Installation mechanism for improving read-write stability of solid state disk

By using magnetic suction components and shock-absorbing support columns in the installation mechanism of the solid-state drive, the problems of time-consuming and labor-intensive installation and poor shock-proof performance are solved, achieving more convenient installation and higher read and write stability.

CN222939442UActive Publication Date: 2025-06-03HUIJU ELECTRONICS (DONGGUAN) IND CO LTD
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Patent Information

Application Number
CN202421713832.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-06-03
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

The installation method of traditional solid-state drives is time-consuming and labor-intensive, and the shock-proof performance is poor when the device is hit, which affects the read and write stability.

Method used

The installation mechanism including a magnetic suction assembly, the first vertical shock absorbing support column and the second vertical shock absorbing support column is adopted. The installation and disassembly are carried out through magnetic suction connections, reducing the use of screws, improving installation convenience, and absorbing vibration through the shock absorbing support column to enhance the stability of the hard disk.

Benefits of technology

It realizes the convenience of the solid-state drive during installation and disassembly, reduces the dependence of tools, and improves the shock resistance and read and write stability of the hard drive through magnetic and shock absorption design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mounting mechanism for improving read-write stability of a solid state disk, which relates to the technical field of solid state disk mounting and comprises an assembly bracket, a hard disk bearing bracket, a first damping connecting piece, a second damping connecting piece, a first vertical supporting part, a first transverse supporting part, a second vertical supporting part and a second transverse supporting part, the first shock absorption connecting piece comprises a magnetic attraction assembly, a first vertical shock absorption supporting column and a second vertical shock absorption supporting column, during installation, the first vertical shock absorption supporting column and the second vertical shock absorption supporting column can be independently installed in advance, then the first vertical shock absorption supporting column and the second vertical shock absorption supporting column are connected through magnetic attraction, and the first vertical shock absorption supporting column and the second vertical shock absorption supporting column are connected through magnetic attraction. Under the condition of damping and supporting, the installation is more convenient; when the computer case needs to be temporarily disassembled or replaced to other positions of the computer case, force larger than magnetic attraction can be directly applied, so that the first vertical damping supporting column and the second vertical damping supporting column are separated, and a tool does not need to be used for carrying out a complex disassembling process.
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Description

Technical Field

[0001] The utility model relates to the technical field of solid-state drive installation, in particular to an installation mechanism for improving the reading and writing stability of solid-state drives. Background Art

[0002] A solid-state drive is a hard disk made of a solid-state electronic storage chip array, using flash memory as the storage medium. Its reading speed is relatively faster than that of a mechanical hard disk. The solid-state drive does not use a magnetic head, and the seek time is almost zero. The continuous writing speed is very amazing. Generally, a solid-state drive is installed inside a computer through a mounting bracket. However, traditionally, a solid-state drive and a mounting bracket are usually fixed by screws. This fixing method is time-consuming and laborious, not very convenient. At the same time, when the mounting bracket shakes during installation inside the computer, its shock-proof performance is poor, which causes great damage to the solid-state drive and affects its reading and writing stability.

[0003] Therefore, the Chinese utility model with the publication number CN218100105U proposed "A hard disk bracket and a computer case with high stability". There are several silicone buffer columns and silicone buffer cross-columns between the hard disk positioning plate and the fixed mounting plate. The silicone buffer columns and silicone buffer cross-columns can buffer external impact forces in the vertical and horizontal directions to reduce the damage to the hard disk when the device is impacted. However, when installing the silicone buffer columns, due to the structural limitations of the L-shaped connection block and the hard disk positioning plate, the clamping process of the silicone buffer columns is relatively difficult. The applicant also proposed a Chinese invention application with the publication number CN117111692A, "An installation mechanism for improving the reading and writing stability of solid-state drives and its installation method", and improved the structure of the flexible support rod (silicone buffer column). The flexible support rod includes a rod body made of a soft rubber material, and a limit screw is respectively assembled at both ends of the rod body. A limit buckle gap is formed between the cap top of the limit screw and the side surface of the rod body; the limit buckle gaps are respectively clamped to the corresponding upper foot interface or lower foot interface. In the case of having a first angle iron (L-shaped connection block) and a second angle iron (hard disk positioning plate), the rod body can be first placed between the first angle iron and the chassis. After the upper and lower screw holes on the rod body are aligned with the upper foot interface and the lower foot interface, the corresponding limit screws are then screwed on. The relatively difficult clamping process can be avoided.

