Server protection device
By introducing the design of the door body and alarm components in the server protection device, the problem of complex structure and easy to be destroyed in the prior art is solved, and the efficient protection effect of the simplified structure is achieved.
Patent Information
- Application Number
- CN202510866984.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-26
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2045-06-26
AI Technical Summary
The existing server protection devices have complex structures and high strength, and there is still a risk of being destroyed, making it difficult to effectively protect the server.
A server protection device is designed, including a box, door body, door lock assembly and alarm component. When the door body is active, the alarm is triggered to issue an alarm, and when the door lock assembly is damaged, the alarm signal is triggered, simplifying the structure to improve the protection effect.
By simplifying the structure design, timely alarms are made when the door lock assembly is damaged, the protection effect of the server is improved, and the preparation cost and structural complexity are reduced.
Smart Images

Figure CN120387198A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of protection devices, and particularly to a server protection device. Background Art
[0002] A server is a device used for data processing. The server uses a Central Processing Unit (CPU) to process data. A large amount of data is stored in the server. Correspondingly, there is also a risk that the server is damaged and data is stolen. To ensure the security of the server, the server can be placed in a protection device for protection.
[0003] Currently, the protection device of the server mainly improves the protection performance by strengthening the structural strength so that the protection device is difficult to be damaged. However, the higher the structural strength of the protection device, the more complex its structure is, and there is still a risk of being damaged. Summary of the Invention
[0004] This application provides a server protection device to at least solve the problem that the protection device of the server in the related art has a complex structure.
[0005] This application provides a server protection device, which includes:
[0006] A box body having an installation cavity and an installation opening, and the installation cavity is used to accommodate the server;
[0007] A door body movably connected to the box body, and the door body is configured to move to open or close the installation opening;
[0008] A door lock assembly provided on the door body, and the door lock assembly is configured to lock the door body and the box body. When the door body and the box body are locked, the door body is located at a preset position;
[0009] An alarm assembly including an alarm part and a trigger part, the alarm part is provided on the box body, and the trigger part is movably provided on the box body;
[0010] Wherein, when the door body moves in a direction away from the installation opening from the preset position to open the installation opening, the trigger part is driven to move towards the alarm part to trigger the alarm part, so that the alarm part issues an alarm;
[0011] When the door body moves in a direction towards the installation opening from the preset position, the door body drives the trigger part to move away from the alarm part to have a distance from the alarm part.
[0012] In the server protection device provided by the present application, the installation cavity of the box body can be used to accommodate the server. After the door body moves to close the installation opening, the door lock assembly can lock the door body with the box body, so that the server is enclosed in the installation cavity of the box body, thereby achieving the purpose of protecting the server. When the door body moves directly away from the installation opening from the preset position, the triggering part will trigger the alarm part to emit an alarm signal. When the door body moves towards the installation opening from the preset position, the door body can drive the triggering part to have a distance from the alarm part, so that the triggering part does not trigger the alarm part, and correspondingly, no alarm signal is generated. In this way, when the door lock assembly is damaged and the door body opens the installation opening, the triggering part can trigger the alarm part to generate an alarm signal, effectively reminding the user that there is a risk of damage to the server in the box body, making the server protection device of the present application have a better protection effect on the server. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0014] Figure 1 Schematic diagram of the server protection device provided by the embodiment of the present application;
[0015] Figure 2 Schematic diagram of the connection between the door body and the box body of the server protection device provided by the embodiment of the present application;
[0016] Figure 3 is Figure 2 enlarged display schematic diagram of area A in;
[0017] Figure 4 Schematic diagram of the alarm component of the server protection device provided by the embodiment of the present application;
[0018] Figure 5 is Figure 4 enlarged display schematic diagram of area B in;
[0019] Figure 6 Schematic diagram of the processing module and communication module of the server protection device provided by the embodiment of the present application.
[0020] Among them, the above-mentioned drawings include the following reference numerals:
[0021] 100 - box body; 110 - installation cavity; 120 - installation opening; 130 - fixing plate; 140 - rotating shaft; 150 - heat dissipation hole;
[0022] 200 - door body; 210 - connecting block;
[0023] 300 - Door lock assembly; 310 - Fixed seat; 320 - Lock core; 330 - Hanging plate; 340 - Key;
[0024] 400 - Alarm assembly; 410 - Alarm part; 411 - Alarm position; 420 - Trigger part; 421 - Limit groove; 422 - Trigger position; 423 - Contact table;
[0025] 500 - Driving assembly; 510 - First driving part; 520 - Guide part; 521 - Guide groove;
[0026] 600 - Limiting assembly; 610 - Limiting part; 611 - Limiting bead; 620 - Second driving part; 630 - Moving plate; 640 - Positioning plate;
[0027] 700 - Sealing part;
[0028] 810 - Processing module; 820 - Communication module; 830 - Solar panel; 840 - Battery; 850 - Cloud server; 860 - Receiving device. Detailed implementation manners
[0029] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the protection scope of the present application.
