A positioning device for computer motherboard detection
Patent Information
- Application Number
- CN202521844354.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-28
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-08-28
AI Technical Summary
[0004]有鉴于此,本实用新型针对现有技术存在之缺失,其主要目的是提供一种电脑主板检测用定位装置,其解决了传统的插接方式,通过人为将各个插头插接在电脑主板上,导致电脑主板的检测效率较慢的问题
[0011]本实用新型与现有技术相比具有明显的优点和有益效果,具体而言,由上述技术方案可知,检测电脑主板时,将电脑主板放置在水平工作台面面,且定位板下方,后通过第一驱动件驱动定位板下压,对水平工作台面上的电脑主板进行定位及限位,后通过第二驱动件驱动移动块移动,使移动块上多个通口内插接的线路插头插接在电脑主板上,以供操作人员进行后续检测。
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Figure CN224731987U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of circuit board testing technology, and in particular to a positioning device for testing computer motherboards. Background Technology
[0002] Checking the computer motherboard is an important step in diagnosing hardware faults. When checking the motherboard, you first need to connect all the connectors to it.
[0003] When testing a computer motherboard, multiple connectors need to be inserted into the motherboard's connectors. However, the traditional method of manually plugging each connector into the motherboard results in a slow testing efficiency. Utility Model Content
[0004] In view of this, the present invention addresses the deficiencies of the existing technology and its main purpose is to provide a positioning device for computer motherboard testing. It solves the problem of slow testing efficiency caused by the traditional plug-in method, which involves manually plugging each plug into the computer motherboard.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a positioning device for testing computer motherboards, with a horizontal worktable for supporting the computer motherboard; The positioning component includes a positioning plate and a first driving component. The output shaft of the first driving component is connected to the positioning plate. The positioning plate is located above the computer motherboard, and the lower end face of the positioning plate is adapted to the upper end face of the computer motherboard. The lateral positioning assembly includes a moving block and a second drive member, wherein the output shaft of the second drive member is connected to the moving block, allowing the moving block to slide on a horizontal worktable surface; The movable block has multiple ports on one side corresponding to the computer motherboard, which are designed to accommodate connector plugs, so that the connector plugs in the ports can be inserted into the interfaces on the computer motherboard as the movable block moves.
[0006] Furthermore, the upper or side end of the movable block is provided with a movable extrusion member, which extends into the opening.
[0007] Furthermore, the extrusion component includes a connecting block and a knob, the output end of which is connected to the connecting block, and the connecting block clamps the connector inside the port as the knob is pushed.
[0008] Furthermore, the movable block is provided with a connecting groove that communicates with the through port, the connecting block is housed in the connecting groove, and one end of the knob extends into the connecting groove.
[0009] Furthermore, the contact surfaces between the connecting block and the connecting plug are provided with soft pads.
[0010] Furthermore, the knob is threadedly connected to the threaded opening on the connecting block via a thread.
[0011] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, when testing a computer motherboard, the computer motherboard is placed on a horizontal workbench surface and below the positioning plate. Then, the positioning plate is driven to press down by the first driving component to position and limit the computer motherboard on the horizontal workbench surface. Then, the moving block is driven to move by the second driving component, so that the wire plugs connected to the multiple ports on the moving block are connected to the computer motherboard for the operator to perform subsequent testing.
[0012] To more clearly illustrate the structural features and effects of this utility model, the following detailed description of this utility model is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description
[0013] Figure 1 This is a perspective view of Embodiment 1 of this utility model.
[0014] Figure 2 This is a diagram illustrating the moving block of Embodiment 1 of this utility model.
[0015] Explanation of reference numerals in the attached diagram: Horizontal work surface 10; Positioning component 20, positioning plate 21, first driving component 22; Lateral positioning component 30, moving block 31, through port 311, extrusion component 312, connecting block 3121, knob component 3122, soft pad 3123, connecting groove 313, second drive component 32. Detailed Implementation
[0016] Please refer to Figure 1-2 As shown, it displays the specific structure of a preferred first embodiment of the present invention, which is a positioning device for detecting computer motherboards, with a horizontal worktable 10 for supporting the computer motherboard. The positioning component 20 includes a positioning plate 21 and a first driving member 22. The output shaft of the first driving member 22 is connected to the positioning plate 21. The positioning plate 21 is located above the computer motherboard, and the lower end face of the positioning plate 21 is adapted to the upper end face of the computer motherboard. The lateral positioning component 30 includes a moving block 31 and a second driving member 32. The output shaft of the second driving member 32 is connected to the moving block 31, so that the moving block 31 slides on the horizontal worktable 10. The movable block 31 has multiple ports 311 on one side corresponding to the computer motherboard, allowing the connectors in the ports 311 to connect to the interfaces on the computer motherboard as the movable block 31 moves. Compared to existing computer motherboard testing positioning devices, which only position the computer motherboard but require manual insertion of connectors, resulting in slow testing efficiency, this computer motherboard testing positioning device adds a movable block 31 for accommodating various connectors to the horizontal worktable 10. Driven by a second drive unit 32, multiple connectors can move with the movable block 31 and simultaneously connect to the computer motherboard, thus reducing testing efficiency.
