Detachable screen structure of water-cooled head

CN224745457UActive Publication Date: 2026-09-11GUANGDONG LINGSHENG COMPUTER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521980086.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2026-09-11
Estimated Expiration
2035-09-15

AI Technical Summary

Technical Problem

本实用新型提供了一种水冷头的可拆卸屏幕结构,旨在解决屏幕无法变换与冷头的安装姿态,显示效果较单一问题

Benefits of technology

使用时,通过将冷头安装于电脑主板上并连接电脑主板上的电源插座,此时冷头上的第一连接部上的接电弹针组向外暴露,通过将液晶屏通过第二连接部安装于第一连接部上,此时第二连接部上的接电部与其中一组接电弹针组接触得电,还可以将在液晶屏上旋转一定角度,使第二连接部上的接电部与另一组接电弹针组接触得电,实现液晶屏可多角度的安装姿态,从而实现更多样的显示效果。

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Abstract

This utility model provides a detachable screen structure for a water cooling head, including an LCD screen detachably connected to the cooling head. The cooling head has a first connecting part detachably connected to the LCD screen. The first connecting part has a first power plate, which has an input part and an output part. The output part includes several sets of power-connecting spring pins, with a point on the first connecting part as a surrounding point. The LCD screen has a second connecting part corresponding to the first connecting part. The second connecting part has a power-connecting part for connecting and cooperating with the power-connecting spring pins, so as to achieve a multi-angle installation effect for the LCD screen and thus achieve more diverse display effects.
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Description

Technical Field

[0001] This utility model belongs to the field of screens, specifically relating to a detachable screen structure with a water cooling head. Background Technology

[0002] As we all know, high temperatures are the enemy of integrated circuits. High temperatures can not only lead to system instability and shorten lifespan, but may even burn out some components. The heat causing these high temperatures doesn't come from outside the computer, but from inside. The role of a heatsink is to absorb this heat and ensure the normal temperature of computer components. There are many types of heatsinks; CPUs, graphics cards, motherboard chipsets, hard drives, cases, power supplies, and even optical drives and memory all require heatsinks. These different heatsinks cannot be used interchangeably, and the most commonly encountered is the CPU heatsink. CPU water cooling uses liquid to forcefully circulate under the drive of a pump to remove heat from the heatsink. Compared to air cooling, it has advantages such as quiet operation, stable cooling, and less dependence on the environment. Existing water cooling systems typically have the water block attached to the CPU, using a screen mounted on the water block to achieve lighting effects or parameter displays. However, existing screens are usually fixed to the water block, and the screen's mounting position relative to the water block cannot be changed, resulting in limited display options. Utility Model Content

[0003] (1) Technical problems to be solved This invention provides a detachable screen structure for a water cooling head, aiming to solve the problem that the screen cannot be changed in its installation position relative to the cooling head, resulting in a limited display effect.

[0004] (2) Technical solution This utility model provides a detachable screen structure for a water cooling head, including an LCD screen detachably connected to the cooling head. The cooling head has a first connecting part detachably connected to the LCD screen. The first connecting part has a first power plate, which has an input part and an output part. The output part includes several sets of power-connecting springs, with a point on the first connecting part as a surrounding point, and each set of power-connecting springs is distributed around the surrounding point. The LCD screen has a second connecting part corresponding to the first connecting part, and the second connecting part has a power-connecting part for connecting and engaging with the power-connecting springs.

[0005] Preferably, the first connecting part includes a housing and an inner support member. One side of the inner support member is fixedly installed with the cold head. An installation cavity is formed inside the inner support member. The first contact plate is disposed in the installation cavity. One side of the housing is provided with a first connecting surface corresponding to the second connecting part.

[0006] Preferably, the first connecting surface is located on the side of the housing away from the mounting cavity, and the first connecting surface is a groove-shaped structure recessed into the mounting cavity, with each of the electrical contact spring groups protruding from the first connecting surface.

[0007] Preferably, one side of the second connecting portion is provided with a second connecting surface that corresponds to and connects with the first connecting surface. The shape of the second connecting surface corresponds to the shape of the first connecting surface, and the second connecting surface is a raised structure.

[0008] Preferably, the inner support member includes a support portion and a mounting portion. One side of the support portion is fixedly installed with the cold head, and the other side is fixed to the inner wall of the outer shell. The mounting cavity is formed between the support portion and the mounting portion.

[0009] Preferably, the first electrical contact plate is mounted on the mounting part, and the mounting part is provided with a plurality of guide post groups, and each of the electrical contact spring groups corresponds to each of the guide post groups.

[0010] Preferably, the mounting portion is provided with a plurality of first magnetic elements for magnetic connection with the second connecting portion, and each of the first magnetic elements is distributed around the surrounding point.

