Solid state disk with buffer structure

By designing a buffer limit bracket and elastic tightening parts on the solid state drive, the stable horizontal disassembly of the solid state drive is achieved, solving the damage to the hard disk and motherboard during the disassembly, providing a simple operating experience and security.

CN223065706UActive Publication Date: 2025-07-04广州广哈通信股份有限公司
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Patent Information

Application Number
CN202422148059.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-07-04
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

In the prior art, disassembly of solid-state drives is prone to physical damage to the hard disk and motherboard, and the operation is complicated, requiring professional technology and tools.

Method used

Design a solid-state drive with a buffer structure, including a buffer limit frame, an elastic tightening member and a pulling member. The hard drive is removed by horizontal pulling out to avoid oblique bounce, and the elastic tightening member and pulling member are used to achieve stable positioning and simplify operation.

Benefits of technology

It reduces the risk of physical damage during the disassembly process, simplifies the operation process, reduces the risk of data loss, and is suitable for ordinary users to disassemble on their own, extends the life of the hard disk and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of solid state disks, and discloses a solid state disk with a buffer structure, which comprises a buffer limiting frame, an elastic jacking piece and a pulling piece, and the buffer limiting frame is sleeved on the outer side surface of the solid state disk and is arranged on a main board of a host; the elastic jacking piece is fixed at the top of the buffer limiting frame; the two jacking rods on the elastic jacking piece are used for jacking and positioning the plugging end of the solid state disk; the two pull rods on the pulling piece are aligned and inserted into hole sites at one end, far away from the plugging port, of the solid state disk, and the solid state disk is horizontally pulled out along the buffer limiting frame by pulling the pulling piece with a hand. When the solid state disk is disassembled, the jacking rod on the elastic jacking piece is pulled upwards, and the pulling piece is pulled to horizontally pull out the solid state disk along the buffer limiting frame, so that after the screw is disassembled, the solid state disk cannot be obliquely bounced up, double-sided limiting and positioning can be performed on the solid state disk, and the solid state disk can be prevented from being accidentally bounced out during disassembly; and the physical damage risk to the hard disk and the mainboard is reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of solid - state drives, and particularly relates to a solid - state drive with a buffer structure. Background Art

[0002] As Figure 7 shown, solid - state drives are often long - strip - shaped, and there is a fixing screw at the tail end (the end far from the insertion interface). The solid - state drive installed on the host motherboard is inserted into the connection port of the motherboard through the insertion interface, and then fixed on the motherboard by the fixing screw. When disassembling, remove the screw at the end of the solid - state drive far from the insertion interface. At this time, the solid - state drive will automatically bounce obliquely. Then, when removing the solid - state drive, hold the solid - state drive at the end far from the insertion interface by hand and twist the solid - state drive up and down to remove the solid - state drive from the connection port of the motherboard.

[0003] During the disassembly process, if the solid - state drive is directly twisted up and down by hand, it may cause physical damage to the interface part of the hard drive, affecting its normal use or shortening the hard - drive life. A forced or improper disassembly process may damage the connection port on the motherboard, affecting the normal operation of the motherboard or other devices. This operation requires the user to have certain technical knowledge and operation skills, which may be inconvenient or error - prone for ordinary users.

[0004] Therefore, we propose a solid - state drive with a buffer structure that has a buffer limit frame on the outside of the solid - state drive. When the screw is removed, the solid - state drive will not bounce obliquely, and it can horizontally pull out the solid - state drive with buffering. Content of the Utility Model

[0005] The present invention aims to solve the technical problem in the above - mentioned prior art that directly twisting the solid - state drive up and down by hand during disassembly is likely to cause damage to the solid - state drive.

[0006] To achieve the above object, the utility model provides the following technical solutions:

[0007] A solid - state drive with a buffer structure includes a buffer limit frame, an elastic tightening member, and a pulling member. The buffer limit frame is sleeved on the outer side of the solid - state drive and installed on the host motherboard; the elastic tightening member is fixed at the top of the buffer limit frame and is located on the side close to the insertion interface of the solid - state drive; two tightening rods on the elastic tightening member tightly position the insertion end of the solid - state drive.

