Operation interface of computer cabinet

By introducing the design of slide rail components, wireless communication and automatic battery charging modules in industrial computer cabinets, the problem of difficulty in deformation and replacement of wire frames is solved, and lower cost and more efficient server management and maintenance is achieved.

CN222967200UActive Publication Date: 2025-06-10NUETEQ TECH
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Patent Information

Application Number
CN202421686483.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-06-10
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

The wire management frames of existing industrial computer cabinets are prone to deform after carrying a large number of connected wires, which makes it difficult for the server to move, and replacing the wire management frames is time-consuming and labor-intensive.

Method used

Provides an operating interface of a computer cabinet, including a slide rail assembly, a display, a battery module and a server switching module. The slide rail assembly allows the display to move inward or outward, the battery module is connected or disconnected from the power supply device during movement, and the display is controlled by the server switching module through wireless communication.

Benefits of technology

By eliminating the connection of wires and wire racks, the manufacturing cost and maintenance difficulty of computer cabinets are reduced, the repair time is reduced, and the server movement and battery charging process is simplified.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an operation interface of a computer cabinet. The operation interface comprises a slide rail assembly, a display and a battery module, the slide rail assembly is assembled to the computer cabinet, and the display is assembled to the slide rail assembly and wirelessly transmits a display control instruction to a server in the computer cabinet. The battery module is assembled to the display. The slide rail assembly is configured to enable the display to move towards the inside or the outside of the computer cabinet. And when the display moves towards the interior of the computer cabinet, the battery module is connected with a power supply device in the computer cabinet. And when the display moves towards the outside of the computer cabinet, the battery module is disconnected from the power supply device. Therefore, the difficulty of maintaining the computer cabinet by a manager is reduced, and the maintenance time is shortened.
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Description

Technical Field

[0001] The utility model relates to an operation interface, in particular to an operation interface for a computer cabinet. Background Art

[0002] Traditional industrial computer cabinets include a cabinet body and a plurality of drawer seats installed in the cabinet body. Management personnel can install multiple servers in a vertically stacked manner on the plurality of drawer seats respectively, so that the servers can be pulled out of the cabinet body like drawers or pushed in and closed from the outside.

[0003] Each server has various connection wires for transmitting signals and power, and a wire management rack is provided for each server to organize these connection wires to avoid the difficulty of subsequent maintenance caused by the mess or entanglement of these connection wires. In the current design of wire management racks, most of them use a plurality of frames pivotally connected to each other in a head-to-tail manner. When the server is pulled outwards, the frame changes from a folded state to an unfolded state to ensure that these connection wires remain within the wire management rack structure during the movement of the server and do not get entangled.

[0004] Servers with larger storage capacities not only have larger sizes but also use more connection wires, resulting in a greater weight borne by the wire management rack. Over time, the wire management rack will deform. When the shape of the wire management rack changes, it causes difficulties for management personnel when moving the server. If the wire management rack needs to be replaced, it is necessary to loosen the pivot element between the old wire management rack and the cabinet body to remove the wire management rack, and then tighten the pivot element between the new wire management rack and the cabinet body again, which is quite time-consuming and laborious. Summary of the Utility Model

[0005] The technical problem to be solved by the utility model is to provide an operation interface for a computer cabinet in view of the deficiencies of the prior art. The operation interface includes a slide rail assembly, a display, and a battery module. The slide rail assembly is connected to the computer cabinet, the display is connected to the slide rail assembly and wirelessly transmits screen control instructions to the server in the computer cabinet. The battery module is connected to the display. The slide rail assembly is configured to move the display towards the inside or outside of the computer cabinet. When the display moves towards the inside of the computer cabinet, the battery module is connected to the power supply device in the computer cabinet. When the display moves towards the outside of the computer cabinet, the battery module is disconnected from the power supply device.

[0006] Preferably, the slide rail assembly includes a first slide rail member, a second slide rail member, and a roller. The first slide rail member is provided with a slide rail, and the roller is installed on the second slide rail member and rotates along the slide rail.

[0007] Preferably, the display includes a processing circuit and a wireless communication module. The wireless communication module is electrically connected to the processing circuit, and the wireless communication module transmits the display control instruction to the server.

