Mainboard temperature detection structure

By combining the screw and fixing block with the rubber block to enhance friction, the problem of unstable fixing and dust prevention of the motherboard temperature detection device is solved, achieving stable installation and dust prevention, and improving the reliability and ease of maintenance of the equipment.

CN223796940UActive Publication Date: 2026-01-13SHENZHEN DINGYU ELECTRIC CO LTD
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Patent Information

Application Number
CN202520500817.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-01-13
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

The existing motherboard temperature detection device's fixing mechanism suffers from poor stability due to spring fatigue, and is prone to loosening or falling off due to vibration, and lacks dustproof function.

Method used

The design employs a combination of a screw and a fixing block. Rotating the rotating column drives the screw to rotate, ensuring a tight fit between the fixing block and the inner wall of the chassis. Rubber blocks further enhance friction. A dustproof mechanism is also designed, using a combination of a locking block and a spring to allow the dustproof plate to slide open and close.

Benefits of technology

It improves the stability of the detector, prevents it from loosening or falling off, effectively prevents dust from entering, extends its service life, and makes maintenance easier.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mainboard temperature detection, and discloses a mainboard temperature detection structure, which comprises a detector body, a fixing mechanism is arranged at the upper end of the detector body, the fixing mechanism comprises a rotating column, screw rods are fixedly arranged on two sides of the rotating column, fixing blocks are in threaded connection with the outer parts of the two screw rods, and the fixing blocks are in threaded connection with the outer parts of the two screw rods. Two fixing frames are fixedly arranged at the upper end of the detector body, sliding blocks are fixedly arranged at the upper ends of the two fixing frames, a dustproof mechanism is arranged at the front end of the detector body and comprises a dustproof frame, and a connecting plate is slidably arranged at the upper end of the interior of the dustproof frame. According to the utility model, when the detector main body is mounted through the fixing mechanism, the operation is simple and convenient, complicated tools or excessive operation steps are not needed, the fixing stability is improved, the detector is prevented from loosening or falling off, and the detector can adapt to case inner walls with different sizes.
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Description

Technical Field

[0001] This utility model relates to the field of motherboard temperature detection technology, and in particular to a motherboard temperature detection structure. Background Technology

[0002] The motherboard, also called the mainboard, system board, or motherboard, is one of the most basic and important components of a computer. The motherboard is generally a rectangular circuit board on which the main circuitry of the computer is installed. It typically includes components such as a BIOS chip, I / O control chip, keyboard and front panel control switch interfaces, indicator light connectors, expansion slots, and DC power supply connectors for the motherboard and expansion cards. In practical applications, temperature sensing structures are often used to monitor the temperature of the motherboard.

[0003] Existing patent (publication number: CN221764684U) discloses that "This utility model relates to the field of computer motherboard temperature detection technology, specifically a temperature detection device for a computer motherboard, including a detector body. The surface of the detector body is provided with a fixing structure, which includes two fixing brackets. The surfaces of the two fixing brackets are fixedly connected to the detector body. The cross-section of the fixing bracket is "L"-shaped. A fixing plate is fixedly connected to the surface of the fixing bracket. A spring is sleeved on the arc surface of the fixing bracket. A fixing block is slidably connected to the surface of the fixing bracket. The two ends of the spring are fixedly connected to the fixing block and the fixing plate, respectively. Several anti-slip blocks are fixedly connected to the surface of the fixing block. The surface of the anti-slip blocks is provided with anti-slip protrusions. Two pull brackets are slidably connected inside each of the two fixing plates. The four pull brackets are grouped in pairs. This utility model solves the disadvantage that the temperature detector cannot be fixed inside the computer case."

[0004] In the process of developing this application, the inventors discovered the following problems with the prior art: The motherboard temperature detection device uses the spring to pop out, causing the fixing block to move in the opposite direction, thereby making the anti-slip block abut against the inner wall of the chassis, thus fixing the detector to the inner wall of the chassis. However, during long-term use, the spring is prone to fatigue and loss of elasticity, making it difficult for the fixing block to maintain a tight fit with the inner wall of the chassis, resulting in poor stability. Furthermore, the spring is easily affected by vibration, which may cause the detector to loosen or fall off.

[0005] Therefore, those skilled in the art have provided a motherboard temperature detection structure to solve the problems mentioned in the background art. Utility Model Content

[0006] The purpose of this invention is to address the shortcomings of existing technologies by proposing a motherboard temperature detection structure. The fixing mechanism can stably fix the detector body to the inner wall of the chassis, and the dustproof mechanism can effectively prevent impurities from entering the detector.

