An anti-theft computer network data storage device convenient for maintenance

By designing cabinet doors and small doors with rotating structures, combining anti-theft design with hidden pins and false interfaces, condensation, cooling, dehumidification and shock treatment of ice crushing, as well as supporting and protecting the wire heads and sorting the lines, the problems of fault-free area protection and anti-theft during maintenance in the existing technology are solved, and the equipment is easy to maintain and clean inside.

CN115359813BActive Publication Date: 2025-05-27HANGZHOU WANZHAO TECH CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202211076983.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-05
Publication Date
2025-05-27
Estimated Expiration
2042-09-05

AI Technical Summary

Technical Problem

During maintenance, existing computer network data storage devices need to be opened for repair, resulting in the exposure of non-damage-free parts, which can easily cause secondary damage.

Method used

An anti-theft computer network data storage device is designed for easy maintenance. It adopts a rotating cabinet door and small door. The corresponding door is rotatably opened according to the fault condition to protect the fault-free area, and prevent theft through hidden pins and false interfaces. It uses condensation and cooling and oscillation to treat broken ice, lift the wire head and organize the lines.

Benefits of technology

It realizes the protection of fault-free areas during maintenance, preventing secondary damage, hiding the real interface to prevent theft, dehumidification through condensation, shaking and processing of broken ice, lifting and protecting the wire head and tidying the lines, keeping the interior of the equipment clean.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115359813B_ABST
    Figure CN115359813B_ABST
Patent Text Reader

Abstract

The present invention relates to an anti-theft computer network data storage device that is convenient for maintenance, including a housing assembly and a connection assembly. The housing assembly includes a housing body, a hinge, a cabinet door, a connecting shaft, and a small door. A hinge is installed at the front end of the housing body. One side of the hinge close to the central axis of the housing body is connected to the cabinet door, and a connecting shaft is installed at the front end of the cabinet door. The beneficial effects of the present invention are as follows: For this anti-theft computer network data storage device that is convenient for maintenance, by being able to rotate and open the corresponding door according to the fault situation, the fault-free area can be protected. The device can hide the real interfaces for anti-theft. The device can cool the inside of the device by means of condensation and also dehumidify the inside of the device. The device can process the broken ice by shaking. The device can lift and protect the wire heads and can also organize the wires to keep the inside of the device tidy.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of data storage, and particularly to an anti-theft computer network data storage device that is convenient for maintenance. Background Art

[0002] Data is a combination of numbers, letters, and symbols with a pre-agreed meaning, and the content that can be represented by data is very extensive. In a computer network, data communication refers to the process of data transmission between computers and between computers and terminals. The data of a computer network needs to be stored using a storage device. When there is too much data, a data cabinet in a cabinet is required, and multiple large mobile hard disks are installed inside to form a device capable of storing larger data.

[0003] When the existing computer network data storage device fails and needs to be maintained, all doors need to be opened for repair. This repair method will expose the undamaged parts to the outside of the device, resulting in secondary damage.

[0004] Therefore, it is necessary to design an anti-theft computer network data storage device that is convenient for maintenance in view of the above problems. Summary of the Invention

[0005] The purpose of the present invention is to provide an anti-theft computer network data storage device that is convenient for maintenance to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the present invention provides the following technical solution: an anti-theft computer network data storage device that is convenient for maintenance, including a housing assembly and a connection assembly. The housing assembly includes a housing body, a hinge, a cabinet door, a connecting shaft, and a small door. A hinge is installed at the front end of the housing body. One side of the hinge close to the central axis of the housing body is connected to the cabinet door, and a connecting shaft is installed at the front end of the cabinet door. A small door is installed on the side of the connecting shaft away from the central axis of the housing body. The connection assembly is located on the left and right sides of the housing assembly.

[0007] Further, the connection assembly includes a mounting frame, a hidden pin, and a real interface. Hidden pins are installed at the upper and lower ends of the mounting frame, and a real interface is installed inside the mounting frame on the side close to the central axis of the housing assembly.