[0008] Preferably, the battery module includes a rechargeable battery, a charging control circuit, and a first connector. The charging control circuit is connected to the rechargeable battery and the first connector. The power supply device includes a second connector. When the first connector is connected to the second connector, the charging control circuit uses the power supply device to charge the rechargeable battery.

[0009] Preferably, the battery module includes a rechargeable battery, a charging control circuit, and a metal contact surface. The charging control circuit is connected to the rechargeable battery and the metal contact surface. The power supply device includes a metal spring piece. When the metal contact surface contacts the metal spring piece, the charging control circuit uses the power supply device to charge the rechargeable battery.

[0010] To solve the above technical problems, another technical solution adopted by the present utility model is to provide an operation interface for a computer cabinet. The operation interface includes a slide rail assembly, a display, a battery module, and a server switching module. The slide rail assembly is assembled to the computer cabinet body, and the display is assembled to the slide rail assembly. The battery module is assembled to the display. The server switching module is configured to be connected to multiple servers in the cabinet, and the display is configured to wirelessly transmit a server switching instruction and / or a screen control instruction to the server switching module. The slide rail assembly is configured to move the display towards the inside or outside of the computer cabinet. When the display moves towards the inside of the computer cabinet, the battery module is connected to the power supply device inside the computer cabinet. When the display moves towards the outside of the computer cabinet, the battery module is disconnected from the power supply device.

[0011] Preferably, the slide rail assembly includes a first slide rail member, a second slide rail member, and a roller. The first slide rail member is provided with a slide rail, and the roller is installed on the second slide rail member and rotates along the slide rail.

[0012] Preferably, the display includes a processing circuit and a wireless communication module. The wireless communication module is electrically connected to the processing circuit, and the wireless communication module transmits the server switching instruction and / or the display control instruction to the server switching module.

[0013] Preferably, the server switching module includes a control circuit, a plurality of switching switches, and a plurality of server connection ports. The control circuit is electrically connected to the plurality of switching switches, and the plurality of switching switches are respectively connected to the plurality of server connection ports. The control circuit controls the state of each switching switch according to the server switching instruction and transmits the display control instruction to the server.

[0014] Preferably, the battery module includes a rechargeable battery, a charging control circuit, and a first connector. The charging control circuit is connected to the rechargeable battery and the first connector. The power supply device includes a second connector. When the first connector is connected to the second connector, the charging control circuit uses the power supply device to charge the rechargeable battery.

[0015] One of the beneficial effects of the present utility model is that for the operation interface of the computer cabinet provided by the present utility model, since the connection wires and the cable management rack are omitted, not only the manufacturing cost of the computer cabinet is greatly reduced, but also the difficulty for the management personnel to repair the computer cabinet is reduced and the repair time is shortened.

[0016] To further understand the features and technical content of the present utility model, please refer to the following detailed description and drawings of the present utility model. However, the provided drawings are only for reference and illustration, and are not used to limit the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of an embodiment of the operation interface of the computer cabinet of the present utility model stored in the computer cabinet.

[0018] Figure 2 It is a schematic diagram of an embodiment of the operation interface of the computer cabinet of the present utility model extending outside the computer cabinet.

[0019] Figure 3 It is a schematic diagram of an embodiment of the operation interface of the computer cabinet of the present utility model in a use state.

[0020] Figure 4 It is an assembled view of an embodiment of the slide rail assembly of the present utility model.

[0021] Figure 5 It is an exploded view of an embodiment of the slide rail assembly of the present utility model.

[0022] Figure 6 It is a functional block diagram of the first embodiment of the operation interface of the computer cabinet of the present utility model.

[0023] Figure 7 It is a functional block diagram of the second embodiment of the operation interface of the computer cabinet of the present utility model.

[0024] Figure 8 Schematic diagram of the third embodiment of the operation interface of the computer cabinet of the present utility model in a use state.

[0025] Figure 9 For Figure 8 The monitor sends a control instruction to the server switching module.

[0026] Figure 10 For Figure 8 The monitor sends a switching instruction to the server switching module. Detailed implementation manners

[0027] The following are specific embodiments to illustrate the implementation manners of the "operation interface of the computer cabinet" provided by the present utility model. Those skilled in the art can understand the advantages and effects of the present utility model from the content provided in this specification. The present utility model can be implemented or applied through other different specific embodiments, and various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the concept of the present utility model. Additionally, the drawings of the present utility model are only simple schematic illustrations and are not drawn according to actual sizes, hereby stating in advance. The following implementation manners will further detail the related technical content of the present utility model, but the content provided is not used to limit the protection scope of the present utility model.

