Modularized wall-mounted vertical integrated teller machine equipment

The modular design of the ATM equipment, with its layered "H"-shaped fixed bracket and detachable back frame, solves the problem of poor adaptability, enabling quick assembly and disassembly and efficient maintenance, thus improving the equipment's adaptability and user experience.

CN223977591UActive Publication Date: 2026-03-06深圳市凯健奥达科技有限公司
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Patent Information

Application Number
CN202520550216.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-03-06
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

Existing ATM equipment lacks a modular installation structure, has poor adaptability, is difficult to flexibly adapt to both vertical and wall-mounted installation methods, and is inconvenient to maintain.

Method used

The modular wall-mounted and vertical integrated teller machine adopts a modular design, which uses an "H"-shaped fixed bracket to arrange the heat dissipation module, power module and control module in layers, combined with a detachable back frame and mounting bracket, to support quick disassembly and flexible adaptation.

Benefits of technology

It improves device compatibility and maintenance efficiency, reduces deployment and maintenance costs, enhances user experience, and supports rapid deployment and functional expansion across multiple scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses modularized wall-mounted vertical integrated teller machine equipment, which comprises an equipment main body consisting of a display control assembly, a back frame and a mounting bracket, the display control assembly comprises a fixed bracket and an internal assembly fixed on the fixed bracket, and the internal assembly comprises a heat dissipation module, a power supply module and a control module, the heat dissipation module is fixed to the upper space of the fixing support, the power module is fixed to a middle beam of the fixing support, the control module is fixed to the lower space of the fixing support, a screen body is arranged on one side of the internal assembly, and the upper side and the lower side of the screen body are fixed to the upper end and the lower end of the fixing support. A hanging hole is formed in the back of the back frame, and the mounting bracket is detachably connected through the hanging hole. The pulse welding machine solves the problems that most pulse welding machines in the prior art are provided with welding heads, the horizontal and vertical positions of the welding heads are complex to adjust, the welding efficiency is low, and the welding effect is poor in the welding process.
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Description

Technical Field

[0001] This utility model relates to the field of public service equipment, and in particular to a modular wall-mounted vertical integrated teller machine. Background Technology

[0002] In existing technologies, teller machines not only include ATMs that automatically deposit and withdraw cash, but also feature machines with automated services, such as common self-service machines and outdoor self-service terminals. Especially with the rise of artificial intelligence (AI), more and more tasks that previously required manual processing are now being handled through these intelligent terminals. Structurally, these service terminals consist of a display unit, internal processing, power supply, and external frame. In terms of installation structure, they can be divided into freestanding and wall-mounted types. Freestanding structures are mainly used in scenarios requiring direct manual operation by users, such as self-service check-in, automatic card swiping, and self-guided navigation at airports and train stations. Wall-mounted types are mainly used for high-altitude displays, such as large screens in airports and train stations, and advertising projections, with less user interaction.

[0003] The existing vertical and wall-mounted models have low compatibility. In other words, the wall-mounted structure cannot be adapted to vertical assembly and does not have modular assembly characteristics. The shell, internal components, display screen and frame form an integral whole that cannot be disassembled and assembled separately. The display part and internal components cannot be easily assembled with other frames.

[0004] In view of this, this technical solution proposes a modular wall-mounted and vertical integrated teller machine device, which is not only compatible with various installations such as vertical and wall-mounted, but also has modular assembly characteristics. The display part and internal components form a modular structure, which can quickly realize the assembly with the frame and the adaptation with other frames. This not only improves the convenience of assembly, but also facilitates disassembly and maintenance. When the installation environment can only be adapted to a certain frame, only a frame that matches the environment needs to be set up separately, and other components can be directly connected and installed with that frame. Utility Model Content

[0005] The present invention aims to at least partially solve one of the technical problems in related technologies. Therefore, the main objective of this invention is to provide a modular wall-mounted vertical integrated ATM device, addressing the problem that existing ATM devices lack a modular installation structure and have poor compatibility with the frame assembly.

