Solid state disk convenient for replacing storage unit

By adopting the design of connecting tape and positioning pin on the solid-state hard disk, the fast disassembly of the upper case of the hard disk and the lower case of the hard disk is achieved, solving the problem of time-consuming and labor-intensive replacement of the storage unit in the prior art, and improving the convenience of replacement.

CN223218000UActive Publication Date: 2025-08-12FUJIAN MINXIANG SEMICONDUCTOR CO LTD
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Patent Information

Application Number
CN202422231605.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-08-12
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

When replacing the storage unit, existing solid-state drives need to use tools to unscrew the fixing bolts, which is time-consuming and labor-intensive and not convenient enough.

Method used

The hard disk upper case and the hard disk lower case are removably connected through the disassembly and assembly mechanism. By using the design of the connecting belt, positioning pin and connecting plate, the rotary connecting belt and positioning pin can be used to quickly disassemble the hard disk upper case and the hard disk lower case.

Benefits of technology

It realizes rapid replacement of storage units, improves the convenience of replacement, and makes use more convenient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of solid state disks, in particular to a solid state disk convenient for replacing a storage unit, which comprises a hard disk lower shell, a hard disk upper shell and a dismounting mechanism. The hard disk upper shell is detachably connected with the hard disk lower shell through the dismounting mechanism, the storage unit is placed in the placing groove of the hard disk lower shell, and the storage unit is located between the hard disk lower shell and the hard disk upper shell which are assembled. And the dismounting mechanism comprises a connecting belt, a positioning pin and a connecting plate. When the storage unit is replaced and the hard disk upper shell and the hard disk lower shell are disassembled, only the connecting belt needs to be pulled and rotated, the elasticity of the connecting belt is overcome, the connecting belt rotates out of the connecting groove, the positioning pin moves along the sliding groove and slides out of the opening in the process so as to separate the connecting belt and the connecting plate, and then the hard disk upper shell is lifted up. The hard disk upper shell can be quickly detached from the hard disk lower shell, the fixed hard disk is opened, the storage unit is exposed, at the moment, the storage unit replacement convenience is greatly improved, and use is more convenient.
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Description

Technical Field

[0001] The utility model relates to the field of solid state hard disks, in particular to a solid state hard disk with easy replacement of storage units. Background Art

[0002] A solid-state drive is a storage device consisting of two main parts: a control unit and a storage unit. When in use, the corresponding data is stored inside the solid-state drive. It has the characteristics of low power consumption, low noise, small size, and easy to carry.

[0003] If there is a problem with the storage unit inside the fixed hard disk, it needs to be replaced. At this time, the solid-state hard disk needs to be opened first. When opening the fixed hard disk, tools need to be used to unscrew the fixing bolts between the hard disk body and the hard disk shell before it can be opened to replace the storage unit inside. This method requires the use of specific tools and is time-consuming and labor-intensive, which is not convenient. Utility Model Content

[0004] In view of the deficiencies in the above background technology, the present invention provides a solid state hard disk with easy replacement of storage units.

[0005] The utility model adopts the following technical solutions:

[0006] A solid-state hard disk that facilitates replacement of a storage unit, characterized in that the solid-state hard disk comprises:

[0007] A hard disk lower shell, wherein the upper surface of the hard disk lower shell is provided with an inwardly recessed placement groove for placing the storage unit;

[0008] A hard disk upper shell, wherein the bottom surface of the hard disk upper shell is provided with an inwardly recessed slot, and the outer surfaces of both sides of the hard disk upper shell are provided with a plurality of rotating shafts;

[0009] The cam is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin is secured to the bottom of the hard drive housing by means of a first support and a second support pin

[0010] In which, the hard disk upper shell and the hard disk lower shell are detachably connected. When the hard disk upper shell covers the outside of the hard disk lower shell, the hard disk lower shell is placed in the card slot of the hard disk upper shell, and the storage unit is located between the hard disk lower shell and the hard disk upper shell. The connecting belt is made of elastic material. When the connecting belt is rotated, bent and placed in the connecting groove, the positioning pin passes through the opening and is placed in the sliding groove.