[0011] Preferably, a fixing cavity is formed in the second connecting part, the power receiving part is disposed in the fixing cavity, a mounting port for mounting the LCD screen is provided on one side of the fixing cavity, and a second magnetic member is provided in the fixing cavity that is magnetically connected to the first connecting part.

[0012] Preferably, the power receiving part includes a second power receiving plate and a group of power receiving contacts disposed on the second power receiving plate. The second power receiving plate is electrically connected to the liquid crystal screen, and the group of power receiving contacts is used to connect and cooperate with one of the groups of power receiving springs.

[0013] Preferably, the length of the mounting port is equal to the length of the LCD screen, and the length of the mounting port is longer than the length of the fixing cavity.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: In use, the water block is installed on the computer motherboard and connected to the power socket on the motherboard. At this time, the power contact pins on the first connection part of the water block are exposed. The LCD screen is installed on the first connection part through the second connection part. At this time, the power contact part on the second connection part contacts one of the power contact pins and is energized. The LCD screen can also be rotated at a certain angle so that the power contact part on the second connection part contacts another set of power contact pins and is energized. This allows the LCD screen to be installed at multiple angles, thereby achieving more diverse display effects. Attached Figure Description

[0015] Figure 1This is a schematic diagram of the structure of this utility model.

[0016] Figure 2 This is one of the exploded views of this utility model.

[0017] Figure 3 This is the second exploded view of this utility model.

[0018] Figure 4 This is a cross-sectional view of the present invention.

[0019] Figure 5 This is one of the exploded views of the second connecting part of this utility model.

[0020] Figure 6 This is the second exploded view of the second connecting part of this utility model.

[0021] Figure label: 1. Cold head, 11. LCD screen, 2. First connecting part, 21. First power board, 211. Power contact spring group, 22. Outer shell, 22. First connecting surface, 22. Inner support member, 23. Support part, 231. Mounting part, 232. Guide post group, 233. First magnetic suction member, 234. Mounting cavity, 24. Second connecting part, 3. Power receiving part, 31. Second power board, 311. Power contact group, 312. Second connecting surface, 32. Fixing cavity, 33. Mounting port, 331. Second magnetic suction member, 332. Main control board, 4. Detailed Implementation

[0022] 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.

[0023] like Figures 1-6 As shown, this utility model provides a detachable screen structure for a water cooling head, including a water cooling head 1 and a liquid crystal display (LCD) screen 11 detachably connected to the water cooling head 1. The water cooling head 1 is provided with a first connecting part 2 detachably connected to the LCD screen 11. The first connecting part 2 is provided with a first power contact plate 21. The first power contact plate 21 is provided with an input part and an output part. The output part includes several sets of power contact spring pins 211, which are distributed around a point on the first connecting part 2 as a surrounding point. The LCD screen 11 is provided with a second connecting part 3 corresponding to the first connecting part 2. The second connecting part 3 is provided with a power contact part 31 for power connection with the power contact spring pins 211.

[0024] Furthermore, such as Figures 1-4As shown, the first connecting part 2 includes a housing 22 and an inner support member 23. One side of the inner support member 23 is fixedly installed with the cold head 1, and a mounting cavity 24 is formed inside the inner support member 23. The first contact plate 21 is disposed in the mounting cavity 24. One side of the housing 22 is provided with a first connecting surface 221 corresponding to the second connecting part 3. The first connecting surface 221 is located on the side of the housing 22 away from the mounting cavity 24. The first connecting surface 221 is a groove-shaped structure recessed into the mounting cavity 24, and each of the contact spring pin assemblies 211 protrudes from the first connecting surface 221. One side of the second connecting part 3 is provided with a second connecting surface 32 corresponding to and connected to the first connecting surface 221. The shape of the second connecting surface 32 corresponds to the shape of the first connecting surface 221, and the second connecting surface 32 is a protruding structure.

[0025] Specifically, such as Figures 1-4 As shown, the first connecting part 2 is assembled onto the cold head 1. At this time, the first connecting surface 221 is located on the side of the first connecting part 2 away from the cold head 1. More specifically, the first connecting surface 221 is located on the outer shell 22 of the first connecting part 2. The first electrical contact plate 21 is disposed in the mounting cavity 24 within the inner support member 23. Each electrical contact spring pin assembly 211 disposed on the first electrical contact plate 21 extends outward through the first connecting surface 221 on the outer shell 22 and is exposed. When installing the LCD screen 11, the second connecting surface 32 on the second connecting part 3 is aligned with the position of the first connecting surface 221, and the mounting angle of the LCD screen 11 is adjusted by the second connecting surface 32. The energizing part 31 on the connecting part 3 corresponds to one of the sets of energizing spring pins 211 on the first connecting surface 221, connecting the first connecting part 2 and the second connecting part 3. At this time, the second connecting surface 32 extends into the groove structure and fits against the first connecting surface 221, and the energizing spring pins 211 and the energizing part 31 make contact and conduct. It is worth noting that each set of energizing spring pins 211 is connected in parallel. The second connecting part 3 is provided with an energizing part 31 for energizing with one of the sets of energizing spring pins 211. Each set of energizing spring pins 211 can also be connected in series, and the energizing part 31 simultaneously energizes with each set of energizing spring pins 211.