[0028] It should be understood that although terms such as "first", "second", "third", etc. may be used in this article to describe various components or signals, these components or signals should not be limited by these terms. These terms are mainly used to distinguish one component from another, or one signal from another. Additionally, the term "or" used in this article should, depending on the actual situation, possibly include any one or a combination of multiple associated listed items.

[0029] Figure 1 Schematic diagram of the first embodiment of the operation interface of the computer cabinet of the present utility model being received in the computer cabinet. As Figure 1 shown, the operation interface of the computer cabinet 100 includes a pair of slide rail assemblies 1, a monitor 2, and a battery module 3. The computer cabinet 100 includes two opposite side walls 101, and this pair of slide rail assemblies 1 are respectively connected to the two side walls 101. The monitor 2 is connected between this pair of slide rail assemblies 1 and is received in the computer cabinet 100. The battery module 3 is connected to the monitor 2 to supply the electrical energy required by the monitor 2.

[0030] The first server ST1 and the power supply device 4 are arranged inside the computer cabinet 100. The first server ST1 is located below the display 2 and there is a spacing distance between the first server ST1 and the display 2. The height position of the power supply device 4 along the Z-axis direction is approximately the same as that of the display 2, and the power supply device 4 is connected to the battery module 3. When the capacity in the battery module 3 does not reach 100%, the power supply device 4 continuously charges the battery module 3 until the capacity in the battery module 3 reaches 100%.

[0031] Figure 2 This is a schematic diagram of an embodiment of the operation interface of the computer cabinet of the present utility model extending outside the computer cabinet. As Figure 2 shown, when the display 2 is pulled by an external force and moves along the X-axis direction towards the outside of the computer cabinet 100, first, the electrical connection between the battery module 3 and the power supply device 4 is released, and then the display screen 21 of the display 2 extends outside the computer cabinet 100.

[0032] Figure 3 This is a schematic diagram of an embodiment of the operation interface of the computer cabinet of the present utility model in a use state. The display 2 includes a display screen 21, a screen base 22, and a pair of pivot members 23. The display screen 21 is pivotally connected to the screen base 22 through the pair of pivot members 23, so that the display screen 21 is operated to change from an initial lying state (parallel to the X-axis direction) to an upright state (parallel to the Z-axis direction). When the display screen 21 is in the upright state, control instructions can be issued to the first server ST1 or the operation state of the first server ST1 can be monitored through the display screen 21.

[0033] Figure 4 is Figure 1 a combined view of the slide rail assembly 1 of Figure 5 is Figure 1 an exploded view of the slide rail assembly 1 of Figure 3 and Figure 4 shown, each slide rail assembly 1 includes a first slide rail member 11, a second slide rail member 12, and a plurality of rollers 13. The screen base 22 of the display 2 is fixed to the first side of the first slide rail member 11, and a slide rail 111 is provided on the second side of the first slide rail member 11. The first side of the second slide rail member 12 is fixed to the side wall 101 of the computer cabinet 100, and each roller 13 is assembled to the second side of the second slide rail member 12. The display 2 further includes a power cord 24, and the power cord 24 connects the display screen 21 and the battery module 3 in the screen base 22. When the first slide rail member 11 and the second slide rail member 12 are assembled, each roller 13 on the second slide rail member 12 is in rolling contact with the slide rail 111 of the first slide rail member 11. The first slide rail member 11 can move relative to the second slide rail member 12 towards the inside or outside of the computer cabinet 100 through the rolling of each roller 13, thereby driving the display 2 to move towards the inside or outside of the computer cabinet 100.

[0034] Figure 6 This is a functional block diagram of a first embodiment of the operation interface of the computer cabinet of the present utility model. As Figure 6 shown, the display 2 is electrically connected to the battery module 3 and the power supply device 4. The display 2 further includes a processing circuit 25 and a wireless communication module 26, and the processing circuit 25 is electrically connected to the wireless communication module 26. The processing circuit 25 is, for example, one or any combination of an embedded controller, an application specific integrated circuit (ASIC), a field programmable gate array (FPGA), a microcontroller unit (MCU), and a system on a chip (SOC), but the present utility model is not limited thereto.

