Connector, fool-proof dismounting mechanism, front window module and server

By designing anti-slip protrusions and limiting holes on the connector body, the problem of inconvenient board disassembly in the prior art is solved, and convenient disassembly operation is realized in the 2U chassis.

CN223665709UActive Publication Date: 2025-12-12INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202423281919.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-12
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

The high-density connectors in the existing technology cannot adapt to the foolproof disassembly operation of the direct operation board, which makes it inconvenient to disassemble the board in the 2U chassis.

Method used

A connector body was designed with anti-slip protrusions and limiting holes. The anti-slip protrusions and limiting holes work together to embed the connector in a fixed position on the server, simplifying the disassembly and removal of the board.

Benefits of technology

It improves operability in limited spaces, simplifies the board disassembly process, and enhances operational convenience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223665709U_ABST
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Abstract

The utility model discloses a connector, a fool-proof disassembly and assembly mechanism, a front window module and a server, and belongs to the technical field of computers, the connector comprises a connector body, and a group of opposite side walls of the connector body are respectively provided with anti-skid bulges capable of fixing the connector body; the anti-skid protrusions are of a cuboid structure as a whole, and the width direction of the anti-skid protrusions is parallel to the plugging direction of the connector body. At least one set of deformation notches which are oppositely formed in the long sides of the anti-skid protrusions are formed in the anti-skid protrusions, and the adaptability when the anti-skid protrusions are fixed is improved through the deformation notches. The connector body can be embedded in the fixed position of the server through the anti-skid protrusions on the outer wall of the connector body, so that the disassembly operation of directly operating a board card is facilitated, and the convenient operability in a limited space is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of computer, specifically a connector, prevent stupid dismounting mechanism, front window module and server. BACKGROUND

[0002] The server is a kind of high-performance computer, as the node of network, 80% data, information on network are stored and handled, so it is also called the soul of network.It is more high in processing capacity, stability, reliability, security, scalability, manageability etc compared with ordinary computer.The server is similar to ordinary computer in composition, also has processor, hard disk, memory, system bus etc., but because high reliable service needs to be provided, it has higher requirements in processing capacity, stability, reliability, security, scalability, manageability etc.

[0003] The continuous development of internet technology makes the server occupy the pivotal position in the internet field.The server performance requirement is continuously improved, and the use of high-performance CPU and high-performance memory will put higher requirements on the server heat dissipation.The continuous development of big data, ChatGPT, AI and deep learning makes the server carry higher performance and higher power processing unit, so that the server computing power performance has higher requirements.In the server iteration change nowadays, multi-way CPU server is increasingly developed, and under the condition of high computing power requirement, double node becomes increasingly frequent, and the existing technology often realizes double node control by arranging two CPUs on a mainboard, which makes the mainboard layout occupy a larger space in the case, and it is more difficult to stack other components and functional elements.Another way is to assemble two mainboards on the upper and lower layers to realize double node server, so that the internal space layout of the case is more relaxed.But because the internal space of 2U case is limited, the board card exists the inconvenient operation condition in the limited space for dismounting.The high-density connector in the prior art needs to be held manually for artificial connection, and cannot adapt to the foolproof operation of directly operating board card. UTILITY MODEL CONTENTS

[0004] To solve the problem that the existing technology clock connector cannot adapt to the foolproof dismounting operation of directly operating board card, leading to the inconvenient dismounting of board card in 2U case, the utility model provides a connector, foolproof dismounting mechanism, front window module and server.

[0005] The utility model is realized by the following technical solutions:

[0006] A connector comprises a connector body, a set of opposite side walls of the connector body are respectively provided with anti-skid protrusions capable of fixing the connector body; the anti-skid protrusions are in the overall cuboid structure, the width direction of the anti-skid protrusions is parallel to the plug-in direction of the connector body; at least one set of deformation notches are oppositely arranged on the long sides of the anti-skid protrusions, and the deformation notches are capable of improving the adaptability when the anti-skid protrusions are fixed.

[0007] The anti-skid protrusions on the outer wall of the connector body can be embedded in the fixed position of the server, thereby facilitating the direct operation of the disassembly operation of the board card and improving the convenient operation in the limited space.

[0008] A foolproof disassembly mechanism comprises a first cross beam and the connector, the first cross beam is provided with a first connector placing groove capable of accommodating the connector body, and a first limiting baffle capable of pressing the connector body is detachably connected at the opening of the first connector placing groove; the first limiting baffle is provided with a first limiting hole b capable of being matched with the anti-skid protrusion, and the side, opposite to the first limiting baffle, of the first connector placing groove is provided with a first limiting hole a capable of being matched with the anti-skid protrusion.

