Hard disk frame device
By designing a second frame that can be moved forward and backward to cooperate with the first frame, and using the coordination of the hook module and the slot module, the problem of the existing hard disk external frame requiring multiple molds is solved, and the support and assembly of multiple hard disk specifications is achieved.
Patent Information
- Application Number
- CN202311706431.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-12
- Publication Date
- 2025-06-13
AI Technical Summary
The existing hard disk external frame requires the preparation of multiple molds according to the hard disk of different specifications and sizes, resulting in high production costs and inconvenient assembly.
A hard disk frame device is designed, including a first frame and a second frame. The second frame can be moved forward and backward and cooperate with the first frame to define a storage space with a length size of the corresponding hard disk device. Through the coordination of the hook module and the slot module, the fixation of hard disks of different lengths is achieved.
It realizes support for hard disks of different lengths, which is easy to assemble and has good practicality, reducing production costs and assembly complexity.
Smart Images

Figure CN120143939A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an outer frame of a hard disk, and particularly to a hard disk frame device. Background Art
[0002] With the wide application and vigorous development of servers, it has become common to install multiple hard disks inside the server to meet the application requirements of a high-density storage server. Generally, an outer frame (Carrier) of the hard disk is first assembled around the hard disk to protect the hard disk and facilitate the installation of the hard disk into the server. However, usually, hard disks of different specifications and sizes need to be matched with different sizes of outer frames (Carriers) of the hard disk. Therefore, it is necessary to prepare and manufacture various molds to produce different sizes of outer frames (Carriers) of the hard disk in order to meet the assembly requirements of hard disks of different specifications and sizes. This not only greatly increases the production cost, but also when assembling, it is necessary to first find the corresponding outer frame of the hard disk used before assembling can be carried out. The assembly is inconvenient and causes trouble to users, which is worthy of careful consideration and further exploration and improvement by practitioners. Summary of the Invention
[0003] Therefore, an object of the present invention is to provide a hard disk frame device that is convenient for assembly and has good versatility.
[0004] Thus, the hard disk frame device of the present invention can support the combination of hard disk devices of various different lengths and sizes. The hard disk frame device includes a first frame and a second frame coupled to the first frame. The second frame can move back and forth relative to the first frame and can cooperate with the first frame to define an accommodation space corresponding to the length size of a hard disk device.
[0005] The first frame includes an installation frame, two connection walls extending away from the installation frame in opposite sides of the installation frame, and two slide rail units respectively disposed on the connection walls. Each slide rail unit has a slide hole passing through the corresponding connection wall and extending along the length direction of the corresponding connection wall. One of the connection walls has a hook module.
[0006] The second frame includes a base wall, two coupling walls extending from two opposite sides of the base wall away from the base wall, and two stud units respectively disposed on the coupling walls and coupled to the sliding groove units of the first frame. The coupling walls are coupled to the connecting walls of the first frame and the coupling walls can move back and forth relative to the connecting walls. Each stud unit has a stud disposed on the corresponding coupling wall and extending from the outer side surface of the corresponding coupling wall towards the sliding hole of the corresponding sliding groove unit. The stud of the stud unit can move back and forth in the sliding hole. One of the coupling walls has a slot module corresponding to the hook module. The slot module has a first slot near the mounting frame of the first frame for detachably clamping and positioning the hook module, and a second slot away from the mounting frame for detachably clamping and positioning the hook module.
[0007] If the hard disk device has a first length dimension, the coupling walls of the second frame are moved towards the mounting frame relative to the connecting walls of the first frame, and the first frame and the second frame cooperate to define an accommodation space corresponding to the first length dimension of the hard disk device, and the first slot of the slot module of the coupling wall of the second frame is clamped by the corresponding hook module. At this time, the first frame and the second frame are circumferentially combined around the hard disk device and fix the hard disk device; if the hard disk device has a second length dimension, the coupling walls of the second frame are moved away from the mounting frame relative to the connecting walls of the first frame, and the first frame and the second frame cooperate to define an accommodation space corresponding to the second length dimension of the hard disk device, and the second slot of the slot module of the coupling wall of the second frame is clamped by the corresponding hook module. At this time, the first frame and the second frame are combined around the outer periphery of the hard disk device and fix the hard disk device.