[0030] It should be noted that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application. The terms "mounted", "connected" and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. The terms "parallel", "perpendicular", "equal" include the described situations and situations similar to the described situations, and the range of the similar situations is within an acceptable deviation range, where the acceptable deviation range is determined by those of ordinary skill in the art considering the measurements being discussed and the errors associated with the measurements of a particular quantity (i.e., the limitations of the measurement system). For example, "parallel" includes absolute parallel and approximate parallel, and the acceptable deviation range of approximate parallel can be, for example, within 5° deviation; "perpendicular" includes absolute perpendicular and approximate perpendicular, and the acceptable deviation range of approximate perpendicular can also be, for example, within 5° deviation. "Equal" includes absolute equality and approximate equality, and the acceptable deviation range of approximate equality can be, for example, that the difference between the two equal ones is less than or equal to 5% of either of them. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.
[0031] A server is a device for providing data processing. The server uses a Central Processing Unit (CPU) to process data. A large amount of data is stored in the server. Correspondingly, there is also a risk that the server will be damaged and the data will be stolen. To ensure the security of the server, the server can be placed in a protection device for protection.
[0032] Currently, the protection device of the server mainly improves the protection performance by strengthening the structural strength so that it is difficult to be damaged. However, the higher the structural strength of the protection device, the more complex its structure is, and there is still a risk of being damaged.
[0033] In the server protection device proposed in this application, the installation cavity of the box body can be used to accommodate the server. After the door body moves to close the installation opening, the door lock assembly can lock the door body to the box body, so that the server is enclosed in the installation cavity of the box body, thereby achieving the purpose of protecting the server. When the door body moves directly away from the installation opening from a preset position, the triggering part will trigger the alarm part to emit an alarm signal. When the door body moves towards the installation opening from a preset position, the door body can drive the triggering part and the alarm part to have a distance, so that the triggering part will not trigger the alarm part, and correspondingly, no alarm signal will be generated. In this way, when the door lock assembly is damaged and the door body opens the installation opening, the triggering part can trigger the alarm part to generate an alarm signal, effectively reminding the user that there is a risk of damage to the server in the box body, making the server protection device of this application have a better protection effect on the server.
[0034] In order to enable those skilled in the art of this technical field to better understand the solution of this application, the following further details this application in conjunction with the drawings and specific embodiments.
[0035] See Figure 1 As shown, the embodiment of this application provides a server protection device, including a box body 100, a door body 200, a door lock assembly 300 and an alarm assembly 400. This server protection device can accommodate the server and play a role in protecting the server and preventing the server from being damaged.
[0036] Among them, the box body 100 is the basic component of the server protection device of this application. The box body 100 can provide an installation basis for at least some other components of the server protection device and serve the purpose of protecting at least some other components. The box body 100 can be prepared from metal materials, so that the box body 100 has better structural strength, thereby making the durability and reliability of the box body 100 better. In addition, the box body 100 can also adopt a structure of part metal and part polymer material. Specifically, the parts of the box body 100 that are vulnerable to external impact or are easily damaged can be made of metal materials, and the other parts of the box body 100 can be made of polymer materials, so that the box body 100 will not have too large a self-weight while having better structural strength.
[0037] The box body 100 has an installation cavity 110, and the installation cavity 110 is a cavity structure inside the box body 100. The box body 100 is also provided with an installation opening 120. The installation opening 120 is an opening opened on the surface of the box body 100, and the installation opening 120 communicates with the installation cavity 110. The installation cavity 110 of the box body 100 can be used to accommodate the server, and the server can be installed in the installation cavity 110 of the box body 100 through the installation opening 120 of the box body 100.
[0038] When the server is disposed in the installation cavity 110 of the box body 100, there is a gap between the outer wall of the server and the inner wall of the installation cavity 110, which enables the server to be more conveniently installed in the installation cavity 110. In addition, it should be understood that a large amount of heat is generated when the server is running. By providing a gap between the server and the inner wall of the installation cavity 110, a heat dissipation channel can be formed between the outer wall of the server and the inner wall of the installation cavity 110. The heat generated when the server is running can be dissipated through the heat dissipation channel, preventing the heat generated by the server from accumulating inside the server, thus achieving the purpose of protecting the server.