[0011] As a further improvement, the hard disk upper shell and the hard disk lower shell are both made of metal.

[0012] As a further improvement, a limiting portion is provided at one end of the positioning pin facing away from the connecting belt, the diameter of the limiting portion is larger than the width of the slide groove, and when the positioning pin is embedded in the slide groove, the limiting portion is tightly attached to the upper surface of the connecting plate.

[0013] As a further improvement, the bottom surface of the hard disk lower shell is provided with several auxiliary plates, which correspond to the connecting plates one by one. The two ends of the auxiliary plates are connected to the bottom surface of the hard disk lower shell through a second support. The gap between the auxiliary plates and the bottom surface of the hard disk lower shell forms a limiting groove. When the connecting belt is rotated and bent and placed in the connecting groove, and the positioning pin is placed in the slide groove, the end of the connecting belt is inserted into the limiting groove.

[0014] As a further improvement, the connecting belt is an elastic belt.

[0015] From the above description of the structure of the present invention, it can be seen that compared with the prior art, the present invention has the following advantages: when replacing the storage unit and separating the upper shell and the lower shell of the hard disk, you only need to pull and rotate the connecting belt to overcome the elastic force of the connecting belt and make the connecting belt rotate out of the connecting groove. During the process, the positioning pin moves along the slide groove and slides out from the opening to separate the connecting belt and the connecting plate, and then lift the upper shell of the hard disk to quickly remove the upper shell of the hard disk from the lower shell of the hard disk, open and fix the hard disk, and expose the storage unit. At this time, the convenience of replacing the storage unit is greatly increased, and it is more convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the exploded structure of the present invention.

[0017] Figure 2 A schematic diagram of the three-dimensional structure of the hard disk upper shell.

[0018] Figure 3 It is a schematic diagram of the three-dimensional structure of the lower shell of the hard disk.

[0019] Figure 4 This is a schematic diagram of the three-dimensional structure after the hard disk lower shell and the hard disk upper shell are assembled and fixed.

[0020] Figure 5 for Figure 4 Schematic diagram of the structure of A. DETAILED DESCRIPTION

[0021] The specific implementation of the present utility model will be described below with reference to the accompanying drawings.

[0022] As attached Figure 1 and Figure 2 As shown, a solid-state hard drive (SSD) with easily replaceable storage units includes a lower hard drive housing 1, an upper hard drive housing 2, and a disassembly mechanism 4. The connecting belt 41 is made of an elastic material, specifically an elastic belt. An elastic belt is a belt with a certain degree of elasticity and stretchability. Its main material is typically natural latex or synthetic rubber, with auxiliary materials such as fiber, polyester, and nylon added. This allows the connecting belt 41 to quickly recover from elastic deformation and resist breakage.

[0023] As attached Figure 1 and Figure 2 As shown, the upper surface of the hard disk lower shell 1 is provided with an inwardly concave placement groove 11, which is used to place the storage unit 3. After the hard disk upper shell 2 and the hard disk lower shell 1 are assembled, the storage unit 3 is surrounded and protected. In addition, the hard disk upper shell 2 is provided with a notch 21, and the plug connector of the storage unit 3 is exposed from the notch 21 for use. It is worth mentioning that, as shown in the attached figure, Figure 1 、 Figure 2 and Figure 4 As shown, the upper hard drive shell 2 is detachably connected to the lower hard drive shell 1 via a disassembly mechanism 4. Specifically, an inwardly recessed slot 23 is provided on the bottom surface of the upper hard drive shell 2. During use, the upper hard drive shell 2 is placed over the outer surface of the lower hard drive shell 1, with the lower hard drive shell 1 inserted into the slot 23 of the upper hard drive shell 2. At this point, the storage unit 3 is located between the lower hard drive shell 1 and the upper hard drive shell 2. The disassembly mechanism 4 is then used to detachably connect the nested upper hard drive shell 2 and the lower hard drive shell 1.