[0008] Specifically, the hard disk device includes a hard disk body and a positioning hole unit disposed on the hard disk body. The hard disk body has a fixed edge coupled to the mounting frame of the first frame, and two side edges extending from two opposite sides of the fixed edge away from the fixed edge. The positioning hole unit has two first fixing holes recessed in the fixed edge of the hard disk body, and two second fixing holes respectively disposed on the side edges. The mounting frame of the first frame has a frame body and two first positioning members disposed on the frame body and extending from the frame body towards the first fixing holes of the hard disk device and inserted into the first fixing holes. The second frame further has two second positioning members that can be detachably inserted through the coupling walls and into the second fixing holes. When the first positioning members of the mounting frame of the first frame are inserted into the first fixing holes of the hard disk device and the second positioning members of the second frame are locked into the second fixing holes, at this time, the first frame and the second frame are circumferentially combined around the outer periphery of the hard disk body of the hard disk device and fix the hard disk body.
[0009] In particular, the hook module of the connecting wall of the first frame has an elastic boss and a hook disposed on the elastic boss and extending from the elastic boss toward the slot module. The hook of the hook module can be detachably buckled to the first slot and the second slot of the slot module. When disassembling, when the hook is inserted into the first slot, the elastic boss is forced away from the first slot and drives the hook to disengage from the first slot; when the hook is inserted into the second slot, the elastic boss is forced away from the second slot and drives the hook to disengage from the second slot.
[0010] In particular, each sliding hole of each sliding rail unit of the first frame has an abutting end and a coupling end located at two opposite ends. The abutting end is close to the mounting frame. Each sliding hole also has a large hole groove portion extending from the coupling end toward the abutting end, and a small hole groove portion extending from the abutting end toward the coupling end and communicating with the large hole groove portion. Each sliding rail unit also has an elastic portion disposed on the coupling end of the sliding hole and located within the large hole groove portion, and extending from the coupling end toward the abutting end. The protrusion of the protrusion unit can move back and forth within the small hole groove portion of the sliding hole.
[0011] In particular, when the first frame and the second frame cooperate to define an accommodating space corresponding to the first length dimension of the hard disk device, and the first slot of the slot module of the coupling wall of the second frame is clamped by the corresponding hook module, at this time, the protrusion of the protrusion unit abuts against the abutting end of the sliding hole.
[0012] In particular, it further includes a handle unit pivotally connected to the frame body of the mounting frame of the first frame. The handle unit includes a handle pivotally connected to the frame body of the mounting frame, and an elastic pressing member disposed on the handle and detachably coupled to the frame body.
[0013] In particular, the hard disk device is a solid state drive compliant with the EDSFF E3 specification.
[0014] In particular, the hard disk device with the first length dimension is of the E3.S specification size, and the hard disk device with the second length dimension is of the E3.L specification size.