[0008] Two pull rods on the pulling member are aligned and inserted into the hole positions at the end of the solid - state drive far from the insertion interface, and the solid - state drive is horizontally pulled out along the buffer limit frame by pulling the pulling member by hand.

[0009] Preferably, the buffer limiting frame includes a U-shaped bottom plate, a U-shaped top plate, and four vertical rods connecting the U-shaped bottom plate and the U-shaped top plate. The U-shaped bottom plate, the U-shaped bottom plate, and the four vertical rods are integrally formed structures.

[0010] Preferably, the U-shaped bottom is located at the right bottom of the U-shaped top plate, and the U-shaped bottom plate is provided with mounting holes for mounting it on the main board of the host.

[0011] Preferably, the U-shaped bottom plate is provided with a positioning groove. A screw A with an internal thread hole for fixing the U-shaped bottom plate on the main board of the host is screwed in the positioning groove. The solid-state drive is fixed on the U-shaped bottom plate through a screw B screwed into the internal thread hole.

[0012] When the buffer limiting frame is installed on the main board, firstly, the U-shaped bottom plate is installed on the main board of the host through screws passing through the mounting holes, and secondly, the U-shaped bottom plate is fixed on the main board of the host through the screw A with an internal thread hole;

[0013] When the solid-state drive is fixed on the buffer limiting frame, it is fixed on the U-shaped bottom plate through a screw B screwed into the internal thread hole.

[0014] Preferably, the elastic pressing member further includes two sleeves fixed at both ends of the top of the U-shaped top plate and a connecting rod connecting the tops of the two pressing rods. The two pressing rods respectively pass through the two sleeves, and a limiting disk limited in the sleeve is provided on the part of the two pressing rods located in the sleeve. A spring sleeved on the outer side of the pressing rod is provided between the limiting disk and the sleeve;

[0015] By pulling or loosening the connecting rod, the pressing rod is moved away from or pressed against the solid-state drive.

[0016] Preferably, the U-shaped top plate is provided with through holes for the pressing rods to penetrate.

[0017] Preferably, both sides of the connecting rod are provided with holding positions A. The design of the holding positions A facilitates pulling the connecting rod.

[0018] Preferably, the pulling member further includes a rectangular block fixed at the tops of the two pull rods. The rectangular block is provided with holding positions B. The design of the holding positions B facilitates pulling the rectangular block.

[0019] Preferably, guiding blocks for horizontally guiding and sliding in cooperation with the rectangular block are provided on both sides of the top of the U-shaped top plate, and limiting blocks limiting the top of the rectangular block are provided on the tops of the guiding blocks.

[0020] When the pulling member is pulled outwards, it can move horizontally along the guiding blocks and the limiting blocks, facilitating the horizontal pulling out of the solid-state drive in the plugging direction.

[0021] Compared with the prior art, the technical effects and advantages of the present utility model are:

[0022] The buffer limit frame of the solid-state drive with a buffer structure is installed on the host motherboard to position and limit the solid-state drive. After the solid-state drive plug interface is plugged into the host motherboard, it is limited within the buffer limit frame. The plug end of the solid-state drive is tightly positioned by the pressing rod on the elastic pressing member. When disassembling the solid-state drive, one hand pulls the pressing rod on the elastic pressing member upward, and the other hand pulls the pulling member to horizontally pull out the solid-state drive along the buffer limit frame. On the one hand, the setting of the buffer limit frame ensures that the solid-state drive will not bounce obliquely after the screws are removed. On the other hand, it can position and limit the solid-state drive on both sides.

[0023] Through the design of the elastic pressing member and the pulling member, the installation and disassembly process of the solid-state drive is greatly simplified. Users can easily disassemble the solid-state drive without professional tools or skills. The design of the elastic pressing member and the pulling member can prevent the solid-state drive from accidentally popping out during disassembly, reducing the risk of physical damage to the hard drive and the motherboard. Since the disassembly process is smooth, the risk of data loss caused by mechanical shock or voltage change is reduced.

