Connector for a processor

CN119315293BActive Publication Date: 2025-10-21INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202411463575.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-10-21
Estimated Expiration
2044-10-18

AI Technical Summary

Technical Problem

The existing CPU connector needs to be fixed manually by tightening or loosening screws, which is inconvenient to operate and it is impossible to visually judge whether the fixation is secure.

Method used

设计了一种包括底座和可活动压盖的连接器,通过定位部和导向部的配合,实现压盖的限位和避让位置切换,简化处理器的安装和拆卸操作,并通过导向和定位结构提高固定可靠性。

Benefits of technology

The installation and removal operations of the processor are simplified, the fixing reliability is improved, the installation status is easy to judge intuitively, and the stability of the connection is enhanced through the guiding and positioning structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the application provides a connector of a processor, comprising: a base, wherein a mounting opening slot for adapting to the processor is arranged on the base, and a first positioning part is arranged on the base; a cover, which is movably arranged on the base to move to a limiting position or a avoiding position; the cover is provided with a second positioning part which is adapted to the first positioning part, one of the first positioning part and the second positioning part is a positioning groove, and the other is a positioning protrusion; wherein, when the cover is in the limiting position, the first positioning part and the second positioning part are oppositely arranged and connected, the cover is arranged on the processor in the mounting opening slot and abuts against the processor; when the cover is in the avoiding position, the first positioning part and the second positioning part are staggered and separated, and at least part of the cover avoids the opening of the mounting opening slot. Through the application, the problem that the processor is inconvenient to be positioned through the connector in the related art is solved.
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Description

Technical Field

[0001] The embodiments of the present application relate to the field of computers, and in particular, to a connector for a processor. Background Art

[0002] Currently, the CPU is a crucial component of servers. A central processing unit (CPU), or central processing unit, is a very large-scale integrated circuit (VLSI) that serves as the computing and control core of a server. Its primary function is to interpret computer instructions and process data in software. The CPU primarily consists of an arithmetic unit (ALU), a cache memory, and a data, control, and status bus that connects them. A CPU connector is typically required for connection.

[0003] However, existing CPU connectors generally fix or loosen the CPU by tightening screws, and the above process often requires manual tightening or loosening of the screws. The above operation method is not only inconvenient, but also cannot directly know whether the CPU is fixed firmly, which is not convenient for users to operate. Summary of the Invention

[0004] An embodiment of the present application provides a connector for a processor, so as to at least solve the problem in the related art that it is inconvenient to position the processor through the connector.

[0005] According to one embodiment of the present application, a connector for a processor is provided, comprising:

[0006] A base, the base being provided with a mounting opening slot adapted to fit the processor, and the base being provided with a first positioning portion;

[0007] The pressure cover is movably arranged on the base to move to a limit position or an avoidance position; the pressure cover is provided with a second positioning portion adapted to the first positioning portion, one of the first positioning portion and the second positioning portion is a positioning groove, and the other is a positioning protrusion;

[0008] Among them, when the pressure cover is in the limit position, the first positioning part and the second positioning part are arranged opposite to each other and connected, and the pressure cover is arranged on the processor located in the installation opening groove and abuts against the processor; when the pressure cover is in the avoidance position, the first positioning part and the second positioning part are staggered and separated, and at least part of the pressure cover avoids the opening of the installation opening groove, so that the part of the installation opening groove staggered with the pressure cover forms an avoidance space for installing or removing the processor.

[0009] Furthermore, the base is provided with a first guide portion spaced apart from the first positioning portion, and the pressure cover is provided with a second guide portion adapted to the first guide portion, at least one of the first guide portion and the second guide portion extends along the extension direction of the installation opening slot, and the first guide portion and the second guide portion cooperate in guiding so that the pressure cover slides along the extension direction of the installation opening slot to a limited position or an avoidance position;

[0010] Among them, one of the first guide portion and the second guide portion is a guide groove, and the other is a guide protrusion.

[0011] Furthermore, the gland includes:

[0012] A first side panel, a main panel, and a second side panel are sequentially connected, the first side panel and the second side panel are respectively arranged on both sides of the main panel, the first side panel is connected to the main panel at a first bending angle, and the second side panel is connected to the main panel at a second bending angle, the main panel is slidably arranged at the opening of the mounting opening slot, and the first side panel and the second side panel are respectively located on both sides of the base;

[0013] Wherein, a first guide portion is provided on one side of the base, and a second guide portion is provided on a side of the first side plate close to the base; and / or,

[0014] A first guide portion is provided on the other side of the base, and a second guide portion is provided on a side of the second side plate close to the base.

