Memory bank with protective shell
The design of the detachable protective shell and magnetic fixing mechanism solves the problems of easy damage and difficult disassembly of memory modules, enabling quick installation and removal, and improving protection and heat dissipation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN MINXIANG SEMICONDUCTOR CO LTD
- Filing Date
- 2025-05-17
- Publication Date
- 2026-05-01
AI Technical Summary
Existing memory modules lack effective protection and are easily damaged by vibration, dust or static electricity. Furthermore, traditional protective cases are difficult to remove and have high repair costs.
It features a detachable protective shell design, utilizes a magnetic fixing mechanism to enable quick installation and removal of memory modules, and combines thermal conductive silicone pads to improve heat dissipation.
It enables quick installation and removal of memory modules, improves protection and reduces maintenance costs, while also enhancing heat dissipation performance.
Smart Images

Figure CN224190467U_ABST
Abstract
Description
A memory module with a protective casing Technical Field
[0001] This utility model relates to the field of memory modules, and in particular to a memory module equipped with a protective shell. Background Technology
[0002] As a core component of a computer, memory modules are significantly affected by factors such as temperature and physical shock. Currently, memory modules are typically directly plugged into the motherboard, lacking effective protection and easily damaged by vibration, dust, or static electricity. Some solutions use metal casings for protection, but traditional casings are mostly one-piece structures, making disassembly difficult and repair costs high. Furthermore, existing casings often rely on screws or clips for mounting, making assembly and disassembly cumbersome. Summary of the Invention
[0003] In view of the shortcomings mentioned above in the background technology, this utility model provides a memory module equipped with a protective shell.
[0004] The present invention adopts the following technical solution:
[0005] A memory module with a protective casing, characterized in that it comprises:
[0006] The protective shell is composed of a first shell and a second shell. The second shell has mounting holes on its side near the first shell. The bottom surface of the first shell has a placement groove. The placement groove has mounting grooves at both ends. The mounting groove has a sliding groove through it.
[0007] A memory module, wherein the memory module has positioning holes at both ends and the memory module is adapted to the placement slot;
[0008] A fixing mechanism includes a first magnetic block, a second magnetic block, a slider, a push plate, and a third magnetic block. The first and second magnetic blocks are connected side by side and slidably embedded in the mounting groove. The sliders on the first and second magnetic blocks pass through the groove and are connected to the push plate. The third magnetic block is retractably disposed in the mounting hole and is adapted to the positioning hole. The third magnetic block attracts the first magnetic block and repels the second magnetic block.
[0009] The protective shell is made of non-magnetic metal. The memory module is inserted into the placement slot until the positioning hole is aligned with the third magnetic block. Then, the push plate is pushed so that the third magnetic block extends outward and is inserted into the positioning hole under the magnetic force of the first magnetic block.
[0010] As a further improvement, the fixing mechanism also includes a cover plate, which is disposed in the mounting groove and has a notch corresponding to the third magnet.
[0011] As a further improvement, a fixing groove is provided around the mounting groove, and the ear seats on both sides of the cover plate are embedded in the fixing groove.
[0012] As a further improvement, the cover plate is made of a non-magnetic metal material.
[0013] As a further improvement, thermally conductive silicone pads are embedded in the first and second housings, and the thermally conductive silicone pads are attached to the surface of the memory module after it is inserted into the placement slot.
[0014] As can be seen from the above description of the structure of this utility model, compared with the prior art, this utility model has the following advantages: During installation, the memory module is inserted into the placement slot until the positioning hole aligns with the third magnetic block. Then, the push plate is pushed, causing the third magnetic block to extend outward and insert into the positioning holes at both ends of the memory module under the magnetic force of the first magnetic block. Conversely, pushing the push plate in the opposite direction causes the third magnetic block to retract into the mounting hole under the magnetic force of the second magnetic block. This utility model controls the insertion or removal of the third magnetic block from the positioning hole of the memory module by pushing the push plate, achieving rapid installation and removal. Attached Figure Description
[0015] Figure 1 is a three-dimensional structural diagram of the present invention.
[0016] Figure 2 is a three-dimensional structural diagram of the No. 1 shell.
[0017] Figure 3 is an enlarged schematic diagram of A in Figure 2.
[0018] Figure 4 is a three-dimensional structural diagram of the No. 1 shell and cover plate.
[0019] Figure 5 is an exploded view of the second shell and the third magnetic block.
[0020] Figure 6 is an exploded view of this utility model.
[0021] Figure 7 is a cross-sectional structural diagram of this utility model. Detailed Implementation
[0022] The specific embodiments of this utility model are described below with reference to the accompanying drawings.
[0023] As shown in Figure 1, a memory module with a protective shell includes a protective shell 1, a memory module 2, and a fixing mechanism 3. The protective shell 1 is composed of a first shell 11 and a second shell 12, which are assembled using screws. The protective shell 1 is designed to be detachable, avoiding the need for complete replacement and thus reducing costs. The bottom surface of the first shell 11 has a placement slot 111 that fits the memory module 2. The memory module 2 is inserted into the placement slot 111 and then locked in place by the fixing mechanism 3.