[0024] By reducing the physical damage to the solid-state drive, the service life of the hard drive can be extended, and it also helps to keep the motherboard in good condition. For ordinary users, this design provides a more intuitive and comfortable operation experience, enabling easy replacement of the solid-state drive. The simplified disassembly and installation process reduces the maintenance cost because users can perform the replacement themselves without the help of professional technicians. Brief Description of the Drawings

[0025] Figure 1 It is a structural schematic diagram of the present utility model;

[0026] Figure 2 It is a structural schematic diagram of the buffer limit frame, the elastic pressing member and the pulling member of the present utility model;

[0027] Figure 3 For the present utility model Figure 2 Exploded view;

[0028] Figure 4 It is a structural schematic diagram of the elastic pressing member of the present utility model;

[0029] Figure 5 For the present utility model Figure 4 Sectional view along line A-A in the present utility model;

[0030] Figure 6 It is a structural schematic diagram of the solid-state drive of the present utility model;

[0031] Figure 7 It is a disassembly flow chart of the solid-state drive of the prior art.

[0032] In the figure: 100, buffer limit frame; 11, U-shaped bottom plate; 12, U-shaped top plate; 13, vertical rod; 14, mounting hole; 15, positioning groove; 16, internal thread hole; 17, screw A; 18, screw B; 19, through hole; 110, guide block; 111, limit block; 200, elastic tightening member; 21, tightening rod; 22, sleeve; 23, connecting rod; 24, limit disc; 25, spring; 26, hand-held position A; 300, pulling member; 31, pull rod; 32, rectangular block; 33, hand-held position B; 400, solid-state drive; 41, plug interface; 42, hole position. Detailed implementation mode

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0034] The following combines the attached Figures 1-6 This application will be further described in detail.

[0035] The embodiment of this application discloses a solid-state drive with a buffer structure, including a buffer limit frame 100, an elastic tightening member 200, and a pulling member 300;

[0036] The buffer limit frame 100 is sleeved on the outer side of the solid-state drive 400 and installed on the host motherboard; the buffer limit frame 100 includes a U-shaped bottom plate 11, a U-shaped top plate 12, and four vertical rods 13 connecting the U-shaped bottom plate 11 and the U-shaped top plate 12. The U-shaped bottom plate 11, the U-shaped bottom plate 11, and the four vertical rods 13 are an integrally formed structure;

[0037] The U-shaped bottom is located at the right bottom of the U-shaped top plate 12, and the U-shaped bottom plate 11 is provided with a mounting hole 14 for installing it on the host motherboard. The U-shaped bottom plate 11 is provided with a positioning groove 15. A screw A 17 with an internal thread hole 16 that fixes the U-shaped bottom plate 11 on the host motherboard is threadedly connected in the positioning groove 15. The solid-state drive 400 is fixed on the U-shaped bottom plate 11 by a screw B 18 screwed into the internal thread hole 16;

[0038] With this setting, when the buffer limit frame 100 is installed on the motherboard, first, the U-shaped bottom plate 11 is installed on the host motherboard through a screw passing through the mounting hole 14, and second, the U-shaped bottom plate 11 is fixed on the host motherboard by a screw A 17 with an internal thread hole 16;

[0039] When the solid-state drive 400 is fixed on the buffer limiting frame 100, it is fixed on the U-shaped bottom plate 11 by a screw B18 screwed into the internal thread hole 16. This ensures the stable positioning of the solid-state drive 400 and also facilitates the installation and disassembly of the solid-state drive 400. When it is necessary to disassemble the solid-state drive 400, just loosen the screw B18. Due to the design of the internal thread hole 16, the solid-state drive 400 can be easily removed from the U-shaped bottom plate 11 without disassembling the entire buffer limiting frame 100.

