Computer interface protector

The design of the computer interface protection component solves the problems of easy loosening of the plug and easy damage of the interface, achieving a stable connection and sealed protection, and improving the practicality of the device.

CN223941311UActive Publication Date: 2026-02-24LIAONING PETROCCHEM VOCATIONAL & TECH COLLEGE
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Patent Information

Application Number
CN202520626892.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-06
Publication Date
2026-02-24
Estimated Expiration
2035-04-06

AI Technical Summary

Technical Problem

In the prior art, the plugs of computer interfaces are prone to loosening or falling off, and the interfaces are easily damaged, lacking effective limiting, fixing and protection measures.

Method used

A computer interface protection component was designed, including a protective sleeve, a limiting component, and a locking component. The protective sleeve is fitted over the outside of the plug, and the limiting plate and locking component limit the plug to prevent it from loosening and falling off. At the same time, the sealing component prevents dust from entering.

Benefits of technology

It achieves a stable connection of the plug, avoids damage to the interface, enhances the practicality and sealing of the interface, and prevents dust from affecting the connection effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of computer interfaces, and discloses a computer interface protector, which comprises a computer body and a plug, one end of the computer body is provided with a plurality of groups of interface bodies, the plug is inserted in the interface bodies, one end of the plug is connected with a connecting line, and the other end of the plug is connected with a power supply. The computer interface protection piece comprises a computer body, a plurality of groups of interface bodies are arranged on the computer body, a protection sleeve is installed at the position, close to the plurality of groups of interface bodies, of one end of the computer body, the protection sleeve is arranged on the outer side of a plug in a sleeving mode, and a limiting assembly used for limiting the plug is arranged at the end, away from the computer body, of the protection sleeve. By arranging the limiting plates, the plug can be limited, so that the plug can be inserted more stably, the problems of loosening, falling off and the like are not prone to occurring, meanwhile, the interface body can be protected by arranging the protection sleeve to be matched with the two limiting plates, and the interface body can be better prevented from being damaged due to direct impact.
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Description

Technical Field

[0001] This utility model relates to the field of computer interface technology, specifically to a computer interface protection component. Background Technology

[0002] A computer, also known as a PC, is a modern intelligent electronic device that can run according to a program and automatically and quickly process massive amounts of data. It consists of a hardware system and a software system and has the characteristics of storage and memory capabilities, logical judgment capabilities, and high-speed computing capabilities. It can work automatically according to people's intentions. An interface is the physical connection between a computer and external devices or different components for data exchange.

[0003] When connecting to other devices, the connection is usually made by inserting the plug connected to the cable into the interface. However, most plugs are now directly inserted into the interface, which makes it inconvenient to limit and fix the plug. This makes it easy for the plug to loosen or fall out, thus affecting its use. Moreover, most interfaces are directly exposed, so when the interface is impacted, it is easy to cause damage to the interface, which also affects its use and greatly reduces the practicality of the device. To solve these problems, we provide a computer interface protective device. Utility Model Content

[0004] The purpose of this utility model is to provide a computer interface protection component to solve the problems in the prior art of not being convenient to limit and fix the plug inserted into the interface and not being convenient to protect the interface.

[0005] This utility model provides the following technical solution: a computer interface protective component, including a computer body and a plug. One end of the computer body has a plurality of interface bodies. The plug is inserted into the interface bodies. One end of the plug is connected to a connecting wire. A protective sleeve is installed on one end of the computer body near the plurality of interface bodies. The protective sleeve is fitted over the outside of the plug. A limiting component for limiting the plug is provided at the end of the protective sleeve away from the computer body. Locking components for locking the limiting component are provided at both the upper and lower ends of the plug.

[0006] The above technical solution, by setting a protective cover, can protect the interface body and better prevent the interface body from being directly damaged by double-clicks.

[0007] As a preferred embodiment of the above technical solution, the limiting component includes two sets of limiting plates. Both sets of limiting plates are disposed at the end of the protective sleeve away from the computer body. T-slots are provided on both sides of the end of the protective sleeve away from the computer body. T-blocks are connected to both sides of the end of each set of limiting plates near the protective sleeve. Each set of T-blocks is slidably installed in the T-slot. A slot is provided at the end of each set of limiting plates that is close to each other. A connecting plate is connected to the end of each set of limiting plates that is far from each other. Limiting holes are provided through the surface of each set of connecting plates.

[0008] The above technical solution allows the plug to be contained within the protective sleeve, making the plug connection more secure and less prone to loosening or falling off.