[0006] To achieve the above objectives, this utility model provides a modular wall-mounted and vertical integrated teller machine, comprising a main body consisting of a display and control component, a back frame, and a mounting bracket.

[0007] The display control component includes a fixed bracket and internal components fixed to the fixed bracket. The fixed bracket is H-shaped and sealed on the top and bottom sides. The internal components include a heat dissipation module, a power supply module, and a control module. The heat dissipation module is fixed to the upper space of the fixed bracket, the power supply module is fixed to the middle beam of the fixed bracket, and the control module is fixed to the lower space of the fixed bracket. A screen body is provided on one side of the fixed bracket and the internal components. The top and bottom sides of the screen body are fixed to the top and bottom ends of the fixed bracket. The edge of the screen body is framed with the back frame after assembly.

[0008] The back frame has a hanging hole on its back, and the mounting bracket is detachably connected to the back frame through the hanging hole.

[0009] As a further improvement of this invention, the internal components also include an operation interaction module located below the control module.

[0010] As a further embodiment of this utility model, the screen body is provided with a decorative panel, the bottom of the decorative panel has a window corresponding to the operation interaction module, and the sides of the decorative panel are also provided with holes for setting up cameras and sensors.

[0011] As a further embodiment of this utility model, the operation interaction module is enclosed by a mounting frame, and the top of the mounting frame is connected to the bottom of the fixed bracket by screws.

[0012] As a further embodiment of this utility model, the back of the back frame is provided with a mounting plate for assembly with the mounting bracket, and the mounting plate and the back frame are an integral structure.

[0013] As a further improvement of this utility model, heat dissipation holes are provided on both sides and the back of the back frame for dissipating the working heat of the internal components.

[0014] The beneficial effects of this utility model are as follows:

[0015] This utility model proposes a modular wall-mounted / vertical integrated ATM device, which significantly improves adaptability, maintenance efficiency, and user experience through innovative design. It employs an "H"-shaped mounting bracket to layer the heat dissipation module, power module, and control module, optimizing internal space utilization and heat dissipation paths. Combined with the design of the back frame and side ventilation holes, it effectively reduces the device's operating temperature, ensuring stable operation over extended periods. The modular structure allows for detachable connection between the display control components, back frame, and mounting bracket, supporting quick assembly and disassembly and flexible adaptation to different installation scenarios (such as wall-mounted or vertical). Only the corresponding back frame needs to be replaced to meet environmental requirements, greatly reducing equipment deployment and maintenance costs. The screen body is assembled by being encased in the frame and back frame, and the pre-reserved interactive windows and sensor holes on the decorative panel enhance the overall aesthetics and facilitate the integration of interactive functions such as cameras and touch modules, improving user convenience. Furthermore, the integrated mounting plate and screw connection design further simplifies the assembly process, ensuring structural stability while reducing component redundancy. The overall solution, through modular integration and standardized interface design, solves the problems of rigid structure and poor adaptability of traditional teller machines, and provides an efficient and reliable technical foundation for the intelligentization, multi-functionality and scenario expansion of public service equipment. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the technical solutions of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the overall structure of the main body of the device in this utility model.

[0018] Figure 2 This is a schematic diagram of the rear view of the main body of the device in this utility model.

[0019] Figure 3 This is a schematic diagram of the display control components, back frame, and mounting bracket after the main body of the device in this utility model has been initially disassembled.

[0020] Figure 4 This is a schematic diagram of the back frame, mounting plate, hanging holes, and mounting bracket in this utility model.

[0021] Figure 5 This is a schematic diagram of the disassembly structure of the display control component in this utility model.

[0022] Figure 6 This is a disassembled schematic diagram of the operation interaction module and installation frame in this utility model.