[0040] The elastic pressing member 200 is fixed on the top of the buffer limiting frame 100 and is located on one side close to the insertion interface 41 of the solid-state drive 400; the two pressing rods 21 on the elastic pressing member 200 press and position the insertion end of the solid-state drive 400; the elastic pressing member 200 further includes two sleeves 22 fixed at both ends of the top of the U-shaped top plate 12 and a connecting rod 23 connected to the tops of the two pressing rods 21. The two pressing rods 21 respectively penetrate through the two sleeves 22, and a limiting disc 24 limited in the sleeve 22 is provided on the part of the two pressing rods 21 located in the sleeve 22. A spring 25 sleeved on the outer side surface of the pressing rod 21 is provided between the limiting disc 24 and the sleeve 22;

[0041] By lifting or loosening the connecting rod 23, the pressing rod 21 is moved away from the solid-state drive 400 or pressed against the solid-state drive 400. A through hole 19 for the pressing rod 21 to penetrate is provided on the U-shaped top plate 12, and a hand-held position A26 is provided on both sides of the connecting rod 23. The design of the hand-held position A26 facilitates lifting the connecting rod 23.

[0042] Lift the connecting rod 23, the limiting disc 24 moves upward in the sleeve 22, compressing the spring 25, and the pressing rod 21 moves away from the solid-state drive 400. Release the connecting rod 23, the limiting disc 24 moves downward in the sleeve 22, the spring 25 rebounds, and the pressing rod 21 presses against the solid-state drive 400.

[0043] The two pull rods 31 on the pulling member 300 are aligned and inserted into the hole positions 42 at one end of the solid-state drive 400 away from the insertion interface 41, and the solid-state drive 400 is horizontally pulled out along the buffer limiting frame 100 by hand-pulling the pulling member 300. The pulling member 300 further includes a rectangular block 32 fixed on the tops of the two pull rods 31, and a hand-held position B33 is provided on the rectangular block 32. The design of the hand-held position B33 facilitates pulling the rectangular block 32. Guide blocks 110 for horizontally guiding and translating and sliding in cooperation with the rectangular block 32 are provided on both sides of the top of the U-shaped top plate 12, and a limiting block 111 limiting the top of the rectangular block 32 is provided on the top of the guide block 110.

[0044] When the pulling member 300 is pulled outwards, it can move horizontally along the guiding block 110 and the limiting block 111, facilitating the horizontal pulling out of the solid-state drive 400 in the plugging direction. There is no need for complex disassembly operations, improving the simplicity and efficiency of disassembly. The design of horizontal pulling reduces the torsion and lateral pressure on the solid-state drive 400 during disassembly, thereby reducing the risk of physical damage and protecting the structure and data of the solid-state drive 400. By pulling out horizontally, damage to the main board and interfaces during disassembly can be avoided, ensuring the integrity of the main board and the reliability of the interfaces.

[0045] For this solid-state drive with a buffer structure, the buffer limiting frame 100 is installed on the host main board for positioning and limiting the solid-state drive 400. After the plug interface 41 of the solid-state drive 400 is plugged into the host main board, it is limited within the buffer limiting frame 100. The plugging end of the solid-state drive 400 is tightly positioned by the tightening rod 21 on the elastic tightening member 200. When disassembling the solid-state drive 400, one hand pulls the tightening rod 21 on the elastic tightening member 200 upwards, and the other hand pulls the pulling member 300 to horizontally pull out the solid-state drive 400 along the buffer limiting frame 100. On the one hand, the setting of the buffer limiting frame 100 ensures that the solid-state drive 400 will not bounce obliquely after the screws are removed. On the other hand, it can perform double-sided positioning and limiting on the solid-state drive 400;

[0046] The buffer limiting frame 100 and the elastic tightening member 200 constitute the buffer structure of the solid-state drive 400. By designing the elastic tightening member 200 and the pulling member 300, the solid-state drive 400 can be safely disassembled. During disassembly, the user only needs to pull up the tightening rod 21 on the elastic tightening member 200 and then horizontally pull out the solid-state drive 400, avoiding the risk that the solid-state drive 400 may bounce obliquely in the traditional method. The buffer limiting frame 100 positions and limits the solid-state drive 400, protecting the hard drive from accidental pulling force or impact during installation and disassembly, and reducing the risk of physical damage.

