Memory assisted plugging device
By designing a memory-assisted insertion and removal device based on the lever principle, the device uses a pry bar and a reset device to pry open the head of the memory module, solving the problem of the inconvenience of manually prying open the head of the memory module. This enables time-saving and labor-saving memory insertion and removal operations, thereby improving production efficiency.
Patent Information
- Application Number
- CN202211367253.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-02
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2042-11-02
AI Technical Summary
In existing technologies, memory insertion and removal operations require manual prying open of the head of the memory chip, which is inconvenient and labor-intensive, especially inefficient in large-scale assembly line operations.
The memory auxiliary insertion and removal device, designed using the lever principle, uses a pry bar and a reset device to pry open the head of the memory module. Through the cooperation of the pry bar and the reset device, memory insertion and removal can be achieved in a time-saving and labor-saving manner.
It reduces the labor intensity of manual operation, reduces wear and tear from memory insertion and removal, and improves operational efficiency and convenience, making it suitable for mass production on assembly lines.
Smart Images

Figure CN115741579B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the field of server mainboard testing equipment, in particular to a memory auxiliary plugging device. BACKGROUND
[0002] With the development of society, computers are widely used in various industries, and the demand for servers is increasing year by year. In the server manufacturing industry, during the function testing stage of the mainboard production, the factory usually adopts the manual full-memory insertion mode to determine whether the mainboard memory slot meets the factory requirements by detecting whether the full-memory insertion function is normal.
[0003] Generally, when the memory is inserted into the mainboard memory slot, the two hippocampus heads on both sides of the memory slot are used for clamping fixation to prevent the memory from loosening and causing poor contact. When the memory is inserted, the upper end of the memory is manually pressed to make the hippocampus head clamped into the groove above the memory. When the memory is pulled out, the hippocampus head needs to be manually pried open, and the memory is pulled out by the hook at the bottom of the hippocampus head. For example, Chinese patent CN214446016U discloses a memory plugging auxiliary device, which comprises two clamping rods and a reset spring. The two clamping rods are symmetrically arranged, the upper part of the clamping rod is a stress part, the lower part of the clamping rod is a pressing part, the stress parts of the two clamping rods are fixedly connected through the reset spring, and the inner side of the pressing part of the clamping rod is provided with a rubber clamp.
[0004] Since all the memories on the board need to be inserted and pulled out during the testing of each mainboard, such a large number of insertion and pulling operations are very inconvenient, especially when the memory is pulled out, the hippocampus heads on both sides of the memory slot need to be manually pried open. In order to solve the above problems, a memory auxiliary plugging device is needed, which uses the principle of lever to change the "prying" to "pinching", greatly improves the inconvenience of manual memory plugging operation, and improves the operation efficiency. SUMMARY
[0005] In order to solve the above problems, a memory auxiliary plugging device is proposed, which uses the principle of lever to pry open the hippocampus head of the memory, and uses the reset spring to reset the lever, changes the inconvenience of manually prying open the hippocampus head, saves time and effort, and is convenient to operate.
[0006] In order to achieve the above object, the application is implemented by the following technical scheme: a memory auxiliary plugging device, comprising a memory fixing and pressing device, a lever and reset device and a memory adapter; the memory fixing and pressing device is used for wrapping the memory therein; the memory adapter is located at the lower part of the memory fixing and pressing device; the upper end of the memory adapter is a memory slot for installing a real memory; the lower end of the memory adapter is a gold finger and an extension plate thereof; wherein, the gold finger is inserted into the mainboard memory slot; the lever and reset device is located on the memory fixing and pressing device and pries open the memory fixing hippocampus head arranged on both sides of the memory adapter; the memory auxiliary plugging device adopts the lever and reset device to pry open the memory fixing hippocampus head by the lever principle, solves the problem that the manual direct hand-bending of the memory fixing hippocampus head is too large for the fingers, saves time and effort and is convenient to operate.
[0007] Further improvement of the application is that the upper end of the memory fixing and pressing device is in the shape of U as a whole and extends outward on both sides; the memory is conveniently pressed, and the lever and reset device is rotated.
