Chip protection seat
By combining the mounting base and the shock absorber, the problems of heat dissipation and insufficient space occupied by the chip protection structure are solved, thereby achieving chip stability and heat dissipation function, and enhancing the protection capability and service life of the equipment.
Patent Information
- Application Number
- CN202422910612.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-28
AI Technical Summary
Existing chip protection structures are inadequate in terms of heat dissipation and space occupation, and flexible layers are not conducive to protecting the stability and heat dissipation of the chip.
It adopts a combination structure of mounting base and shock absorber. The mounting base consists of multiple mounting stations. Each station is connected to the chip and equipped with heat dissipation structure and cable outlet. The shock absorber is connected to the mounting base through shock absorber springs to provide stability and heat dissipation function, and is fixed by flexible blocks and connecting ends.
It improves the chip's protection capabilities, ensuring that the chip is not damaged by impacts, while providing a stable working environment and convenient circuit layout, thus extending the service life of the equipment.
Smart Images

Figure CN223540807U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic technology, and in particular to a chip protection socket. Background Technology
[0002] With the development of electronic technology, various electronic products have gradually penetrated into all aspects of people's lives. At the same time, in order to improve production efficiency, various automated equipment equipped with control chips are also developing rapidly. However, the more complex the structure, the easier it is to be damaged. In order to ensure the stability of operation, the chip needs to avoid structural damage. Therefore, in order to improve the service life of the equipment, the chip needs to be protected.
[0003] In related technologies, a chip box is provided relative to the chip, and a cavity is provided inside the box. The chip is inserted into the cavity. The box has an opening to facilitate the connection of the chip to an external device. The box is covered with a flexible layer. With this structure, the chip can be guaranteed to operate stably even if the box is bumped. However, the flexible layer in this structure is not conducive to heat dissipation of the chip. At the same time, the flexible layer makes the space occupied by a chip too large, which is inconvenient to use. Utility Model Content
[0004] The main purpose of this invention is to provide a chip protection socket, which aims to improve the protection capability of the chip.
[0005] To achieve the above objectives, this utility model proposes a chip protection socket, comprising a mounting base and a shock-absorbing part:
[0006] The mounting base includes at least two sets of mounting stations, which are connected end-to-end. Each mounting station has a connecting groove at its top, through which a chip passes. The connecting groove also has a recessed mounting groove along a direction away from the chip. A first cable exit groove is formed on the side wall of each mounting station facing the mounting groove. A second cable exit groove is formed on the side of the mounting station facing the chip on the side facing the first cable exit groove. The first and second cable exit grooves are spaced apart.
[0007] The shock-absorbing part is connected to the end face of the mounting base away from the chip. Multiple sets of shock-absorbing springs are evenly spaced between the shock-absorbing part and the mounting base. A connecting end is opened on the periphery of the shock-absorbing part.
[0008] In one embodiment of this application, the two sets of installation stations are connected end to end. The first and second cable outlet slots of the preceding installation station are provided with wiring portions along the direction away from the chip. The wiring portions, the second cable outlet slot of the preceding installation station, and the first and second cable outlet slots of the following installation station together form a first connecting portion.
[0009] In one embodiment of this application, the installation station is provided with a third cable outlet groove away from the first cable outlet groove. The third cable outlet groove is connected to the chip and communicates with the installation groove.
[0010] In one embodiment of this application, the mounting base is provided in at least two sets, and the two sets of mounting bases are arranged side by side. The wiring portion of the latter set of mounting bases is connected to the side edge of the third cable outlet groove corresponding to the former set of mounting bases. The first cable outlet groove, the third cable outlet groove, and the wiring portion of the two corresponding mounting positions are arranged to form a second connecting portion.
[0011] In one embodiment of this application, a flexible block is provided on the bottom edge of the mounting base facing the shock-absorbing part. The flexible block wraps around the bottom edge of the mounting base and around multiple sets of shock-absorbing springs. The flexible block is provided on the end face of the mounting base away from the shock-absorbing part.