[0015] Furthermore, along the extending direction of the installation opening slot, the second guide portion and the second positioning portion are spaced apart; and / or,

[0016] The positioning protrusion includes a positioning column and a positioning head connected to each other, the positioning head protruding from the periphery of the positioning column, the positioning head being supported by silicone, rubber or plastic material, and the positioning groove being adapted to the shape of the positioning head; and / or,

[0017] There are multiple positioning protrusions, and the multiple positioning protrusions are arranged along the extension direction of the installation opening groove. There are multiple positioning grooves, and the multiple positioning grooves are arranged in a one-to-one correspondence with the multiple positioning protrusions, and each positioning groove is positioned and matched with the corresponding positioning protrusion; and / or,

[0018] The guide protrusion comprises a guide column and a guide head which are connected to each other. The guide head is arranged to protrude from the periphery of the guide column and is clamped in the guide groove.

[0019] Furthermore, the gland is provided with a heat dissipation through hole, which is arranged opposite to the mounting opening groove; and / or,

[0020] A push portion is provided on the side of the gland away from the installation opening slot, and the side of the push portion away from the installation opening slot has anti-slip grooves; and / or,

[0021] A contact portion is provided on one side of the pressure cover close to the installation opening slot. The contact portion is used to contact the processor in the installation opening slot and is made of a flexible material.

[0022] Furthermore, the connector further comprises:

[0023] The heat dissipation structure is arranged on the base and located at a side away from the installation opening groove.

[0024] Furthermore, the shell of the heat dissipation structure has an air inlet, an air outlet, and a heat dissipation air cavity connected to the air inlet and the air outlet.

[0025] Furthermore, the heat dissipation structure includes a guide structure arranged in the heat dissipation air cavity, the guide structure having a guide channel, and the two ends of the guide channel are respectively arranged opposite to the air inlet and the air outlet;

[0026] Wherein, along the extension direction from the air inlet to the air outlet, the guide cross section of the guide channel gradually decreases; and / or,

[0027] The air inlet and the air outlet both extend in a predetermined direction, and there are multiple guide structures, which are arranged in the heat dissipation air cavity at intervals along the predetermined direction, with two ends of each guide structure respectively arranged opposite to the air inlet and the air outlet; and / or,

[0028] The guide structure comprises two guide strips arranged at intervals, and the two guide strips form a guide channel.

[0029] Furthermore, a first fixing portion is provided on the base, the first fixing portion is spaced apart from the mounting opening slot, and the first fixing portion is adapted to be matched with the second fixing portion on the to-be-fixed component, so as to be fixed by the first fixing portion and the second fixing portion; one of the first fixing portion and the second fixing portion is a fixing slot, and the other is a fixing protrusion; and / or,

[0030] A first limiting portion is provided on the base, and the first limiting portion is spaced apart from the mounting opening groove. The first limiting portion is used to adapt to the second limiting portion on the part to be limited, so as to cooperate and limit the first limiting portion and the second limiting portion; one of the first limiting portion and the second limiting portion is a limiting groove, and the other is a limiting protrusion.

[0031] Furthermore, the base includes a bottom plate and a raised portion connected to each other, the bottom plate is provided with a mounting opening groove, the raised portion is provided on the bottom plate and protrudes from the bottom plate, the raised portion and the mounting opening groove are spaced apart, and a limiting groove and a fixing groove are spaced apart on the raised portion;

[0032] There are multiple fixing grooves, and the multiple fixing grooves are spaced apart along the extending direction of the protrusion; and / or,

[0033] There are multiple limiting grooves, and the multiple limiting grooves are arranged at intervals along the extending direction of the protrusion; and / or,

[0034] The limiting groove is arranged on one side of the fixing groove close to the installation opening groove, a part of the opening of the limiting groove is located on the top of the protruding part, and the other part of the opening of the limiting groove is located on the side of the protruding part close to the installation opening groove.