[0023] [Explanation of Markings on Main Components / Assemblies]

[0024] label name label name 1 Equipment body 102 Screen body 10 Display control components 103 Decorative panel 100 Internal components 104 frame 1000 Heat dissipation module 105 Installation box 1001 Power module 11 Back frame 1002 Control module 110 Mounting plate 1003 Operation and interaction module 111 Hanging hole 101 Fixed bracket 112 Mounting bracket Detailed Implementation

[0025] as follows:

[0026] Please see the appendix Figure 1-6 ,

[0027] The main structure includes a device body (1) consisting of a display control component (10), a back frame (11), and a mounting bracket (112). The display control component (10) includes a fixed bracket (101) and an internal component (100) fixed on the fixed bracket (101). The fixed bracket (101) is "H"-shaped and sealed on the top and bottom sides. The internal component (100) includes a heat dissipation module (1000), a power supply module (1001), and a control module (1002). The heat dissipation module (1000) is fixed in the space above the fixed bracket (101), and the power supply module (1001) is fixed in the space above the fixed bracket (101). The control module (1002) is fixed on the middle beam of the fixed bracket (101) and fixed in the space below the fixed bracket (101). The screen body (102) is provided on one side of the fixed bracket (101) and the internal component (100). The upper and lower sides of the screen body (102) are fixed to the upper and lower ends of the fixed bracket (101). The edge of the screen body (102) is framed with the back frame (11) after assembly through a frame (104). The back of the back frame (11) is provided with a hanging hole (111). The mounting bracket (112) is detachably connected to the back frame (11) through the hanging hole (111).

[0028] The working principle is as follows:

[0029] During the assembly process, the main body of the equipment (1) consists of a display control component (10), a back frame (11) and a mounting bracket (112). The core is the integration function of the "H"-shaped fixed bracket (101), which fixes the heat dissipation module (1000), power module (1001) and control module (1002) in layers according to thermodynamic characteristics in the upper, middle and lower areas of the bracket to form a vertical heat dissipation channel. The screen body (102) is rigidly connected to the bracket through the upper and lower ends. The edge is covered by the frame (104) and assembled with the back frame (11). The back mounting hole (111) of the back frame (11) and the mounting bracket (112) are quickly snapped or bolted together through a standardized interface. When adapting to vertical or wall-mounted scenarios, only the corresponding back frame (11) needs to be replaced, and there is no need to adjust the internal components (100).

[0030] Compared to the cumbersome process of traditional equipment requiring overall disassembly or custom frame, this solution achieves plug-and-play functionality through modular separation (such as a pre-drilled camera hole in the decorative panel (103) and an independent mounting frame (105) for the operation and interaction module (1003). During maintenance, individual modules can be directly replaced, avoiding downtime of the entire machine. From a technical perspective, traditional equipment suffers from uneven heat dissipation and maintenance difficulties due to the stacking of internal components (100). This solution, however, utilizes a layered layout in conjunction with the heat dissipation holes on the back frame (11) to optimize airflow by taking advantage of the natural upward movement of hot air. Combined with the centrally located power module (1001) to isolate electromagnetic interference and the control module (1002) positioned close to the user's operating area, it achieves efficient heat dissipation and electromagnetic compatibility. Meanwhile, the integrated mounting plate (110) and screw connection design replace traditional welding or riveting processes, reducing assembly errors and structural losses. The precision opening design of the decorative panel (103) and frame (104) ensures seamless integration of interactive elements (such as touch screens and sensors), avoiding the abruptness and compatibility issues of traditional external components. The overall technical solution, through modular architecture and standardized interfaces, solves the pain points of rigid structure, low adaptability, and high maintenance costs of traditional teller machines. While improving assembly efficiency and the stability of the main body of the equipment (1), it provides a reliable foundation for flexible deployment and functional expansion in multiple scenarios.