[0012] In one embodiment of this application, the periphery of the shock-absorbing part is provided with a mounting part along the direction away from the shock-absorbing spring, the mounting part is connected to the side wall of the shock-absorbing part, and a plurality of sets of connecting ends are evenly spaced on the mounting part.
[0013] This utility model's technical solution divides the chip protection socket structurally and functionally into a mounting base and a shock-absorbing part. The shock-absorbing part is installed on the bottom edge of the mounting base. The mounting base consists of multiple mounting stations, including at least two sets. Each mounting station can connect to a set of chips. Adjacent mounting stations are connected end-to-end. A connecting groove is provided on the top of the mounting station, where the chip can be placed and fixed with screws to ensure the stability of the chip installation. A mounting groove is recessed away from the chip from the connecting groove. A heat dissipation structure, such as a cooling fan, can be installed in the mounting groove facing the chip for heat dissipation, or peripheral devices can be installed. This allows the entire protection socket to protect the chip while also protecting a certain number of peripheral devices, ensuring their operational stability. A first mounting groove is provided on the side wall of the mounting station facing the mounting groove. The cable tray facilitates the routing of external devices and chips, and also aids in heat dissipation. A second cable tray, spaced apart from the first on the same side of the outer wall of the mounting station, faces the chip. This second tray allows for easy connection of external wires to the chip, simplifying wiring. The two trays work together to effectively enhance chip protection and ensure a stable operating environment. Multiple shock-absorbing springs are installed between the shock absorber and the mounting base, and multiple connection ends are located around the perimeter of the shock absorber. These connection ends allow for easy fixing of the shock absorber in one location. Once the shock absorber is fixed, the mounting base and chip are stably secured. This structure effectively enhances the protection of the chip by the mounting base and ensures stable chip operation. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0015] Figure 1 This is a schematic diagram of the chip protection socket of this utility model;
[0016] Figure 2 This is a cross-sectional view of the chip protection socket of this utility model.
[0017] Explanation of icon numbers:
[0018] 1. Mounting base; 2. Mounting station; 21. Connecting groove; 22. Mounting groove; 23. First cable outlet groove; 24. Second cable outlet groove; 25. Cable routing section; 26. First connecting section; 27. Third cable outlet groove; 28. Second connecting section; 29. Flexible block; 3. Vibration damping section; 31. Vibration damping spring; 32. Mounting section; 33. Connecting end.
[0019] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0020] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0021] Reference Figures 1 to 2 In one embodiment of this utility model, a chip protection base is provided, including a mounting base 1 and a shock-absorbing part 3. The mounting base 1 includes at least two sets of mounting stations 2, which are connected end to end. A connecting groove 21 is provided on the top of the mounting station 2, and a chip is inserted into the connecting groove 21. A mounting groove 22 is recessed in the connecting groove 21 along the direction away from the chip. A first wire outlet groove 23 is provided on the side wall of the mounting station 2 facing the mounting groove 22. A second wire outlet groove 24 is provided on the side of the mounting station 2 facing the chip, and the first wire outlet groove 23 and the second wire outlet groove 24 are spaced apart. The shock-absorbing part 3 is connected to the end face of the mounting base 1 away from the chip. Multiple sets of shock-absorbing springs 31 are evenly spaced between the shock-absorbing part 3 and the mounting base 1. A connecting end 33 is provided on the periphery of the shock-absorbing part 3.