[0035] Through this application, when the processor needs to be fixed, it is only necessary to switch the pressure cover to the limit position to achieve the pressure cover abutting the processor. The operation is simple and convenient, and it is also easy to intuitively judge whether the installation and fixation of the processor are completed. When the processor needs to be removed or installed, it is only necessary to switch the pressure cover to the avoidance position to achieve the operation of removing the processor from the avoidance space or installing it through the avoidance space. Therefore, the problem of inconvenience in positioning the processor through the connector in the related art can be solved, and the technical effect of facilitating the positioning of the processor can be achieved. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] Figure 1 is a structural diagram of a connector of a processor provided in accordance with an embodiment of the present application from one perspective;

[0037] Figure 2 is a structural diagram of a connector of a processor provided in accordance with an embodiment of the present application from another perspective;

[0038] Figure 3 is a structural diagram of a connector of a processor provided in accordance with an embodiment of the present application from another perspective;

[0039] Figure 4 is a structural schematic diagram of a base according to an embodiment of the present application;

[0040] Figure 5 is a schematic diagram of the internal structure of the heat dissipation structure according to an embodiment of the present application;

[0041] Figure 6 is a structural schematic diagram of a gland according to an embodiment of the present application from one perspective;

[0042] Figure 7 is a structural schematic diagram of a gland according to an embodiment of the present application from another perspective;

[0043] Figure 8 yes Figure 4 A magnified schematic diagram of point A in the middle;

[0044] Figure 9 yes Figure 7 Enlarged schematic diagram of point B in the middle.

[0045] The reference numerals are as follows:

[0046] 10. Base; 11. Mounting opening; 12. Bottom plate; 13. Raised portion; 14. Connecting groove; 15. Connecting hole;

[0047] 20. Pressing cover; 21. First side plate; 22. Second side plate; 23. Main plate; 24. Heat dissipation through hole; 25. Pushing portion; 26. Abutting portion;

[0048] 31. Positioning groove; 32. Positioning protrusion; 321. Positioning column; 322. Positioning head;

[0049] 41. Guide groove; 42. Guide protrusion; 421. Guide column; 422. Guide head;

[0050] 50. Heat dissipation structure; 51. Air inlet; 52. Air outlet; 53. Heat dissipation cavity; 54. Housing; 55. Guide structure; 551. Guide strip; 56. Guide channel;

[0051] 61, fixed slot; 71, limit slot;

[0052] 80. Processor. DETAILED DESCRIPTION

[0053] The embodiments of the present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0054] It should be noted that the terms "first", "second", etc. in the description and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence.

[0055] like Figures 1 to 9 As shown, an embodiment of the present invention provides a processor connector, comprising a base 10 and a cover 20. The base 10 is provided with a mounting opening 11 for mate with a processor 80, and a first positioning portion is provided on the base 10. The cover 20 is movably mounted on the base 10 to move to a restricted position or a relief position. The cover 20 is provided with a second positioning portion that mates with the first positioning portion. One of the first and second positioning portions is a positioning groove 31, and the other is a positioning protrusion 32. When the cover 20 is in the restricted position, the first positioning portion and the second positioning portion are oppositely disposed and connected, and the cover 20 covers and abuts the processor 80 located in the mounting opening 11. When the cover 20 is in the relief position, the first positioning portion and the second positioning portion are staggered and separated, and at least a portion of the cover 20 is positioned away from the opening of the mounting opening 11, so that the portion of the mounting opening 11 staggered from the cover 20 forms a relief space for installing or removing the processor 80.

[0056] It should be noted that when the pressure cover 20 is in the avoidance position, the "misaligned portion of the installation opening slot 11 and the pressure cover 20 forms an avoidance space for the installation or removal of the processor 80" can be understood as part or all of the installation opening slot 11 being used to form the avoidance space, and the avoidance space only needs to ensure that the processor 80 can be smoothly installed into the installation opening slot 11 or removed from the installation opening slot 11. "Processor 80" can be understood as CPU, that is, central processing unit 80. "A mounting opening slot 11 for matching with the processor 80 is provided on the base 10" can be understood as the shape of the mounting opening slot 11 being the same as the shape of the processor 80, and the mounting opening slot 11 can be fully adapted to the processor 80 or matched with a small gap to preliminarily ensure the positioning and installation stability of the processor 80.

