Multi-station flat cable leveling jig
By designing a multi-station cable leveling fixture, and utilizing guide and conveying components to ensure the cable is placed flat, the problem of uneven placement of the cable in the testing instrument is solved, thus improving the testing accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LTK INDS HUIZHOU
- Filing Date
- 2025-05-19
- Publication Date
- 2026-05-12
AI Technical Summary
The existing testing instruments lack corresponding wire fixtures, which causes the ribbon cables to be placed unevenly or bent and deformed during testing, affecting the testing accuracy.
设计一种多工位排线平整治具,包含底座、导向限位组件和导向输送组件,通过在底座上设置放置槽和可拆卸的导向限位组件,利用导向输送组件驱使排线沿放置槽滑动,确保排线平整放置。
This allows for the flat placement of the ribbon cable, improving the detection accuracy of subsequent testing instruments and ensuring the accuracy of the ribbon cable data detection.
Smart Images

Figure CN224226377U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of testing fixture technology, and in particular to a multi-station wiring flat fixture. Background Technology
[0002] A ribbon cable is a flat connecting cable used for data transmission between moving parts and motherboards or in miniaturized electrical devices. It is typically composed of multiple conductors bonded together side-by-side, and is a flexible cable with customizable conductor numbers and spacing. Existing ribbon cables come in various specifications, differentiated by dimensions such as the center-to-center distance of each conductor, the total center-to-center distance of the conductors, and the distance between the fins. Therefore, precise measurements are required before the ribbon cable is finished. Current measurement methods typically involve placing the ribbon cable in a testing instrument and judging the accuracy of the cable dimensions based on the instrument's results. However, existing testing instruments lack corresponding conductor fixtures, leading to uneven placement or bending deformation of the ribbon cable, significantly affecting the testing accuracy. Utility Model Content
[0003] To solve the above-mentioned technical problems, this application provides a multi-station cable laying and flattening tool, including a base, a plurality of placement slots are provided on the base, a plurality of guide and limiting components are detachably provided on the base along the opening direction of the placement slots, and a guide and conveying component is also provided on the base on the side of the guide and limiting components, so as to realize the flattening and flattening of the cable laying and ensure the accuracy of cable data detection.
[0004] Preferably, the guide and limiting component includes mounting slots spaced apart from the base, a mounting plate detachably mounted in the mounting slot, and a guide wheel correspondingly mounted on the mounting plate at the top of the placement slot to guide and transport the cable, ensuring that the cable is placed flat in the placement slot.
[0005] Preferably, the guiding and conveying assembly includes a mounting base disposed on the base, a rotating shaft rotatably disposed on the mounting base, first driving assemblies with drive ends connected to the rotating shaft disposed on both sides of the mounting base, and a snap-fit block for snapping the ribbon cable is also wound around the rotating shaft, thereby driving the ribbon cable to slide along the placement groove to cooperate with the guiding and limiting assembly to flatten the ribbon cable.
[0006] Preferably, the wire pressing assembly includes a mounting bracket disposed on the base, a wire pressing wheel disposed on the mounting bracket facing the placement groove, and a second driving assembly disposed on the mounting bracket with its driving end connected to the wire pressing wheel, thereby pressing down and fixing the cable head to the snap-fit block.
[0007] Preferably, the snap-fit block has a limiting groove that matches the number of ribbon cables.
[0008] Preferably, the width of the placement groove is 3-5 mm.
[0009] As can be seen from the above, the following beneficial effects can be obtained by applying the present application: The present application provides a base with several sets of placement slots, and several sets of guide and limiting components can be detachably provided on the base along the opening direction of the placement slots. A guide and conveying component is also provided on the base on one side of the guide and limiting components. By providing a placement slot on the base, and several sets of guide and limiting components can be detachably provided on the base along the opening direction of the placement slots, and a guide and conveying component is also provided on the base on one side of the wire limiting component, the cable end can be fixed to the guide and conveying component. The guide and conveying component can drive the cable to slide along the placement slots, so that the sliding cable can be guided and flattened by the guide and limiting components provided on both sides of the placement slots, thereby placing the cable flat in the flattening fixture. This is to cooperate with the subsequent testing instrument to detect the cable size accuracy, and to achieve the flattening and flattening of the guided cable, so as to ensure the accuracy of the cable data detection. Attached Figure Description
[0010] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments of this application or the prior art will be briefly introduced below. Obviously, the accompanying drawings described below are only a part of the embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0011] Figure 1 This is a schematic diagram of the structure of the leveling fixture according to an embodiment of this application;
[0012] Figure 2 This is a top view of the leveling fixture according to an embodiment of this application.