[0022] In a chip protection socket of this application, the chip protection socket is structurally and functionally divided into a mounting base 1 and a shock-absorbing part 3. The shock-absorbing part 3 is installed on the bottom edge of the mounting base 1. The mounting base 1 is composed of multiple sets of mounting stations 2, including at least two sets. Each set of mounting stations 2 can be connected to a set of chips. Adjacent mounting stations 2 are connected end to end. A connecting groove 21 is provided on the top of the mounting station 2. The chip can be placed in the connecting groove 21 and fixed with screws to ensure the stability of the chip installation. A mounting groove 22 is recessed in the connecting groove 21 away from the chip. A heat dissipation structure, such as a cooling fan, can be installed in the mounting groove 22 facing the chip for heat dissipation. Peripherals can also be installed, so that the entire protection socket protects the chip and a certain number of peripherals at the same time, ensuring their working stability. A first outlet is provided on the side wall of the mounting station 2 facing the mounting groove 22. The cable tray 23 facilitates the connection of peripheral devices and chips, and also facilitates heat dissipation. On the outer wall of the mounting station 2, a second cable tray 24 is provided on the same side as the first cable tray 23 and spaced apart from it. The second cable tray 24 faces the chip and facilitates the connection of the chip to external wires, making it easier to lay out the circuit. The two cable trays work together to effectively improve the chip protection effect and ensure the stability of the chip's working environment. Multiple sets of shock-absorbing springs 31 are provided between the shock-absorbing part 3 and the mounting base 1, and multiple sets of connecting ends 33 are provided around the periphery of the shock-absorbing part 3. The connecting ends 33 can be used to fix the shock-absorbing part 3 in a certain place. After the shock-absorbing part 3 is fixed, the mounting base 1 and the chip can be fixed stably. Through the above structure, the protection ability of the protective base to protect the chip can be effectively improved, and the chip can work stably.
[0023] See also Figures 1 to 2 In one embodiment of this application, two sets of installation stations 2 are connected end to end. The first wire outlet groove 23 and the second wire outlet groove 24 of the previous installation station 2 are provided with a wiring portion 25 along the direction away from the chip. The wiring portion 25, the second wire outlet groove 24 of the previous installation station 2, and the first wire outlet groove 23 and the second wire outlet groove 24 of the subsequent installation station 2 together form a first connecting portion 26.
[0024] In a chip protection socket of this application, two sets of mounting stations 2 are connected end to end. The first wire outlet groove 23 and the second wire outlet groove 24 of the previous mounting station 2 are provided with a wiring section 25 along the direction away from the chip. The wiring section 25 can separate the first wire outlet groove 23 and the second wire outlet groove 24, and together with the first wire outlet groove 23 and the second wire outlet groove 24 of the adjacent mounting station 2, form a first connecting section 26. The first connecting plate can more conveniently clarify the connection between different chips, avoid wire tangling, and improve the safety of the circuit.
[0025] See also Figure 1In one embodiment of this application, the installation station 2 is provided with a third cable outlet 27 away from the first cable outlet 23. The third cable outlet 27 is connected to the chip and communicates with the installation slot 22.
[0026] In a chip protection socket of this application, the mounting station 2 is provided with a third cable outlet 27 away from the first cable outlet 23. The third cable outlet 27 is located north of the first cable outlet 23. It can be connected with the first cable outlet 23 to the mounting slot 22, which can facilitate heat dissipation. At the same time, the third cable outlet 27 can also assist in wiring and reduce the design difficulty of the circuit.
[0027] See also Figure 1 In one embodiment of this application, the mounting base 1 is provided with at least two sets, and the two sets of mounting base 1 are arranged side by side. The wiring portion 25 of the latter set of mounting base 1 is connected to the side edge of the third wiring groove 27 corresponding to the former set of mounting base 1. The first wiring groove 23, the third wiring groove 27 and the wiring portion 25 of the two mounting stations 2 are arranged in a second connecting portion 28.
[0028] In a chip protection socket of this application, the mounting base 1 is provided with at least two sets, and the two sets of mounting base 1 are arranged side by side. The wiring part 25 of the latter set of mounting base 1 is connected to the side edge of the third wiring groove 27 corresponding to the former set of mounting base 1. With this structure, multiple sets of mounting stations 2 of adjacent mounting base 1 can be set one-to-one. And the wiring grooves can also form a first connection part 26 while forming a second connection part 28 between the one-to-one corresponding mounting stations 2, so that multiple sets of mounting base 1 can also be connected to each other, which can ensure chip safety and improve chip working stability.
[0029] See also Figure 2 In one embodiment of this application, a flexible block 29 is provided on the bottom edge of the mounting base 1 facing the shock-absorbing part 3. The flexible block 29 is wrapped around the bottom edge of the mounting base 1 and around multiple sets of shock-absorbing springs 31. The end face of the mounting base 1 away from the shock-absorbing part 3 is provided with the flexible block 29.
