Software engineering data storage device
By designing a U-shaped casing and fan assembly for heat dissipation on the portable hard drive, the problem of low self-heating efficiency of the portable hard drive is solved, achieving efficient data transmission and convenient hard drive portability.
Patent Information
- Application Number
- CN202520097578.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-16
AI Technical Summary
Most existing portable hard drives use metal casings as the main body for heat dissipation and protection, and heat dissipation mainly relies on their own self-heating. However, when transferring large amounts of data, the efficiency of self-heating alone is poor, which may affect the transmission efficiency.
A heat dissipation mechanism including a U-shaped housing and a fan assembly was designed. The gap between the housing and the hard drive can be adjusted by a knob to provide an airflow channel. The fan assembly is used to assist in heat dissipation, and thermal grease is used to improve thermal conductivity. At the same time, a cable management mechanism is set up to prevent data cables from becoming tangled and worn.
It improves the heat dissipation efficiency of the portable hard drive, ensures efficient data transmission, and prevents data cable wear through a cable management mechanism, thereby enhancing the stability and portability of the hard drive.
Smart Images

Figure CN223857872U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of software equipment, and particularly relates to a software engineering data storage device. BACKGROUND
[0002] Mobile storage refers to a portable data storage device, which has a storage medium and (generally) has the function of reading and writing the medium without or with little assistance of other devices (such as a computer). Modern mobile storage mainly includes mobile hard disks, USB disks and various memory cards. The mobile hard disk mainly refers to a hard disk storage that can be plugged in or pulled out at any time, is small and convenient to carry, and can perform data transmission with a system at a high speed through a USB or IEEE1394 interface.
[0003] The existing mobile hard disk mainly adopts a metal shell as a heat dissipation and protection main body, and mainly relies on self heat dissipation. However, when large-capacity data transmission is performed, the self heat dissipation efficiency is poor, which may affect the transmission efficiency of the mobile hard disk, and there is a certain deficiency.
[0004] Therefore, the application provides a software engineering data storage device to solve the above problems. CONTENT OF THE INVENTION
[0005] The application provides a software engineering data storage device, which aims to solve the problems that the existing mobile hard disk mainly adopts a metal shell as a heat dissipation and protection main body, mainly relies on self heat dissipation, and when large-capacity data transmission is performed, the self heat dissipation efficiency is poor, which may affect the transmission efficiency of the mobile hard disk, and there is a certain deficiency.
[0006] To achieve the above purpose, the application provides the following technical scheme: a software engineering data storage device, comprising a mobile hard disk main body and a data line fixedly installed on and electrically connected with the mobile hard disk main body, and a heat dissipation mechanism fixedly installed on the mobile hard disk main body.
[0007] The heat dissipation mechanism comprises a shell in a U-shaped arrangement arranged on the mobile hard disk main body, two symmetrically arranged protruding columns fixedly installed on the outer side walls of two opposite surfaces of the shell, screw holes formed in the protruding columns, screw columns matched with the screw holes, knobs with diameters matched with those of the protruding columns fixedly installed at one ends of the screw columns and extended outside the screw holes, and a fan group fixedly installed on the shell and electrically connected with the mobile hard disk main body. In this way, when in use, the knob is rotated, the screw column is rotated out of the screw hole by a part, the mobile hard disk main body is lifted, a gap is formed between the mobile hard disk main body and the plane on which the mobile hard disk main body is placed, sufficient airflow circulation space is provided, heat accumulation on the plane is prevented, then the data line is connected, the fan group is started, the shell provides heat conduction, the mobile hard disk main body is assisted in heat dissipation, the heat dissipation efficiency is improved, and the transmission efficiency is ensured.
[0008] Preferably, in order to dissipate heat, the shell is filled with heat dissipation silicone grease at the connecting surface between the shell and the mobile hard disk body. The heat dissipation efficiency is improved.
[0009] Preferably, in order to assemble, the shell is fixedly installed with a pressing strip at both ends, the pressing strip is arranged on the surface of the mobile hard disk body, and the pressing strip is provided with a screw penetratingly arranged and screwed with the mobile hard disk body. Thus, the assembly is completed, which is convenient and fast.
[0010] Preferably, in order to facilitate carrying, the total length of the convex column and the knob is adapted to the thickness of the shell. The whole is relatively flat, which is convenient to carry.
[0011] Preferably, in order to prevent slipping, the outer wall of the knob is coated with an anti-skid layer. The knob cannot slip on the plane, and the stability of the mobile hard disk body is improved.