[0008] Further, the connection assembly further includes a partition and a false interface. One end of the hidden pin close to the horizontal central axis of the mounting frame is externally connected to the partition, and a false interface is installed on the side of the partition away from the central axis of the housing assembly.

[0009] Further, a condensation assembly is installed at the lower end of the housing assembly, and a temperature reduction and dehumidification assembly is installed in the middle of the housing assembly. An oscillation assembly is connected to the upper end of the temperature reduction and dehumidification assembly.

[0010] Further, support plates are engaged with the left and right inner walls of the housing assembly, and a wire head is magnetically adsorbed and installed at the lower end of the support plate, and a wire support assembly is installed at the upper end of the support plate.

[0011] Further, the condensation assembly includes a condensing unit, a conveying pipeline and a flexible connection port. Conveying pipelines are connected to the left and right sides of the condensing unit, and a flexible connection port is connected to one side of the upper end of the conveying pipeline close to the central axis of the housing assembly.

[0012] Further, the temperature reduction and dehumidification assembly includes a copper housing, a rubber flexible connection layer, a condensing pipe, a first spring and a second spring. A rubber flexible connection layer is connected to the outside of the copper housing, a condensing pipe is installed inside the copper housing, a first spring is connected to the upper end of the copper housing, and a second spring is connected to the lower end of the copper housing.

[0013] Further, the oscillation assembly includes a motor, a belt and an incomplete wheel. A belt is connected to the front end of the motor, and incomplete wheels are connected to the left and right sides of the belt.

[0014] Further, the oscillation assembly further includes a support frame, a convex block and a connecting plate. Support frames are installed at the front and rear ends of the incomplete wheel, a convex block is arranged at the lower end of the incomplete wheel, and a connecting plate is arranged at the lower end of the convex block.

[0015] Further, the wire support assembly includes a third spring, a receiving plate and a lifting plate. The receiving plate is connected to one side of the third spring close to the central axis of the housing assembly, and the lifting plate is connected to the inside of the receiving plate.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: The device can rotate and open the corresponding door according to the fault situation, so as to protect the fault-free area. The device can hide the real interface for anti-theft. The device can cool the inside of the device by condensing and cooling, and at the same time can dehumidify the inside of the device. The device can process the broken ice by shaking. The device can lift and protect the wire head, and at the same time can also sort out the wires to keep the inside of the device clean.

[0017] 1. The cabinet door of the present invention forms a rotating structure with the outer housing through a hinge. The cabinet door can be opened through the rotating structure to expose all the components inside the device, which is convenient for the staff to repair larger faults. At the same time, the small door forms a rotating structure with the cabinet door through a connecting shaft. When dealing with smaller faults, the small door at the corresponding position can be opened to repair the corresponding position, thus avoiding secondary damage caused by the exposure of all structures.

[0018] 2. The interfaces of the present invention exposed outside are false interfaces. When someone tries to steal data, they will connect to the false interfaces, and the parts connected to the false interfaces are all junk files inside, thus avoiding the theft of computer network data by thieves. At the same time, the hidden pins are hidden and not easily discovered by people who are not familiar with the device. The hidden pins can only be attracted out by the corresponding magnets, so that the real interfaces can be exposed for use.

[0019] 3. The condensing unit of the present invention inputs the condensing liquid into the condensing pipe through the conveying pipeline and the flexible connection port, so that the condensing pipe cools the copper shell, and then the cold air can be dissipated through the copper shell to cool the inside of the device. At the same time, the surface of the copper shell has a relatively low temperature. When the humid air approaches the copper shell, the moisture in the air will condense and then flow down along the surface of the copper shell, keeping the air inside the device dry.