[0009] Further improvement of the utility model still has, the first limiting hole a and the first limiting hole b are same in structure; the first limiting hole a is in the overall H-shaped structure that two ends are wide and the middle is narrow, and the H-shaped structure can form extrusion contact after being inserted into the anti-skid protrusion. That is to say, the narrower part in the first limiting hole a can form extrusion on both sides of the anti-skid protrusion, so as to form the limitation of the connector body in cooperation with the deformation notch on the anti-skid protrusion.

[0010] Further improvement of the utility model still has, the both sides of the opening of the first connector placing groove are respectively provided with first placing groove bosses capable of supporting both ends of the first limiting baffle; the end of the first limiting baffle is installed on the first placing groove boss through a locking member.

[0011] A foolproof disassembly mechanism comprises a second cross beam and the connector, the second cross beam is provided with a second connector placing groove capable of accommodating the connector body, and a second limiting baffle capable of pressing the connector body is detachably connected at the opening of the second connector placing groove; the second limiting baffle is provided with a second limiting hole b capable of being matched with the anti-skid protrusion, and the side, opposite to the second limiting baffle, of the second connector placing groove is provided with a second limiting hole a capable of being matched with the anti-skid protrusion.

[0012] The further improvement of the utility model also has that the second limiting hole a and the second limiting hole b are same in structure; the second limiting hole a is H type structure which is wide at both ends and narrow in the middle, and the H type structure can form extrusion contact after being inserted into the anti-skid convex.

[0013] The further improvement of the utility model also has that the bottom edge of the second cross beam is provided with a plurality of second guide holes for guiding cooperation with the server to realize butt joint of the second cross beam and the server.

[0014] The further improvement of the utility model also has that the side plate of the second cross beam is provided with a plurality of second fixing screw holes for being fixed in the server.

[0015] The further improvement of the utility model also has that the second placing groove convex is arranged on both sides of the opening of the second connector placing groove and can support both ends of the second limiting baffle; the end of the second limiting baffle is installed on the second placing groove convex through the locking member.

[0016] A front window module, comprising a support member for mounting a board card, one end of the support member is provided with the fool-proof dismounting mechanism; the first cross beam is a double-layer structure with same layout of upper and lower layers.

[0017] A server, comprising a case shell and the front window module, the support member is installed in the front window of the case shell.

[0018] A server, comprising a case shell, a mainboard body and the fool-proof dismounting mechanism, the second cross beam is detachably installed in the middle of the case shell, the mainboard body is installed on one side of the second cross beam, and the connector body is used for plugging with a mainboard connecting head on the mainboard body; the inner bottom surface of the case shell is provided with a positioning column capable of cooperating with the second guide hole; the inner side wall of the case shell is provided with a case fixing screw hole capable of corresponding to the second fixing screw hole, and the case fixing screw hole can pass through the case fixing screw hole and the second fixing screw hole through a screw to install the second cross beam in the case shell.

[0019] From the above technical scheme, the utility model has the beneficial effects that the anti-skid convex on the outer wall of the connector body can be embedded in the fixed position of the server, so as to help realize the dismounting operation of directly operating the board card and improve the convenient operation in the limited space. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to make the technical scheme of the utility model more clear, the following will briefly introduce the drawings needed to be used in the description, obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creative labor.

[0021] Figure 1 It is the connector structure schematic view of the embodiment of the utility model.

[0022] Figure 2 It is the first crossbeam structure schematic view of the embodiment of the utility model.

[0023] Figure 3 It is the second crossbeam structure schematic view of the embodiment of the utility model.

[0024] Figure 4 It is the server structure schematic view of the embodiment of the utility model.

[0025] Figure 5 It is the server structure schematic view of the embodiment of the utility model and the front window module are installed mainboard.

[0026] In the drawings: 10, connector body, 11, anti-skid convex, 20, first crossbeam, 21, first connector placing groove, 211, first placing groove boss, 212, first limit hole a, 22, first limit baffle, 221, first limit hole b, 30, second crossbeam, 31, second connector placing groove, 311, second placing groove boss, 312, second limit hole a, 32, second limit baffle, 321, second limit hole b, 33, second guide hole, 34, second fixed screw hole, 40, case shell, 41, positioning column, 42, case fixed screw hole, 50, mainboard tray, 60, mainboard body, 61, mainboard connector. Specific embodiments

[0027] In order to make the purpose, feature, advantage of the utility model more obvious and easy to understand, the following will combine the drawings in the embodiment, and the technical scheme in the utility model is clearly and completely described, obviously, the following described embodiment is only a part of the embodiment of the utility model, and not all the embodiments. Based on the embodiment in the patent, all other embodiments obtained by those skilled in the art without creative labor are within the scope of the patent protection.