[0030] In a chip protection socket of this application, a flexible block 29 is provided on the bottom edge of the mounting base 1 facing the shock-absorbing part 3. The flexible block 29 wraps around the bottom edge of the mounting base 1. The flexible block 29 can reduce the impact received by the protection socket, thereby reducing the damage to the chip during collisions. Similarly, a flexible block 29 is also provided on the end face of the mounting base 1 away from the shock-absorbing part 3 to improve the protective effect of the protection socket. The shock-absorbing spring 31 is located in the bottom of the mounting base 1. The flexible block 29 can play a limiting role relative to the shock-absorbing part 3. After the shock-absorbing part 3 is installed, the stability of the chip's working environment is ensured.
[0031] See also Figures 1 to 2In one embodiment of this application, a mounting portion 32 is provided on the periphery of the shock-absorbing portion 3 along the direction away from the shock-absorbing spring 31. The mounting portion 32 is connected to the side wall of the shock-absorbing portion 3, and multiple sets of connecting ends 33 are evenly spaced on the mounting portion 32.
[0032] In a chip protection socket of this application, a mounting portion 32 is provided on the periphery of the shock-absorbing part 3 along the direction away from the shock-absorbing spring 31. The mounting portion 32 is connected to the side wall of the shock-absorbing part 3. Specifically, the mounting portion 32 is formed by the two sides of the shock-absorbing part 3 protruding outward along the plane where the shock-absorbing part 3 is located. A connecting end 33 is provided on the mounting portion 32. The shock-absorbing part 3 can be fixed very easily through the connecting end 33. Then, the mounting socket 1 is connected through the shock-absorbing spring 31, so that the mounting socket 1 is stably fixed. The chip is connected in the mounting socket 1, ensuring the safety of the chip and making its working environment stable and reliable. A cover plate can also be provided on the end face of the mounting socket 1 away from the shock-absorbing part 3 to encapsulate the upper part of the chip and further protect the chip.
[0033] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0034] The above are merely preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A chip protection socket, characterized in that, include: The mounting base includes at least two sets of mounting stations connected end-to-end. Each mounting station has a connecting groove at its top, through which a chip passes. The connecting groove also has a recessed mounting groove along a direction away from the chip. A first cable exit groove is formed on the side wall of each mounting station facing the mounting groove. A second cable exit groove is formed on the side of the mounting station facing the chip on the side facing the first cable exit groove. The first and second cable exit grooves are spaced apart. The shock-absorbing part is connected to the end face of the mounting base away from the chip. Multiple sets of shock-absorbing springs are evenly spaced between the shock-absorbing part and the mounting base. A connecting end is opened on the periphery of the shock-absorbing part.
2. The chip protection socket according to claim 1, characterized in that, The two sets of installation stations are connected at their ends. The first and second cable outlet slots of the first installation station are provided with wiring sections along the direction away from the chip. The wiring sections, the second cable outlet slot of the first installation station, and the first and second cable outlet slots of the second installation station together form a first connecting part.
3. A chip protection socket according to claim 2, characterized in that, The installation station is provided with a third cable outlet located away from the first cable outlet slot. The third cable outlet slot is connected to the chip and communicates with the installation slot.
4. A chip protection socket according to claim 3, characterized in that, The mounting base is provided in at least two sets, and the two sets of mounting bases are arranged side by side. The wiring part of the latter set of mounting bases is connected to the side edge of the third cable outlet groove corresponding to the former set of mounting bases. The first cable outlet groove, the third cable outlet groove and the wiring part of the two corresponding mounting positions are arranged to form a second connecting part.
5. A chip protection socket according to claim 1, characterized in that, The bottom edge of the mounting base is provided with a flexible block facing the shock-absorbing part. The flexible block wraps around the bottom edge of the mounting base and around multiple sets of shock-absorbing springs. The end face of the mounting base opposite to the shock-absorbing part is provided with the flexible block.
6. A chip protection socket according to claim 5, characterized in that, The periphery of the shock absorber is provided with a mounting portion along the direction away from the shock absorber spring. The mounting portion is connected to the side wall of the shock absorber, and multiple sets of connecting ends are evenly spaced on the mounting portion.