[0015] Compared with the prior art, in the hard disk frame device of the present invention, through the design that the second frame can move back and forth relative to the first frame and jointly define a receiving space corresponding to the length dimension of the hard disk device with the first frame, the receiving space required can be adjusted according to whether the hard disk device is of the first length dimension or the second length dimension, and the overall versatility is good. When the hard disk device is of the first length dimension, the hook module of the first frame is buckled into the first card slot of the corresponding card slot module of the second frame, or when the hard disk device is of the second length dimension, the hook module of the first frame is buckled into the second card slot of the corresponding card slot module of the second frame, and the first frame and the second frame are surrounded and combined around the outer periphery of the hard disk device to fix the hard disk device, which is convenient to assemble and has good practicability. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Other features and effects of the present invention will be clearly presented in the embodiments with reference to the drawings, wherein:
[0017] Figure 1 is an exploded perspective view illustrating the connection relationship between an embodiment of the hard disk frame device of the present invention and a hard disk device;
[0018] Figure 2 is an exploded perspective view illustrating the connection relationship between a first frame and a second frame of the hard disk frame device in this embodiment;
[0019] Figure 3 is a perspective view for auxiliary illustration Figure 1 ;
[0020] Figure 4 is a partial perspective view illustrating the combination relationship between two second positioning members of the second frame of the hard disk frame device and two second fixing holes of a positioning hole unit of the hard disk device in this embodiment;
[0021] Figure 5 is a perspective view illustrating that the second frame and the first frame jointly define a receiving space corresponding to a first length dimension of the hard disk device in this embodiment;
[0022] Figure 6 is a partial enlarged perspective view illustrating the connection relationship between a hook module on a connecting wall of the first frame and a first card slot of a card slot module on a combining wall of the second frame in this embodiment;
[0023] Figure 7 is a partial enlarged perspective view illustrating the connection relationship between a hook of the hook module of the first frame and the first card slot and a second card slot of the card slot module of the second frame in this embodiment; and
[0024] Figure 8It is a three-dimensional view, showing that in this embodiment, the second frame and the first frame jointly define a receiving space corresponding to the hard disk device with a second length dimension. Detailed implementation mode
[0025] Before the present invention is described in detail, it should be noted that in the following description, similar elements are denoted by the same reference numerals.
[0026] Refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 and Figure 7 In the hard disk frame device 1 of the present invention, it can support the combination of hard disk devices 90 with various different length dimensions. The hard disk frame device 1 includes a first frame 2 and a second frame 3 coupled to the first frame 2. The second frame 3 can move back and forth relative to the first frame 2 and can cooperate with the first frame 2 to define a receiving space 4 corresponding to the length dimension of a hard disk device 90.
[0027] The first frame 2 includes a mounting frame 21, two connecting walls 22 extending from two opposite sides of the mounting frame 21 away from the mounting frame 21, and two slide rail units 23 respectively disposed on the connecting walls 22. Each slide rail unit 23 has a slide hole 231 passing through the corresponding connecting wall 22 and extending along the length direction of the corresponding connecting wall 22. One of the connecting walls 22 has a hook module 221.
[0028] The second frame 3 includes a base wall 31, two combining walls 32 extending from two opposite sides of the base wall 31 away from the base wall 31, and two stud units 33 respectively disposed on the combining walls 32 and coupled to the slide groove units of the first frame 2. The combining walls 32 are coupled to the connecting walls 22 of the first frame 2 and the combining walls 32 can move back and forth relative to the connecting walls 22. Each stud unit 33 has a stud 331 disposed on the corresponding combining wall 32 and extending from the outer side surface of the corresponding combining wall 32 towards the slide hole 231 of the corresponding slide groove unit. The stud 331 of the stud unit 33 can move back and forth in the slide hole 231. One of the combining walls 32 has a slot module 321 corresponding to the hook module 221. The slot module 321 has a first slot 322 close to the mounting frame 21 of the first frame 2 for detachably clamping and positioning the hook module 221, and a second slot 323 away from the mounting frame 21 for detachably clamping and positioning the hook module 221. Simply put, it is through the stud units 33 of the second frame 3 as Figure 2The structure design incorporated into the sliding hole 231 of the sliding groove unit combined with the first frame 2 enables the second frame 3 to move back and forth relative to the first frame 2 and adjust the length dimension of the accommodating space 4 for the hard disk device 90 that needs to be combined correspondingly, but not limited thereto.
[0029] If the hard disk device 90 has a first length dimension, the combining wall 32 of the second frame 3 is moved towards the mounting frame 21 relative to the connecting wall 22 of the first frame 2, and the first frame 2 and the second frame 3 cooperate to define the accommodating space 4 corresponding to the first length dimension of the hard disk device 90. At this time, the first card slot 322 of the card slot module 321 of the combining wall 32 of the second frame 3 is clamped by the corresponding hook module 221. At this moment, the first frame 2 and the second frame 3 are combined around the outer periphery of the hard disk device 90 and fix the hard disk device 90. If the hard disk device 90 has a second length dimension, the combining wall 32 of the second frame 3 is moved away from the mounting frame 21 relative to the connecting wall 22 of the first frame 2, and the first frame 2 and the second frame 3 cooperate to define the accommodating space 4 corresponding to the second length dimension of the hard disk device 90. At this time, the second card slot 323 of the card slot module 321 of the combining wall 32 of the second frame 3 is clamped by the corresponding hook module 221. At this moment, the first frame 2 and the second frame 3 are combined on the outer periphery of the hard disk device 90 and fix the hard disk device 90.