[0039] The installation cavity 110 of the box body 100 can be disposed at the side of the box body 100, so that the server can be more conveniently installed in the installation cavity 110 of the box body 100 through the installation opening 120. Correspondingly, heat dissipation holes 150 can be opened in other parts of the box body 100, so that the heat generated by the server can be dissipated to the outside of the box body 100 through the heat dissipation holes 150. Specifically, the heat dissipation holes 150 can be opened at the top, bottom and side walls of the box body 100, and the present application does not limit this. A dust-proof net can also be provided at the heat dissipation holes 150 to prevent external dust from entering the installation cavity 110 of the box body 100 to a certain extent.
[0040] The door body 200 is movably disposed at the installation opening 120 of the box body 100 to block at least part of the installation opening 120, so that the installation cavity 110 can be closed. In this way, the server can be enclosed in the installation cavity 110 of the box body 100 to achieve the purpose of protecting the server.
[0041] The door lock assembly 300 is disposed on the door body 200, and the door lock assembly 300 is configured to lock the door body 200 with the box body 100. Specifically, when the door body 200 closes the installation opening 120 of the box body 100, the door lock assembly 300 can relatively fix the door body 200 with the box body 100, so that the door body 200 can maintain the state of closing the installation opening 120. The door lock assembly 300 has a matching key 340, and the door lock assembly 300 can only be opened through the matching key 340, so that the door body 200 can move relative to the box body 100 to open the installation opening 120. This prevents the door body 200 from being easily opened, making the server more secure when disposed in the installation cavity 110 of the box body 100.
[0042] The door body 200 can be made of a metal material, so that the door body 200 has better structural strength, and thus the door body 200 can better close the installation opening 120 of the box body 100 to fully protect the server disposed in the installation cavity 110.
[0043] The alarm component 400 includes an alarm part 410 and a trigger part 420. Among them, the alarm part 410 is arranged on the box body 100, and the trigger part 420 is movably arranged on the box body 100. The trigger part 420 is configured to be driven to move towards the alarm part 410 or away from the alarm part 410. When the trigger part 420 moves towards the alarm part 410 and triggers the alarm part 410, the alarm part 410 can emit an alarm signal. When the trigger part 420 moves away from the alarm part 410, it can make the trigger part 420 away from the alarm part 410, so that the trigger part 420 does not trigger the alarm part 410 to generate an alarm signal.
[0044] Specifically, when the door body 200 is locked with the box body 100, the door body 200 closes the installation opening 120, and the door body 200 is in a preset position. When the door body 200 moves from the preset position in the direction away from the installation opening 120, the trigger part 420 can be driven to move towards the alarm part 410 until the trigger part 420 triggers the alarm part 410 to generate an alarm signal. When the door body 200 moves from the preset position in the direction towards the installation opening 120, the trigger part 420 can be driven to move away from the alarm part 410, so that there is a preset gap between the trigger part 420 and the alarm part 410, and in this way, the trigger part 420 does not trigger the alarm part 410 to generate an alarm signal. In addition, when there is a preset gap between the trigger part 420 and the alarm part 410, when the door body 200 moves in the direction away from the installation opening 120 again, the trigger part 420 can keep a preset gap with the alarm part 410 until the door body 200 opens the installation opening 120 of the box body 100, and the alarm part 410 does not generate an alarm signal.
[0045] Therefore, when the door lock assembly 300 is damaged and the door body 200 is directly pulled to move in the direction away from the installation opening 120 to open the installation opening 120, the trigger part 420 is driven to move towards the alarm part 410 until the trigger part 420 triggers the alarm part 410 to generate an alarm signal. In this way, the user can learn that the installation opening 120 of the box body 100 has been opened, and there is a risk that the server in the installation cavity 110 is damaged, achieving the purpose of fully protecting the server in the installation cavity 110.
[0046] When the user needs to normally open the installation opening 120 of the box body 100, the door body 200 can be first pushed towards the installation opening 120 to move, so that the door body 200 can drive the trigger part 420 to move to a preset gap from the alarm part 410, so that the trigger part 420 will not trigger the alarm part 410 to generate an alarm signal. Subsequently, the user can pull the door body 200 to move the door body 200 away from the installation opening 120 until the door body 200 opens the installation opening 120. During this process, the trigger part 420 will not trigger the alarm part 410 to generate an alarm signal, and the user can normally maintain the server. In this way, the structural strength requirement of the server protection device of the present application can be relatively low, so that the structure of the server protection device is relatively simpler and more compact, and the manufacturing cost is relatively lower.