[0004] However, it is found in use that when it is temporarily necessary to remove the hard disk together with the first angle iron and the second angle iron from the chassis, for example, when moving the hard disk to another chassis in the computer case for installation, at least one limit screw (such as the limit screw for fixing the first angle iron above) needs to be unscrewed for each flexible support column. Usually, the chassis is equipped with 4 flexible support columns for supporting and damping the hard disk, so at least four limit screws need to be unscrewed to remove the hard disk together with the first angle iron and the second angle iron from the chassis. In addition, as an emergency for temporary removal, usually users do not carry disassembly tools (cross screwdrivers) with them, which makes it more difficult to smoothly remove the hard disk together with the first angle iron and the second angle iron from the chassis when it is temporarily necessary. Utility Model Content

[0005] The present utility model aims to overcome the above deficiencies and provides a technical solution capable of solving the above problems.

[0006] To achieve the above object, the present utility model provides the following technical solution: an installation mechanism for improving the read / write stability of a solid-state drive, including

[0007] An assembly bracket, connected with a first vertical support part and a first horizontal support part;

[0008] A hard disk support bracket, connected with a second vertical support part corresponding to the first vertical support part and a second horizontal support part corresponding to the first horizontal support part;

[0009] A first damping connection part, used for detachably connecting the first vertical support part and the second vertical support part, and configured to be located between the first vertical support part and the second vertical support part;

[0010] A second damping connection part, connected to the first horizontal support part or the second horizontal support part, and configured to be located between the first horizontal support part and the second horizontal support part;

[0011] Wherein, the first damping connection part includes a magnetic attraction component, a first vertical damping support column connected to the first vertical support part, and a second vertical damping support column connected to the second vertical support part. One end of the first vertical damping support column far from the first vertical support part and one end of the second vertical damping support column far from the second vertical support part are corresponding up and down; the magnetic attraction component is configured to make one end of the first vertical damping support column far from the first vertical support part and one end of the second vertical damping support column far from the second vertical support part perform magnetic attraction cooperation when approaching each other.

[0012] As a further solution of the present utility model: the magnetic attraction component includes a first magnetic attraction part installed on one end of the first vertical damping support column far from the first vertical support part and a second magnetic attraction part installed on one end of the second vertical damping support column far from the second vertical support part, and the first magnetic attraction part and the second magnetic attraction part perform magnetic attraction cooperation.

[0013] As a further solution of the present utility model: on one side end face of the first vertical shock-absorbing support column corresponding to the second vertical shock-absorbing support column, a first installation groove for installing a first magnetic attraction member is formed; on one side end face of the second vertical shock-absorbing support column corresponding to the first vertical shock-absorbing support column, a second installation groove for installing a second magnetic attraction member is formed.

[0014] As a further solution of the present utility model: the first magnetic attraction member and the second magnetic attraction member are annular magnetic attraction members; one end face of the first magnetic attraction member and one end face of the second magnetic attraction member are vertically corresponding, and the magnetic poles of the end faces of the first magnetic attraction member and the second magnetic attraction member facing each other are opposite.

[0015] As a further solution of the present utility model: on the inner wall of the first installation groove, a first positioning column corresponding to the inner ring channel of the first magnetic attraction member is formed; on the inner wall of the second installation groove, a second positioning column corresponding to the inner ring channel of the second magnetic attraction member is formed.