[0030] During assembly, first initially combine the hard disk device 90 within the first frame 2 and adjust the movement of the second frame 3 relative to the first frame 2 according to the length dimension of the hard disk device 90 to be combined. If the hard disk device 90 has the first length dimension, the first card slot 322 of the card slot module 321 of the combining wall 32 of the second frame 3 is clamped by the hook module 221 of the connecting wall 22 of the first frame 2. At this time, the second frame 3 and the first frame 2 cooperate to define the accommodating space 4 corresponding to the first length dimension of the hard disk device 90 (see Figure 3 ), and the first frame 2 and the second frame 3 are combined around the outer periphery of the hard disk device 90 to fix the hard disk device 90. Or if the hard disk device 90 has the second length dimension, adjust the movement of the second frame 3 relative to the first frame 2 so that the second card slot 323 of the card slot module 321 of the combining wall 32 of the second frame 3 is clamped by the hook module 221 of the connecting wall 22 of the first frame 2. At this time, the second frame 3 and the first frame 2 cooperate to define the accommodating space 4 corresponding to the second length dimension of the hard disk device 90 (see Figure 8), and the first frame 2 and the second frame 3 are fixed around the outer periphery of the hard disk device 90 to fix the hard disk device 90, thus completing the assembly operation. It should be further noted that, in this embodiment, the hard disk device 90 includes a hard disk body 91 and a positioning hole unit 92 disposed on the hard disk body 91. The hard disk body 91 has a fixed edge 911 coupled to the mounting frame 21 of the first frame 2, and two side edges 912 extending from opposite sides of the fixed edge 911 away from the fixed edge 911. The positioning hole unit 92 has two first fixing holes 921 recessed in the fixed edge 911 of the hard disk body 91, and two second fixing holes 922 respectively disposed on the side edges 912. The mounting frame 21 of the first frame 2 has a frame body 211 and two first positioning members 212 disposed on the frame body 211 and extending from the frame body 211 respectively towards the first fixing holes 921 of the hard disk device 90 and inserted into the first fixing holes 921. The second frame 3 further has two second positioning members 34 that are detachably inserted through the coupling walls 32 and into the second fixing holes 922 respectively. When the first positioning members 212 of the mounting frame 21 of the first frame 2 are inserted into the first fixing holes 921 of the hard disk device 90 and the second positioning members 34 of the second frame 3 are locked into the second fixing holes 922, at this time, the first frame 2 and the second frame 3 are fixed around the outer periphery of the hard disk body 91 of the hard disk device 90 and fix the hard disk body 91. That is to say, during the assembly process, first, the first fixing holes 921 located on the fixed edge 911 of the hard disk body 91 are inserted by the first positioning members 212 of the mounting frame 21 of the first frame 2 and the fixed edge 911 of the hard disk body 91 is coupled to the frame body 211 of the mounting frame 21, so that the hard disk device 90 is preliminarily coupled to the first frame 2. Then, move the first frame 2 and the second frame 3 to cooperate to define the accommodating space 4 corresponding to the length dimension of the hard disk device 90 and make the first frame 2 and the second frame 3 be fixed around the outer periphery of the hard disk body 91 of the hard disk device 90. Finally, the second positioning members 34 are respectively inserted through the coupling walls 32 and locked into the second fixing holes 922 located on the side edges 912 of the hard disk body 91 and the side edges 912 of the hard disk body 91 are fixed to the coupling walls 32. At this time, the first frame 2 and the second frame 3 are fixed around the outer periphery of the hard disk body 91 and fix the hard disk body 91.Briefly speaking, it is to use the first positioning member 212 of the first frame 2 to penetrate into the first fixing hole 921 of the hard disk device 90 and cooperate with using the second positioning member 34 of the second frame 3 to lock into the second fixing hole 922 of the hard disk device 90 to fix the hard disk body 91. However, this is not limited thereto. It can also be that the first frame 2 and the second frame 3 are integrally combined around the outer periphery of the hard disk body 91 of the hard disk device 90, and the first frame 2 and the second frame 3 will clamp and fix the hard disk body 91 or the implementation mode of its fixing method, as long as the first frame 2 and the second frame 3 can be integrally combined around the outer periphery of the hard disk body 91 and fix the hard disk body 91.