[0047] In the server protection device proposed in the present application, the installation cavity 110 of the box body 100 can be used to accommodate the server. After the door body 200 moves to close the installation opening 120, the door lock assembly 300 can lock the door body 200 and the box body 100, so that the server is enclosed in the installation cavity 110 of the box body 100, so as to achieve the purpose of protecting the server. When the door body 200 moves directly in the direction away from the installation opening 120 from the preset position, the trigger part 420 will trigger the alarm part 410 to emit an alarm signal. When the door body 200 moves in the direction towards the installation opening 120 from the preset position, the door body 200 can drive the trigger part 420 to have a preset distance from the alarm part 410, so that the trigger part 420 will not trigger the alarm part 410, and correspondingly, no alarm signal will be generated. In this way, when the door lock assembly 300 is damaged and the door body 200 opens the installation opening 120, the trigger part 420 can trigger the alarm part 410 to generate an alarm signal, thus effectively reminding the user that there is a risk of damage to the server in the box body 100, making the server protection device of the present application have a better protection effect on the server.
[0048] In some embodiments, refer to Figure 4As shown in the figure, the door lock assembly 300 of the present application may be provided with a fixed seat 310, a lock core 320, and a hanging plate 330. Among them, the fixed seat 310 may be arranged on the door body 200 and located on the side of the door body 200 facing away from the installation opening 120 of the box body 100. The lock core 320 is passed through the fixed seat 310 and the door body 200, so that one end of the lock core 320 extends to the side of the door body 200 facing the installation opening 120. The hanging plate 330 is connected to the side of the lock core 320 extending to the side of the door body 200 facing the installation opening 120. When the key 340 adapted to the door lock assembly 300 is inserted into the lock core 320 and rotated, the lock core 320 can drive the hanging plate 330 to rotate. When the hanging plate 330 rotates clockwise, the hanging plate 330 can be misaligned with the baffle structure in the box body 100, so that the door body 200 can rotate freely relative to the box body 100. When the hanging plate 330 rotates counterclockwise, the hanging plate 330 can be opposite to the baffle structure of the box body 100, so that the hanging plate 330 and the baffle structure are mutually limited, so that the door body 200 cannot rotate relative to the box body 100, and the door body 200 and the box body 100 are locked.
[0049] In addition, the door lock assembly 300 of the present application may also adopt an electronic lock structure, such as a fingerprint lock, a vein lock, and a door lock structure with face recognition, so that the door body 200 and the box body 100 can be effectively locked. The present application does not limit the specific structure of the door lock assembly 300.
[0050] In some embodiments, referring to Figures 2 to 3 As shown in the figure, the door body 200 of the present application may be rotatably connected to the box body 100. Specifically, a fixing plate 130 is provided on the edge of the installation opening 120 of the box body 100, and a rotating shaft 140 is connected to the fixing plate 130. The rotating shaft 140 is arranged along the height direction of the box body 100. A connecting block 210 is connected to the door body 200. The connecting block 210 is located on the edge of the door body 200, and the connecting block 210 is sleeved on the rotating shaft 140. The connecting block 210 can rotate around the rotating shaft 140, so that the door body 200 can rotate around the rotating shaft 140, and finally the door body 200 can rotate relative to the box body 100. When the door body 200 rotates towards the installation opening 120, the installation opening 120 can be closed, and when the door body 200 rotates away from the installation opening 120, the installation opening 120 can be opened.
[0051] Of course, in other embodiments, a rotating shaft structure may also be provided on the door body 200, an opening for the rotating shaft structure to pass through may be provided on the edge of the box body 100, and the rotating shaft structure of the door body 200 may be rotatably arranged in the opening of the box body 100, so that the door body 200 can also rotate relative to the box body 100.
[0052] In some embodiments, referring to Figure 1 and Figure 4As shown, in order to enable the triggering part 420 to be driven to move towards the alarm part 410 to trigger the alarm part 410, the server protection device of the present application may further be provided with a driving component 500. The driving component 500 may be arranged in the box body 100. When the door body 200 rotates from a preset position in a direction away from the installation opening 120, the driving component 500 can drive the triggering part 420 to move towards the alarm part 410 to trigger the alarm part 410, so that the alarm part 410 can generate an alarm signal.
[0053] Specifically, when the door lock assembly 300 is damaged and the door body 200 is directly pulled to move in a direction away from the installation opening 120 to open the installation opening 120, the driving component 500 can drive the triggering part 420 to move towards the alarm part 410 until the triggering part 420 triggers the alarm part 410 to generate an alarm signal. In this way, the user can learn that the installation opening 120 of the box body 100 has been opened, and there is a risk that the server in the installation cavity 110 is damaged, which serves the purpose of fully protecting the server in the installation cavity 110.
[0054] In some embodiments, referring to Figure 4 As shown, in order to enable the driving component 500 to drive the triggering part 420 to move towards the alarm part 410, the driving component 500 may be provided with a first driving part 510 and a guiding part 520. Among them, the first driving part 510 is connected to the triggering part 420, and the first driving part 510 is configured to drive the triggering part 420 to move towards the alarm part 410, so that the triggering part 420 can move to trigger the alarm part 410 to generate an alarm signal.