[0013] Figure Labels
[0014] 10. Base; 11. Placement slot; 12. Guide and limit assembly; 13. Guide and conveying assembly; 14. Wire pressing assembly; 121. Mounting slot; 122. Mounting plate; 123. Guide wheel; 131. Mounting seat; 132. Rotary shaft; 133. First drive assembly; 134. Snap-fit block; 141. Mounting bracket; 142. Wire pressing wheel; 143. Second drive assembly. Detailed Implementation
[0015] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0016] Example
[0017] To address the aforementioned technical problems, this embodiment provides a multi-station cable leveling tool, such as... Figure 1 As shown, the device includes a base 10 with several sets of placement slots 11. Several sets of guide and limiting components 12 are detachably installed on the base 10 along the direction of the placement slots 11. A guide and conveying component 13 is also installed on the side of the base 10 located near the guide and limiting components 12. By fixing the cable end to the guide and conveying component 13, the guide and conveying component 13 can drive the cable to slide along the placement slots 11. The sliding cable can be guided and leveled by the guide and limiting components 12 on both sides of the placement slots 11, thus placing the cable flat in the leveling fixture. This is to ensure the accuracy of the cable size detection by the subsequent testing instrument, thereby achieving the flattening and leveling of the cable and ensuring the accuracy of the cable data detection.
[0018] Specifically, such as Figure 2 As shown, the guide and limit assembly 12 includes mounting slots 121 spaced apart from the base 10. A mounting plate 122 is detachably mounted on the mounting slot 121. A guide wheel 123 is correspondingly mounted on the mounting plate 122 at the top of the placement slot 11. By mounting the mounting plate 122 on the mounting slot 121 and correspondingly mounting the guide wheel 123 at the top of the mounting plate 122 at the top of the placement slot 11, the guide and conveying assembly 13 drives the ribbon cable to slide along the placement slot 11. The sliding ribbon cable can be guided by the guide wheel 123, thereby placing the ribbon cable flat along the placement slot 11. After the ribbon cable is placed flat by the guide wheel 123, the mounting plate 122 can be detached to avoid affecting the subsequent testing of the ribbon cable size data by the tester, thus realizing the guide and conveying of the ribbon cable to ensure that the ribbon cable is placed flat in the placement slot 11.
[0019] In the above scheme, the guiding and conveying assembly 13 includes a mounting base 131 disposed on the base 10, a rotating shaft 132 rotatably disposed on the mounting base 131, and first driving assemblies 133 with drive ends connected to the rotating shaft 132 disposed on both sides of the mounting base 131. A clamping block 134 for clamping the ribbon cable is also wound around the rotating shaft 132. By providing the first driving assemblies 133 on both sides of the mounting base 131, and rotatably distributing the rotating shaft 132 at the drive end of the first driving assemblies 133, the rotating shaft 132... 2. A snap-fit block 134 is also attached. In this scheme, a polyester webbing is wound around the rotating shaft 132, and the snap-fit block 134 is set at the end of the polyester webbing. After the ribbon cable is snapped into the snap-fit block 134, the rotating shaft 132 is driven to rotate by the first driving component 133, which in turn pulls the snap-fit block 134 wrapped around the rotating shaft 132 to move, thereby driving the ribbon cable snapped into the snap-fit block 134 to slide along the placement groove 11, so as to drive the ribbon cable to slide along the placement groove 11, so as to cooperate with the guide limiting component 12 to flatten the ribbon cable.