[0031] By the design that the second frame 3 can move back and forth relative to the first frame 2 and jointly define a receiving space 4 corresponding to the length dimension of the hard disk device 90, the receiving space 4 required can be adjusted according to whether the hard disk device 90 is the first length dimension or the second length dimension, and the overall versatility is good. When the hard disk device 90 is the first length dimension, the hook module 221 of the first frame 2 is snapped into the first slot 322 of the corresponding slot module 321 of the second frame 3, or when the hard disk device 90 is the second length dimension, the hook module 221 of the first frame 2 is snapped into the second slot 323 of the corresponding slot module 321 of the second frame 3, and the first frame 2 and the second frame 3 are integrally combined around the outer periphery of the hard disk device 90 and fix the hard disk device 90, which is convenient to assemble and has good practicability.
[0032] It should be particularly noted that in this embodiment, the hook module 221 of the connecting wall 22 of the first frame 2 has an elastic boss 222 and a hook 223 disposed on the elastic boss 222 and extending from the elastic boss 222 in the direction of the slot module 321. The hook 223 of the hook module 221 can be detachably snapped into the first slot 322 and the second slot 323 of the slot module 321. When the hook 223 is snapped into the first slot 322, the elastic boss 222 is forced in the direction away from the first slot 322 and drives the hook 223 to disengage from the first slot 322; when the hook 223 is snapped into the second slot 323, the elastic boss 222 is forced in the direction away from the second slot 323 and drives the hook 223 to disengage from the second slot 323. That is to say, if it is necessary to detach the hard disk device 90 or to adjust the second frame 3 to move back and forth relative to the first frame 2 and move and adjust the receiving space 4 corresponding to the length dimension of the hard disk device 90 to be combined, as long as the elastic boss 222 is pressed and drives the hook 223 to disengage from the first slot 322 or the second slot 323, the second frame 3 can be adjusted to move back and forth relative to the first frame 2, but this is not limited thereto.
[0033] In addition, it should be noted that in this embodiment, each sliding hole 231 of each sliding rail unit 23 of the first frame 2 has an abutting end 232 located at two opposite ends, and a coupling end 233. The abutting end 232 is close to the mounting frame 21. Each sliding hole 231 further has a large hole groove portion 234 extending from the coupling end 233 towards the abutting end 232, and a small hole groove portion 235 extending from the abutting end 232 towards the coupling end 233 and communicating with the large hole groove portion 234. Each sliding rail unit 23 further has an elastic portion 236 disposed on the coupling end 233 of the sliding hole 231, located within the large hole groove portion 234, and extending from the coupling end 233 towards the abutting end 232. The stud 331 of the stud unit 33 can move back and forth within the small hole groove portion 235 of the sliding hole 231. That is to say, through the small hole groove portion 235 of each sliding hole 231 of each sliding rail unit 23 of the first frame 2 and the corresponding elastic portion 236, the structure is as shown in Figure 3 . During the process of the stud 331 of each stud unit 33 moving back and forth within the small hole groove portion 235 of each sliding hole 231, when each stud 331 moves towards the corresponding large hole groove portion 234 and moves to the corresponding elastic portion 23, each stud 331 will be blocked by the corresponding elastic portion 23 and each stud 331 will not move into the corresponding large hole groove portion 234, so that the problem of each stud 331 detaching from the corresponding large hole groove portion 234 will not occur, thereby effectively ensuring the stable combination during the forward and backward movement of the second frame 3 relative to the first frame 2, but not limited thereto. Incidentally, in this embodiment, when the first frame 2 and the second frame 3 cooperate to define the accommodating space 4 corresponding to the first length dimension of the hard disk device 90, and the first card slot 322 of the card slot module 321 of the coupling wall 32 of the second frame 3 is clamped by the corresponding hook module 221, at this time, the stud 331 of the stud unit 33 abuts against the abutting end 232 of the sliding hole 231 (see Figure 3 ), but not limited thereto.