[0028] Embodiment one:

[0029] As Figure 1The utility model discloses a connector, including connector body 10, one group of opposite side walls of connector body 10 is equipped with the anti -skid boss 11 of fixed connector body 10 can be to, the anti -skid boss 11 whole is the cuboid structure, the width direction of anti -skid boss 11 is parallel with the plug -in direction of connector body 10, be equipped with at least one group on the anti -skid boss 11 long side and open mutually opposite deformation gap, the deformation gap is with the adaptability of promotion in the anti -skid boss 11 fixed time, through the anti -skid boss 11 on the outer wall of connector body 10 can be embedded in the fixed position of server of connector body 10, thereby help to realize the disassembly operation of directly operating board card, promote the convenient operation in the limited space.

[0030] Embodiment two:

[0031] As Figures 1-2 The utility model discloses a foolproof dismounting mechanism, including first crossbeam 20 and connector, be equipped with the first connector placing groove 21 of accommodating connector body 10 on first crossbeam 20, the first connector placing groove 21's opening place detachably connected with the first limit baffle 22 of the anti -skid boss 11 of connector body 10 pressure tightly can be to, the first limit baffle 22 is equipped with the first limit hole b 221 of mutually adapting on the anti -skid boss 11, the opposite side of first connector placing groove 21 and first limit baffle 22 is equipped with the first limit hole a 212 of mutually adapting on the anti -skid boss 11.

[0032] The first limit hole a 212 and first limit hole b 221 structure are same, the first limit hole a 212 whole is the H type structure of two ends wide middle narrow, this H type structure can form extrusion contact to the anti -skid boss 11 after inserting, that is to say, the part of first limit hole a 212 middle narrow can form extrusion to the both sides of anti -skid boss 11, to form the limitation of connector body 10 with the deformation gap on the anti -skid boss 11.

[0033] The opening place both sides of first connector placing groove 21 are equipped with the first placing groove boss 211 of the both ends of first limit baffle 22 can be supported respectively, the end of first limit baffle 22 is installed on first placing groove boss 211 through locking piece. Help to provide operating space to the installation of connector body 10 with anti -skid boss 11 on first crossbeam 20.

[0034] Embodiment three:

[0035] As Figure 5As shown, a front window module includes a support member for installing a network board. One end of the support member is provided with the anti-foolproof disassembly and assembly mechanism. The first crossbeam 20 is welded or integrally formed on the support member. The first crossbeam 20 is a double-layer structure with the same upper and lower layer layout.

[0036] Example 4:

[0037] like Figures 4-5 As shown, a server includes a chassis housing 40 and the front window module, wherein the support member is installed inside the front window of the chassis housing 40; the first crossbeam 20 is disposed at the end of the support member opposite to the front window.

[0038] Example 5:

[0039] like Figure 3 As shown, a foolproof disassembly and assembly mechanism includes a second crossbeam 30 and the connector; the second crossbeam 30 is provided with a second connector placement groove 31 that can accommodate the connector body 10, and a second limiting baffle 32 that can press the connector body 10 is detachably connected to the opening of the second connector placement groove 31; the second limiting baffle 32 is provided with a second limiting hole b321 that can be adapted to the anti-slip protrusion 11, and the side of the second connector placement groove 31 opposite to the second limiting baffle 32 is provided with a second limiting hole a312 that can be adapted to the anti-slip protrusion 11.

[0040] The second limiting hole a312 has the same structure as the second limiting hole b321; the second limiting hole a312 has an overall H-shaped structure that is wide at both ends and narrow in the middle, and this H-shaped structure can form a squeezing contact with the anti-slip protrusion 11 after it is inserted.

[0041] The bottom edge of the second crossbeam 30 is provided with several second guide holes 33 for cooperating with the server guide to realize the docking of the second crossbeam 30 with the server.

[0042] The side plate of the second crossbeam 30 has several second fixing screw holes 34 for fixing inside the server.

[0043] The second connector placement groove 31 has a second placement groove boss 311 on each side of the opening to support the two ends of the second limiting baffle 32; the ends of the second limiting baffle 32 are mounted on the second placement groove boss 311 by a locking member.

[0044] Example 6:

[0045] like Figures 4-5As shown in the server, including chassis shell 40, mainboard body 60 and the foolproof dismounting mechanism, the second crossbeam 30 can be detachably installed in the middle of the chassis shell 40, the mainboard body 60 is installed on one side of the second crossbeam 30, and the connector body 10 is used for plugging with the mainboard connector 61 on the mainboard body 60; The inner bottom surface of the chassis shell 40 is provided with a positioning column 41 capable of cooperating with the second guide hole 33; The inner side wall of the chassis shell 40 is provided with a chassis fixing screw hole 42 capable of corresponding to the second fixing screw hole 34, the chassis fixing screw hole 42 can be screwed through the chassis fixing screw hole 42 and the second fixing screw hole 34 to install the second crossbeam 30 in the chassis shell 40.