[0009] As a preferred embodiment of the above technical solution, each set of locking components includes a mounting block, each set of mounting blocks is installed at one end of the protective sleeve near the connecting plate, each set of mounting blocks has a sliding groove at one end near the connecting plate, each set of sliding grooves has a spring installed on its inner side, each set of sliding grooves has a limit rod slidably installed at its opening, and the inner end of the limit rod is connected to the spring, each set of limit rods is inserted into a limit hole.

[0010] The above technical solution enables the limiting plate to move the connecting plate, and the connecting plate to move the limiting hole to correspond with the limiting rod. In this way, the limiting rod can be pushed into the limiting hole by the spring force to lock the connecting plate, thereby limiting the limiting plate and making the closing of the limiting plate more stable.

[0011] As a preferred embodiment of the above technical solution, each set of limiting plates is provided with a sealing component for closing the card slot.

[0012] The above technical solution enables the card slot to be closed and sealed.

[0013] As a preferred embodiment of the above technical solution, each set of sealing components includes a second sliding groove, each set of second sliding grooves is formed on the inner wall of the first slot, each set of second sliding grooves is equipped with a second spring, and a sealing plate is slidably installed at the opening of each set of second sliding grooves, with the inner end of the sealing plate connected to the second spring.

[0014] The above technical solution allows the sealing plate to slide within the spring through the elastic force of the second slide groove until the two sets of sealing plates are pushed together and abutted, thus closing and sealing the first slot. This better prevents dust from falling into the interface body and affecting the connection effect.

[0015] As a preferred embodiment of the above technical solution, one set of sealing plates has a slot two at one end away from the spring two, and the other set of sealing plates has a block connected to the end away from the spring two, and the block is inserted into the slot two.

[0016] The above technical solution enables the locking block to be inserted into the second slot when the two sets of sealing plates are pressed together, thereby increasing the sealing performance of the two sets of sealing plates and making the sealing effect better.

[0017] As a preferred embodiment of the above technical solution, each set of limiting plates has protrusions equidistantly connected to the end away from the protective sleeve.

[0018] The above technical solution increases the friction between the finger and the limiting plate when the sliding plate is pressed, thereby better driving the limiting plate to slide.

[0019] Compared with the prior art, the beneficial effects of this utility model are:

[0020] This invention, by incorporating a protective sleeve, a limiting component, and a locking component, allows for the limiting of the plug, resulting in a more secure plug connection that is less prone to loosening or falling off. The protective sleeve, in conjunction with the two limiting plates, effectively protects the interface body from direct impact damage. Furthermore, the sealing component allows the protective sleeve to be closed and sealed when the interface body is not in use, preventing dust from entering and affecting the connection. This significantly increases the practicality of the device. Attached Figure Description

[0021] Figure 1 A schematic diagram of the overall structure of a computer interface protection component;

[0022] Figure 2 A schematic diagram of the plug connection state of a computer interface protection device;

[0023] Figure 3 A schematic cross-sectional view of a computer interface protection component. Figure 1 ;

[0024] Figure 4 A schematic cross-sectional view of a computer interface protection component. Figure 2 .

[0025] In the diagram: 1. Computer body; 11. Interface body; 2. Plug; 21. Connecting cable; 3. Protective sleeve; 31. T-slot; 4. Limiting component; 41. Limiting plate; 42. T-block; 43. Slot 1; 44. Connecting plate; 45. Limiting hole; 46. Protrusion; 5. Locking component; 51. Mounting block; 52. Slide 1; 53. Spring 1; 54. Limiting rod; 6. Sealing component; 61. Slide 2; 62. Spring 2; 63. Sealing plate; 64. Block; 65. Slot 2. Detailed Implementation