[0055] The triggering part 420 is movably arranged on the guiding part 520, so that the triggering part 420 can move relative to the guiding part 520. The guiding part 520 is configured to guide the triggering part 420 in the directions towards and away from the alarm part 410. In this way, the guiding part 520 can limit the stroke of the triggering part 420, so that the triggering part 420 will not deflect when moving in the directions towards and away from the alarm part 410, and the triggering part 420 can keep moving in the direction towards or away from the alarm part 410. Thus, when the triggering part 420 moves towards the alarm part 410, it can accurately trigger the alarm part 410, and when the triggering part 420 moves away from the alarm part 410, it can accurately have a preset gap from the alarm part 410, preventing the triggering part 420 from accidentally triggering the alarm part 410, and finally making the stability and reliability of the server protection device of the present application better.
[0056] In some embodiments, referring to Figure 4As shown, in order for the guiding part 520 to play a role in guiding the triggering part 420, the guiding part 520 can be provided with a guiding groove 521. The guiding groove 521 extends along the direction in which the triggering part 420 faces the alarming part 410. It should be understood that since the direction in which the triggering part 420 faces the alarming part 410 and the direction in which the triggering part 420 faces away from the alarming part 410 are opposite to each other, correspondingly, the guiding groove 521 also extends along the direction in which the triggering part 420 faces away from the alarming part 410.
[0057] When the triggering part 420 is arranged in the guiding groove 521 of the guiding part 520, the inner wall of the guiding groove 521 can play a role in limiting the triggering part 420, so that the triggering part 420 can only move along the direction facing the alarming part 410 or away from the alarming part 410. The first driving part 510 can be an elastic structural member. One end of the first driving part 510 is connected to the guiding part 520, and the other end of the first driving part 510 can be connected to the triggering part 420. The end of the triggering part 420 facing away from the first driving part 510 can be opposite to the installation opening 120 of the box body 100. Correspondingly, when the door body 200 closes the installation opening 120, the end of the triggering part 420 facing away from the first driving part 510 can be opposite to the door body 200.
[0058] When the door body 200 is in a preset position, the door body 200 abuts against the triggering part 420, so that the triggering part 420 presses the first driving part 510, and the first driving part 510 has an elastic force. At this time, since the door body 200 remains in a locked state with the box body 100, the first driving part 510 can maintain its elastic force, and the position of the triggering part 420 remains unchanged. When the door body 200 moves in the direction away from the installation opening 120 of the box body 100, the door body 200 no longer abuts against the triggering part 420, so that the triggering part 420 no longer presses the first driving part 510. The elastic force of the first driving part 510 can drive the triggering part 420 to move towards the alarming part 410, so that the triggering part 420 can trigger the alarming part 410 to generate an alarm signal.
[0059] Thus, when the door body 200 rotates directly away from the installation opening 120 of the box body 100 from the preset position, the elastic force of the first driving part 510 can drive the triggering part 420 to move towards the alarming part 410 to trigger the alarming part 410.
[0060] In some embodiments, the notch of the guiding groove 521 of the guiding part 520 of the present application is located at the end of the guiding part 520, and one end of the first driving part 510 is connected to the bottom wall of the guiding groove 521. The alarm part 410 can be arranged on the outer wall of the guiding part 520. The alarm part 410 has an alarm position 411. The alarm position 411 of the alarm part 410 can penetrate through the outer wall of the guiding part 520 into the guiding groove 521. The triggering part 420 has a triggering position 422. The triggering position 422 is located on the side wall of the triggering part 420. When the triggering part 420 moves along the guiding groove 521, the triggering position 422 of the triggering part 420 contacts the alarm position 411 of the alarm part 410, so that the triggering part 420 can trigger the alarm part 410 to emit an alarm signal.
[0061] One end of the triggering part 420 can also be provided with an abutting platform 423. One end of the first driving part 510 abuts against the abutting platform 423, so that the first driving part 510 can be connected to the triggering part 420. The area of the side of the abutting platform 423 opposite to the first driving part 510 is larger than the area of the end of the first driving part 510. By providing the abutting platform 423, the first driving part 510 can be stably and reliably connected to the triggering part 420, avoiding deflection during the deformation of the first driving part 510.
[0062] In some embodiments, it should be understood that since the first driving part 510 is an elastic structural member, if the door body 200 no longer abuts against the triggering part 420, the first driving part 510 will drive the triggering part 420 to move towards the alarm part 4l0. Refer to Figures 4 to 5 As shown, in order that when the door body 200 drives the triggering part 420 to move to a preset distance from the alarm part 410, the first driving part 510 will not push the triggering part 420 towards the alarm part 410, the server protection device of the present application can also be provided with a limiting component 600.