[0017] Specifically, when testing the computer motherboard, the computer motherboard is placed on the horizontal workbench 10 and below the positioning plate 21. Then, the positioning plate 21 is pressed down by the first driving component 22 to position and limit the computer motherboard on the horizontal workbench 10. Then, the moving block 31 is moved by the second driving component 32 so that the wire plugs inserted into the multiple ports 311 on the moving block 31 are connected to the computer motherboard for subsequent testing by the operator.
[0018] It should be noted that the first driving component 22 and the second driving component 32 can be a cylinder, an electric cylinder, or a hinged linear drive structure, as shown in the following figure. Figure 1 As shown, however, none of the above methods are the focus of this invention, and are only briefly described here.
[0019] For example, the upper or side end of the movable block 31 is provided with a movable pressing member 312, which extends into the through-hole 311. By setting the pressing member 312 on the movable block 31, the wire plug inserted into the through-hole 311 is limited, which can prevent the wire plug from being unable to be inserted into the computer motherboard due to looseness in the through-hole 311, and the subsequent connection is not tight enough.
[0020] Specifically, the pressing component 312 includes a connecting block 3121 and a knob 3122. The output end of the knob 3122 is connected to the connecting block 3121. As the knob 3122 is pushed, the connecting block 3121 clamps the connector plug inside the opening 311. Since the pressing component 312 can be located on the upper side wall of the moving block 31, to reduce the space occupied by the pressing component 312, the knob 3122 allows the operator to push the connecting block 3121 into the opening 311 to contact the wire plug by turning the knob 3122. If the wire plug is cylindrical, the connecting block 3121 can be semi-circular; if the wire plug is rectangular, the connecting block 3121 can be concave. The inner cavity of the connecting block 3121 is adapted to the wire plug to ensure stability when clamping the wire plug.
[0021] The movable block 31 has a connecting groove 313 communicating with the through port 311. The connecting block 3121 is housed in the connecting groove 313, and one end of the knob 3122 extends into the connecting groove 313. The opening of the connecting groove 313 and the housing of the connecting block 3121 can prevent the connecting block 3121 from blocking the inner cavity of the through port 311 and affecting the insertion of the line plug and the through port 311.
[0022] The contact surface between the connecting block 3121 and the connecting plug is provided with a soft pad 3123. The addition of the soft pad 3123 can increase the tightness of the connecting block 3121 in clamping the connecting plug.
[0023] The knob 3122 is threadedly connected to the threaded opening on the connecting block 3121. The threaded connection between the knob 3122 and the connecting block 3121 ensures the stability of the connecting block 3121 when it clamps the connector plug after the knob 3122 is pushed.
[0024] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.
Claims
1. A positioning device for detecting computer motherboards, characterized in that: include; A horizontal worktable (10) is used to support the computer motherboard; The positioning component (20) includes a positioning plate (21) and a first driving member (22). The output shaft of the first driving member (22) is connected to the positioning plate (21). The positioning plate (21) is located above the computer motherboard, and the lower end face of the positioning plate (21) is adapted to the upper end face of the computer motherboard. The lateral positioning assembly (30) includes a moving block (31) and a second drive member (32), the output shaft of the second drive member (32) being connected to the moving block (31) so that the moving block (31) slides on the horizontal worktable (10); The movable block (31) has multiple ports (311) on one side corresponding to the computer motherboard, so that the connector in the port (311) can be plugged into the interface on the computer motherboard as the movable block (31) moves.
2. The positioning device for detecting computer motherboards according to claim 1, characterized in that: The upper or side end of the movable block (31) is provided with a movable extrusion member (312), which extends into the opening (311).
3. The positioning device for detecting computer motherboards according to claim 2, characterized in that: The extrusion member (312) includes a connecting block (3121) and a knob (3122). The output end of the knob (3122) is connected to the connecting block (3121). As the knob (3122) is pushed, the connecting block (3121) clamps the connecting plug inside the port (311).
4. The positioning device for detecting computer motherboards according to claim 3, characterized in that: The movable block (31) is provided with a connecting groove (313) communicating with the through port (311). The connecting block (3121) is housed in the connecting groove (313), and one end of the knob (3122) extends into the connecting groove (313).
5. A positioning device for detecting computer motherboards according to claim 4, characterized in that: The contact surface between the connecting block (3121) and the connecting plug is provided with a soft pad (3123).
6. A positioning device for detecting computer motherboards according to claim 3, characterized in that: The knob (3122) is threadedly connected to the threaded opening on the connecting block (3121) via a thread.