[0012] Preferably, in order to arrange the lines, the storage device further comprises a line arrangement mechanism, the line arrangement mechanism comprises a line arrangement groove fixedly installed on the mobile hard disk body and arranged away from the fan group, the line arrangement groove is provided with a pressing groove with a width smaller than that of the data line, the data line is clamped in the pressing groove, and one end of the line arrangement groove is fixedly installed with a magnetic block protruding from the surface of the mobile hard disk body, and the magnetic block is adsorbed with the end of the data line. Reduce the wear and tear of the data line, and facilitate carrying and use.
[0013] The storage device, rotating the knob, rotating the stud out of part of the screw hole, so that the mobile hard disk body is raised, and there is a gap between the mobile hard disk body and the plane where it is placed, providing enough airflow space, preventing heat accumulation on the plane, then connecting the data line, starting the fan group, the shell providing heat conduction, assisting in heat dissipation of the mobile hard disk body, improving the heat dissipation efficiency and ensuring the transmission efficiency.
[0014] The storage device, extruding the data line, so that the width of the data line is smaller than that of the pressing groove of the line arrangement groove, then pressing the data line into the pressing groove from the top of the line arrangement groove, so as to clamp the data line, prevent scattering, and the end of the data line can be placed above the magnetic block, and the magnetic block adsorbs the metal sheet on the data line terminal, so as to play a certain fixing role, reduce the wear and tear of the data line, and facilitate carrying and use. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a top structure schematic diagram of a software engineering data storage device;
[0016] Figure 2 It is a bottom structure schematic diagram of a software engineering data storage device;
[0017] Figure 3 It is a structure schematic diagram of a software engineering data storage device in use;
[0018] Figure 4 This is a cross-sectional structural diagram of a software engineering data storage device.
[0019] In the picture:
[0020] 1. Portable hard drive body; 11. Data cable; 2. Heat dissipation mechanism; 21. Shell; 22. Protrusion; 23. Screw hole; 24. Screw; 25. Knob; 26. Fan assembly; 27. Edge strip; 28. Screw; 29. Anti-slip layer; 3. Cable management mechanism; 31. Cable management channel; 32. Pressure groove; 33. Magnetic block. Detailed Implementation
[0021] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0022] Example 1
[0023] This embodiment provides a software engineering data storage device, such as... Figures 1-4 As shown, the storage device includes a portable hard drive body 1 and a data cable 11 that is electrically connected to the portable hard drive body 1 and is fixedly mounted on it. A heat dissipation mechanism 2 is fixedly mounted on the portable hard drive body 1.
[0024] The heat dissipation mechanism 2 includes a U-shaped housing 21 fitted onto the main body 1 of the portable hard drive. Two symmetrically arranged protrusions 22 are fixedly installed on the outer side walls of the two opposite surfaces of the housing 21. The protrusions 22 have screw holes 23, and a matching stud 24 is screwed into the screw holes 23. One end of the stud 24 extends outside the screw hole 23 and a knob 25 with a diameter matching that of the protrusion 22 is fixedly installed at the end. A fan assembly 26 electrically connected to the main body 1 of the portable hard drive is fixedly installed on the housing 21.
[0025] In use, rotate knob 25 to unscrew stud 24 out of screw hole 23, raising the portable hard drive body 1 and creating a gap between it and the surface it is placed on, providing sufficient airflow space and preventing heat buildup on the surface. Then connect data cable 11 and start fan assembly 26. The casing 21 provides heat conduction to assist in heat dissipation of portable hard drive body 1, improving heat dissipation efficiency and ensuring transmission efficiency.
[0026] Specifically, the connecting surface between the shell 21 and the mobile hard disk body 1 is filled with heat dissipation silicone grease. In use, the heat dissipation silicone grease is applied to the main surface of the mobile hard disk body 1 connected with the shell 21, and then the shell 21 is sleeved on the mobile hard disk body 1, so that the heat dissipation silicone grease fills the gap between the shell 21 and the mobile hard disk body 1, thereby improving the heat conduction efficiency.
[0027] More specifically, the shell 21 is fixedly installed with a pressing strip 27 at both ends, the pressing strip 27 is arranged on the surface of the mobile hard disk body 1, and the screw 28 is arranged through the pressing strip 27 and screwed with the mobile hard disk body 1. In use, the shell 21 is sleeved on the mobile hard disk body 1 from one end, the pressing strip 27 clamps the edge of the mobile hard disk body 1, and the shell 21 is fixed with the mobile hard disk body 1 through the screw 28, so that the assembly is completed, which is convenient and fast.