[0020] 4. The motor of the present invention drives the incomplete wheel through the belt, so that the incomplete wheel squeezes the convex block, and the connecting plate drives the copper shell to shake through the first spring. The rubber flexible connection layer divides the copper shell into multiple parts. The structure here is similar to a snake bone tube and can be bent at an angle. When the copper shell shakes, it will also bend, so that the ice fragments condensed on the surface of the copper shell due to the too low temperature can be shaken off, preventing the ice fragments from insulating the temperature and making it inconvenient for the device to work.

[0021] 5. The telescopic structure between the lifting plate and the receiving plate of the present invention can adjust the height of the lifting plate to lift the connection head, preventing the connection from being bent. At the same time, the third spring can push the receiving plate, making the lifting plate closer to the interface. The wire head can sort out the connecting wires, making the wires inside the device all attach to the left and right sides inside the device, making the inside of the device very tidy and facilitating the staff to find the corresponding connecting wires when repairing the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a front external structure schematic diagram of a theft-proof computer network data storage device that is easy to maintain according to the present invention;

[0023] Figure 2 is a front sectional structure schematic diagram of a theft-proof computer network data storage device that is easy to maintain according to the present invention;

[0024] Figure 3 is an enlarged sectional structure schematic diagram of the connection component of a theft-proof computer network data storage device that is easy to maintain according to the present invention;

[0025] Figure 4 is an enlarged sectional structure schematic diagram of the temperature reduction and dehumidification component of a theft-proof computer network data storage device that is easy to maintain according to the present invention;

[0026] Figure 5 The present invention is an easy-to-maintain anti-theft computer network data storage device Figure 2 The enlarged structural diagram at A in the middle;

[0027] Figure 6 The present invention is an easy-to-maintain anti-theft computer network data storage device Figure 2 Enlarged structural diagram at B in the middle.

[0028] In the figure: 1. shell assembly; 101. shell body; 102. hinge; 103. cabinet door; 104. connecting shaft; 105. small door; 2. connecting assembly; 201. installation frame; 202. hidden pin; 203. real interface; 204. partition; 205. false interface; 3. condensing assembly; 301. condensing unit; 302. conveying pipeline; 303. flexible connection port; 4. cooling and dehumidifying assembly; 401. copper shell; 402. rubber flexible connection layer; 403. condensing tube; 404. first spring; 405. second spring; 5. oscillating assembly; 501. motor; 502. belt; 503. incomplete wheel; 504. support frame; 505. bump; 506. connecting plate; 6. support plate; 7. cable management head; 8. cable support assembly; 801. third spring; 802. receiving plate; 803. lifting plate. DETAILED DESCRIPTION

[0029] like Figure 1 As shown, the present invention provides a technical solution: an anti-theft computer network data storage device that is easy to maintain, comprising a shell component 1 and a connection component 2, the shell component 1 comprising a shell body 101, a hinge 102, a cabinet door 103, a connecting shaft 104 and a small door 105, and the front end of the shell body 101 is equipped with a hinge 102, the side of the hinge 102 close to the central axis of the shell body 101 is connected to the cabinet door 103, and the front end of the cabinet door 103 is equipped with a connecting shaft 104, and the side of the connecting shaft 104 away from the central axis of the shell body 101 is equipped with a small door 105, and the connection component 2 is located on the left and right sides of the shell component 1;

[0030] The specific operation is as follows: the cabinet door 103 forms a rotating structure with the outer shell 101 through the hinge 102. The cabinet door 103 can be opened through the rotating structure to expose all the components inside the equipment, which is convenient for the staff to repair major faults. At the same time, the small door 105 forms a rotating structure with the cabinet door 103 through the connecting shaft 104. In case of minor faults, the small door 105 at the corresponding position can be opened to repair the corresponding position, thereby avoiding secondary damage caused by the exposure of all structures.