[0063] The limiting component 600 is arranged on the box body 100. When the triggering part 420 moves away from the alarm part 410 to a preset distance between the triggering part 420 and the alarm part 410, the limiting component 600 limits the triggering part 420 in the direction towards the alarm part 410. In this way, the triggering part 420 cannot move towards the alarm part 410, so that the triggering part 420 and the alarm part 410 can maintain a preset distance, avoiding the triggering part 420 from accidentally triggering the alarm part 410.
[0064] Specifically, when the user needs to normally open the door body 200, the door body 200 can be first pushed to move from the preset position towards the installation opening 120. The door body 200 can push the trigger part 420 to move away from the alarm part 410 to a preset distance. At this time, the limiting component 600 can limit the trigger part 420, so that the trigger part 420 cannot continue to move and keeps a preset distance from the alarm part 410. Subsequently, the user can pull the door body 200 to rotate the door body 200 away from the installation opening 120 to open the installation opening 120 of the box body 100. Since the trigger part 420 keeps a distance from the alarm part 410, the trigger part 420 will not trigger the alarm part 410 to generate an alarm signal.
[0065] After the door body 200 closes the installation opening 120 of the box body 100 again, the limiting of the trigger part 420 by the limiting component 600 can be controlled to be released, and the elastic force of the first driving part 510 can drive the trigger part 420 towards the alarm part 410 until the trigger part 420 abuts against the door body 200.
[0066] In some embodiments, referring to Figure 5 As shown, in order to enable the limiting component 600 to limit the trigger part 420, the limiting component 600 can be set to include a limiting part 610 and a second driving part 620. The second limiting part 610 is arranged on the box body 100, and the second driving part 620 is connected to the limiting part 610.
[0067] When the door body 200 moves from the preset position towards the installation opening 120 of the box body 100, such that the door body 200 drives the trigger part 420 to move away from the alarm part 410 to a preset distance between the trigger part 420 and the alarm part 410, the second driving part 620 drives the limiting part 610 to move to abut against the trigger part 420, so that the trigger part 420 and the alarm part 410 keep a preset distance. Specifically, the limiting part 610 can limit the trigger part 420 in the direction of the trigger part 420 towards the alarm part 410, so that the trigger part 420 cannot move towards the alarm part 410.
[0068] In some embodiments, referring to Figure 5 As shown, the limiting component 600 of the present application can also be set to include a moving plate 630. The limiting part 610 can be a rod-shaped structural member. The limiting part 610 is movably penetrated through the outer wall of the box body 100, so that the limiting part 610 can move relative to the box body 100. One end of the limiting part 610 is connected to the moving plate 630, and the moving plate 630 is opposite to the outer wall of the box body 100. The other end of the limiting part 610 is opposite to the side wall of the trigger part 420. The second driving part 620 is an elastic structural member, and the second driving part 620 is located between the moving plate 630 and the outer wall of the box body 100.
[0069] In some embodiments, referring to Figure 5As shown, the limiting assembly 600 of the present application may also include a positioning plate 640, which can be disposed on the outer wall of the housing 100, with the second drive unit 620 located between the movable plate 630 and the positioning plate 640. The provision of the positioning plate 640 allows the second drive unit 620 to be more stably disposed and prevents the second drive unit 620 from rubbing against the side wall of the housing 100, thereby protecting the side wall of the housing 100. The positioning plate 640 is a circular structural member, which allows the positioning plate 640 to adapt to the structure of the end of the second drive unit 620, thereby improving the stability of the second drive unit 620.
[0070] In some embodiments, reference Figure 5 As shown, to enable the limiting portion 610 to better limit the position of the trigger portion 420, a limiting groove 421 can be defined on the sidewall of the trigger portion 420. A limiting bead 611 is provided on the end of the limiting portion 610 facing away from the movable plate 630. Specifically, the limiting bead 611 is located on the side of the limiting portion 610 facing the outer wall of the trigger portion 420. When a predetermined distance is established between the trigger portion 420 and the alarm portion 410, the second driving portion 620 drives the limiting portion 610 to move until the limiting bead 611 is embedded in the limiting groove 421. This allows the inner wall of the limiting groove 421 to abut against the limiting bead 611, causing the limiting bead 611 to be stuck in the limiting groove 421, thereby enabling the limiting portion 610 to limit the position of the trigger portion 420.
[0071] Specifically, when the distance between the trigger portion 420 and the alarm portion 410 is less than a predetermined distance, the retaining bead 611 contacts the sidewall of the trigger portion 420, and the second retaining portion 610 is compressed, exerting an elastic force. The retaining bead 611 is spherical and rotatably connected to the retaining portion 610. This allows the retaining bead 611 to roll relative to the trigger portion 420, regardless of whether the trigger portion 420 moves toward or away from the alarm portion 410. This reduces the resistance between the retaining bead 611 and the trigger portion 420, allowing the trigger portion 420 to move smoothly.