[0028] Further, the total length of the convex column 22 and the knob 25 is adapted to the thickness of the shell 21. In use, when the stud 24 is received in the screw hole 23 by rotating the knob 25, the end surface of the knob 25 is closely attached to the port of the convex column 22, and does not protrude from the shell 21, so that the whole is relatively flat and convenient to carry.
[0029] Further, the outer side wall of the knob 25 is coated with an anti-skid layer 29. In use, when the knob 25 is placed on a plane, the anti-skid layer 29 provides friction with the plane, so that the knob 25 does not slip on the plane, thereby improving the stability of the mobile hard disk body 1.
[0030] Embodiment 2
[0031] Different from embodiment 1, the structure without fixed data line 11 is easy to cause the data line 11 to be scattered or even broken. Therefore, the storage device further comprises a wire arranging mechanism 3, the wire arranging mechanism 3 comprises a wire arranging groove 31 fixedly installed on the mobile hard disk body 1 and arranged away from the fan group 26, the wire arranging groove 31 is provided with a pressing groove 32 with a width smaller than that of the data line 11, the data line 11 is clamped in the pressing groove 32, and the wire arranging groove 31 is fixedly installed with a magnetic block 33 protruding from the surface of the mobile hard disk body 1 at one end, and the magnetic block 33 is arranged in adsorption with the end of the data line 11. In use, the data line 11 is squeezed so that its width is smaller than that of the pressing groove 32 of the wire arranging groove 31, and then the data line 11 is pressed into the pressing groove 32 from the top of the wire arranging groove 31, so that the data line 11 is clamped tightly, thereby preventing scattering, and the end of the data line 11 can be placed above the magnetic block 33, and the magnetic block 33 adsorbs the metal sheet on the terminal of the data line 11, thereby playing a certain fixing role, reducing the abrasion of the data line 11, and facilitating carrying and use.
[0032] It should be noted that the data line 11 adopts a flat wire, which has a moving transverse squeezing space.
[0033] The above merely provides the preferred embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art, according to the technical solution and concept of the present application, can make equivalent replacements or changes within the technical scope disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A software engineering data storage device, comprising a mobile hard disk body (1) and a data line (11) fixedly installed on and electrically connected to the mobile hard disk body (1), and a heat dissipation mechanism (2) fixedly installed on the mobile hard disk body (1), characterized in that: the heat dissipation mechanism (2) comprises a U-shaped housing (21) sleeved on the mobile hard disk body (1), two symmetrically arranged protruding columns (22) are fixedly installed on the outer side walls of two opposite surfaces of the housing (21), screw holes (23) are formed in the protruding columns (22), and screw columns (24) matching the screw holes (23) are screwed into the screw holes (23), one end of each screw column (24) extends outside the screw hole (23) and is fixedly installed at the end with a knob (25) matching the diameter of the protruding column (22), and a fan group (26) electrically connected to the mobile hard disk body (1) is fixedly installed on the housing (21).
2. The software engineering data storage apparatus of claim 1, wherein: The connection surface between the housing (21) and the mobile hard disk body (1) is filled with heat dissipation silicone grease.
3. The software engineering data storage apparatus of claim 1, wherein: Both ends of the housing (21) are fixedly installed with edge pressing strips (27), the edge pressing strips (27) are arranged on the surface of the mobile hard disk body (1), and screw threads (28) screwed with the mobile hard disk body (1) are arranged through the edge pressing strips (27).
4. The software engineering data storage device of claim 1, wherein: The total length of the protruding column (22) and the knob (25) is matched with the thickness of the housing (21).
5. A software engineering data storage device according to claim 4, wherein: An anti-slip layer (29) is coated on the outer side wall of the knob (25).
6. The software engineering data storage device of claim 1, wherein: The storage device further comprises a wire arranging mechanism (3), the wire arranging mechanism (3) comprises a wire arranging groove (31) fixedly installed on the mobile hard disk body (1) and arranged away from the fan group (26), a pressing groove (32) with a width smaller than that of the data line (11) is formed in the wire arranging groove (31), the data line (11) is clamped in the pressing groove (32), a magnetic block (33) protruding from the surface of the mobile hard disk body (1) is fixedly installed at one end of the wire arranging groove (31), and the magnetic block (33) is arranged in adsorption with the end of the data line (11).