[0026] It is worth noting that, such as Figures 1-6As shown, the shapes of the first connecting surface 221 and the second connecting surface 32 correspond, and can be set as circles, polygons, etc. In some embodiments, the first connecting surface 221 and the second connecting surface 32 are quadrilaterals or rounded quadrilaterals. Each set of contact springs 211 located in the first connecting part 2 is distributed around a point on the first connecting surface 221. In some embodiments, this point can be the center point of the first connecting surface 221. In order to ensure the installation angle of the LCD screen 11, the distance between the contact spring group 312 of the contact part 31 and the center point of the second connecting surface 32 is equal to the distance between the contact spring group 211 and the center point of the first connecting part 2. The distance between the center points of surface 221, the LCD screen 11 is mounted on the first connecting part 2 via the second connecting part 3 and the contact contact group 312 of the contact part 31 is in contact with one of the contact spring groups 211. When the mounting angle of the LCD screen 11 is rotated and adjusted, the position of the contact part 31 relative to the first connecting surface 221 changes, so that the contact part 31 corresponds to another group of contact spring groups 211 on the first connecting surface 221. It is worth noting that the rotation angle of the LCD screen 11 is equal to the angle between the center point on the first connecting surface 221 and the line connecting one group of contact spring groups 211 and the other group of contact spring groups 211.

[0027] Furthermore, such as Figures 1-6 As shown, the inner support member 23 includes a support portion 231 and a mounting portion 232. One side of the support portion 231 is fixedly mounted to the cold head 1, and the other side is fixed to the inner wall of the outer shell 22. The mounting cavity 24 is formed between the support portion 231 and the mounting portion 232. The first contact plate 21 is mounted on the mounting portion 232. The mounting portion 232 is provided with a plurality of guide post groups 233, and each contact spring pin group 211 corresponds to each of the guide post groups 233. A plurality of first magnetic attractors 234 are distributed on the mounting portion 232 for magnetic connection with the second connecting portion 3. Each of the first magnetic attractors 234 is distributed around the surrounding point.

[0028] Specifically, such as Figures 1-6As shown, the first connecting part 2 and the second connecting part 3 are detachably connected. A detachable connection structure, such as a snap-fit, can be provided on the first connecting surface 221 and the second connecting surface 32 respectively. In some embodiments, this connection structure can be a first magnetic member 234 and a second magnetic member 332, respectively disposed on the side of the mounting part 232 near the first connecting surface 221 and the side of the fixing cavity 33 near the second connecting surface 32. The number of first magnetic members 234 and second magnetic members 332 is at least four. The first connecting surface 221 and the second connecting surface 32 are quadrilateral or rounded quadrilateral portions. In this embodiment, the surrounding point is the center point of the first connecting surface 221. The first magnetic suction member 234 and the second magnetic suction member 332 are respectively disposed at the midpoints or corners of the four sides of the first connecting surface 221 and the second connecting surface 32, so that when the LCD screen 11 is rotated and adjusted around the center point of the second connecting surface 32, the first magnetic suction member 234 and the second magnetic suction member 332 can maintain magnetic attraction when each contact spring group 211 and contact contact group 312 are connected. By setting guide posts to strengthen the structural strength of the contact spring group 211, the contact spring group 211 and the contact contact group 312 are kept straight when connected, so as to achieve better contact and conduction effect.

[0029] Furthermore, such as Figures 1-6 As shown, a fixing cavity 33 is formed within the second connecting portion 3. The power receiving portion 31 is disposed within the fixing cavity 33. A mounting port 331 for mounting the LCD screen 11 is provided on one side of the fixing cavity 33. A second magnetic member 332, magnetically connected to the first connecting portion 2, is provided within the fixing cavity 33. The power receiving portion 31 includes a second power receiving plate 311 and a group of power receiving contacts 312 disposed on the second power receiving plate 311. The second power receiving plate 311 is electrically connected to the LCD screen 11. The group of power receiving contacts 312 is used for power connection with one of the groups of power receiving spring pins 211. The length of the mounting port 331 is equal to the length of the LCD screen 11, and the length of the mounting port 331 is longer than the length of the fixing cavity 33.