[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0027] like Figures 1-4As shown, this utility model provides a technical solution: a computer interface protective component, including a computer body 1 and a plug 2. One end of the computer body 1 has several sets of interface bodies 11, and the plug 2 is inserted into the interface bodies 11. One end of the plug 2 is connected to a connecting wire 21. A protective sleeve 3 is installed near one end of the computer body 1 close to the several sets of interface bodies 11. The protective sleeve 3 is fitted over the plug 2. A limiting component 4 for limiting the position of the plug 2 is provided at the end of the protective sleeve 3 away from the computer body 1. The upper and lower ends of the plug 2... Each end of the protective sleeve 3 is equipped with a locking component 5 for locking the limiting component 4. The limiting component 4 includes two sets of limiting plates 41, both sets of limiting plates 41 being located at the end of the protective sleeve 3 away from the computer body 1. T-slots 31 are formed on both sides of the end of the protective sleeve 3 away from the computer body 1. T-blocks 42 are connected to both sides of the end of each limiting plate 41 closest to the protective sleeve 3. Each T-block 42 is slidably installed within the T-slot 31. A slot 43 is formed at the end of each set of limiting plates 41 closest to each other. A slot 43 is connected to the end of each set of limiting plates 41 furthest from each other. Each connecting plate 44 has a limiting hole 45 through its surface. This structure allows the plug 2 to be inserted into the protective sleeve 3 until it is aligned with the interface body 11. At this point, the two limiting plates 41 can slide, causing the limiting plates 41 to move the T-shaped block 42 within the T-shaped groove 31, closing the opening of the protective sleeve 3 and locking the connecting wire 21 into the slot 43. The locking component 5 then locks the two limiting plates 41, thus closing the protective sleeve 3 and limiting the plug 2. Inside the protective sleeve 3, the plug 2 is more securely inserted, making it less prone to loosening or falling off. Similarly, by setting the protective sleeve 3 in conjunction with the two sets of limiting plates 41, the interface body 11 can be protected, better preventing the interface body 11 from being directly damaged by impact, greatly increasing the practicality of the device. Each set of limiting plates 41 has protrusions 46 equidistantly connected to the end away from the protective sleeve 3, which increases the friction between the finger and the limiting plate 41 when pressing and sliding the limiting plate 41, thereby better driving the limiting plate 41 to slide.

[0028] As one implementation method in this embodiment, such as Figure 4As shown, each locking assembly 5 includes a mounting block 51. Each mounting block 51 is installed at one end of the protective sleeve 3 near the connecting plate 44. Each mounting block 51 near the connecting plate 44 has a groove 52. A spring 53 is installed inside each groove 52. A limit rod 54 is slidably installed at the opening of each groove 52, and the inner end of the limit rod 54 is connected to the spring 53. Each limit rod 54 is inserted into the limit hole 45. This structure allows the limit plate 41 to move the connecting plate 44, and the connecting plate 44 to move the limit hole 45 to correspond with the limit rod 54. In this way, the limit rod 54 can be pushed into the limit hole 45 by the spring force of the spring 53 to lock the connecting plate 44, thereby limiting the limit plate 41 and making the limit plate 41 more stable when closed.

[0029] As one implementation method in this embodiment, such as Figure 4 As shown, each set of limiting plates 41 is internally provided with a sealing component 6 for closing the slot 43. Each sealing component 6 includes a second sliding groove 61, which is formed on the inner wall of the slot 43. A second spring 62 is installed on the inner side of each second sliding groove 61. A sealing plate 63 is slidably installed at the opening of each second sliding groove 61, and the inner end of the sealing plate 63 is connected to the second spring 62. This structure allows the interface body 11 to be reset when the two sets of limiting plates 41 are not in use, closing the protective sleeve 3. At the same time, the two sets of sealing plates 63 are no longer obstructed, and the sealing plate 63 will be pushed by the spring force of the second sliding groove 61. 3. Slide within spring 2 62 until the two sets of sealing plates 63 are pushed to abut against each other, thus closing and sealing the slot 1 43. This better prevents dust from falling into the interface body 11 and affecting the connection effect. One set of sealing plates 63 has a slot 2 65 at the end away from spring 2 62, and the other set of sealing plates 63 has a block 64 connected at the end away from spring 2 62. The block 64 is inserted into the slot 2 65, so that when the two sets of sealing plates 63 are abut against each other, the block 64 can be driven to insert into the slot 2 65. This increases the sealing performance of the two sets of sealing plates 63 and makes the sealing effect better.