[0008] Further improvement of the application is that the lower end of the memory fixing and pressing device is in an integral structure with the memory adapter, and the side surface of the memory fixing and pressing device is used for fixing the lever and reset device; the surface of the gold finger and the extension plate thereof is free of devices, so that the memory is not damaged when the lever is used to pry open the memory fixing hippocampus head; after the memory bar is inserted into the memory adapter plate, it is not necessary to be inserted and pulled again during use, and the actual insertion and pulling is the insertion and pulling between the gold finger on the gold finger and the extension plate and the mainboard memory slot, so that the wear of the gold finger of the memory is reduced.
[0009] Further improvement of the application is that the memory adapter is a memory adapter plate, and the memory adapter plate is provided with fixing holes at both ends, and the fixing holes are used for fixing the installation of the memory adapter plate and the memory fixing and pressing device.
[0010] Further improvement of the application is that the lever and reset device comprises a lever and a reset spring; the lever is arranged on the memory fixing and pressing device through a pin shaft, and the reset spring is arranged in the groove of the memory fixing and pressing device and resets the lever; the reset spring is installed at one end of the lever handle, and the lever handle is automatically reset when it is not stressed; the travel of one end of the lever handle and the memory fixing and pressing device is designed as the travel of the lower end of the lever hook for prying open the memory fixing hippocampus head, so that the memory fixing hippocampus head is prevented from being damaged.
[0011] The pry bar includes a pry hook and a pry handle; the pry hook is arranged at the lower end of the pry handle and cooperates with the memory fixing hippocampus head; and the pry handle is arranged at the upper end of the pry bar and cooperates with the upper end of the memory fixing and pressing device. The lower end of the pry bar is provided with the pry hook, and the upper end of the pry bar is designed as the pry handle; the lever principle is adopted, one end of the pry hook penetrates through the memory adapter plate, and the memory fixing hippocampus head is pried from both sides of the memory adapter plate. When one end of the pry handle is pried, the pry hook pries open the memory fixing hippocampus head, so that the memory can be normally pulled out.
[0012] The pry bar includes a pry hook and a pry handle; the pry hook is arranged at the lower end of the pry handle and cooperates with the memory fixing hippocampus head; and the pry handle is arranged at the upper end of the pry bar and cooperates with the upper end of the memory fixing and pressing device. The lower end of the pry bar is provided with the pry hook, and the upper end of the pry bar is designed as the pry handle; the lever principle is adopted, one end of the pry hook penetrates through the memory adapter plate, and the memory fixing hippocampus head is pried from both sides of the memory adapter plate. When one end of the pry handle is pried, the pry hook pries open the memory fixing hippocampus head, so that the memory can be normally pulled out.
[0013] The pry bar includes a pry hook and a pry handle; the pry hook is arranged at the lower end of the pry handle and cooperates with the memory fixing hippocampus head; and the pry handle is arranged at the upper end of the pry bar and cooperates with the upper end of the memory fixing and pressing device. The lower end of the pry bar is provided with the pry hook, and the upper end of the pry bar is designed as the pry handle; the lever principle is adopted, one end of the pry hook penetrates through the memory adapter plate, and the memory fixing hippocampus head is pried from both sides of the memory adapter plate. When one end of the pry handle is pried, the pry hook pries open the memory fixing hippocampus head, so that the memory can be normally pulled out.
[0014] The upper end of the memory fixing and pressing device has a thickness of 6 mm; the thickness of the memory adapter device is equal to the thickness of the upper end of the memory fixing and pressing device; and fingers are not easily damaged by direct pressing.
[0015] From the above technical solutions, the beneficial effects of the present application are: the auxiliary device adopts a pry bar and a reset device to pry open the memory fixing hippocampus head through the lever principle, thereby solving the problem that manually prying open the hippocampus head by hand causes excessive burden on fingers.