[0020] Furthermore, the wire pressing assembly 14 includes a mounting bracket 141 disposed on the base 10. A wire pressing wheel 142 is disposed on the side of the mounting bracket 141 facing the placement groove 11. A second drive assembly 143 with its drive end connected to the wire pressing wheel 142 is disposed on the mounting bracket 141. By distributing the wire pressing wheel 142 on the side of the mounting bracket 141 facing the placement groove 11 and distributing the second drive assembly 143 with its drive end connected to the wire pressing wheel 142, when the snap-fit block 134 pulls the cable to the mounting bracket 141, the cable is already flatly placed in the placement groove 11 by the guide limiting assembly 12. Then, the second drive assembly 143 drives the wire pressing wheel 142 to approach and press the end of the cable snapped onto the snap-fit block 134, thereby detaching the end of the cable from the snap-fit block 134 and completing the flat placement in the placement groove 11, thus pressing down and fixing the cable end to the snap-fit block 134.
[0021] In order to accommodate different sizes of ribbon cables, as a preferred embodiment, the snap-fit block 134 is provided with a limiting groove that matches the number of ribbon cables. In this solution, a variety of snap-fit blocks 134 are provided, each with a limiting groove of different size that is adapted to different numbers of ribbon cables.
[0022] Preferably, the width of the placement groove 11 is 3-5mm.
[0023] In summary, in one or more embodiments of this application, this application provides a multi-station cable flattening fixture, including a base with several sets of placement slots. Several sets of guide and limiting components are detachably disposed on the base along the direction of the placement slots. A guide and conveying component is also disposed on the side of the base located on the guide and limiting component. By providing placement slots on the base, detachably disposing of several sets of guide and limiting components along the direction of the placement slots, and providing a guide and conveying component on the side of the base located on the wire limiting component, the cable end is fixed to the guide and conveying component. The guide and conveying component can drive the cable to slide along the placement slots, allowing the sliding cable to be guided and flattened by the guide and limiting components disposed on both sides of the placement slots. This allows the cable to be placed flat in the flattening fixture, facilitating the subsequent testing of the cable size accuracy by guiding the cable to be flattened and ensuring the accuracy of the cable data testing.
[0024] The embodiments described above do not constitute a limitation on the scope of protection of this technical solution. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the above embodiments should be included within the scope of protection of this technical solution.
Claims
1. A multi-station cable leveling tool, characterized in that: Includes a base (10), on which a plurality of placement slots (11) are provided, and a plurality of guide limiting components (12) are detachably provided on the base (10) along the opening direction of the placement slots (11). A guide conveying component (13) is provided on the side of the base (10) located on the guide limiting component (12), and a pressure wire component (14) is also provided on the side of the guide conveying component (13) near the guide limiting component (12).
2. The multi-station cable leveling fixture according to claim 1, characterized in that: The guide limiting component (12) includes mounting slots (121) spaced apart from the base (10), a mounting plate (122) is detachably provided in the mounting slot (121), and a guide wheel (123) is provided on the mounting plate (122) at the top of the placement slot (11).
3. The multi-station cable leveling fixture according to claim 1, characterized in that: The guide conveying assembly (13) includes a mounting base (131) disposed on the base (10), a rotating shaft (132) is rotatably disposed on the mounting base (131), a first drive assembly (133) is disposed on both sides of the mounting base (131) with its drive end connected to the rotating shaft (132), and a snap-fit block (134) for snapping the ribbon cable is also wound around the rotating shaft (132).
4. The multi-station cable leveling fixture according to claim 1, characterized in that: The wire pressing assembly (14) includes a mounting bracket (141) disposed on the base (10), a wire pressing wheel (142) is disposed on the side of the mounting bracket (141) facing the placement groove (11), and a second drive assembly (143) is disposed on the mounting bracket (141) with its drive end connected to the wire pressing wheel (142).
5. The multi-station cable leveling fixture according to claim 3, characterized in that: The snap-fit block (134) has a limiting groove that matches the number of ribbon cables.
6. The multi-station cable leveling fixture according to claim 1, characterized in that: The width of the placement slot (11) is 3-5mm.