[0046] The mainboard tray 50 corresponding to the second connector placing groove 31 is slidably arranged in the chassis shell 40, after the mainboard body 60 is installed and fixed, the mainboard tray 50 is pushed into the chassis shell 40, so that the mainboard connector 61 and the connector body 10 on the second crossbeam 30 are connected.

[0047] Embodiment seven:

[0048] As Figures 4-5 As shown in the server, including chassis shell 40, the front window of the chassis shell 40 is provided with a supporting member; The second crossbeam 30 is installed in the middle of the chassis shell 40, and the mainboard tray 50 is arranged close to the rear window end of the chassis shell 40.

[0049] The connector, the foolproof dismounting mechanism, the front window module and the server, the anti-skid convex 11 on the outer wall of the connector body 10 is embedded in the fixed position of the server, so as to help realize the dismounting operation of directly operating the board card, and improve the convenient operation in the limited space.

[0050] The above description of the disclosed embodiments enables those skilled in the art to implement or use the utility model. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the utility model. Therefore, the utility model will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A connector comprising a connector body (10), characterized in that, A set of opposite side walls of the connector body (10) is respectively provided with an anti-skid protrusion (11) capable of fixing the connector body (10); the anti-skid protrusion (11) has a cuboid structure, and the width direction of the anti-skid protrusion (11) is parallel to the plug-in direction of the connector body (10); the anti-skid protrusion (11) is provided with at least one set of deformation gaps oppositely formed on the long side of the anti-skid protrusion (11), and the deformation gaps are capable of improving the adaptability when the anti-skid protrusion (11) is fixed.

2. A fool-proof disassembly mechanism, characterized by The first cross beam (20) is provided with a first connector placing groove (21) capable of accommodating the connector body (10), and a first limiting baffle (22) capable of pressing the connector body (10) is detachably connected at the opening of the first connector placing groove (21); the first limiting baffle (22) is provided with a first limiting hole a (212) capable of adapting to the anti-skid protrusion (11), and the side opposite to the first limiting baffle (22) of the first connector placing groove (21) is provided with a first limiting hole a (212) capable of adapting to the anti-skid protrusion (11).

3. A fool-proof disassembly mechanism according to claim 2, wherein The first limiting hole a (212) and the first limiting hole b (221) have the same structure; the first limiting hole a (212) has an H-shaped structure with wide ends and a narrow middle, and the H-shaped structure is capable of forming extrusion contact with the anti-skid protrusion (11) after being inserted into the anti-skid protrusion (11).

4. A fool-proof disassembly mechanism characterized by, The second cross beam (30) is provided with a second connector placing groove (31) capable of accommodating the connector body (10), and a second limiting baffle (32) capable of pressing the connector body (10) is detachably connected at the opening of the second connector placing groove (31); the second limiting baffle (32) is provided with a second limiting hole b (321) capable of adapting to the anti-skid protrusion (11), and the side opposite to the second limiting baffle (32) of the second connector placing groove (31) is provided with a second limiting hole a (312) capable of adapting to the anti-skid protrusion (11).

5. A fool-proof disassembly mechanism according to claim 4, wherein The second limiting hole a (312) and the second limiting hole b (321) have the same structure; the second limiting hole a (312) has an H-shaped structure with wide ends and a narrow middle, and the H-shaped structure is capable of forming extrusion contact with the anti-skid protrusion (11) after being inserted into the anti-skid protrusion (11).

6. A fool-proof disassembly mechanism according to claim 4 or 5, wherein The bottom edge of the second cross beam (30) is provided with a plurality of second guide holes (33) for guiding the server, so as to realize the butt joint of the second cross beam (30) and the server.

7. A foolproof disassembly mechanism according to claim 6, characterized in that The side plate of the second cross beam (30) is provided with a plurality of second fixing screw holes (34) for being fixed in the server.

8. A front window module characterized by The support member for mounting the board card is provided with the fool-proof dismounting mechanism of claim 3 at one end; and the first cross beam (20) has a double-layer structure with the same layout of upper and lower layers.

9. A server, characterized by The front window module as claimed in claim 8 is installed in the front window of the cabinet shell (40).

10. A server, characterized by The cabinet shell (40), the mainboard body (60) and the fool-proof dismounting mechanism as claimed in claim 7, the second crossbeam (30) is detachably installed in the middle of the cabinet shell (40), the mainboard body (60) is installed on one side of the second crossbeam (30), and the connector body (10) is used for plugging with the mainboard connector (61) on the mainboard body (60); the inner bottom surface of the cabinet shell (40) is provided with a positioning column (41) capable of cooperating with the second guide hole (33); the inner side wall of the cabinet shell (40) is provided with a cabinet fixed screw hole (42) capable of corresponding to the second fixed screw hole (34), and the cabinet fixed screw hole (42) can pass through the cabinet fixed screw hole (42) and the second fixed screw hole (34) by a screw to install the second crossbeam (30) in the cabinet shell (40).