position, completing the issuance of the cipher device 7.

[0066] Optionally, the financial self-service device includes at least two code token dispensing devices 70 spaced apart from each other in the cabinet 10. This arrangement increases the code token reserve in the financial self-service device and further reduces the frequency with which maintenance personnel must reload the code token dispensing devices 70. This embodiment illustrates an example in which the financial self-service device includes two code token dispensing devices 70, symmetrically positioned on either side of the human-computer interface device. This arrangement facilitates the user entering a code token dispensing instruction through the human-computer interface device, and having the code token dispensing devices 70 dispense a dispensed code token.

[0067] Alternatively, see Figure 8 The financial self-service device also includes a bundling device 90 for bundling multiple banknotes, a cash deposit and withdrawal device 100 for storing or withdrawing cash, a bill issuing device 110 for issuing financial bills, an image acquisition device 120 for capturing images of the front of the financial self-service device, and a coin issuing device 130 for issuing coins.

[0068] Alternatively, see Figure 9The mounting base 1 is detachably connected to the cabinet 10 to facilitate assembly and maintenance of the code token dispensing device 70. Preferably, the code token 7 is disposed within the cabinet 10. The outer surface of the cabinet 10 is provided with a plurality of entrances and exits 101 and a plurality of indicator lights 80 corresponding to the positions of the entrances and exits 101. The entrances and exits 101 correspond to the openings 111 of the mounting cavities 11. The entrances and exits 101 are used to allow a user to remove or place a code token 7 within the mounting cavity 11. The indicator lights 80 are communicatively connected to a control device, which can also control the indicator lights 80 corresponding to the code token 7 to be retrieved to emit an indication message based on a code token dispensing instruction. By locating the code token 7 within the cabinet 10, dust and other foreign matter can be reduced from entering the code token dispensing device 70, and the security of the code token dispensing device 70 can be improved. The indication message emitted by the indicator lights 80 allows the user to clearly determine the location of the code token 7 to be retrieved, facilitating quick retrieval of the code token 7 when the blocking member 31 moves to the avoidance position, thereby improving business processing efficiency and user experience.

[0069] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention, and are not intended to limit the implementation methods of the present invention. Those skilled in the art will appreciate that other variations or modifications can be made based on the above description. It is not necessary and impossible to enumerate all implementation methods here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.

Claims

1. A cipher issuing device, characterized in that: It comprises a mounting base (1) and a cipher issuing module, wherein the cipher issuing module comprises: A mounting cavity (11) is provided on the mounting seat (1), and the mounting cavity (11) is used to place the cipher (7), and the mounting cavity (11) has an opening (111) for the cipher (7) to enter and exit; A read / write plug (2) is arranged in the installation cavity (11), and the read / write plug (2) is used for plugging and matching with the socket (71) of the cipher (7); A blocking mechanism (3) comprises a blocking member (31) movably connected to the mounting seat (1) and a driving member (32) arranged on the mounting seat (1); the blocking member (31) can move relative to the mounting seat (1) and has a blocking position and an avoidance position; the driving member (32) is used to drive the blocking member (31) to move to the blocking position or the avoidance position; when the blocking member (31) is located at the blocking position, the blocking member (31) can prevent the scrambler (7) from leaving the mounting cavity (11); when the blocking member (31) is located at the avoidance position, the scrambler (7) can enter and exit the mounting cavity (11) through the opening (111).

2. The cipher device issuing device according to claim 1, characterized in that: The installation cavity (11) comprises a rear wall (112) opposite to and spaced from the opening (111); the read / write plug (2) is arranged on the rear wall (112), and the read / write plug (2) is opposite to the opening (111).

3. The cipher device issuing device according to claim 1, characterized in that: The password device issuing module further comprises a first detecting member (61) and a second detecting member (62) both of which are arranged on the mounting seat (1); when the blocking member (31) is located at the blocking position, the blocking member (31) cooperates with the first detecting member (61), and the blocking member (31) is separated from the second detecting member (62); when the blocking member (31) is located at the avoiding position, the blocking member (31) is separated from the first detecting member (61), and the blocking member (31) is cooperated with the second detecting member (62).

4. The cipher device issuing device according to claim 1, wherein: The installation cavity (11) comprises two side walls (115) that are opposite to each other and spaced apart, and a rear wall (112) connected between the two side walls (115); the rear wall (112) is opposite to the opening (111) and spaced apart; the opening (111) is formed between the front ends of the two side walls (115); Both side walls (115) are provided with a notch (116) communicating with the opening (111), and the two notches (116) are symmetrically arranged with respect to the opening (111). Both notches (116) are used to expose the cipher (7) placed in the installation cavity (11).

5. The cipher device issuing device according to claim 1, characterized in that: The cipher issuing device comprises a plurality of cipher issuing modules, and the plurality of cipher issuing modules are sequentially arranged on the mounting seat (1) along a set direction.

6. The cipher device issuing device according to any one of claims 1 to 5, characterized in that: The blocking member (31) is arranged adjacent to the opening (111). When the blocking member (31) is located at the blocking position, the blocking member (31) is located on the movement path of the scrambler (7) entering and exiting the installation cavity (11). When the blocking member (31) is located at the avoidance position, the blocking member (31) exits the movement path of the scrambler (7) entering and exiting the installation cavity (11).

7. The cipher device issuing device according to claim 6, characterized in that: The blocking member (31) includes a blocking plate (311), and the cipher issuing module also includes a guide groove (119) provided on the mounting seat (1) and adapted to the blocking plate (311). The blocking plate (311) is plugged into the guide groove (119). When the blocking member (31) moves to the blocking position, the blocking plate (311) slides along the guide groove (119) and enters the movement path of the cipher (7) entering and exiting the mounting cavity (11). When the blocking member (31) moves to the avoidance position, the blocking plate (311) slides along the guide groove (119) and exits the movement path of the cipher (7) entering and exiting the mounting cavity (11).

8. The cipher device issuing device according to claim 7, characterized in that: The driving member (32) includes an electric push rod, and the blocking member (31) also includes a fixed plate (312) arranged parallel to and spaced apart from the blocking plate (311), and a connecting plate (313) connected between the fixed plate (312) and the blocking plate (311). The fixed plate (312) is fixedly connected to the output end of the electric push rod, and the electric push rod can drive the fixed plate (312) to reciprocate so that the blocking plate (311) enters or exits the movement path of the cipher (7) in and out of the installation cavity (11).

9. The cipher device issuing device according to claim 6, characterized in that: When the blocking member (31) is located at the blocking position, the blocking member (31) extends into the installation cavity (11); when the blocking member (31) is located at the avoidance position, the blocking member (31) withdraws from the installation cavity (11); or, The blocking member (31) is located outside the installation cavity (11), and when the blocking member (31) is located at the blocking position, the blocking member (31) at least partially closes the opening (111); when the blocking member (31) is located at the avoidance position, the blocking member (31) opens the opening (111).

10. A financial self-service device, characterized in that: The invention comprises a cabinet (10), a control device, a human-computer interaction device and a cipher issuing device as described in any one of claims 1 to 9, wherein the control device, the human-computer interaction device and the cipher issuing device are all arranged in the cabinet (10), and the cipher issuing device and the human-computer interaction device are both communicatively connected with the control device, and the human-computer interaction device comprises at least one of the five devices of a touch screen display (20), a cipher keyboard (30), a fingerprint device (40), an ID card recognition module (50) and a card reading module (60).