[0031] Reference Appendix Figure 5 and 1 -5. In actual assembly, the heat dissipation module (1000), power supply module (1001), and control module (1002) can be fixed with screws to the upper, middle crossbeam and lower part of the "H"-shaped fixed bracket (101) to form a vertically arranged display control component (10) body; then the upper and lower ends of the screen body (102) are embedded into the upper and lower sealing ends of the fixed bracket (101) and locked in position by buckles; then the frame (104) is put on the edge of the screen, and the entire display control component (10) is aligned with the front of the back frame (11) and pushed in. The frame (104) and the edge of the back frame (11) are covered and assembled by hidden fasteners. At this time, the screen body (102) and the internal components (100) form a complete functional module; finally, according to the installation method, wall-mounted or vertical brackets are selected, the hooks of the mounting bracket (112) are aligned with the four hanging holes (111) reserved on the back of the back frame (11) and inserted, and rotated 90 degrees to lock to complete the overall assembly. The entire process requires only a regular screwdriver. All interfaces are designed to prevent incorrect wiring. The connecting cables between modules are automatically connected via the pre-set cable tray inside the mounting bracket (101) when the components are fixed, reducing wiring operations by 80% compared to traditional ATMs. When it is necessary to switch the installation method, simply rotate the mounting bracket (112) off the hanging hole (111), replace it with another bracket, and reattach it. There is no need to disassemble the internal components (100). The transformation can be completed within 15 minutes, whereas traditional equipment requires complete disassembly and reassembly in this scenario.

[0032] According to our company's actual test, this modular assembly method improves the deployment efficiency of the main body of the equipment (1) by at least 5 times compared with the traditional integrated structure, which is particularly suitable for the rapid deployment of bank branches or the construction of temporary exhibition booths in shopping malls.

[0033] Reference Appendix Figure 5 , Figure 6 In a preferred embodiment of the present invention, the internal component (100) further includes an operation interaction module (1003) located below the control module (1002).

[0034] In this technical solution, the operation interaction module (1003) is the core area directly operated by the user. It includes components such as touch screen, keyboard, and card reader. It is exposed through the window at the bottom of the decorative panel (103). The user can enter the password and swipe the card to handle business here. The holes on both sides integrate cameras and sensors to realize various functions such as face recognition and QR code scanning, so that the main body of the device (1) can safely and efficiently handle interactive tasks such as deposit and withdrawal, information query.

[0035] Reference Appendix Figure 5 In a preferred embodiment of this utility model, a decorative panel (103) is provided on the outside of the screen body (102), and a window corresponding to the operation interaction module (1003) is opened at the bottom of the decorative panel (103). Holes for setting up cameras and sensors are also opened on both sides of the decorative panel (103).

[0036] In this design, the decorative panel (103) serves as the "smart outer garment" of the main body of the device (1). The bottom window precisely exposes the touchscreen or keyboard of the operation area, allowing users to directly click to conduct business. The holes on both sides are specially designed to house cameras and facial recognition sensors, acting as the "eyes" of the main body of the device (1), enabling functions such as facial recognition login and QR code payment. This design maintains the simple and beautiful appearance of the main body of the device (1) (similar to the full-screen design of a smartphone), while protecting the core interactive components within the internal components (100) through precise openings. This design is more dustproof and waterproof than traditional exposed buttons and can also prevent malicious damage, making it particularly suitable for scenarios with high security requirements, such as bank ATMs. At the same time, the metal decorative panel (103) can also assist the heat dissipation module (1000) in heat dissipation, extending the lifespan of the main body of the screen (102).

[0037] Reference Appendix Figure 5 Appendix Figure 6 In a preferred embodiment of this utility model, the operation interaction module (1003) is enclosed by a mounting frame (105), and the top of the mounting frame (105) is connected to the bottom of the fixed bracket (101) by screws.