[0007] To achieve the above objectives, the present invention provides the following technical solution:

[0008] A motherboard temperature detection structure includes a detector body, a fixing mechanism is provided at the upper end of the detector body, the fixing mechanism includes a rotating column, screws are fixedly provided on both sides of the rotating column, and fixing blocks are threaded to the outside of the two screws. Two fixing frames are fixedly provided at the upper end of the detector body, and sliders are fixedly provided at the upper ends of the two fixing frames.

[0009] The detector body is provided with a dustproof mechanism at its front end. The dustproof mechanism includes a dustproof frame, a connecting plate that is slidably disposed at the upper end of the dustproof frame, a dustproof plate that is slidably disposed at the lower end of the connecting plate, a locking block that is slidably disposed on one side of the dustproof frame, and a locking groove that is provided on the side of the connecting plate near the locking block.

[0010] Furthermore, each of the two fixed blocks has a groove at its lower end, and the two sliders are respectively slidably disposed inside the two grooves.

[0011] Furthermore, rubber blocks are fixedly provided on opposite sides of the two fixed blocks, and anti-slip textures are fixedly provided on opposite sides of the two rubber blocks.

[0012] Furthermore, a spring is fixedly installed on the side of the card block away from the card slot, and the side of the spring away from the card slot is fixedly installed inside the dustproof frame near the card block.

[0013] Furthermore, an unlocking block is fixedly provided on the side of the card block away from the card slot, and the unlocking block is slidably disposed on one side of the dustproof frame.

[0014] Furthermore, the card block is externally snapped into the inside of the card slot, and the rear end of the dustproof frame is fixedly installed at the front end of the detector body.

[0015] Furthermore, the connecting plate is externally slidably disposed inside the dustproof frame, and the lower end of the rotating column is disposed on the upper end of the detector body.

[0016] This utility model has the following beneficial effects:

[0017] 1. The motherboard temperature detection structure proposed in this utility model, when fixing the detector, by rotating the rotating column, causes the fixing block to move in the opposite direction along the outside of the screw. The sliding groove at its lower end will slide outside the slider, and the slider plays a guiding role, so that the rubber block gradually abuts against the inner wall of the chassis. Finally, the detector body is firmly fixed to the inner wall of the chassis. The whole operation is simple and convenient, without complicated tools or too many operation steps. It not only improves the stability of the fixation and prevents the detector from loosening or falling off, but also can adapt to the inner wall of chassis of different sizes.

[0018] 2. The motherboard temperature detection structure proposed in this utility model allows for temperature monitoring of the motherboard by pulling the unlocking block during use. This releases the locking block from the slot, allowing the connecting plate and dustproof plate to slide downwards inside the dustproof frame. Once the plate reaches the set position, the temperature of the motherboard can be monitored through the detector body. After the detection is completed, the dustproof plate is pushed upwards, and the locking block re-embeds into the slot, thus fixing the connecting plate and effectively preventing dust from entering. This protects the internal components of the detector body from dust contamination and extends its service life. Attached Figure Description

[0019] Figure 1 This is an isometric schematic diagram of the entire utility model;

[0020] Figure 2 This is a cross-sectional isometric view of the present invention near the fixing mechanism;

[0021] Figure 3 This is a bottom-view orthographic section schematic diagram of the present invention near the fixing mechanism;

[0022] Figure 4 This is a partial side sectional isometric view of the dustproof mechanism of this utility model;

[0023] Figure 5 This is a cross-sectional axonometric view of the dustproof mechanism of this utility model;

[0024] Figure 6 This utility model Figure 5 Enlarged diagram of point A in the diagram.

[0025] Legend:

[0026] 1. Detector body; 2. Dustproof mechanism; 3. Fixing mechanism; 201. Dustproof frame; 202. Dustproof plate; 203. Unlocking block; 204. Spring; 205. Locking block; 206. Connecting plate; 207. Locking slot; 301. Fixing frame; 302. Rubber block; 303. Fixing block; 304. Rotating column; 305. Screw; 306. Slide groove; 307. Sliding block. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] Reference Figures 1-3 One embodiment provided by this utility model:

[0029] A motherboard temperature detection structure includes a detector body 1. A fixing mechanism 3 is provided at the upper end of the detector body 1. The fixing mechanism 3 includes a rotating column 304. Screws 305 are fixedly provided on both sides of the rotating column 304. Fixing blocks 303 are threadedly connected to the outside of the two screws 305. Two fixing brackets 301 are fixedly provided at the upper end of the detector body 1. Slider 307 is fixedly provided at the upper end of the two fixing brackets 301. Sliders 307 are fixedly provided at the lower end of the two fixing blocks 303. Sliders 307 are slidably disposed inside the two slides 306 respectively. Rubber blocks 302 are fixedly provided on opposite sides of the two fixing blocks 303. Anti-slip textures are fixedly provided on opposite sides of the two rubber blocks 302. The lower end of the rotating column 304 is provided at the upper end of the detector body 1.