[0057] With the connector provided in this embodiment, when the processor 80 needs to be fixed, the pressure cover 20 only needs to be switched to the limit position to achieve the abutment positioning of the pressure cover 20 on the processor 80. At the same time, the positioning connection between the first positioning portion and the second positioning portion further improves the reliability of the fixation of the processor 80. In addition, the above operation is simple and only requires switching the position of the pressure cover 20, which also facilitates intuitive judgment of whether the installation and fixation of the processor 80 are completed. When the processor 80 needs to be removed or installed, the pressure cover 20 only needs to be switched to the avoidance position to achieve the operation of removing the processor 80 from the avoidance space or installing it through the avoidance space, making the operation simple.

[0058] Specifically, the pressure cover 20 can be made of aluminum alloy, which can ensure the stability of the structure and facilitate heat dissipation.

[0059] In this embodiment, a first guide portion is provided on the base 10 and is spaced apart from the first positioning portion. A second guide portion is provided on the pressure cover 20 and is adapted to match the first guide portion. At least one of the first guide portion and the second guide portion extends along the extension direction of the installation opening slot 11. The first guide portion and the second guide portion cooperate to guide the pressure cover 20 to slide along the extension direction of the installation opening slot 11 to a limited position or a avoidance position. With this structural arrangement, the pressure cover 20 can be easily switched to the limited position or the avoidance position by moving the pressure cover 20 along the extension direction of the installation opening slot 11, which facilitates operation and use.

[0060] Specifically, one of the first guide portion and the second guide portion is a guide groove 41 and the other is a guide protrusion 42. This structure is simple and facilitates ensuring the guiding stability of the pressure cover 20. Specifically, the guide groove 41 in this embodiment is a strip groove structure.

[0061] In this embodiment, the pressure cover 20 includes a first side panel 21, a main panel 23, and a second side panel 22, which are connected in sequence. The first side panel 21 and the second side panel 22 are respectively arranged on either side of the main panel 23. The first side panel 21 is connected to the main panel 23 at a first bending angle, and the second side panel 22 is connected to the main panel 23 at a second bending angle. The main panel 23 is slidably disposed at the opening of the mounting opening slot 11. The first side panel 21 and the second side panel 22 are respectively located on either side of the base 10. With this structural arrangement, the first side panel 21, the main panel 23, and the second side panel 22 can effectively enclose a protective installation space for the processor 80, better stably positioning the processor 80, thereby better ensuring the fixing effect of the processor 80 and preventing the processor 80 from becoming loose.

[0062] Specifically, a first guide portion is provided on one side of the base 10, and a second guide portion is provided on the side of the first side plate 21 close to the base 10. In this way, one side of the pressure cover 20 can be effectively guided, thereby improving the guiding effect of the movement of the pressure cover 20.

[0063] Specifically, a first guide portion is provided on the other side of the base 10, and a second guide portion is provided on the side of the second side plate 22 close to the base 10. In this way, the other side of the gland 20 can be effectively guided, thereby improving the guiding effect of the movement of the gland 20.

[0064] In addition, by providing a first guide portion on one side of the base 10, a second guide portion is provided on the side of the first side plate 21 close to the base 10; and by providing a first guide portion on the other side of the base 10, and a second guide portion is provided on the side of the second side plate 22 close to the base 10, both sides of the gland 20 can be guided simultaneously, thereby better improving the guiding effect of the movement of the gland 20.

[0065] In this embodiment, the second guide portion and the second positioning portion are spaced apart along the extension direction of the mounting opening groove 11. In this way, mutual interference between the second guide portion and the second positioning portion can be avoided, thereby ensuring stable cooperation between the first guide portion and the second guide portion, and also ensuring stable cooperation between the first positioning portion and the second positioning portion.

[0066] Specifically, the positioning projection 32 comprises a connected positioning post 321 and a positioning head 322. The positioning head 322 protrudes from the periphery of the positioning post 321 and is supported by silicone, rubber, or plastic material. The positioning groove 31 is shaped to match the positioning head 322. This structural arrangement facilitates the positioning head 322 to deform smoothly and enter the positioning groove 31 for positioning and engagement. Furthermore, the positioning head 322 can also deform slightly within the positioning groove 31 and escape from the positioning groove 31, facilitating separation of the positioning projection 32 from the positioning groove 31.