[0035] The wireless communication module 26 includes a circuit board, an antenna integrated circuit 261, and an antenna 262. The antenna integrated circuit 261 and the antenna 262 are respectively disposed above two opposite surfaces of the circuit board, and the antenna integrated circuit 261 is electrically connected to the processing circuit 25 of the display 2. The circuit board is provided with conductive vias penetrating the entire circuit board. The two ends of the conductive vias are respectively connected to the antenna integrated circuit 261 and the antenna 262 to form a conduction path, so that the antenna integrated circuit 261 can control the operation of the antenna 262 and is used to control signal transmission and reception. The communication protocol used by the wireless communication module 26 to transmit and receive signals is, for example, Wi-Fi, Bluetooth, or ZigBee, but the present utility model is not limited thereto.

[0036] The processing circuit 25 can generate a corresponding screen control instruction C1 according to the operation mode of the management personnel on the display screen 21, and transmit the screen control instruction C1 to the antenna integrated circuit 261 of the wireless communication module 26. The antenna integrated circuit 261 reads the screen control instruction C1 and transmits the screen control instruction C1 to the first server ST1 via the antenna 262.

[0037] The battery module 3 includes a charging control circuit 31, a rechargeable battery 32, and a first connector 33. The charging control circuit 31 is connected to the processing circuit 25, the rechargeable battery 32, and the first connector 33. The charging control circuit 31 supplies the electric energy stored in the rechargeable battery 32 to the processing circuit 25 of the display 2, and the processing circuit 25 of the display 2 then distributes the received electric energy to the display screen 21 and the wireless communication module 26. The first connector 33 of the battery module 3 is electrically connected to the second connector 41 of the power supply device 4, and the charging control circuit 31 uses the power supply device 4 to continuously charge the rechargeable battery 32 until the capacity of the rechargeable battery 32 reaches 100%.

[0038] Figure 7 This is a functional block diagram of the second embodiment of the operation interface of the computer cabinet of the present utility model. As Figure 7 shown, the battery module 3 includes a charging control circuit 31, a rechargeable battery 32, and a metal contact surface 34. The charging control circuit 31 supplies the electric energy stored in the rechargeable battery 32 to the processing circuit 25 of the display 2, and the processing circuit 25 of the display 2 then distributes the received electric energy to the display screen 21 and the wireless communication module 26. The metal contact surface 34 of the battery module 3 is electrically connected to the metal spring piece 42 of the power supply device 4, and the charging control circuit 31 uses the power supply device 4 to continuously charge the rechargeable battery 32 until the capacity of the rechargeable battery 32 reaches 100%.

[0039] Figure 8 This is a schematic diagram of the third embodiment of the operation interface of the computer cabinet of the present utility model in a use state. As Figure 8 shown, the operation interface of the computer cabinet 100 includes a pair of slide rail assemblies 1, a display 2, a battery module 3, and a server switching module 5. This pair of slide rail assemblies 1 are respectively assembled to two side walls 101 of the computer cabinet 100, and the display 2 is assembled between this pair of slide rail assemblies 1. The battery module 3 is assembled with the display 2 to supply the electric energy required by the display 2. The first server ST1, the second server ST2, the power supply device 4, and the server switching module 5 are arranged in the computer cabinet 100. The first server ST1, the second server ST2, and the server switching module 5 are located below the display 2 and have a spacing distance from the display 2. A wireless communication connection is achieved between the display 2 and the server switching module 5, so that the management personnel can issue control instructions and / or switching instructions to the server switching module 5 via the display 2.

[0040] Figure 9 For Figure 8 the display 2 to send a screen control instruction to the server switching module 5. As Figure 9As shown, the battery module 3 and the power supply device 4 are electrically connected to the display 2, and a wireless communication connection is established between the display 2 and the server switching module 5. The charging control circuit 31 is connected to the processing circuit 25, the rechargeable battery 32, and the first connector 33. The charging control circuit 31 supplies the electric energy stored in the rechargeable battery 32 to the processing circuit 25, and the processing circuit 25 then distributes the received electric energy to the display screen 21 and the wireless communication module 26. The first connector 33 of the battery module 3 is electrically connected to the second connector 41 of the power supply device 4, and the charging control circuit 31 uses the power supply device 4 to continuously charge the rechargeable battery 32 until the capacity of the rechargeable battery 32 reaches 100%.