[0030] It is worth noting that, such as Figures 1-4 As shown, a main control board 4 is electrically connected between the cold head 1 and the first power contact board 21. The main control board 4 controls the cold head 1 and the first power contact board 21. The power supply line is connected to the main control board 4, so that the first power contact board 21 supplies power to the LCD screen 11 by contacting the power contact spring group 211 with the power contact group 312. As for how the main control board 4 controls the cold head 1, and how the main control board 4 controls the display effect and content of the LCD screen 11, these are all existing technologies and will not be described in detail here.

[0031] The following is a detailed explanation of the working principle of this utility model; In use, the cold head 1 is installed on the computer motherboard and connected to the power socket on the computer motherboard. At this time, the power contact spring group 211 on the first connecting part 2 of the cold head 1 is exposed. The LCD screen 11 is installed on the first connecting part 2 through the second connecting part 3. At this time, the power contact part 31 on the second connecting part 3 contacts one of the power contact spring groups 211 and is energized. The LCD screen 11 can also be rotated at a certain angle so that the power contact part 31 on the second connecting part 3 contacts another set of power contact spring groups 211 and is energized. This achieves the effect of installing the LCD screen 11 at multiple angles, thereby achieving more diverse display effects.

[0032] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementations that can be understood by those skilled in the art.

[0033] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A detachable screen structure of a water-cooled head, characterized by: The device includes a liquid crystal screen (11) detachably connected to a cold head (1). The cold head (1) is provided with a first connecting part (2) detachably connected to the liquid crystal screen (11). The first connecting part (2) is provided with a first power plate (21). The first power plate (21) is provided with an input part and an output part. The output part includes several sets of power-connecting spring pins (211). With a point on the first connecting part (2) as the surrounding point, each set of power-connecting spring pins (211) is distributed around the surrounding point. The liquid crystal screen (11) is provided with a second connecting part (3) corresponding to the first connecting part (2). The second connecting part (3) is provided with a power-connecting part (31) for power-connecting with the set of power-connecting spring pins (211).

2. The detachable screen structure of a water-cooling head according to claim 1, characterized in that: The first connecting part (2) includes a shell (22) and an inner support (23). One side of the inner support (23) is fixedly installed with the cold head (1). An installation cavity (24) is formed inside the inner support (23). The first electrical contact plate (21) is disposed in the installation cavity (24). One side of the shell (22) is provided with a first connecting surface (221) corresponding to the second connecting part (3).

3. The detachable screen structure of the water-cooling head according to claim 2, characterized in that: The first connecting surface (221) is located on the side of the outer shell (22) away from the mounting cavity (24). The first connecting surface (221) is a groove-shaped structure recessed into the mounting cavity (24). Each of the electrical contact spring groups (211) protrudes from the first connecting surface (221).

4. The detachable screen structure of the water-cooling head according to claim 3, characterized in that: The second connecting part (3) has a second connecting surface (32) on one side that is connected to the first connecting surface (221). The shape of the second connecting surface (32) corresponds to the shape of the first connecting surface (221), and the second connecting surface (32) is a protruding structure.

5. The detachable screen structure of the water-cooling head according to claim 2, characterized in that: The inner support member (23) includes a support part (231) and a mounting part (232). One side of the support part (231) is fixedly installed with the cold head (1), and the other side is fixed to the inner wall of the outer shell (22). The mounting cavity (24) is formed between the support part (231) and the mounting part (232).

6. The detachable screen structure of the water-cooling head according to claim 5, characterized in that: The first electrical contact plate (21) is installed on the mounting part (232), and the mounting part (232) is provided with a plurality of guide post groups (233), and each electrical contact spring pin group (211) corresponds to each of the guide post groups (233).

7. The detachable screen structure of the water-cooling head according to claim 5, characterized in that: The mounting part (232) is provided with a plurality of first magnetic elements (234) for magnetic connection with the second connecting part (3), and each of the first magnetic elements (234) is distributed around the surrounding point.

8. The detachable screen structure of the water-cooling head according to claim 1, characterized in that: A fixing cavity (33) is formed in the second connecting part (3), and the power receiving part (31) is disposed in the fixing cavity (33). A mounting port (331) for mounting the liquid crystal screen (11) is provided on one side of the fixing cavity (33), and a second magnetic suction member (332) is provided in the fixing cavity (33) and magnetically connected to the first connecting part (2).

9. The detachable screen structure of the water-cooling head according to claim 8, characterized in that: The power receiving part (31) includes a second power receiving plate (311) and a power receiving contact group (312) disposed on the second power receiving plate (311). The second power receiving plate (311) is electrically connected to the liquid crystal screen (11), and the power receiving contact group (312) is used to connect and cooperate with one of the power receiving spring pin groups (211).

10. The detachable screen structure of the water-cooling head according to claim 8, characterized in that: The length of the mounting port (331) is equal to the length of the LCD screen (11), and the length of the mounting port (331) is longer than the length of the fixing cavity (33).