[0067] In this embodiment, there are multiple positioning protrusions 32, which are arranged along the extension direction of the mounting opening 11. There are multiple positioning grooves 31, which are provided in a one-to-one correspondence with the multiple positioning protrusions 32, and each positioning groove 31 is positioned and engaged with the corresponding positioning protrusion 32. This can further improve the stability of the fixed connection between the pressure cover 20 and the base 10 when the pressure cover 20 is in the restricted position, so that the pressure cover 20 can be stably in the restricted position, thereby improving the stability of the restricted fixation of the processor 80 and better ensuring the assembly stability of the overall structure.

[0068] Specifically, the guide protrusion 42 includes a guide post 421 and a guide head 422 that are connected to each other. The guide head 422 protrudes from the periphery of the guide post 421 and is engaged in the guide groove 41. This structural arrangement can effectively ensure the stable fit between the guide protrusion 42 and the guide groove 41, preventing the guide protrusion 42 from falling out of the guide groove 41, thereby ensuring the stability of the guidance of the gland 20 and allowing the gland 20 to move smoothly and steadily.

[0069] In this embodiment, a heat dissipation hole 24 is provided on the pressure cover 20, and the heat dissipation hole 24 is arranged opposite to the installation opening groove 11. In this way, the heat dissipation hole 24 can be used to dissipate heat for the processor 80, thereby avoiding overheating of the processor 80.

[0070] Specifically, there are a plurality of heat dissipation through holes 24 , which are spaced apart on the pressure cover 20 to improve the heat dissipation effect.

[0071] Specifically, a push portion 25 is provided on the side of the pressure cover 20 away from the installation opening slot 11, and the side of the push portion 25 away from the installation opening slot 11 has anti-slip grooves. With this structural arrangement, it is convenient for the user to smoothly push the pressure cover 20 through the push portion 25, so that the pressure cover 20 can be smoothly moved to the limit position or the avoidance position, further facilitating the user's operation and use.

[0072] In this embodiment, an abutment portion 26 is provided on one side of the gland 20 near the mounting opening 11. The abutment portion 26 is configured to abut against the processor 80 within the mounting opening 11 and is made of a flexible material. This structural arrangement further improves the positioning stability of the processor 80, preventing the processor 80 from shaking or loosening. Furthermore, because the abutment portion 26 is made of a flexible material, scratches caused by hard contact between the abutment portion 26 and the processor 80 are avoided, thereby effectively protecting the processor 80.

[0073] Specifically, the abutting portion 26 is made of silicone material and can be a silicone ball. Specifically, there can be multiple abutting portions 26, and the multiple abutting portions 26 are arranged at intervals. Preferably, the multiple abutting portions 26 are arranged at equal intervals, and the abutting portions 26 are arranged to avoid the heat dissipation through-holes 24.

[0074] Specifically, the connector further includes a heat dissipation structure 50, which is disposed on the base 10 and located on a side away from the mounting opening 11. With such a structural arrangement, the heat dissipation effect of the processor 80 can be improved.

[0075] In this embodiment, the housing 54 of the heat dissipation structure 50 has an air inlet 51, an air outlet 52, and a heat dissipation air cavity 53 that is connected to both the air inlet 51 and the air outlet 52. This structural arrangement can achieve an air cooling effect on the other side of the processor 80. It has a simple structure and good heat dissipation effect, preventing the processor 80 from overheating due to long-term use, and also preventing the normal use of the processor 80 from being affected by excessive heat.

[0076] Specifically, the heat dissipation structure 50 includes a guide structure 55 disposed within the heat dissipation air cavity 53. The guide structure 55 has a guide channel 56, with both ends of the guide channel 56 disposed opposite the air inlet 51 and the air outlet 52. This facilitates the flow of air from the external environment into the guide channel 56 to remove heat, thereby dissipating heat from the processor 80, ensuring effective heat dissipation for the processor 80, extending the service life of the processor 80, and ensuring the normal operation of the entire device.

[0077] Among them, the guide cross-section of the guide channel 56 gradually decreases along the extension direction from the air inlet 51 to the air outlet 52, so that the flow rate of the air flow flowing to the air outlet 52 can be decelerated, thereby further improving the heat dissipation effect.

