Computer memory

The double-sided flash memory chip layout and aluminum heat sink design solve the problem of hard disk overheating in computer storage, achieving more efficient heat dissipation and data storage security.

CN223333324UActive Publication Date: 2025-09-12SHENZHEN KUAIGAODENG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422582490.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-09-12
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The existing M.2 solid-state drive design for computer storage has an overheating problem caused by the single-sided storage structure, affecting data storage security.

Method used

It adopts a double-sided flash memory chip layout design, combined with an independent flash memory controller and an aluminum heat sink structure to achieve two-way heat dissipation from top to bottom, and the heat sink is fixed with screws to improve heat dissipation efficiency.

Benefits of technology

It effectively solves the problem of hard disk overheating, improves heat dissipation efficiency, reduces load pressure, and prevents the hard disk from overheating and damage during high-speed data processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of computer accessories, and discloses a computer memory which comprises a storage mechanism, the storage mechanism comprises a solid state disk, a plurality of flash memory chips are respectively arranged behind the upper end and the lower end of the solid state disk, and a flash memory controller is respectively arranged in front of the upper end and the lower end of the solid state disk. A connecting mechanism is arranged at the front end of the solid-state disk. The radiating plates are arranged at the upper end and the lower end of the hard disk body, the clamping seats are fixedly connected to the two ends of the hard disk body respectively, the upper radiating plate and the lower radiating plate are fixedly installed on the corresponding end faces of the two clamping seats through the screws, the multiple radiating grooves are formed in the ends, away from each other, of the two radiating plates respectively, and the radiating plates can be assisted in radiating; the heat dissipation efficiency of the whole hard disk can be further improved, and the hard disk is effectively prevented from being overheated during high-speed data processing.
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Description

Technical Field

[0001] The utility model relates to the technical field of computer accessories, in particular to a computer memory. Background Art

[0002] Computer memory is used to store programs and data, playing a vital role in computer systems. This includes external memory (auxiliary storage). External memory offers large storage capacity but relatively slow access speeds. Common examples of external memory include hard drives, optical disks, and USB flash drives. Data stored in external memory can be stored long-term and remains intact even if the computer loses power.

[0003] Existing computer memory has the following problems when in use: its external memory is usually stored in M.2 solid-state drives. Although they have faster read and write speeds and are more drop-resistant and durable, they usually use a single-sided storage structure design. As the read and write speeds increase, they actually generate a lot of heat and are easily damaged by overheating, which in turn affects the data stored inside. Utility Model Content

[0004] (1) Technical problems solved

[0005] In view of the deficiencies in the prior art, the present invention provides a computer memory that solves the problems raised in the background art.

[0006] (2) Technical solution

[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a computer memory, including a storage mechanism, the storage mechanism including a solid-state hard disk, a plurality of flash memory chips are respectively arranged behind the upper and lower ends of the solid-state hard disk, a flash memory controller is respectively arranged in front of the upper and lower ends of the solid-state hard disk, and a connecting mechanism is arranged at the front end of the solid-state hard disk.

[0008] As a further solution of the present invention: a mating groove is provided in the middle of the rear end of the solid-state hard drive, the connecting mechanism includes an interface chip arranged in front of the upper end of the solid-state hard drive, a hard drive connector is provided at the front end of the solid-state hard drive, and two hard drive connector slots are symmetrically provided at the front end of the hard drive connector.

[0009] As a further solution of the present invention: an auxiliary heat dissipation mechanism is provided on the outside of the solid-state hard disk, and the auxiliary heat dissipation mechanism includes a card seat fixedly connected to the two ends of the solid-state hard disk, and a heat dissipation plate is fixedly installed at each of the upper and lower ends of the card seat, and the two heat dissipation plates are arranged symmetrically in an upper and lower manner. A group of heat dissipation grooves are respectively opened in the middle of the outer side walls of the two heat dissipation plates at one end, and the heat dissipation plate is an aluminum plate body, and a group of heat dissipation grooves consists of multiple and are arranged horizontally at equal distances.

[0010] As a further solution of the present invention: a groove is provided at each of the four corners of the outer side walls of the two heat dissipation plates away from one end, a matching hole is provided in the middle of the groove, and a threaded hole is provided on the front and back sides of the upper and lower ends of the holder, and a screw is threadedly connected to the threaded hole, and the screw is inserted into the matching hole on the corresponding side.