[0038] In this design, the mounting frame (105) serves as the protective frame and mounting structure for the operation interaction module (1003). It can be connected to the bottom of the fixed bracket (101) by four screws, which not only prevents the module from shifting due to frequent user operation (similar to the reinforcement design of elevator buttons), but also facilitates individual disassembly and maintenance. Compared with the traditional welded fixed operation panel, this design allows maintenance personnel to operate by simply unscrewing the screws and removing the mounting frame (105) when replacing the touch screen or card reader, without having to disassemble the entire main body of the device (1). The maintenance time is reduced from 1 hour to 10 minutes. At the same time, the metal frame can also shield electromagnetic interference, ensuring the security of sensitive operations such as password input.

[0039] Reference Appendix Figure 3 , 4 6. A preferred embodiment of the present invention: the back of the back frame (11) is provided with a mounting plate (110) for assembly with the mounting bracket 112, and the mounting plate (110) and the back frame (11) are an integral structure.

[0040] The one-piece molded mounting plate (110) is directly fused with the back frame (11) to form a whole, increasing the load-bearing capacity by 3 times compared to traditional welded brackets, and can stably hang the 50 kg equipment body (1). During installation, simply snap the mounting bracket (112) into the standard interface on the mounting plate (110), as simple as hanging a picture, avoiding the trouble of drilling and calibration required by traditional split brackets. It is especially suitable for quick installation on bank marble walls, and there will be no problem of weld point breakage during long-term use.

[0041] Reference Appendix Figure 4 In a preferred embodiment of the present invention, heat dissipation holes are provided on both sides and the back of the back frame (11) for the internal components (100) to dissipate working heat.

[0042] The multi-hole openings on the sides and back form air convection channels, allowing the heat of the internal components (100) to be naturally dissipated. Compared with the traditional design that only opens on the back, this three-sided heat dissipation structure keeps the main body of the device (1) cool even in high-temperature environments, preventing overheating and shutdown. It is especially suitable for ATMs that operate 24 hours a day. At the same time, the slanted holes can also prevent dust and splashes, extending the service life of the internal components (100).

[0043] The above are merely preferred embodiments of the present utility model and do not limit the patent scope of the present utility model. Any equivalent structural transformations made using the contents of the present utility model specification and drawings under the concept of the present utility model, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A modular wall-mounted, free-standing, all-in-one kiosk device, comprising: Comprising The device body is composed of a display control assembly, a back frame and a mounting bracket, The display control assembly comprises a fixed bracket and an internal assembly fixed on the fixed bracket, the fixed bracket is in the shape of "H" and is sealed at the top and bottom, the internal assembly comprises a heat dissipation module, a power module and a control module, the heat dissipation module is fixed on the upper space of the fixed bracket, the power module is fixed on the middle beam of the fixed bracket, the control module is fixed on the lower space of the fixed bracket, a screen body is arranged on one side of the fixed bracket and the internal assembly, the screen body is fixed on the top and bottom of the fixed bracket, and the screen body is framed by a back frame after being assembled with the back frame, The back frame is provided with a hanging hole, and the mounting bracket is detachably connected with the back frame through the hanging hole.

2. The modular wall-mounted, free-standing, all-in-one kiosk apparatus of claim 1, wherein, The internal assembly further comprises an operation interaction module below the control module.

3. The modular wall-mounted, free-standing, all-in-one kiosk apparatus of claim 2, wherein, The screen body is provided with a veneer outside, the bottom of the veneer is provided with a window corresponding to the operation interaction module, and the two sides of the veneer are further provided with holes for arranging a camera and a sensor.

4. The modular wall-mounted, free-standing, all-in-one kiosk apparatus of claim 2, wherein, The operation interaction module is enclosed by a mounting frame, and the top of the mounting frame is connected with the bottom of the fixed bracket by screws.

5. The modular wall-mounted, free-standing, all-in-one kiosk apparatus of claim 1, wherein, The back frame is provided with a mounting plate at the back for assembling with the mounting bracket, and the mounting plate and the back frame are in an integrated structure.

6. The modular wall-mounted, free-standing, all-in-one kiosk apparatus of claim 1, wherein, The back frame is provided with heat dissipation holes on the two sides and the back for dissipating working heat of the internal assembly.