[0034] It should be noted that in this embodiment, there is also a handle unit 5 pivotally connected to the frame body 211 of the mounting frame 21 of the first frame 2. The handle unit 5 includes a handle 51 pivotally connected to the frame body 211 of the mounting frame 21, and an elastic pressing member 52 disposed on the handle 51 and detachably coupled to the frame body 211. Briefly speaking, with the design of the handle unit 5, it is convenient for the user to pull out the first frame 2 and the second frame 3 from a server (not shown in the figure) by applying force to the handle 51 of the handle unit 5, so as to pull out the hard disk device 90 from the server.
[0035] In particular, in this embodiment, the hard disk device 90 is a solid state drive that complies with the EDSFF (Enterprise and Datacenter SSD Form Factor) E3 specification. The hard disk device 90 with the first length dimension is in the E3.S or E3.S2T specification size. The length dimensions of both E3.S and E3.S2T are 112.75 mm, the thickness of E3.S is 7.5 mm, and the thickness of E3.S2T is 16.8 mm. The hard disk device 90 with the second length dimension is in the E3.L or E3.L 2T specification size. The length dimensions of both E3.L and E3.L 2T are 142.2 mm, the thickness of E3.L is 7.5 mm, and the thickness of E3.L 2T is 16.8 mm. That is to say, the first frame 2 and the second frame 3 of the hard disk frame device 1 in this embodiment cooperate to support the combination of solid state drives of multiple different length dimensions in the E3 specification and can simultaneously support solid state drives with different thicknesses in the E3 specification, but it is not limited thereto.
[0036] In summary, in the present invention, through the design that the second frame 3 can move back and forth relative to the first frame 2 and jointly define a receiving space 4 corresponding to the length dimension of the hard disk device 90, the receiving space 4 required can be adjusted according to whether the hard disk device 90 has the first length dimension or the second length dimension, and the overall versatility is good. When the hard disk device 90 has the first length dimension, the hook module 221 of the first frame 2 is buckled into the first card slot 322 of the corresponding card slot module 321 of the second frame 3, or when the hard disk device 90 has the second length dimension, the hook module 221 of the first frame 2 is buckled into the second card slot 323 of the corresponding card slot module 321 of the second frame 3, and the first frame 2 and the second frame 3 are surrounded and combined around the outer periphery of the hard disk device 90 to fix the hard disk device 90, which is convenient for assembly and has good practicability.
[0037] The above is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of changes or substitutions, which should all be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. A hard disk frame device that can support the combination of hard disk devices of various different length dimensions, Characterized in that, The hard disk frame device includes: A first frame, including a mounting frame, two connecting walls extending away from the mounting frame in opposite directions from two opposite sides of the mounting frame, and two slide rail units respectively disposed on the connecting walls. Each slide rail unit has a slide hole passing through the corresponding connecting wall and extending along the length direction of the corresponding connecting wall. One of the connecting walls has a hook module; and A second frame combined with the first frame. The second frame can move back and forth relative to the first frame and can cooperate with the first frame to define an accommodation space corresponding to the length dimension of a hard disk device. The second frame includes a base wall, two combining walls extending away from the base wall in opposite directions from two opposite sides of the base wall, and two stud units respectively disposed on the combining walls and combined with the slide groove units of the first frame. The combining walls are combined with the connecting walls of the first frame and the combining walls can move back and forth relative to the connecting walls. Each stud unit has a stud disposed on the corresponding combining wall and extending from the outer side surface of the corresponding combining wall towards the slide hole of the corresponding slide groove unit. The stud of the stud unit can move back and forth in the slide hole. One of the combining walls has a slot module corresponding to the hook module. The slot module has a first slot close to the mounting frame of the first frame for detachably clamping and positioning the hook module, and a second slot away from the mounting frame for detachably clamping and positioning the hook module. If the hard disk device has a first length dimension, the combining walls of the second frame are moved towards the mounting frame relative to the connecting walls of the first frame and the first frame and the second frame cooperate to define the accommodation space corresponding to the first length dimension of the hard disk device, and the first slot of the slot module of the combining wall of the second frame is clamped by the corresponding hook module. At this time, the first frame and the second frame are surrounded and fixed around the hard disk device; if the hard disk device has a second length dimension, the combining walls of the second frame are moved away from the mounting frame relative to the connecting walls of the first frame and the first frame and the second frame cooperate to define the accommodation space corresponding to the second length dimension of the hard disk device, and the second slot of the slot module of the combining wall of the second frame is clamped by the corresponding hook module. At this time, the first frame and the second frame are combined around the hard disk device and fixed to the hard disk device.