[0031] like Figure 3As shown in the figure, the connection component 2 includes a mounting frame 201, a hidden pin 202, and a real interface 203. Hidden pins 202 are installed at the upper and lower ends of the mounting frame 201. A real interface 203 is installed on one side of the interior of the mounting frame 201 close to the central axis of the housing component 1. The connection component 2 further includes a partition 204 and a false interface 205. A partition 204 is externally connected to one end of the hidden pin 202 close to the horizontal central axis of the mounting frame 201. A false interface 205 is installed on one side of the partition 204 away from the central axis of the housing component 1;

[0032] The interface exposed outside is the false interface 205. When someone steals data, they will connect to the false interface 205, and the parts connected to the false interface are all junk files inside, so as to avoid thieves stealing computer network data. At the same time, the hidden pin 202 is hidden and not easy for people who do not understand the device to discover. The hidden pin 202 can only be attracted out by the corresponding magnet, so that the real interface 203 can be exposed for use. The partition 204 can facilitate the installation of the false interface 205 and also block and hide the real interface 203.

[0033] As Figures 1-5 shown in the figure, a condensation component 3 is installed at the lower end of the housing component 1, and a temperature reduction and dehumidification component 4 is installed in the middle of the interior of the housing component 1. An oscillation component 5 is connected to the upper end of the temperature reduction and dehumidification component 4;

[0034] The condensation component 3 can generate low-temperature liquid and transport it to the temperature reduction and dehumidification component 4 for the temperature reduction and dehumidification component 4 to work. The oscillation component 5 can oscillate the temperature reduction and dehumidification component 4 to remove the broken ice on the temperature reduction and dehumidification component 4.

[0035] As Figure 2 and Figure 4 shown in the figure, the condensation component 3 includes a condensing unit 301, a conveying pipeline 302, and a flexible connection port 303. The conveying pipelines 302 are connected to the left and right sides of the condensing unit 301. A flexible connection port 303 is connected to one side of the upper end of the conveying pipeline 302 close to the central axis of the housing component 1. The temperature reduction and dehumidification component 4 includes a copper housing 401, a rubber flexible connection layer 402, a condensing pipe 403, a first spring 404, and a second spring 405. A rubber flexible connection layer 402 is connected to the outside of the copper housing 401. A condensing pipe 403 is installed inside the copper housing 401. A first spring 404 is connected to the upper end of the copper housing 401. A second spring 405 is connected to the lower end of the copper housing 401;

[0036] The condensing unit 301 inputs the condensed liquid into the condensing pipe 403 through the conveying pipe 302 and the flexible connection port 303, enabling the condensing pipe 403 to cool the copper housing 401. Thereby, cold air can be dissipated through the copper housing 401 to cool the interior of the equipment. At the same time, the surface of the copper housing 401 has a relatively low temperature. When humid air approaches the copper housing 401, the moisture inside the air will condense and then flow down along the surface of the copper housing 401, maintaining the dryness of the air inside the equipment. The copper housing 401 realizes the connection of each joint through the rubber flexible connection layer 402, enabling multiple copper housings 401 to be connected into a whole. The first spring 404 can connect the cooling and dehumidifying component 4 to the vibration component 5, and the second spring 405 can connect the cooling and dehumidifying component 4 to the outer housing 101.

[0037] As Figure 5 shown, the vibration component 5 includes a motor 501, a belt 502, and an incomplete wheel 503. The front end of the motor 501 is connected to the belt 502, and the left and right sides of the belt 502 are connected to the incomplete wheel 503. The vibration component 5 further includes a support frame 504, a convex block 505, and a connecting plate 506. The front and rear ends of the incomplete wheel 503 are provided with the support frame 504. A convex block 505 is provided at the lower end of the incomplete wheel 503, and a connecting plate 506 is provided at the lower end of the convex block 505;

[0038] The motor 501 drives the incomplete wheel 503 to rotate through the belt 502, thereby enabling the incomplete wheel 503 to squeeze the convex block 505, causing the connecting plate 506 to drive the copper housing 401 to shake through the first spring 404. The rubber flexible connection layer 402 divides the copper housing 401 into multiple parts. The structure here is similar to a snake bone tube and can be bent at an angle. When the copper housing 401 shakes, it will also bend, thereby being able to shake off the broken ice condensed on the surface of the copper housing 401 due to the too low temperature, preventing the broken ice from insulating the temperature and making it inconvenient for the equipment to work. The support frame 504 can support the incomplete wheel 503.