[0072] When the trigger part 420 moves to a preset distance from the alarm part 410, the elastic force of the second driving part 620 can drive the limiting part 610 to move toward the trigger part 420, so that the limiting bead 611 can enter the limiting groove 421, thereby making the limiting bead 611 press against the trigger part 420, and the trigger part 420 cannot continue to move, so as to maintain a preset distance from the alarm part 410.
[0073] It should be understood that since the limiting bead 611 is a spherical structure, the limiting groove 421 of the trigger portion 420 is also a spherical groove structure, so that the inner wall of the limiting groove 421 is a curved surface. Of course, the limiting bead 611 can also adopt a cubic structure, and the limiting groove 421 can also be a cubic structure groove.
[0074] In some embodiments, referenceFigure 2 As shown, in order to enable the door body 200 to still move towards the installation opening 120 of the box body 100 when in the preset position, the server protection device of the present application may further be provided with a sealing portion 700. The sealing portion 700 is arranged at the installation opening 120. When the door body 200 closes the installation opening 120, the sealing portion 700 is located between the door body 200 and the box body 100, and the sealing portion 700 can improve the sealing performance when the door body 200 closes the installation opening 120.
[0075] Specifically, the sealing portion 700 may be an annular structural member and is distributed along the circumference of the installation opening 120 at the edge of the box body 100. The sealing portion 700 is a deformable structural member, so that the sealing portion 700 can be tightly connected to the box body 100 to prevent a gap from appearing between the sealing portion 700 and the box body 100. When the door body 200 closes the installation opening 120, the sealing portion 700 is also tightly connected to the door body 200 to prevent a gap from appearing between the sealing portion and the door body 200. This can ensure the sealing performance when the door body 200 closes the installation opening 120 of the box body 100 and prevent foreign objects from entering the installation cavity 110 of the box body 100 and affecting the operation of the server.
[0076] Since the sealing portion 700 is a deformable structural member, when the door body 200 moves from the preset position towards the installation opening 120 of the box body 100, the door body 200 can squeeze the sealing portion 700, causing the sealing portion 700 to deform. In this way, the sealing portion 700 will not hinder the movement of the door body 200, enabling the door body 200 to drive the triggering portion 420 to move to a preset distance from the alarm portion 410.
[0077] Specifically, the sealing portion 700 is an elastic structural member and the sealing portion 700 is a hollow structure. When the door body 200 moves from the preset position towards the installation opening 120 of the box body 100 and squeezes the sealing portion 700, the sealing portion 700 can have an elastic force. When the door body 200 moves along the direction away from the installation opening 120 to the preset position, the sealing portion 700 can recover its deformation under the action of its own elastic force. In this way, when the door body 200 moves from the preset position towards the installation opening 120 of the box body 100 again, the door body 200 can squeeze the sealing portion 700 again.
[0078] In some embodiments, referring to Figure 6As shown in the figure, the server protection device of the present application may also be provided with a processing module 810 and a communication module 820. Among them, the processing module 810 is electrically connected to the alarm unit 410. When the trigger unit 420 triggers the alarm unit 410 to generate an alarm signal, the alarm signal can be transmitted to the processing module 810. The processing module 810 can process the alarm signal and convert it into alarm information. The processing module 810 is also electrically connected to the communication module 820. The processing module 810 can transmit the generated alarm information to the server 850 in the cloud through the communication module 820, and then the cloud server 850 can send the alarm information to the user's receiving device 860, such as devices like mobile phones and computers. In this way, the user can learn that the door body 200 has opened the installation opening 120 of the box body 100, and there is a risk that the server in the installation cavity 110 is damaged.
[0079] In some embodiments, the server protection device of the present application may also be provided with a solar panel 830 and a battery 840. Among them, the solar panel 830 is electrically connected to the battery 840. When the server protection device of the present application is set in an outdoor environment, the solar panel 830 can generate electricity through solar energy and store the electricity in the battery 840. The battery 840 is also electrically connected to the processing module 810, the communication module 820, and the alarm unit 410, so that the battery 840 can supply power to the processing module 810, the communication module 820, and the alarm unit 410, thereby reducing the energy consumption of the server protection device of the present application.
[0080] In addition, the processing module 810, the communication module 820, and the alarm unit 410 can also be connected to the mains power, so that the server protection device of the present application can operate stably.
[0081] The above has introduced in detail a server protection device provided by the present application. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present application, several improvements and modifications can be made to the present application, and these improvements and modifications also fall within the protection scope of the claims of the present application.