[0024] Among them, as attached Figures 2 to 5As shown, the disassembly and assembly mechanism 4 is provided with several, and the disassembly and assembly mechanism 4 corresponds one to one with several rotating shafts 22 provided on the outer surfaces of both sides of the hard disk upper shell 2. The disassembly and assembly mechanism 4 includes a connecting belt 41, a positioning pin 42 and a connecting plate 43. The head end of the connecting belt 41 is connected to the rotating shaft 22. The connecting belt 41 can rotate around the rotating shaft 22. The middle part of the connecting belt 41 is provided with a positioning pin 42. The head end of the connecting plate 43 is connected to the bottom surface of the hard disk lower shell 1 through the first support 44. The end of the connecting plate 43 is suspended above the bottom surface of the hard disk lower shell 1, and the gap between the connecting plate 43 and the bottom surface of the hard disk lower shell 1 forms a connecting groove 45. A sliding groove 431 is provided in the middle part of the connecting plate 43, and an opening 432 is provided at the end of the connecting plate 43. The opening 432 is connected to the sliding groove 431. The sliding groove 431 is arranged at an angle, and the angle formed by the sliding groove 431 and the opening 432 is toward the side of the hard disk lower shell 1. When assembling the hard disk upper shell 2 and the hard disk lower shell 1, the connecting belt 41 is rotated and bent around the rotating shaft 22, and the end of the connecting belt 41 suspended from the connecting plate 43 is placed into the connecting groove 45. At the same time, the positioning pin 42 is passed through the opening 432 and placed into the slide groove 431. During the process, the connecting belt 41 is elastically stretched until the positioning pin 42 is located at the lower inclined end of the slide groove 431. At this time, the connecting belt 41 is not subjected to tension and remains in its original shape. The slide groove 431 plays a limiting role on the positioning pin 42, so that the hard disk upper shell 2 and the hard disk lower shell 1 can be assembled and fixed. When the storage unit 3 needs to be replaced and the hard disk upper shell 2 and the hard disk lower shell 1 need to be separated, it is only necessary to pull and rotate the connecting belt 41 to overcome the elastic force of the connecting belt 41 so that the connecting belt 41 can be rotated out of the connecting groove 45, and the positioning pin 42 moves along the slide groove 431 and slides out from the opening 432 to separate the connecting belt 41 and the connecting plate 43, and then lift the hard disk upper shell 2 to quickly remove the hard disk upper shell 2 from the hard disk lower shell 1, open and fix the hard disk, and expose the storage unit 3 for replacement. The convenience of replacement is greatly increased, and it is more convenient to use.

[0025] Further, as attached Figure 1 As shown, the hard disk upper shell 2 and the hard disk lower shell 1 are both made of metal, specifically aluminum alloy. Aluminum alloy has the characteristics of light weight and high structural strength, which can better isolate and protect the storage unit 3. At the same time, aluminum alloy has good heat absorption and heat dissipation capabilities, which can effectively protect the storage unit 3 and avoid high-temperature damage to the storage unit 3.

[0026] In addition, as attached Figure 2 、 Figure 3 and Figure 5As shown, the end of the positioning pin 42 facing away from the connecting strip 41 is provided with a stopper 421. The diameter of the stopper 421 is larger than the width of the slot 431. When the positioning pin 42 is inserted into the slot 431, the stopper 421 is in close contact with the upper surface of the connecting plate 43. The provision of the stopper 421 enhances the stability of the connection between the positioning pin 42 and the slot 431, reducing the risk of the positioning pin 42 slipping out of the slot 431, thereby ensuring the connection between the positioning pin 42 and the connecting plate 43 and making the assembly of the hard drive upper shell 2 and the hard drive lower shell 1 more stable.