[0039] As Figure 6 shown, on the left and right inner walls of the outer shell assembly 1, there are engaged support plates 6. A wire management head 7 is magnetically installed at the lower end of the support plate 6, and a wire support component 8 is installed at the upper end of the support plate 6. The wire support component 8 includes a third spring 801, a receiving plate 802, and a lifting plate 803. The third spring 801 is connected to the receiving plate 802 on the side close to the central axis of the outer shell assembly 1, and the lifting plate 803 is connected inside the receiving plate 802;

[0040] The height of the lifting plate 803 can be adjusted through the telescopic structure between the lifting plate 803 and the receiving plate 802, so that the lifting plate 803 can lift the connection wire head to prevent the connection from being bent. At the same time, the third spring 801 can push the receiving plate 802, enabling the lifting plate 803 to be closer to the interface. The wire handling head 7 can organize the connecting wires, making the wires inside the device attach to the left and right sides inside the device, keeping the inside of the device very tidy and facilitating the staff to find the corresponding connecting wires when repairing the device.

[0041] Working principle: First, put the external hard drive on the support plate 6. The wire handling head 7 bundles and organizes all the connecting wires inside the device. The height of the lifting plate 803 can be adjusted through the telescopic structure between the lifting plate 803 and the receiving plate 802, so that the lifting plate 803 can lift the connection wire head. At the same time, the third spring 801 can push the receiving plate 802, enabling the lifting plate 803 to be closer to the interface. Then, close the device and turn on the condensing unit 301 to input the condensing liquid into the condensing pipe 403 through the conveying pipe 302 and the flexible connection port 303, so that the condensing pipe 403 cools the copper housing 401, and then the cold air can be dissipated through the copper housing 401 to cool the inside of the device. At the same time, the surface of the copper housing 401 has a relatively low temperature. When the humid air approaches the copper housing 401, the moisture inside the air will condense and then flow down along the surface of the copper housing 401. When the device works for a long time, partial ice fragments will be generated on the surface of the copper housing 401 due to excessive cold. At this time, turn on the motor 501 to drive the incomplete wheel 503 to rotate through the belt 502, so that the incomplete wheel 503 squeezes the convex block 505, and the connecting plate 506 drives the copper housing 401 to shake through the first spring 404. The rubber soft connection layer 402 divides the copper housing 401 into multiple parts. Here, the structure is similar to a snake bone tube and can be bent at an angle. When the copper housing 401 shakes, it will also bend, so that the ice fragments condensed on the surface of the copper housing 401 due to too low temperature can be shaken off. The exposed interface of this device is the false interface 205. When someone steals data, they will connect to the false interface 205, and the part connected to the false interface is full of junk files inside. When the staff needs to connect, they can attract the hidden pin 202 through a specific magnet, and then the hidden pin 202 can be taken out. Then, the partition 204 can be removed from the front, exposing the real interface 203, so that the staff can connect and process the data. When there is a major fault inside the device, the cabinet door 103 forms a rotating structure with the outer housing 101 through the hinge 102. Through the rotating structure, the cabinet door 103 can be opened to expose all the components inside the device. When the fault inside the device is minor, the small door 105 forms a rotating structure with the cabinet door 103 through the connecting shaft 104. For minor faults, the corresponding small door 105 can be opened to repair the corresponding position.