[0030] Working principle: When plug 2 needs to be inserted into interface body 11, simply press the limiting rod 54 in sequence, push the limiting rod 54 from the limiting hole 45 into the slide groove 52 and compress the spring 53, unlocking the connecting plate 44. At the same time, slide the limiting plate 41, which drives the T-block 42 to slide in the T-groove 31. Simultaneously, the limiting plate 41 will also drive the connecting plate 44 to move, thus opening the two sets of limiting plates 41. Then, plug 2 can be inserted into the protective sleeve 3 until it is aligned with interface body 11 and inserted. At this time, the two sets of limiting plates 41 can be reset, causing the limiting plate 41 to drive the T-block 42 to slide in the T-groove 31 again, closing the opening of the protective sleeve 3 and locking the connecting wire 21 in the slot 43. When the plug 2 is inserted into the slot 43, the sealing plate 63 will be pushed into the slide groove 61 to compress the spring 62 until the limiting plate 41 drives the connecting plate 44. The connecting plate 44 drives the limiting hole 45 to move to correspond with the limiting rod 54. In this way, the limiting rod 54 can be pushed into the limiting hole 45 by the spring force of the spring 53 to lock the connecting plate 44, thereby limiting the limiting plate 41. In this way, the two sets of limiting plates 41 can close the protective sleeve 3 and limit the plug 2 in the protective sleeve 3, making the plug 2 more securely inserted and less prone to loosening and falling off. Similarly, by setting the protective sleeve 3 and the two sets of limiting plates 41, the interface body 11 can be protected, and the interface body 11 can be better protected from direct impact damage.

[0031] When no plug 2 is inserted into the interface body 11, the above operation can drive the two sets of limiting plates 41 to reset, close the protective sleeve 3, and at the same time, the two sets of sealing plates 63 will be unobstructed. They will be pushed by the elastic force of the second slide groove 61 to slide within the second spring 62 until the two sets of sealing plates 63 are pushed to fit together. This can close and seal the first slot 43, thereby better preventing dust from falling into the interface body 11 and affecting the connection effect. In addition, when the two sets of sealing plates 63 are fitted together, the card block 64 can be inserted into the second slot 65, which can increase the sealing of the two sets of sealing plates 63 and make the sealing effect better.

[0032] The above embodiments are only used to illustrate the technical solution of this utility model, and are not intended to limit it.

Claims

1. A computer interface protection device, comprising a computer body (1) and a plug (2), wherein one end of the computer body (1) is provided with a plurality of interface bodies (11), the plug (2) is inserted into the interface bodies (11), and one end of the plug (2) is connected to a connecting wire (21), characterized in that: The computer body (1) is located near a number of interface bodies (11) and a protective sleeve (3) is installed on one end. The protective sleeve (3) is fitted on the outside of the plug (2). The end of the protective sleeve (3) away from the computer body (1) is provided with a limiting component (4) for limiting the plug (2). Both the upper and lower ends of the plug (2) are provided with locking components (5) for locking the limiting component (4).

2. The computer interface protection component according to claim 1, characterized in that: The limiting component (4) includes two sets of limiting plates (41). Both sets of limiting plates (41) are located at the end of the protective sleeve (3) away from the computer body (1). T-shaped grooves (31) are provided on both sides of the end of the protective sleeve (3) away from the computer body (1). T-shaped blocks (42) are connected to both sides of the end of each set of limiting plates (41) near the protective sleeve (3). Each set of T-shaped blocks (42) is slidably installed in the T-shaped groove (31). A slot (43) is provided at the end of the two sets of limiting plates (41) that are close to each other. A connecting plate (44) is connected to the end of the two sets of limiting plates (41) that are far from each other. Limiting holes (45) are provided through the surface of each set of connecting plates (44).

3. A computer interface protection component according to claim 1, characterized in that: Each set of locking components (5) includes a mounting block (51). Each set of mounting blocks (51) is installed on one end of the protective sleeve (3) near the connecting plate (44). Each set of mounting blocks (51) near the connecting plate (44) has a sliding groove (52). Each set of sliding grooves (52) has a spring (53) installed on the inner side. Each set of sliding grooves (52) has a limit rod (54) slidably installed at the opening. The inner end of the limit rod (54) is connected to the spring (53). Each set of limit rods (54) is inserted into the limit hole (45).

4. A computer interface protection component according to claim 2, characterized in that: Each of the limiting plates (41) is provided with a sealing component (6) for closing the card slot (43).

5. A computer interface protection component according to claim 4, characterized in that: Each of the sealing components (6) includes a second slide groove (61), each of the second slide grooves (61) is opened on the inner wall of the first slot (43), each of the second slide grooves (61) is equipped with a second spring (62) on the inner side, and each of the second slide grooves (61) is slidably installed with a sealing plate (63) at the opening, and the inner end of the sealing plate (63) is connected to the second spring (62).

6. A computer interface protection component according to claim 5, characterized in that: One set of sealing plates (63) has a slot (65) at one end away from the spring (62), and another set of sealing plates (63) has a block (64) connected at one end away from the spring (62), and the block (64) is inserted into the slot (65).

7. A computer interface protection component according to claim 2, characterized in that: Each set of limiting plates (41) has protrusions (46) equidistantly connected to the end away from the protective sleeve (3).