[0011] Compared with the prior art, the beneficial effects of the present invention are:

[0012] 1. In the present invention, by adopting a double-sided flash memory chip layout structure design, the flash memory chips of the overall hard disk structure can dissipate heat in both directions, up and down. Compared with the flash memory chips arranged on a single side, its heat dissipation performance is better. At the same time, an independent flash memory controller is set for each side in conjunction with the multiple flash memory chips. Compared with the single flash memory controller structure, the two flash memory controllers are coordinated and controlled, which can reduce load pressure and thus reduce heat.

[0013] 2. In the present invention, heat sinks are provided at both ends of the hard disk body, and a card holder is fixedly connected to each end of the hard disk body. The upper and lower heat sinks are fixedly mounted on the corresponding end faces of the two card holders by screws. A plurality of heat dissipation slots are provided on each end of the two heat sinks to assist the heat dissipation of the heat sink, thereby further improving the heat dissipation efficiency of the entire hard disk and effectively preventing the hard disk from overheating during high-speed data processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is an overall three-dimensional diagram of the utility model;

[0015] Figure 2 The storage mechanism of the utility model is three-dimensional Figure 1 ;

[0016] Figure 3 The storage mechanism of the utility model is three-dimensional Figure 2 ;

[0017] Figure 4 This is a three-dimensional diagram of the auxiliary heat dissipation mechanism of the present utility model.

[0018] In the figure: 1. Storage mechanism; 2. Auxiliary heat dissipation mechanism; 11. Solid-state hard disk; 12. Hard disk connector; 13. Hard disk connector slot; 14. Flash memory controller; 15. Interface chip; 16. Flash memory chip; 21. Card holder; 22. Threaded hole; 23. Heat sink; 24. Heat sink; 25. Groove; 26. Matching hole; 27. Screw. DETAILED DESCRIPTION

[0019] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0020] In the description of this utility model, unless otherwise specified, "plurality" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific direction, be constructed, or operate in a specific direction, and therefore should not be construed as limiting this utility model. Furthermore, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0021] In the description of this utility model, it should be noted that, unless otherwise specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0022] See also Figures 1 to 4 In an embodiment of the present invention, a computer memory includes a storage mechanism 1, which includes a solid-state hard disk 11. A plurality of flash memory chips 16 are respectively arranged at the rear of the upper and lower ends of the solid-state hard disk 11, a flash memory controller 14 is respectively arranged in front of the upper and lower ends of the solid-state hard disk 11, and a connecting mechanism is provided at the front end of the solid-state hard disk 11. The overall layout structure design of the flash memory chip 16 is double-sided. The flash memory chip 16 of the overall hard disk structure can dissipate heat in both directions up and down. Compared with the single-sided arrangement of the flash memory chip 16, its heat dissipation performance is better. At the same time, an independent flash memory controller 14 is provided on each side in conjunction with the multiple flash memory chips 16 on the side. Compared with the single flash memory controller 14 structure, the two flash memory controllers 14 are coordinated and controlled to reduce the load pressure and thus reduce heat.

[0023] A mating slot is provided in the middle of the rear end of the solid-state hard drive 11. The connection mechanism includes an interface chip 15 arranged in front of the upper end of the solid-state hard drive 11. A hard drive connector 12 is provided at the front end of the solid-state hard drive 11. Two hard drive connector slots 13 are symmetrically provided at the front end of the hard drive connector 12. When in use, the hard drive connector 12 can be inserted into the corresponding installation slot of the computer motherboard, and the end of the solid-state hard drive 11 away from the hard drive connector 12 is pressed down, and fixed through the mounting assembly to cooperate with the mating slot at its rear end.

[0024] An auxiliary heat dissipation mechanism 2 is provided on the outside of the solid-state hard disk 11. The auxiliary heat dissipation mechanism 2 includes a card holder 21 fixedly connected to both ends of the solid-state hard disk 11. A heat sink 23 is fixedly installed at each upper and lower end of the card holder 21. The two heat sinks 23 are symmetrically arranged in an upper and lower manner. A group of heat dissipation grooves 24 are respectively opened in the middle of the outer side walls of the two heat sinks 23 at one end. The heat sink 23 is an aluminum plate. There are multiple heat dissipation grooves 24 in a group and they are arranged horizontally at equal distances. The upper and lower ends of the hard disk body are provided with heat sinks 23. A card holder 21 is fixedly connected to each end of the hard disk body. The upper and lower heat sinks 23 are fixedly installed on the corresponding end surfaces of the two card holders 21 by screws 27. The two heat sinks 23 are each opened with multiple heat dissipation grooves 24 at one end, which can assist the heat sink 23 in dissipating heat, further improve the heat dissipation efficiency of the entire hard disk, and effectively prevent the hard disk from overheating during high-speed data processing.