2. The hard disk frame device according to claim 1, Characterized in that, The hard disk device includes a hard disk body and a positioning hole unit disposed on the hard disk body. The hard disk body has a fixed edge coupled to the mounting frame of the first frame, and two side edges extending away from the fixed edge from opposite sides of the fixed edge. The positioning hole unit has two first fixing holes recessed in the fixed edge of the hard disk body, and two second fixing holes respectively disposed on the side edges. The mounting frame of the first frame has a frame body and two first positioning members disposed on the frame body and extending respectively toward the first fixing holes of the hard disk device and inserted into the first fixing holes. The second frame further has two second positioning members detachably penetrating the combined walls and inserted into the second fixing holes. When the first positioning members of the mounting frame of the first frame are inserted into the first fixing holes of the hard disk device and the second positioning members of the second frame are locked into the second fixing holes, at this time, the first frame and the second frame are surrounded and combined around the outer periphery of the hard disk body of the hard disk device and fix the hard disk body.
3. The hard disk frame device according to claim 2, wherein, the hook module of the connecting wall of the first frame has an elastic boss and a hook disposed on the elastic boss and extending from the elastic boss toward the slot module. The hook of the hook module can be detachably buckled to the first slot and the second slot of the slot module. When disassembling, in the case where the hook is inserted into the first slot, the elastic boss is forced in a direction away from the first slot and drives the hook to disengage from the first slot; in the case where the hook is inserted into the second slot, the elastic boss is forced in a direction away from the second slot and drives the hook to disengage from the second slot.
4. The hard disk frame device according to claim 3, wherein, each sliding hole of each sliding rail unit of the first frame has an abutting end and a coupling end located at opposite ends. The abutting end is close to the mounting frame. Each sliding hole further has a large hole groove portion extending from the coupling end toward the abutting end, and a small hole groove portion extending from the abutting end toward the coupling end and communicating with the large hole groove portion. Each sliding rail unit further has an elastic portion disposed on the coupling end of the sliding hole and located within the large hole groove portion and extending from the coupling end toward the abutting end. The protrusion of the protrusion unit can move back and forth within the small hole groove portion of the sliding hole.
5. The hard disk frame device according to claim 4, wherein, when the first frame and the second frame cooperate to define an accommodation space corresponding to the first length dimension of the hard disk device and the first slot of the slot module of the combined wall of the second frame is clamped by the corresponding hook module, at this time, the protrusion of the protrusion unit abuts against the abutting end of the sliding hole.
6. The hard disk frame device according to claim 2, wherein, it further includes a handle unit pivotally connected to the frame body of the mounting frame of the first frame. The handle unit includes a handle pivotally connected to the frame body of the mounting frame and an elastic pressing member disposed on the handle and detachably combined with the frame body.
7. The hard disk frame device according to claim 1, wherein, the hard disk device is a solid state drive compliant with the EDSFF E3 specification.
8. The hard disk frame device according to claim 1, wherein, the hard disk device with the first length dimension is in the E3.S specification size, and the hard disk device with the second length dimension is in the E3.L specification size.
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CN121277310A