[0016] Compared with the prior art, the beneficial effects of the present technical solution are as follows: when the second shock-absorbing connecting member and the first shock-absorbing connecting member are used in combination, the solid-state drive installed on the hard disk support bracket can better resist vibrations from the horizontal and vertical directions; through the magnetic attraction connection of the magnetic attraction assembly, during installation, the first vertical shock-absorbing support column can be pre-installed on the first vertical support part, and the second vertical shock-absorbing support column can be pre-installed on the second vertical support part, and then the first vertical shock-absorbing support column and the second vertical shock-absorbing support column are joined by magnetic attraction. In the case of providing shock-absorbing support, the installation is more convenient; when it is necessary to temporarily remove the hard disk support bracket together with the solid-state drive or replace it to other positions of the chassis, a force greater than the magnetic attraction can be directly applied to separate the first vertical shock-absorbing support column and the second vertical shock-absorbing support column, without the need to use tools for complex disassembly processes.

[0017] The additional aspects and advantages of the present utility model will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present utility model. Description of the Drawings

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 is the three-dimensional structure of the present utility model;

[0020] Figure 2is the structural explosion diagram of the present utility model;

[0021] Figure 3 is Figure 2 the enlarged schematic view of the partial structure at position A in

[0022] The corresponding reference numerals in the drawings are explained as follows:

[0023] Assembly bracket - 1, first vertical support part - 101, first horizontal support part - 102, first waist-shaped groove - 1011,

[0024] Hard disk support bracket - 2, second vertical support part - 201, second horizontal support part - 202,

[0025] First shock-absorbing connecting piece - 3, first vertical shock-absorbing support column - 301, second vertical shock-absorbing support column - 302, first magnetic attraction piece - 303, second magnetic attraction piece - 304, first installation groove - 305, first positioning column - 306, first clamping block - 307,

[0026] Second shock-absorbing connecting piece - 4. Specific implementation manners

[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0028] Please refer to Figures 1-3 , an installation mechanism for improving the read and write stability of a solid-state drive, including an assembly bracket 1, a hard disk support bracket 2, a first shock-absorbing connecting piece 3, and a second shock-absorbing connecting piece 4.

[0029] The assembly bracket 1 is used for being assembled in a corresponding working area, such as a computer case. A first vertical support part 101 and a first horizontal support part 102 are connected to the assembly bracket 1. As Figure 2 shown, both the left and right sides of the assembly bracket 1 are connected with a first vertical support part 101 and a first horizontal support part 102.

[0030] The hard disk support bracket 2 is used for installing a solid-state drive. A second vertical support part 201 corresponding to the first vertical support part and a second horizontal support part 202 corresponding to the first horizontal support part are connected to the hard disk support bracket 2. As Figure 1 , 2As shown, the hard disk support bracket 2 consists of two parts on the left and right. A solid-state drive (not shown) is connected to these two parts, and a second vertical support portion 201 and a second horizontal support portion 202 are connected to each part.

[0031] The first shock-absorbing connector 3 is used to detachably connect the first vertical support portion 101 and the second vertical support portion 201, and is configured to be located between the first vertical support portion 101 and the second vertical support portion 201; when vibrations occur in the working area, the first shock-absorbing connector 3 is used to absorb vibrations, so that the vibrations transmitted from the first vertical support portion 101 to the hard disk support bracket 2 are weakened.

[0032] The second shock-absorbing connector 4 is connected to the first horizontal support portion 102 or the second horizontal support portion 202, and is configured to be located between the first horizontal support portion 102 and the second horizontal support portion 202; the second shock-absorbing connector 4 is also used to absorb vibrations, so that the vibrations transmitted from the first horizontal support portion 102 to the hard disk support bracket 2 are weakened. Different from the vertical support and shock absorption formed by the first shock-absorbing connector 3, the second shock-absorbing connector 4 forms horizontal support and shock absorption. When used in combination with the first shock-absorbing connector 3, the solid-state drive installed on the hard disk support bracket 2 can better resist vibrations from the horizontal and vertical directions.

[0033] As Figure 1 、 2 shown, in this embodiment, the second shock-absorbing connector 4 is connected to the first horizontal support portion 102.