[0025] A groove 25 is provided at each of the four corners of the outer side walls of the two heat sinks 23 at one end, and a matching hole 26 is provided in the middle of the groove 25. A threaded hole 22 is provided on the front and back sides of the upper and lower ends of the base 21. The threaded hole 22 is connected to a screw 27 through the thread. The screw 27 is inserted into the matching hole 26 on the corresponding side. The screw 27 can be unscrewed to remove the heat sink 23 from the base 21.

[0026] The working principle of the present invention is as follows: when in use, the hard disk connector 12 can be inserted into the corresponding mounting slot of the computer motherboard, and the end of the solid-state drive 11 away from the hard disk connector 12 is pressed downward, and the mounting assembly is engaged with the mating slot at its rear end to secure it. The overall hard disk structure adopts a double-sided flash memory chip 16 layout design. The flash memory chips 16 of the overall hard disk structure can dissipate heat in both directions, up and down. Compared with the flash memory chips 16 arranged on a single side, its heat dissipation efficiency is better. At the same time, an independent flash memory controller 14 is provided for each side to match the multiple flash memory chips 16. Compared with the single flash memory controller 14 structure, the two flash memory controllers 14 coordinate control, which can reduce load pressure and thus reduce heat generation. In addition, the upper and lower ends of the hard disk body are provided with heat dissipation plates 23. Each end of the hard disk body is fixedly connected to a card holder 21. The upper and lower heat dissipation plates 23 are fixed to the corresponding end surfaces of the two card holders 21 by screws 27. The two heat dissipation plates 23 are each provided with a plurality of heat dissipation slots 24 at one end to assist the heat dissipation of the heat dissipation plates 23, further improving the heat dissipation efficiency of the entire hard disk and effectively preventing the hard disk from overheating during high-speed data processing.

[0027] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A computer memory comprising a storage mechanism (1), wherein the storage mechanism (1) comprises a solid state hard disk (11); Its characteristics are: A plurality of flash memory chips (16) are respectively provided at the rear of the upper and lower ends of the solid state hard disk (11), a flash memory controller (14) is respectively provided at the front of the upper and lower ends of the solid state hard disk (11), and a connecting mechanism is provided at the front end of the solid state hard disk (11); An auxiliary heat dissipation mechanism (2) is provided on the outside of the solid state hard disk (11), and the auxiliary heat dissipation mechanism (2) comprises a card seat (21) fixedly connected to both ends of the solid state hard disk (11); A heat dissipation plate (23) is fixedly mounted on each of the upper and lower ends of the card seat (21), and the two heat dissipation plates (23) are arranged in a vertically symmetrical shape. A group of heat dissipation grooves (24) are respectively opened in the middle of the outer side walls of the two heat dissipation plates (23) at one end.

2. A computer memory according to claim 1, characterized in that: A matching slot is provided in the middle of the rear end of the solid state hard disk (11), and the connection mechanism includes an interface chip (15) arranged in front of the upper end of the solid state hard disk (11).

3. The computer memory according to claim 1, wherein: The front end of the solid state hard disk (11) is provided with a hard disk connector (12), and the front end of the hard disk connector (12) is symmetrically provided with two hard disk connector slots (13).

4. The computer memory according to claim 1, wherein: The heat dissipation plate (23) is an aluminum plate, and a group of heat dissipation slots (24) is a plurality of heat dissipation slots (24) arranged in a horizontally equidistant manner.

5. The computer memory according to claim 1, wherein: A groove (25) is provided at each of the four corners of the outer side walls of the two heat dissipation plates (23) away from one end, and a matching hole (26) is provided in the middle of the groove (25).

6. The computer memory according to claim 1, wherein: A threaded hole (22) is provided on both the front and rear sides of the upper and lower ends of the clamping seat (21), and a screw (27) is connected to the inner thread of the threaded hole (22).

7. A computer memory according to claim 6, characterized in that: The screw (27) is inserted into the matching hole (26) on the corresponding side.