[0041] The server switching module 5 includes a control circuit 51, a first switching switch 52, a second switching switch 53, a first server connection port 54, a second server connection port 55, and a wireless communication module 56. The first switching switch 52 is connected between the control circuit 51 and the first server connection port 54, and the second switching switch 53 is connected between the control circuit 51 and the second server connection port 55. The first server connection port 54 is configured to connect to the first server ST1, and the second server connection port 55 is configured to connect to the second server ST2. The wireless communication module 56 is connected to the control circuit 51.

[0042] The wireless communication module 56 includes a circuit board, an antenna integrated circuit 561, and an antenna 562, and the antenna integrated circuit 561 is connected to the control circuit 51. The antenna integrated circuit 561 and the antenna 562 are respectively disposed on the circuit board and are electrically connected through the conductive vias of the circuit board, so that the antenna integrated circuit 561 can control the operation of the antenna 562 and is used to control the signal transmission and reception. The communication protocol used by the wireless communication module 56 to transmit and receive signals is, for example, Wi-Fi, Bluetooth, or ZigBee, but the present utility model is not limited thereto.

[0043] In this embodiment, the first switching switch 52 and the second switching switch 53 are initially in the conducting state and the cut-off state respectively. Therefore, signals and data can be transmitted bidirectionally between the control circuit 51 and the first server ST1, and the display 2 displays the operating state of the first server ST1.

[0044] The processing circuit 25 of the display 2 generates a screen control instruction C1 according to the first operation mode of the management personnel on the display screen 21 of the display 2, and transmits the screen control instruction C1 to the antenna integrated circuit 261 of the wireless communication module 26. The antenna integrated circuit 261 reads the screen control instruction C1 and transmits the screen control instruction C1 to the server switching module 5 via the antenna 262. The wireless communication module 56 of the server switching module 5 receives the screen control instruction C1 and transmits the screen control instruction C1 to the control circuit 51.

[0045] In this embodiment, since the first switching switch 52 and the second switching switch 53 are in the conducting state and the cut-off state respectively, the electrical connection between the control circuit 51 and the first server ST1 has been established, while the electrical connection between the control circuit 51 and the second server ST2 has not been established. Therefore, after the control circuit 51 reads the screen control instruction C1, the control circuit 51 transmits the screen control instruction C1 to the first server ST1 via the first switching switch 52 and the first server port 54, and the display screen 21 of the display 2 displays the operating state executed by the first server ST1 according to the screen control instruction C1.

[0046] Figure 10 For Figure 8 the display 2 of the server switching module 5 to send a switching instruction to the server switching module 5. As Figure 10 shown, the processing circuit 25 of the display 2 generates a server switching instruction C2 according to the second operation mode of the display screen 21 of the display 2 by the management personnel, and transmits the server switching instruction C2 to the wireless communication module 26 of the display 2. The wireless communication module 56 of the server switching module 5 receives the server switching instruction C2 and transmits the server switching instruction C2 to the control circuit 51 of the server switching module 5.

[0047] The control circuit 51 of the server switching module 5 switches the first switching switch 52 from the conducting state to the cut-off state and the second switching switch 53 from the cut-off state to the conducting state according to the server switching instruction C2. In this embodiment, the first switching switch 52 and the second switching switch 53 are initially in the conducting state and the cut-off state respectively. Therefore, after the control circuit 51 of the server switching module 5 reads the server switching instruction C2, the control circuit 51 switches the first switching switch 52 from the conducting state to the cut-off state, and switches the second switching switch 53 from the cut-off state to the conducting state. When the first switching switch 52 and the second switching switch 53 are in the cut-off state and the conducting state respectively, the electrical connection between the control circuit 51 and the first server ST1 is released, and the electrical connection between the control circuit 51 and the second server ST2 is established. In this way, signals and data can be transmitted bidirectionally between the control circuit 51 and the second server ST2, and the display screen 21 of the display 2 displays the operating state of the second server ST2.