[0030] Specifically, when it is necessary to fix the detector body 1 inside the chassis, the rotating column 304 is rotated, which drives the screws 305 on both sides to rotate synchronously. The rotation of the screws 305 will drive the fixing block 303 to move in the opposite direction along the axial direction of the screws 305. During the movement of the fixing block 303, the sliding groove 306 opened at the lower end of the fixing block 303 will slide outside the slider 307 fixed at the upper end of the fixing frame 301. The slider 307 plays a guiding role to ensure that the fixing block 303 moves smoothly until the rubber block 302 on the fixing block 303 is in close contact with the inner wall of the chassis. The anti-slip texture on the rubber block 302 further increases the friction, thereby firmly fixing the detector body 1 to the inner wall of the chassis.

[0031] By adjusting the rotating column 304, the spacing between the fixed blocks 303 can be changed, which can adapt to the inner wall of the chassis of different sizes and specifications, improving the versatility of the detector body 1 installation. The cooperation between the slider 307 and the slide groove 306 ensures that the fixed block 303 moves smoothly. The rubber block 302 and its anti-slip texture enhance the friction with the inner wall of the chassis, effectively preventing the detector from shaking or shifting.

[0032] Reference Figures 1-6The detector body 1 has a dustproof mechanism 2 at its front end. The dustproof mechanism 2 includes a dustproof frame 201. A connecting plate 206 is slidably disposed at the upper end of the dustproof frame 201. A dustproof plate 202 is slidably disposed at the lower end of the connecting plate 206. A locking block 205 is slidably disposed on one side of the dustproof frame 201. A slot 207 is opened on the side of the connecting plate 206 near the locking block 205. A spring 204 is fixedly disposed on the side of the locking block 205 away from the slot 207. The side of the spring 204 away from the slot 207 is fixedly disposed inside the dustproof frame 201 near the locking block 205. An unlocking block 203 is fixedly disposed on the side of the locking block 205 away from the slot 207. The unlocking block 203 is slidably disposed on one side of the dustproof frame 201. The locking block 205 is externally engaged inside the slot 207. The rear end of the dustproof frame 201 is fixedly disposed at the front end of the detector body 1. The connecting plate 206 is externally slidably disposed inside the dustproof frame 201.

[0033] Specifically, when the detector body 1 is needed to detect the temperature of the computer motherboard, pulling the unlocking block 203 will cause the locking block 205 to move synchronously. During this process, the locking block 205 will squeeze the spring 204 and cause the locking block 205 to disengage from the slot 207 on one side of the connecting plate 206. At this time, the connecting plate 206 is no longer restricted by the locking block 205. Under the action of gravity, the connecting plate 206 will drive the dustproof plate 202 to slide downward inside the dustproof frame 201. When the connecting plate 206 slides down to the preset position, it stops sliding. At this time, the detector body 1 can normally monitor the temperature of the motherboard. The detector body 1 is a mature and publicly available technology. Therefore, its specific structure and working principle will not be described in detail in this article.

[0034] After the motherboard temperature recording is completed, the dustproof plate 202 is pushed upward. The dustproof plate 202 causes the connecting plate 206 to slide upward inside the dustproof frame 201. When the connecting plate 206 slides to a certain position, one side of it will press the locking block 205. The locking block 205 presses the spring 204 to retract. When the locking block 205 moves to the position aligned with the slot 207, the spring 204 rebounds and pushes the locking block 205 into the slot 207, thereby fixing the connecting plate 206 and closing the dustproof plate 202 at the front end of the detector body 1. The dustproof plate 202 can effectively block dust from entering the detector body 1, avoid these impurities from affecting the detection elements, thereby extending the service life of the detector and ensuring the accuracy and reliability of the detection data.

[0035] When it is necessary to replace the dust cover 202, the dust cover 202 can be removed from the bottom of the connecting plate 206 by pushing the dust cover 202 so that it slides under the connecting plate 206, thus completing the replacement of the dust cover 202. This reduces maintenance costs and difficulty, improves the maintainability of the equipment, and makes it convenient for users to use and maintain the equipment in daily life.