Claims

1. An anti-theft computer network data storage device that is convenient for maintenance, Characterized in that, It includes a housing assembly (1), a connection assembly (2), a temperature reduction and dehumidification assembly (4) and a vibration assembly (5). The housing assembly (1) includes a housing body (101), a hinge (102), a cabinet door (103), a connecting shaft (104) and a small door (105). A hinge (102) is installed at the front end of the housing body (101). One side of the hinge (102) close to the central axis of the housing body (101) is connected to a cabinet door (103). A connecting shaft (104) is installed at the front end of the cabinet door (103). A small door (105) is installed on the side of the connecting shaft (104) away from the central axis of the housing body (101). The connection assembly (2) is located on the left and right sides of the housing assembly (1). The temperature reduction and dehumidification assembly (4) includes a copper housing (401), a rubber soft connection layer (402), a condensing pipe (403), a first spring (404) and a second spring (405). A rubber soft connection layer (402) is connected to the outside of the copper housing (401). A condensing pipe (403) is installed inside the copper housing (401). A first spring (404) is connected to the upper end of the copper housing (401). A second spring (405) is connected to the lower end of the copper housing (401). The temperature reduction and dehumidification assembly (4) includes a copper housing (401), a rubber soft connection layer (402), a condensing pipe (403), a first spring (404) and a second spring (405). A rubber soft connection layer (402) is connected to the outside of the copper housing (401). A condensing pipe (403) is installed inside the copper housing (401). A first spring (404) is connected to the upper end of the copper housing (401). A second spring (405) is connected to the lower end of the copper housing (401). The vibration assembly (5) includes a motor (501), a belt (502) and an incomplete wheel (503). A belt (502) is connected to the front end of the motor (501). Incomplete wheels (503) are connected to the left and right sides of the belt (502). The vibration assembly (5) further includes a support frame (504), a convex block (505) and a connecting plate (506). Support frames (504) are installed at the front and rear ends of the incomplete wheel (503). A convex block (505) is arranged at the lower end of the incomplete wheel (503). A connecting plate (506) is arranged at the lower end of the convex block (505).

2. An anti-theft computer network data storage device that is convenient for maintenance according to claim 1, Characterized in that, The connection assembly (2) includes a mounting frame body (201), a hidden pin (202) and a real interface (203). Hidden pins (202) are installed at the upper and lower ends of the mounting frame body (201). A real interface (203) is installed inside the mounting frame body (201) on the side close to the central axis of the housing assembly (1).

3. An anti-theft computer network data storage device that is convenient for maintenance according to claim 2, Characterized in that, The connection component (2) further includes a partition board (204) and a dummy interface (205). One end of the hidden pin (202) close to the horizontal central axis of the mounting frame (201) is externally connected to the partition board (204), and the dummy interface (205) is installed on one side of the partition board (204) away from the central axis of the housing component (1).

4. An anti-theft computer network data storage device facilitating maintenance according to claim 1, characterized in that, a condensation component (3) is installed at the lower end of the housing component (1), and a temperature reduction and dehumidification component (4) is installed in the middle of the housing component (1). The upper end of the temperature reduction and dehumidification component (4) is connected to a vibration component (5).

5. An anti-theft computer network data storage device facilitating maintenance according to claim 1, characterized in that, support plates (6) are clamped on the left and right inner walls of the housing component (1), and wire heads (7) are magnetically adsorbed at the lower ends of the support plates (6). A wire support component (8) is installed at the upper ends of the support plates (6).

6. An anti-theft computer network data storage device facilitating maintenance according to claim 4, characterized in that, the condensation component (3) includes a condensing unit (301), a conveying pipeline (302) and a flexible connection port (303). The left and right sides of the condensing unit (301) are connected to the conveying pipeline (302), and the flexible connection port (303) is connected to one side of the upper end of the conveying pipeline (302) close to the central axis of the housing component (1).

7. An anti-theft computer network data storage device facilitating maintenance according to claim 5, characterized in that, the wire support component (8) includes a third spring (801), a receiving plate (802) and a lifting plate (803). The third spring (801) is connected to the receiving plate (802) on one side close to the central axis of the housing component (1), and the lifting plate (803) is connected inside the receiving plate (802).

Citation Information

Patent Citations

  • Whole-house customized intelligent cabinet

    CN113331602A

  • Computer data processing device based on FPGA

    CN211702612U

  • Multi-function storage box

    CN2223920Y