[0027] As attached Figure 3 and Figure 5 As shown, the bottom surface of the hard drive lower shell 1 is provided with a plurality of auxiliary plates 46. These auxiliary plates 46 correspond one-to-one with the connecting plates 43. Each end of the auxiliary plates 46 is connected to the bottom surface of the hard drive lower shell 1 via a second support 47. The gap between the auxiliary plates 46 and the bottom surface of the hard drive lower shell 1 forms a limiting groove 48. When the connecting strap 41 rotates and bends, and is placed in the connecting groove 45, and the positioning pin 42 is placed in the slide groove 431, the end of the connecting strap 41 is inserted into the limiting groove 48. The limiting effect of the limiting groove 48 on the end of the connecting strap 41 can reduce the risk of the connecting strap 41 rotating and sliding under force during use, causing the connecting strap 41 and the positioning pin 42 to separate from the connecting plate 43. This can further ensure the connection between the positioning pin 42 and the connecting plate 43, making the assembly of the hard drive upper shell 2 and the hard drive lower shell 1 more stable.

[0028] In summary, when replacing the storage unit 3 and separating the hard disk upper shell 2 and the hard disk lower shell 1, the utility model only needs to pull and rotate the connecting belt 41 to overcome the elastic force of the connecting belt 41 and make the connecting belt 41 rotate out of the connecting groove 45. During the process, the positioning pin 42 moves along the slide groove 431 and slides out from the opening 432 to separate the connecting belt 41 and the connecting plate 43, and then lift the hard disk upper shell 2 to quickly remove the hard disk upper shell 2 from the hard disk lower shell 1, open and fix the hard disk, and expose the storage unit 3. At this time, the convenience of replacing the storage unit 3 is greatly increased, and it is more convenient to use.

[0029] The above is only a specific implementation method of the present invention, but the design concept of the present invention is not limited to this. Any non-substantial changes to the present invention using this concept shall be deemed as an infringement of the protection scope of the present invention.

Claims

1. A solid state hard disk that is easy to replace storage units, characterized in that: The SSD includes: A hard disk lower shell, wherein the upper surface of the hard disk lower shell is provided with an inwardly recessed placement groove for placing the storage unit; A hard disk upper shell, wherein the bottom surface of the hard disk upper shell is provided with an inwardly concave card slot, and the outer surfaces of both sides of the hard disk upper shell are provided with a plurality of rotating shafts; The cam is secured to the bottom of the hard disk drive and has a first end secured thereto, the second end secured to the bottom of the hard disk drive and a second end secured to the bottom of the hard disk drive. In which, the hard disk upper shell and the hard disk lower shell are detachably connected. When the hard disk upper shell covers the outside of the hard disk lower shell, the hard disk lower shell is placed in the card slot of the hard disk upper shell, and the storage unit is located between the hard disk lower shell and the hard disk upper shell. The connecting belt is made of elastic material. When the connecting belt is rotated, bent and placed in the connecting groove, the positioning pin passes through the opening and is placed in the sliding groove.

2. The solid-state hard disk with easy storage unit replacement according to claim 1, wherein: The hard disk upper shell and the hard disk lower shell are both made of metal.

3. The solid-state hard disk with easy storage unit replacement according to claim 1, wherein: A limiting portion is provided at one end of the positioning pin facing away from the connecting belt, the diameter of the limiting portion being greater than the width of the sliding groove. When the positioning pin is embedded in the sliding groove, the limiting portion is in close contact with the upper surface of the connecting plate.

4. The solid-state hard disk with easy storage unit replacement according to claim 3, wherein: The bottom surface of the hard disk lower shell is provided with several auxiliary plates, which correspond to the connecting plates one by one. Both ends of the auxiliary plates are connected to the bottom surface of the hard disk lower shell through a second support. The gap between the auxiliary plates and the bottom surface of the hard disk lower shell forms a limiting groove. When the connecting belt is rotated and bent and placed in the connecting groove, and the positioning pin is placed in the sliding groove, the end of the connecting belt is inserted into the limiting groove.

5. The solid state drive with easy storage unit replacement according to claim 4, wherein: The connecting belt is an elastic belt.