[0036] Working principle: When the detector body 1 is fixed inside the chassis, the rotating column 304 is rotated, which drives the screws 305 on both sides to rotate. Since the screws 305 are threadedly connected to the fixing block 303, when the screws 305 rotate, they will drive the fixing block 303 to move in the opposite direction along the outside of the screws 305. The movement of the fixing block 303 will synchronously drive the rubber block 302 to move. When the fixing block 303 moves in the opposite direction, the sliding groove 306 at its lower end will slide outside the slider 307 at the upper end of the fixing frame 301. The slider 307 will play a guiding role, so that the fixing block 303 gradually comes into contact with the inner wall of the chassis. The anti-slip texture on the rubber block 302 can increase the friction with the inner wall of the chassis, thereby fixing the detector body 1 to the inner wall of the chassis.

[0037] Secondly, during use, by pulling the unlocking block 203, the locking block 205 moves synchronously, squeezing the spring 204 connected to it and disengaging it from the slot 207. At this time, the connecting plate 206 will cause the dustproof plate 202 to slide downward inside the dustproof frame 201. When the connecting plate 206 slides down to the set position inside the dustproof frame 201, it will stop sliding down with the dustproof plate 202. At this time, the temperature of the main board can be monitored by the detector body 1. After recording the temperature of the main board, the dustproof plate 202 is pushed upward, causing the connecting plate 206 to slide upward inside the dustproof frame 201. When the connecting plate 206 slides up to a certain position, one side of it will press against the locking block 205, causing the locking block 205 to compress the spring 204, which in turn causes the spring 204 to contract. Subsequently, the spring 204 rebounds, pushing the locking block 205 to reset and re-embed it into the locking slot 207, thereby locking the connecting plate 206. When the lower end of the connecting plate 206 touches the lower end of the dustproof frame 201, the dustproof plate 202 can be removed from the lower end of the connecting plate 206 by pushing it to slide it on the lower end of the connecting plate 206, thus facilitating the replacement and maintenance of the dustproof plate 202.

[0038] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A motherboard temperature detection structure, comprising a detector body (1), characterized in that: The detector body (1) is provided with a fixing mechanism (3) at its upper end. The fixing mechanism (3) includes a rotating column (304). Both sides of the rotating column (304) are fixedly provided with screws (305). The two screws (305) are threadedly connected to a fixing block (303). The detector body (1) is fixedly provided with two fixing frames (301) at its upper end. Both fixing frames (301) are fixedly provided with a slider (307) at their upper ends. The detector body (1) is provided with a dustproof mechanism (2) at the front end. The dustproof mechanism (2) includes a dustproof frame (201). A connecting plate (206) is slidably arranged at the upper end of the dustproof frame (201). A dustproof plate (202) is slidably arranged at the lower end of the connecting plate (206). A locking block (205) is slidably arranged on one side of the dustproof frame (201). A locking groove (207) is opened on the side of the connecting plate (206) near the locking block (205).

2. The motherboard temperature detection structure according to claim 1, characterized in that: Both of the fixed blocks (303) have a groove (306) at their lower ends, and the two sliders (307) are respectively slidably disposed inside the two grooves (306).

3. The motherboard temperature detection structure according to claim 1, characterized in that: Rubber blocks (302) are fixedly provided on opposite sides of the two fixed blocks (303), and anti-slip textures are fixedly provided on opposite sides of the two rubber blocks (302).

4. The motherboard temperature detection structure according to claim 1, characterized in that: A spring (204) is fixedly installed on the side of the card block (205) away from the card slot (207), and the side of the spring (204) away from the card slot (207) is fixedly installed inside the dustproof frame (201) near the card block (205).

5. The motherboard temperature detection structure according to claim 1, characterized in that: An unlocking block (203) is fixedly provided on the side of the card block (205) away from the card slot (207), and the unlocking block (203) is slidably disposed on the side of the dustproof frame (201).

6. The motherboard temperature detection structure according to claim 1, characterized in that: The card block (205) is externally snapped into the inside of the card slot (207), and the rear end of the dustproof frame (201) is fixedly installed at the front end of the detector body (1).

7. The motherboard temperature detection structure according to claim 1, characterized in that: The connecting plate (206) is externally slidably disposed inside the dustproof frame (201), and the lower end of the rotating column (304) is disposed on the upper end of the detector body (1).

Citation Information

Patent Citations

  • Temperature detection device for computer mainboard

    CN221764684U