[0034] The first shock-absorbing connector 3 includes a magnetic attraction component, a first vertical shock-absorbing support column 301 connected to the first vertical support portion, and a second vertical shock-absorbing support column 302 connected to the second vertical support portion. One end of the first vertical shock-absorbing support column 301 far from the first vertical support portion and one end of the second vertical shock-absorbing support column 302 far from the second vertical support portion are corresponding up and down; the magnetic attraction component is configured to make one end of the first vertical shock-absorbing support column 301 far from the first vertical support portion and one end of the second vertical shock-absorbing support column 302 far from the second vertical support portion perform magnetic attraction cooperation when approaching each other. Through the magnetic attraction connection of the magnetic attraction component, during installation, the first vertical shock-absorbing support column 301 can be pre-installed on the first vertical support portion 101 alone, and the second vertical shock-absorbing support column 302 can be pre-installed on the second vertical support portion 201, and then the first vertical shock-absorbing support column 301 and the second vertical shock-absorbing support column 302 are joined by magnetic attraction. In the case of providing shock-absorbing support, the installation is more convenient; when it is necessary to temporarily remove the hard disk support bracket 2 together with the solid-state drive or replace it to other positions in the chassis, a force greater than the magnetic attraction can be directly applied to separate the first vertical shock-absorbing support column 301 and the second vertical shock-absorbing support column 302, without the need to use tools for complex disassembly processes.

[0035] In some embodiments, the first vertical shock-absorbing support column 301, the second vertical shock-absorbing support column 302, and the second shock-absorbing connector 4 can be made of silicone material, enabling them to support while providing shock absorption.

[0036] In this embodiment, the magnetic attraction assembly includes a first magnetic attraction member 303 installed at one end of the first vertical shock-absorbing support column 301 away from the first vertical support portion, and a second magnetic attraction member 304 installed at one end of the second vertical shock-absorbing support column 302 away from the second vertical support portion. The first magnetic attraction member 303 and the second magnetic attraction member 304 are magnetically coupled.

[0037] In some embodiments, a first installation groove 305 for installing the first magnetic attraction member 303 is formed on one side end surface of the first vertical shock-absorbing support column 301 corresponding to the second vertical shock-absorbing support column; a second installation groove for installing the second magnetic attraction member 304 is formed on one side end surface of the second vertical shock-absorbing support column 302 corresponding to the first vertical shock-absorbing support column.

[0038] Preferably, the first magnetic attraction member 303 and the second magnetic attraction member 304 are annular magnetic attraction members; one end surface of the first magnetic attraction member 303 and one end surface of the second magnetic attraction member 304 are vertically corresponding, and the magnetic poles of the end surfaces of the first magnetic attraction member 303 and the second magnetic attraction member 304 facing each other are opposite.

[0039] As Figure 2 、 3 shown, the first magnetic attraction member 303 and the second magnetic attraction member 304 are of the same size, and the first installation groove 305 and the second installation groove are provided at the center of the end surface of the corresponding shock-absorbing support column.

[0040] When performing magnetic attraction engagement, through the settings of the first magnetic attraction member 303 and the second magnetic attraction member 304, the first vertical shock-absorbing support column 301 and the second vertical shock-absorbing support column 302 have the ability of automatic alignment, so as to be able to apply a larger support surface as much as possible.

[0041] More preferably, a first positioning column 306 corresponding to the inner ring channel of the first magnetic attraction member 303 is formed on the inner wall of the first installation groove 305; a second positioning column corresponding to the inner ring channel of the second magnetic attraction member is formed on the inner wall of the second installation groove.

[0042] In some embodiments, the first magnetic attraction member 303 and the second magnetic attraction member 304 are magnets.

[0043] In some embodiments, one end of the first vertical shock-absorbing support column 301 away from the first installation groove 305 is connected to a first connecting column, and one end of the first connecting column away from the first vertical shock-absorbing support column 301 is connected to a first clamping block 307, and the width of the first clamping block 307 is greater than the width of the first connecting column.

[0044] The first vertical support portion 101 is penetrated by a first waist-shaped groove 1011. The first waist-shaped groove 1011 has a first wide portion adapted for the first clamping block 307 to pass through, and a first narrow portion that communicates with the first wide portion and forms a passage allowing the first connecting column to enter but restricting the first clamping block from passing through.