[0078] Specifically, the air inlet 51 and the air outlet 52 both extend in a predetermined direction. Multiple guide structures 55 are provided, spaced apart along the predetermined direction within the heat dissipation cavity 53. The ends of each guide structure 55 are positioned opposite the air inlet 51 and the air outlet 52, respectively. This facilitates better heat dissipation through the multiple guide structures 55, improving heat dissipation uniformity for the processor 80.

[0079] Preferably, the plurality of flow guiding structures 55 are arranged at equal intervals.

[0080] In this embodiment, the guide structure 55 includes two guide bars 551 spaced apart from each other, and the two guide bars 551 form a guide channel 56. This has a simple structure, facilitates forming the guide channel 56, and facilitates better heat dissipation of the processor 80.

[0081] Specifically, the heat conducting strip may be a sheet-like structure, and the two heat conducting strips of the guide structure 55 are in an eight-shaped structure, and the heat conducting strips are made of ceramic material.

[0082] Specifically, the base 10 is provided with a first fixing portion spaced apart from the mounting opening 11. The first fixing portion is configured to mate with a second fixing portion on the component to be fixed, thereby achieving a secure connection between the first and second fixing portions. One of the first and second fixing portions is a fixing groove 61, and the other is a fixing protrusion. This structural arrangement facilitates the securement and installation of the base 10 through the cooperation of the first and second fixing portions, thereby increasing the stability of the base 10 during use.

[0083] Specifically, the base 10 is provided with a first limiting portion, which is spaced apart from the installation opening 11. The first limiting portion is adapted to mate with a second limiting portion on the member to be limited, thereby achieving positional limitation through the cooperation between the first limiting portion and the second limiting portion. One of the first limiting portion and the second limiting portion is a limiting groove 71, and the other is a limiting protrusion. In this way, the cooperation between the first limiting portion and the second limiting portion facilitates the limitation and installation of the base 10, improves the limiting effect of the base 10, and increases the stability of the base 10 during use.

[0084] In this embodiment, the base 10 includes a bottom plate 12 and a raised portion 13 connected to each other. The bottom plate 12 is provided with a mounting opening 11. The raised portion 13 is provided on the bottom plate 12 and protrudes from the bottom plate 12. The raised portion 13 is spaced apart from the mounting opening 11. The raised portion 13 is spaced apart from the mounting opening 11. The raised portion 13 is spaced apart from the mounting opening 11. A limiting groove 71 and a fixing groove 61 are provided on the raised portion 13. This structural arrangement facilitates the fixing and limiting of the raised portion 13 through the provision of the limiting groove 71 and the fixing groove 61, thereby facilitating the installation of the base 10 and improving the stability of the installation of the base 10.

[0085] Specifically, the bottom of the base 10 is provided with connection holes 15 to facilitate positioning and connection with other connection structures, thereby improving the installation accuracy of the base 10. Specifically, connection holes 15 are provided at the four corners of the base 10.

[0086] Specifically, there are a plurality of fixing grooves 61 , and the plurality of fixing grooves 61 are arranged at intervals along the extending direction of the protrusion 13 , so as to better improve the fixing stability of the base 10 .

[0087] Specifically, there are a plurality of limiting grooves 71 , and the plurality of limiting grooves 71 are arranged at intervals along the extension direction of the protrusion 13 , so as to better improve the limiting stability of the base 10 .

[0088] Specifically, the limiting groove 71 is provided on a side of the fixing groove 61 close to the mounting opening 11. A portion of the opening of the limiting groove 71 is located at the top of the protrusion 13, and another portion of the opening of the limiting groove 71 is located on the side of the protrusion 13 close to the mounting opening 11. This structural arrangement facilitates better positioning and limiting of the base 10, effectively ensuring the installation stability of the base 10 and preventing the base 10 from easily shaking.

[0089] Specifically, the first guide portion in this embodiment is located on the bottom plate 12, spaced apart from the raised portion 13, and located on a side of the bottom plate 12 away from the raised portion 13. Specifically, the first guide portion is provided on at least one of the two side walls of the bottom plate 12.

[0090] Specifically, a connection groove 14 is provided on at least one of the two sidewalls of the base plate 12. The first positioning portion is fixedly mounted within the connection groove 14. The connection groove 14 extends along the extension direction of the mounting opening 11. The first guide portion is a guide groove 41, which is spaced apart from and parallel to the mounting opening 11. The guide groove 41 is located at a position on the base plate 12 away from the protrusion 13, so that the pressure cover 20 can smoothly avoid the processor 80 when it moves to the avoidance position. Specifically, the first positioning portion is a positioning protrusion 32, which is fixedly mounted within the connection groove 14.