[0048] [Advantageous effects of the embodiment]:

[0049] One of the advantageous effects of the present utility model is the operation interface of the computer cabinet provided by the present utility model. Since the connection wires and the cable management rack are omitted, not only the manufacturing cost of the computer cabinet is greatly reduced, but also the difficulty for the management personnel to repair the computer cabinet is reduced and the repair time is shortened.

[0050] The content provided above is only a preferred and feasible embodiment of the present utility model, and does not limit the claims of the present utility model. Therefore, all equivalent technical changes made by using the content of the specification and drawings of the present utility model are included in the claims of the present utility model.

Claims

1. An operating interface of a computer cabinet, characterized in that: The operation interface includes: A slide rail assembly, assembled to the computer cabinet; a display, connected to the slide rail assembly and wirelessly transmitting a display control command to a server in the computer cabinet; and A battery module, connected to the display; The slide rail assembly is configured to move the display toward inside or outside of the computer cabinet; When the display moves toward the computer cabinet, the battery module is connected to a power supply device in the computer cabinet; When the display moves toward the outside of the computer cabinet, the battery module is disconnected from the power supply device.

2. The operating interface of the computer cabinet according to claim 1, characterized in that: The slide rail assembly comprises: A first slide rail component, a second slide rail component and a roller, the first slide rail component is provided with a slide rail, and the roller is installed on the second slide rail component and rotates along the slide rail.

3. The operation interface of the computer cabinet according to claim 1, characterized in that: The display comprises: A processing circuit and a wireless communication module, wherein the wireless communication module is electrically connected to the processing circuit, and the wireless communication module transmits the display control instruction to the server.

4. The operation interface of the computer cabinet according to claim 1, characterized in that: The battery module comprises: A rechargeable battery, a charging control circuit and a first connector, the charging control circuit is connected to the rechargeable battery and the first connector, the power supply device includes a second connector, when the first connector is connected to the second connector, the charging control circuit uses the power supply device to charge the rechargeable battery.

5. The operation interface of the computer cabinet according to claim 1, characterized in that: The battery module comprises: A rechargeable battery, a charging control circuit and a metal contact surface, the charging control circuit is connected to the rechargeable battery and the metal contact surface, the power supply device includes a metal spring, and when the metal contact surface contacts the metal spring, the charging control circuit uses the power supply device to charge the rechargeable battery.

6. An operating interface of a computer cabinet, characterized in that: The operation interface includes: A slide rail assembly, assembled to the computer cabinet; A display, assembled to the slide rail assembly; a battery module, assembled to the display; and a server switching module configured to connect to a plurality of servers in the computer cabinet; The display is configured to wirelessly transmit a server switching instruction and / or a display control instruction to the server switching module; The slide rail assembly is configured to move the display toward inside or outside of the computer cabinet; When the display moves toward the computer cabinet, the battery module is connected to a power supply device in the computer cabinet; When the display moves toward the outside of the computer cabinet, the battery module is disconnected from the power supply device.

7. The operating interface of the computer cabinet according to claim 6, characterized in that: The slide rail assembly comprises: A first slide rail component, a second slide rail component and a roller. The first slide rail component is provided with a slide rail, and the roller is installed on the second slide rail component and rotates along the slide rail.

8. The operation interface of the computer cabinet according to claim 6, characterized in that: The display comprises: A processing circuit and a wireless communication module, wherein the wireless communication module is electrically connected to the processing circuit, and the wireless communication module transmits the server switching instruction and / or the display control instruction to the server switching module.

9. The operation interface of the computer cabinet according to claim 6, characterized in that: The server switching module comprises: A control circuit, a plurality of switching switches and a plurality of server connection ports, wherein the control circuit is electrically connected to the plurality of switching switches, and the plurality of switching switches are also respectively connected to the plurality of server connection ports, and the control circuit controls the state of each switching switch according to the server switching instruction and transmits the display control instruction to the server.

10. The operation interface of the computer cabinet according to claim 6, characterized in that: The battery module comprises: A rechargeable battery, a charging control circuit and a first connector, the charging control circuit is connected to the rechargeable battery and the first connector, the power supply device includes a second connector, when the first connector is connected to the second connector, the charging control circuit uses the power supply device to charge the rechargeable battery.