Claims
1. A server protection device, characterized in that, Comprising: A box body (100) having an installation cavity (110) and an installation opening (120), wherein the installation cavity (110) is used to accommodate a server; A door body (200) movably connected to the box body (100), and the door body (200) is configured to move to open or close the installation opening (120); A door lock assembly (300) provided on the door body (200), and the door lock assembly (300) is configured to lock the door body (200) and the box body (100). When the door body (200) and the box body (100) are locked, the door body (200) is located at a preset position; An alarm assembly (400) including an alarm part (410) and a trigger part (420), wherein the alarm part (410) is provided on the box body (100), and the trigger part (420) is movably provided on the box body (100); Wherein, when the door body (200) moves from the preset position in a direction away from the installation opening (120) to open the installation opening (120), the trigger part (420) is driven to move towards the alarm part (410) to trigger the alarm part (410), so that the alarm part (410) issues an alarm; When the door body (200) moves from the preset position in a direction towards the installation opening (120), the door body (200) drives the trigger part (420) to move away from the alarm part (410) to a preset distance from the alarm part (410).
2. The server protection device according to claim 1, wherein The server protection device further includes a driving assembly (500), and the driving assembly (500) is provided on the box body (100); When the door body (200) moves from the preset position in a direction away from the installation opening (120), the driving assembly (500) drives the trigger part (420) to move towards the alarm part (410) to trigger the alarm part (410).
3. The server protection device according to claim 2, wherein The driving assembly (500) includes a first driving part (510) and a guiding part (520). The first driving part (510) is connected to the trigger part (420), and the first driving part (510) is configured to drive the trigger part (420) to move towards the alarm part (410); The trigger part (420) is movably provided on the guiding part (520), and the guiding part (520) is configured to guide the trigger part (420) in the directions towards and away from the alarm part (410).
4. The server protection device according to claim 3, characterized in that, The guiding part (520) has a guiding groove (521), the trigger part (420) movably passes through the guiding groove (521), the first driving part (510) is an elastic structural member, one end of the first driving part (510) is connected to the inner wall of the guiding groove (521), the other end of the first driving part (510) is connected to the trigger part (420), and the end of the trigger part (420) away from the first driving part (510) faces the installation opening (120); When the door body (200) is in the preset position, the door body (200) abuts against the trigger portion (420), and the trigger portion (420) compresses the first driving portion (510), so that the first driving portion (510) has an elastic force.
5. The server protection device according to claim 1, wherein, The server protection device further comprises a limiting component (600), wherein the limiting component (600) is arranged on the box (100); When the trigger portion (420) moves away from the alarm portion (410) until a preset distance exists between the trigger portion (420) and the alarm portion (410), the limiting assembly (600) limits the trigger portion (420) in a direction from the trigger portion (420) toward the alarm portion (410).
6. The server protection device according to claim 5, wherein The limiting assembly (600) comprises a limiting portion (610) and a second driving portion (620), wherein the second driving portion (620) is disposed on the box body (100), and the second driving portion (620) is connected to the limiting portion (610); When the trigger portion (420) and the alarm portion (410) have a preset distance, the second driving portion (620) drives the limiting portion (610) to move to abut against the trigger portion (420), so that the trigger portion (420) and the alarm portion (410) maintain the preset distance.
7. The server protection device according to claim 6, wherein The limiting assembly (600) further includes a movable plate (630), the limiting portion (610) is movably arranged on the side wall of the box body (100), one end of the limiting portion (610) is connected to the movable plate (630), and the second driving portion (620) is an elastic structural member, and the second driving portion (620) is located between the movable plate (630) and the side wall of the box body (100).
8. The server protection device according to claim 7, characterized in that, A limiting groove (421) is provided on a side wall of the trigger portion (420), and a limiting bead (611) is provided at one end of the limiting portion (610) facing away from the movable plate (630). When a preset distance is provided between the trigger portion (420) and the alarm portion (410), the second driving portion (620) drives the limiting portion (610) to move until the limiting bead (611) is embedded in the limiting groove (421).
9. The server protection device according to any one of claims 1-8, characterized in that, The server protection device further comprises a sealing portion (700), the sealing portion (700) being arranged at the installation opening (120); when the door body (200) closes the installation opening (120), the sealing portion (700) is located between the door body (200) and the box body (100); the sealing portion (700) is a deformable structural member; When the door body (200) moves toward the installation opening (120), the sealing portion (700) is compressed by the door body (200) and deformed.
10. The server protection device according to any one of claims 1-8, characterized in that, The server protection device further comprises a processing module (810) and a communication module (820), wherein the processing module (810) is electrically connected to the alarm unit (410), and the communication module (820) is electrically connected to the processing module (810); The processing module (810) is configured to receive the alarm signal generated by the alarm unit (410) and send the alarm signal to the communication module (820), and the communication module (820) is configured to transmit the alarm signal to the receiving device of the user.
Citation Information
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