[0016] The surface of the gold finger and its extension plate is free of devices, and the memory is not damaged when the pry bar is used to pry open the memory fixing hippocampus head; after the memory bar is inserted into the memory adapter plate, it does not need to be inserted and pulled again during use, and the actual insertion and pulling is the insertion and pulling between the gold finger on the gold finger and its extension plate and the memory slot in the mainboard, thereby reducing the wear and tear of the memory gold finger.
[0017] One end of the pry handle is provided with a reset spring, and the pry handle is automatically reset when it is not under stress; the travel of one end of the pry handle and the memory fixing and pressing device is designed as the travel of the lower end of the pry hook prying open the memory fixing hippocampus head, thereby preventing damage to the memory fixing hippocampus head.
[0018] A gap is arranged between the pry hook and the memory adapter plate, and the gap is arranged to facilitate the installation and use of the pry hook and prevent the pry hook from cooperating with the memory adapter plate.
[0019] The upper end of the memory fixing and pressing device has a thickness of 6 mm; the thickness of the memory adapter device is equal to the thickness of the upper end of the memory fixing and pressing device; and fingers are not easily damaged by direct pressing. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to make the technical solutions of the present application clearer, the drawings needed to be used in the description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and all other embodiments obtained by those of ordinary skill in the art without any creative effort based on these drawings are within the scope of the present patent.
[0021] Fig. 1 The structural schematic diagram of the specific embodiment of the present application.
[0022] Fig. 2 The installation structural schematic diagram of the memory adapter device of the specific embodiment of the present application.
[0023] Fig. 3 The installation structural schematic diagram of the rotating pry bar and the reset device of the specific embodiment of the present application.
[0024] In the drawings: 100, memory fixing and pressing device; 200, memory adapter device; 300, pry bar and reset device; 400, memory fixing hippocampus head; 2001, memory slot; 2002, gold finger and its extension plate; 2003, fixing hole; 3001, pry bar; 3002, reset spring; 30011, pry hook; 30012, pry handle. EMBODIMENT
[0025] In order to make the technical solutions of the present application clearer, the drawings needed to be used in the description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and all other embodiments obtained by those of ordinary skill in the art without any creative effort based on these drawings are within the scope of the present patent protection.
[0026] Embodiment 1:
[0027] Referring to Figs. 1-3As shown in the figure, the application discloses a memory auxiliary plugging device, which comprises a memory fixing and pressing device 100, a lever and resetting device 300 and a memory adapter 200; the memory fixing and pressing device 100 is used for wrapping the memory therein; the memory adapter 200 is located at the lower part of the memory fixing and pressing device 100; the upper end of the memory adapter 200 is a memory slot 2001 used for installing the real memory; the lower end of the memory adapter 200 is a golden finger and an extension plate 2002 thereof; wherein, the golden finger is inserted into the mainboard memory slot; the lever and resetting device 300 is located on the memory fixing and pressing device 100 and pries open the memory fixing hippocampus head 400 arranged on both sides of the memory adapter 200. The memory auxiliary plugging device adopts the lever and resetting device 300 to pry open the memory fixing hippocampus head 400 through the lever principle, solves the problem that the manual direct hand breaking of the memory fixing hippocampus head 400 is too large for the fingers, saves time and effort and is convenient to operate.
[0028] Embodiment 2
[0029] Referring to Figs. 1-2 As shown in the figure, the application discloses a memory auxiliary plugging device, which comprises a memory fixing and pressing device 100, a lever and resetting device 300 and a memory adapter 200; the memory fixing and pressing device 100 is used for wrapping the memory therein; the memory adapter 200 is located at the lower part of the memory fixing and pressing device 100; the upper end of the memory adapter 200 is a memory slot 2001 used for installing the real memory; the lower end of the memory adapter 200 is a golden finger and an extension plate 2002 thereof; wherein, the golden finger is inserted into the mainboard memory slot; the lever and resetting device 300 is located on the memory fixing and pressing device 100 and pries open the memory fixing hippocampus head 400 arranged on both sides of the memory adapter 200. The memory auxiliary plugging device adopts the lever and resetting device 300 to pry open the memory fixing hippocampus head 400 through the lever principle, solves the problem that the manual direct hand breaking of the memory fixing hippocampus head 400 is too large for the fingers, saves time and effort and is convenient to operate.