[0045] When connecting the first vertical shock-absorbing support column 301 to the first vertical support portion 101, the first clamping block can first pass through the first wide portion of the first waist-shaped groove 1011, and then the first connecting column can be moved into the first narrow portion through the communication between the first wide portion and the first narrow portion, forming a clamping connection that restricts the first clamping block from passing through.

[0046] The connection of the second vertical shock-absorbing support column 302 to the second vertical support portion 201 and the connection of the second shock-absorbing connecting member 4 to the first horizontal support portion 102 can refer to the above-mentioned clamping connection, which will not be elaborated here one by one.

[0047] After the second shock-absorbing connecting member 4 is connected to the first horizontal support portion 102, the cooperation between the second shock-absorbing connecting member 4 and the second horizontal support portion 202 can be lateral abutment.

[0048] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, in any regard, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.

Claims

1. A mounting mechanism for improving the read and write stability of a solid state hard disk, characterized in that: include An assembly bracket connected with a first vertical support portion and a first horizontal support portion; A hard disk supporting bracket, connected with a second vertical supporting portion corresponding to the first vertical supporting portion and a second horizontal supporting portion corresponding to the first horizontal supporting portion; A first shock-absorbing connector, used for detachably connecting the first vertical support portion and the second vertical support portion, and configured to be located between the first vertical support portion and the second vertical support portion; A second shock-absorbing connecting member is connected to the first lateral supporting portion or the second lateral supporting portion and is configured to be located between the first lateral supporting portion and the second lateral supporting portion; in, The first shock-absorbing connecting member includes a magnetic attraction component, a first vertical shock-absorbing support column connected to the first vertical support part, and a second vertical shock-absorbing support column connected to the second vertical support part. An end of the first vertical shock-absorbing support column away from the first vertical support part and an end of the second vertical shock-absorbing support column away from the second vertical support part correspond to each other in upper and lower directions; the magnetic attraction component is configured to enable an end of the first vertical shock-absorbing support column away from the first vertical support part and an end of the second vertical shock-absorbing support column away from the second vertical support part to perform magnetic attraction cooperation when they are close to each other.

2. The mounting mechanism for improving the read and write stability of a solid state hard disk according to claim 1, characterized in that: The magnetic attraction assembly includes a first magnetic attraction component installed on one end of the first vertical shock-absorbing support column away from the first vertical support part, and a second magnetic attraction component installed on one end of the second vertical shock-absorbing support column away from the second vertical support part. The first magnetic attraction component and the second magnetic attraction component are magnetically matched.

3. The mounting mechanism for improving the read and write stability of a solid state hard disk according to claim 2, characterized in that: A first mounting groove for mounting a first magnetic attraction member is formed on a side end surface of the first vertical shock-absorbing support column corresponding to the second vertical shock-absorbing support column; A second installation groove for installing a second magnetic attraction member is formed on a side end surface of the second vertical shock-absorbing support column corresponding to the first vertical shock-absorbing support column.

4. The mounting mechanism for improving the read and write stability of a solid state hard disk according to claim 3, characterized in that: The first magnetic attraction member and the second magnetic attraction member are annular magnetic attraction members; One end surface of the first magnetic attraction member corresponds to one end surface of the second magnetic attraction member in the upper and lower parts, and the magnetic poles of the end surfaces of the first magnetic attraction member and the second magnetic attraction member facing each other are opposite.

5. The mounting mechanism for improving the read and write stability of a solid state hard disk according to claim 4, characterized in that: A first positioning column corresponding to the inner ring channel of the first magnetic attraction member is formed on the inner wall of the first installation groove; A second positioning column corresponding to the inner ring channel of the second magnetic attraction member is formed on the inner wall of the second installation groove.

Citation Information

Patent Citations

  • Installation mechanism for improving read-write stability of solid state disk and installation method thereof

    CN117111692A

  • Hard disk bracket with high stability and computer case

    CN218100105U