[0047] The solid-state drive 400 is limited within the buffer limiting frame 100. Not only is the side of the plug interface 41 tightly positioned by the tightening rod 21, but it is also restricted by the buffer limiting frame 100 in the horizontal direction. This can more accurately position the solid-state drive 400 and avoid deviation during installation. This design makes the operations of disassembling and installing the solid-state drive 400 more intuitive and simple. The user does not need complex skills and only needs to operate according to the designed pull rod 31.

[0048] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A solid-state drive with a buffer structure, characterized in that, Including: A buffer limiting frame (100), which is sleeved on the outer side of the solid-state drive (400) and installed on the host motherboard; An elastic pressing member (200), which is fixed at the top of the buffer limiting frame (100) and located on one side close to the insertion interface (41) of the solid-state drive (400); two pressing rods (21) on the elastic pressing member (200) press and position the insertion end of the solid-state drive (400). A pulling member (300), two pull rods (31) on the pulling member (300) are aligned and inserted into the hole positions (42) at one end of the solid-state drive (400) away from the insertion interface (41), and the solid-state drive (400) is horizontally pulled out along the buffer limiting frame (100) by pulling the pulling member (300) by hand.

2. The solid-state drive with a buffer structure according to claim 1, wherein: The buffer limiting frame (100) includes a U-shaped bottom plate (11), a U-shaped top plate (12), and four vertical rods (13) connecting the U-shaped bottom plate (11) and the U-shaped top plate (12). The U-shaped bottom plate (11), the U-shaped bottom plate (11), and the four vertical rods (13) are of an integrally formed structure.

3. The solid-state drive with a buffer structure according to claim 2, wherein: The U-shaped bottom is located at the right bottom of the U-shaped top plate (12), and the U-shaped bottom plate (11) is provided with mounting holes (14) for mounting it on the host motherboard.

4. The solid-state drive with a buffer structure according to claim 2, wherein: The U-shaped bottom plate (11) is provided with a positioning groove (15), and a screw A (17) with an internal thread hole (16) for fixing the U-shaped bottom plate (11) on the host motherboard is threadedly connected in the positioning groove (15). The solid-state drive (400) is fixed on the U-shaped bottom plate (11) by a screw B (18) screwed into the internal thread hole (16).

5. The solid-state drive with a buffer structure according to claim 2, characterized in that: The elastic pressing member (200) further includes two sleeves (22) fixed at both ends of the top of the U-shaped top plate (12) and a connecting rod (23) connected to the tops of the two pressing rods (21). The two pressing rods (21) respectively penetrate through the two sleeves (22), and a limiting disc (24) limited in the sleeve (22) is provided on the part of the two pressing rods (21) located in the sleeve (22). A spring (25) sleeved on the outer side of the pressing rod (21) is provided between the limiting disc (24) and the sleeve (22); By lifting or loosening the connecting rod (23), the pressing rod (21) is moved away from the solid-state drive (400) or pressed against the solid-state drive (400).

6. The solid-state drive with a buffer structure according to claim 5, wherein: The U-shaped top plate (12) is provided with through holes (19) for the pressing rod (21) to penetrate through.

7. The solid-state drive with a buffer structure according to claim 5, characterized in that: Both sides of the connecting rod (23) are provided with a hand-held position A (26).

8. The solid-state drive with a buffer structure according to claim 7, wherein: The pulling member (300) further includes a rectangular block (32) fixed at the tops of the two pull rods (31), and a hand-held position B (33) is provided on the rectangular block (32).

9. The solid-state drive with a buffer structure according to claim 8, characterized in that: Both sides of the top of the U-shaped top plate (12) are provided with guide blocks (110) that horizontally guide and translate in cooperation with the rectangular block (32), and a limiting block (111) that limits the top of the rectangular block (32) is provided on the top of the guide block (110).