[0030] Embodiment 3
[0031] Referring to Figs. 1-3As shown, a memory auxiliary plug-in device includes a memory fixing and pressing device 100, a lever and reset device 300 and a memory adapter 200; the memory fixing and pressing device 100 is used to wrap the memory therein; the memory adapter 200 is located at the lower part of the memory fixing and pressing device 100; the upper end of the memory adapter 200 is a memory slot 2001 used for installing a real memory; the lower end of the memory adapter 200 is a gold finger and its extension plate 2002; wherein the gold finger is inserted into the mainboard memory slot; the lever and reset device 300 is located on the memory fixing and pressing device 100 and pries open the memory fixing hippocampus head 400 arranged on both sides of the memory adapter 200. The memory adapter 200 is a memory adapter plate, both ends of the memory adapter plate are provided with fixing holes 2003, and the fixing holes 2003 are used for fixing the memory adapter plate and the installation of the memory fixing and pressing device 100. There are two purposes for using the memory adapter plate for the memory adapter 200: the surface of the gold finger and its extension plate 2002 is free of devices, and the memory fixing hippocampus head 400 will not be damaged when the lever 3001 is used to pry open the memory fixing hippocampus head 400; after the memory bar is inserted into the memory adapter plate, it is not necessary to insert and pull out again during use, and the actual insertion and pulling out is the insertion and pulling out between the gold finger on the gold finger and its extension plate 2002 and the mainboard memory slot, thereby reducing the wear and tear of the gold finger of the memory.
[0032] The lever and reset device 300 includes a lever 3001 and a reset spring 3002; the lever 3001 is arranged on the memory fixing and pressing device 100 through a pin shaft, and the reset spring 3002 is arranged in a groove of the memory fixing and pressing device 100 and resets the lever 3001; one end of a lever handle 30012 is provided with the reset spring 3002, and the lever handle 30012 is automatically reset when it is not stressed; one end of the lever handle 30012 and the movable stroke of the memory fixing and pressing device 100 are designed as the stroke of the lower end of a lever hook 30011 prying open the memory fixing hippocampus head 400, that is, when the lever handle 30012 is pinched with the memory fixing and pressing device 100, the memory fixing hippocampus head 400 is pried open to the bottom, thereby preventing the memory fixing hippocampus head 400 from being damaged.
[0033] The pry bar 3001 comprises a pry hook 30011 and a pry handle 30012; the pry hook 30011 is arranged at the lower end of the pry handle 30012 and cooperates with the memory fixing hippocampus head 400; the pry handle 30012 is arranged at the upper end of the pry bar 3001 and cooperates with the upper end of the memory fixing and pressing device 100. The lower end of the pry bar 3001 is provided with the pry hook 30011, and the upper end of the pry bar 3001 is designed as the pry handle 30012; by using the principle of lever, the pry hook 30011 passes through the memory adapter board from both sides of the memory adapter board to pry the memory fixing hippocampus head 400. When the pry handle 30012 is pricked at one end, the pry hook 30011 pries open the memory fixing hippocampus head 400, so that the memory can be normally pulled out.
[0034] The pry hook 30011 is provided with two pry hooks 30011, which are respectively arranged at both sides of the memory adapter board; a gap is arranged between the pry hook 30011 and the memory adapter board, which is used for facilitating the installation and use of the pry hook 30011 and preventing the pry hook 30011 from cooperating with the memory adapter board; the thickness of the upper end of the memory fixing and pressing device 100 is 6 mm; the thickness of the memory adapter device 200 is equal to the thickness of the upper end of the memory fixing and pressing device 100.