[0024] As shown in Figures 2 to 7, the fixing mechanism 3 includes a first magnetic block 31, a second magnetic block 32, a slider 33, a push plate 34, and a third magnetic block 36. The placement groove 111 has mounting grooves 112 at both ends. The first magnetic block 31 and the second magnetic block 32 are connected side-by-side and slidably embedded in the mounting grooves 112. A sliding groove 113 passes through the mounting grooves 112. The slider 33 on the first magnetic block 31 and the second magnetic block 32 passes through the sliding grooves 113 and connects to the push plate 34. The push plate 34 pushes the first magnetic block 31 and the second magnetic block 32, changing their positions within the mounting grooves 112. The second housing 12 has a mounting hole 121 on its side near the first housing 11. The third magnetic block 36 is retractably disposed within the mounting hole 121. Specifically, the third magnetic block 36 attracts the first magnetic block 31 and repels the second magnetic block 32. Furthermore, the end of the third magnetic block 36 near the mounting hole 121 is tapered, facilitating precise insertion of the third magnetic block 36 into the mounting hole 121.
[0025] During installation, insert the memory module 2 into the placement slot 111 until the positioning hole 21 aligns with the third magnetic block 36. Then, push the push plate 34, causing the third magnetic block 36 to extend outward and insert into the positioning holes 21 at both ends of the memory module 2 under the magnetic force of the first magnetic block 31, locking the memory module 2 in the placement slot 111. This allows the protective shell 1 to be installed outside the memory module 2, providing good protection. During disassembly, push the push plate 34 in the opposite direction, causing the third magnetic block 36 to retract into the mounting hole 121 under the magnetic force of the second magnetic block 32, allowing the memory module 2 to be pulled out of the placement slot 111. The protective shell 1 is made of non-magnetic metal, specifically aluminum alloy, which has good thermal conductivity, improving the heat dissipation of the memory module 2. It is not affected by the first magnetic block 31, the second magnetic block 32, or the third magnetic block 36, thus not hindering the use of the fixing mechanism 3. The uneven surface of the push plate 34 increases friction and prevents slippage.
[0026] Furthermore, as shown in Figures 3 and 4, the fixing mechanism 3 also includes a cover plate 35, which is disposed at the opening of the mounting groove 112. Specifically, a fixing groove 114 is provided around the mounting groove 112. The ear seats 352 on both sides of the cover plate 35 are embedded in the fixing groove 114 and are fixed by screws, thereby completing the installation of the cover plate 35 and preventing the first magnetic block 31 and the second magnetic block 32 from falling out of the mounting groove 112. The cover plate 35 has a notch 351 corresponding to the third magnetic block 36, ensuring that the first magnetic block 31 and the second magnetic block 32 can function on the third magnetic block 36. The cover plate 35 is made of a non-magnetic metal material, consistent with the material of the protective shell 1.
[0027] Preferably, as shown in Figures 2 and 5, thermally conductive silicone pads 4 are embedded in the first housing 11 and the second housing 12. After the memory module 2 is inserted into the placement slot 111, the thermally conductive silicone pads 4 adhere to its surface. The thermally conductive silicone pads 4 can quickly transfer the heat of the memory module 2 to the first housing 11 and the second housing 12, preventing the memory module 2 from overheating. At the same time, silicone pads can be provided on the wall of the placement slot 111 to absorb the impact force during insertion and removal, protecting the memory module 2 components.
[0028] In summary, during installation, the memory module 2 is inserted into the placement slot 111 until the positioning hole 21 aligns with the third magnetic block 36. Then, the push plate 34 is pushed, causing the third magnetic block 36 to extend outwards and insert into the positioning holes 21 at both ends of the memory module 2 under the magnetic force of the first magnetic block 31. Conversely, pushing the push plate 34 causes the third magnetic block 36 to retract into the mounting hole 121 under the magnetic force of the second magnetic block 32, disengaging from the positioning hole 21. This invention achieves rapid installation and disassembly by controlling the insertion and disengagement of the third magnetic block 36 into or out of the positioning hole 21 of the memory module 2 through the push plate 34.
[0029] The above are merely specific embodiments of this utility model, but the design concept of this utility model is not limited thereto. Any non-substantial modifications made to this utility model using this concept shall be considered as an infringement of the protection scope of this utility model.
Claims
1. A memory module with a protective casing, characterized in that, include: The protective shell is composed of a first shell and a second shell. The second shell has a mounting hole on its side near the first shell, and the first shell has a placement groove on its bottom surface. The placement groove has mounting slots at both ends, and a sliding groove runs through it. A memory module has positioning holes at both ends and is adapted to the placement groove. A fixing mechanism includes a first magnetic block, a second magnetic block, a slider, a push plate, and a third magnetic block. The first and second magnetic blocks are connected side-by-side and slidably embedded in the mounting groove. The sliders on the first and second magnetic blocks pass through the sliding groove and connect to the push plate. The third magnetic block is retractably disposed in the mounting hole and is adapted to the positioning hole. The third magnetic block attracts the first magnetic block and repels the second magnetic block. The protective shell is made of non-magnetic metal. When the memory module is inserted into the placement groove until the positioning hole aligns with the third magnetic block, the push plate is pushed, causing the third magnetic block to extend outward and insert into the positioning hole under the magnetic force of the first magnetic block.
2. A memory module with a protective casing as described in claim 1, characterized in that: The fixing mechanism also includes a cover plate, which is disposed in the mounting groove and has a notch corresponding to the third magnet.
3. A memory module with a protective casing as described in claim 2, characterized in that: A fixing groove is provided around the mounting groove, and the ear seats on both sides of the cover plate are embedded in the fixing groove.
4. A memory module with a protective casing as described in claim 3, characterized in that: The cover plate is made of non-magnetic metal.
5. A memory module with a protective casing as described in claim 1, characterized in that: Thermally conductive silicone pads are embedded in the first and second housings, and the thermally conductive silicone pads are attached to the surface of the memory module after it is inserted into the placement slot.