[0091] Specifically, the working principle of the connector of this embodiment is as follows: when the processor 80 is in use, the user first switches the pressure cover 20 to the avoidance position, and then the user places the processor 80 in the installation opening groove 11. After the user fixes the processor 80, the user resets the pressure cover 20 to the limit position and pushes the pressure cover 20 forward. The guide protrusion 42 of the pressure cover 20 moves in the guide groove 41. When the silicone head on the positioning protrusion 32 enters the positioning groove 31 in the pressure cover 20, the pressure cover 20 is fixed to the base 10, thereby completing the fixation of the processor 80 in the installation opening groove 11. When the processor 80 is in use, the processor 80 emits heat, and the heat is transferred into the heat dissipation cavity through the guide structure 55. The air in the external environment enters the heat dissipation cavity from the air inlet 51 at the bottom of the heat dissipation structure 50. The air entering the heat dissipation cavity is guided by the guide structure 55 and then discharged from the air outlet groove at the bottom of the heat dissipation structure 50.

[0092] For specific examples in this embodiment, reference may be made to the examples described in the above embodiments and exemplary implementation modes, and this embodiment will not be described in detail here.

[0093] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, improvements, etc. made within the principles of the present application shall be included within the scope of protection of the present application.

Claims

1. A processor connector, characterized in that: include: A base (10), the base (10) being provided with a mounting opening slot (11) adapted to fit the processor, and the base (10) being provided with a first positioning portion; A pressure cover (20) is movably arranged on the base (10) to move to a limit position or an avoidance position; a second positioning portion adapted to the first positioning portion is provided on the pressure cover (20), one of the first positioning portion and the second positioning portion being a positioning groove (31) and the other being a positioning protrusion (32); Wherein, when the pressure cover (20) is in the limiting position, the first positioning portion and the second positioning portion are arranged opposite to and connected to each other, and the pressure cover (20) is arranged on the processor located in the installation opening groove (11) and abuts against the processor; when the pressure cover (20) is in the avoidance position, the first positioning portion and the second positioning portion are staggered and separated, and at least a part of the pressure cover (20) avoids the opening of the installation opening groove (11), so that the portion of the installation opening groove (11) staggered from the pressure cover (20) forms an avoidance space for installing or removing the processor; The connector further comprises: a heat dissipation structure (50) disposed on the base (10) and located on a side away from the mounting opening groove (11); The housing (54) of the heat dissipation structure (50) has an air inlet (51), an air outlet (52), and a heat dissipation air cavity (53) in communication with both the air inlet (51) and the air outlet (52); The heat dissipation structure (50) comprises a flow guiding structure (55) arranged in the heat dissipation air cavity (53), the flow guiding structure (55) having a flow guiding channel (56), and two ends of the flow guiding channel (56) are respectively arranged opposite to the air inlet (51) and the air outlet (52); Wherein, along the extension direction from the air inlet (51) to the air outlet (52), the guide cross section of the guide channel (56) gradually decreases; and / or, The air inlet (51) and the air outlet (52) both extend in a predetermined direction, there are a plurality of the guide structures (55), and the plurality of guide structures (55) are arranged in the heat dissipation air cavity (53) at intervals along the predetermined direction, and two ends of each guide structure (55) are respectively arranged opposite to the air inlet (51) and the air outlet (52); and / or, The guide structure (55) comprises two guide strips (551) spaced apart from each other, and the two guide strips (551) enclose the guide channel (56).

2. The processor connector according to claim 1, wherein: The base (10) is provided with a first guide portion spaced apart from the first positioning portion, and the pressure cover (20) is provided with a second guide portion adapted to the first guide portion, at least one of the first guide portion and the second guide portion extends along the extension direction of the installation opening slot (11), and the first guide portion and the second guide portion cooperate in a guiding manner so that the pressure cover (20) slides along the extension direction of the installation opening slot (11) to the limit position or the avoidance position; One of the first guide portion and the second guide portion is a guide groove (41), and the other is a guide protrusion (42).