[0035] In summary, it can be seen that the present application mainly solves the problem of inconvenient frequent insertion and removal of the memory; the auxiliary device adopts the principle of lever (the structure of the pry bar and the two pry hooks of the reset device) to pry open the memory fixing hippocampus head, solves the problem that the manual direct hand-bending of the hippocampus head causes too large burden on the fingers. The surface of the gold finger and the extension plate is free of devices, so that the memory is not damaged when the pry bar is used to bend the memory fixing hippocampus head; after the memory bar is inserted into the memory adapter board, it is not necessary to be inserted and removed again during use, and the actual insertion and removal is the insertion and removal between the gold finger on the gold finger and the extension plate and the memory slot in the mainboard, thereby reducing the wear and tear of the memory. The reset spring is arranged at one end of the pry handle, and the pry handle is automatically reset when it is not subjected to force; the active stroke of one end of the pry handle and the memory fixing and pressing device is designed as the stroke of the lower pry hook for prying open the memory fixing hippocampus head, thereby preventing the memory fixing hippocampus head from being damaged. A gap is arranged between the pry hook and the memory adapter board, which is used for facilitating the installation and use of the pry hook and preventing the pry hook from cooperating with the memory adapter board; by using the principle of lever, the manual hand-bending of the hippocampus head is changed into the mode of prying open the hippocampus head by using the pry bar, and the lever is reset by using the reset spring, thereby saving time and effort and facilitating the flow line batch manual operation.
[0036] The various embodiments in the specification are described in a progressive manner, and each embodiment focuses on the difference from other embodiments, and the same or similar parts of each embodiment can be referred to each other.
[0037] The terms "upper," "lower," "outer," "inner," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish relative positional relationships and are not necessarily qualitative. It should be understood that such data can be interchanged where appropriate so that embodiments of the invention described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.
[0038] The above description of the disclosed embodiments enables those skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, the invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A memory assisted plug-in device, characterized by, Comprising Memory fixing and pressing device (100) for wrapping memory therein; Memory adapter device (200) located at the lower part of the memory fixing and pressing device (100); the upper end of the memory adapter device (200) is a memory slot (2001) for installing real memory; The lower end of the memory adapter device (200) is a gold finger and its extension plate (2002); wherein the gold finger is inserted into the memory slot of the mainboard; The lever and resetting device (300) is located on the memory fixing and pressing device (100) and pries open the memory fixing hippocampus head (400) arranged on both sides of the memory adapter device (200); The lever and resetting device (300) comprises a lever (3001) arranged on the memory fixing and pressing device (100) through a pin shaft, the lever (3001) comprises a lever hook (30011) and a lever handle (30012); the lever hook (30011) is arranged at the lower end of the lever handle (30012) and cooperates with the memory fixing hippocampus head (400); the lever handle (30012) is arranged at the upper end of the lever (3001) and cooperates with the upper end of the memory fixing and pressing device (100), one end of the lever handle (30012) and the movable stroke of the memory fixing and pressing device (100) are designed as the stroke of the lower end lever hook (30011) prying open the memory fixing hippocampus head (400); when the lever handle (30012) and the memory fixing and pressing device (100) pinch, the memory fixing hippocampus head (400) is pried open to the bottom; The upper end of the memory fixing and pressing device (100) is in the shape of U as a whole and extends outward on both sides; the lower end of the memory fixing and pressing device (100) is an integral structure with the memory adapter device (200), the side surface of the memory fixing and pressing device (100) is used for fixing the lever and resetting device (300); the memory adapter device (200) is a memory adapter plate, the memory adapter plate is provided with fixing holes (2003) at both ends; the lever and resetting device (300) comprises a resetting spring (3002); the resetting spring (3002) is arranged in the groove of the memory fixing and pressing device (100) and resets the lever (3001), the lever handle (30012) is automatically reset when it is not under stress; the lever hook (30011) is provided with two, the two lever hooks (30011) are respectively located on both sides of the memory adapter plate; a gap is arranged between the lever hook (30011) and the memory adapter plate; the thickness of the memory adapter device (200) is equal to the thickness of the upper end of the memory fixing and pressing device (100).
2. The memory-assisted plugging device of claim 1, wherein, The thickness of the upper end of the memory fixing and pressing device (100) is 6mm.
Citation Information
Patent Citations
Memory plugging auxiliary device
CN214446016U
Memory slot protection plate
CN210181527U
Jig for plugging in-line memory bank of server
CN215497501U