3. The connector of the processor according to claim 2, wherein: The gland (20) comprises: A first side panel (21), a main panel (23), and a second side panel (22) connected in sequence, wherein the first side panel (21) and the second side panel (22) are respectively arranged on both sides of the main panel (23), the first side panel (21) and the main panel (23) are connected at a first bending angle, and the second side panel (22) and the main panel (23) are connected at a second bending angle, the main panel (23) is used to be slidably arranged at the opening of the mounting opening slot (11), and the first side panel (21) and the second side panel (22) are respectively located on both sides of the base (10); Wherein, the first guide portion is provided on one side of the base (10), and the second guide portion is provided on the side of the first side plate (21) close to the base (10); and / or, The first guide portion is provided on the other side of the base (10), and the second guide portion is provided on the side of the second side plate (22) close to the base (10).

4. The connector of the processor according to claim 2, wherein: Along the extension direction of the mounting opening slot (11), the second guide portion and the second positioning portion are arranged at intervals; and / or, The positioning protrusion (32) includes a positioning column (321) and a positioning head (322) connected to each other, the positioning head (322) is arranged to protrude from the periphery of the positioning column (321), the positioning head (322) is supported by silicone or rubber or plastic material, and the positioning groove (31) is adapted to the shape of the positioning head (322); and / or, There are a plurality of positioning protrusions (32), and the plurality of positioning protrusions (32) are arranged along the extension direction of the mounting opening slot (11); there are a plurality of positioning grooves (31), and the plurality of positioning grooves (31) are arranged in a one-to-one correspondence with the plurality of positioning protrusions (32), and each positioning groove (31) is positioned and matched with the corresponding positioning protrusion (32); and / or, The guide protrusion (42) comprises a guide column (421) and a guide head (422) connected to each other. The guide head (422) is arranged to protrude from the periphery of the guide column (421), and the guide head (422) is clamped in the guide groove (41).

5. The connector of the processor according to claim 1, wherein: The pressure cover (20) is provided with a heat dissipation through hole (24), and the heat dissipation through hole (24) is arranged opposite to the installation opening groove (11); and / or, A push portion (25) is provided on a side of the pressure cover (20) away from the installation opening slot (11), and a side of the push portion (25) away from the installation opening slot (11) has anti-slip grooves; and / or, An abutment portion (26) is provided on one side of the pressure cover (20) close to the installation opening slot (11), and the abutment portion (26) is used to abut against the processor in the installation opening slot (11), and the abutment portion (26) is made of a flexible material.

6. The connector of the processor according to any one of claims 1 to 5, characterized in that: The base (10) is provided with a first fixing portion, the first fixing portion and the mounting opening groove (11) being spaced apart, the first fixing portion being adapted to be matched with the second fixing portion on the part to be fixed, so as to be fixed by the first fixing portion and the second fixing portion; one of the first fixing portion and the second fixing portion is a fixing groove (61), and the other is a fixing protrusion; and / or, The base (10) is provided with a first limiting portion, the first limiting portion being spaced apart from the mounting opening slot (11), and the first limiting portion being adapted to match the second limiting portion on the part to be limited, so as to perform matching limitation through the first limiting portion and the second limiting portion; one of the first limiting portion and the second limiting portion is a limiting slot (71), and the other is a limiting protrusion.

7. The connector of the processor according to any one of claims 1 to 5, characterized in that: The base (10) comprises a bottom plate (12) and a raised portion (13) connected to each other, the bottom plate (12) is provided with the mounting opening groove (11), the raised portion (13) is provided on the bottom plate (12) and protrudes from the bottom plate (12), the raised portion (13) is spaced apart from the mounting opening groove (11), and the raised portion (13) is spaced apart from a limiting groove (71) and a fixing groove (61); There are multiple fixing grooves (61), and the multiple fixing grooves (61) are arranged at intervals along the extension direction of the protruding portion (13); and / or, There are a plurality of the limiting grooves (71), and the plurality of limiting grooves (71) are arranged at intervals along the extension direction of the protruding portion (13); and / or, The limiting groove (71) is arranged on a side of the fixing groove (61) close to the installation opening groove (11), a part of the opening of the limiting groove (71) is located at the top of the protruding portion (13), and another part of the opening of the limiting groove (71) is located on the side of the protruding portion (13) close to the installation opening groove (11).

Citation Information

Patent Citations

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