Firmly-installed flexible circuit board
By setting up a reinforcement module between the flexible circuit board and other components, and using a U-shaped limiting plate and stud nut structure to achieve a stable connection, the problem of unstable connection of the circuit board due to external force is solved, and the operating efficiency and safety of the equipment are improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-03-24
AI Technical Summary
Existing flexible circuit boards may be affected by external forces after installation, resulting in unstable circuit connections, affecting the normal operation of equipment. Furthermore, loose connections may cause exposed parts in the circuit to come into contact with each other, leading to accidents such as short circuits.
A reinforcement module, including a U-shaped limiting plate and a stud nut structure, is installed between the circuit board and other components. Through snap-fit and screw fastening, a stable connection between the circuit board and the components is ensured.
It improves the stability of the circuit board, reduces faults caused by poor contact, improves the operating efficiency and safety of the equipment, and avoids short circuit accidents.
Smart Images

Figure CN224037644U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of circuit board, especially relates to soft circuit board of firm installation. BACKGROUND
[0002] Soft circuit board, also known as flexible printed circuit board, flexible circuit board, flexible circuit board, soft board is a kind of special printed circuit board, generally with polyimide or polyester film as base material, it has light weight, thin thickness, soft, bendable, free bending, winding, folding, and has good heat dissipation and weldability, can be arranged according to space layout requirement, and is moved and stretched in three-dimensional space, reaches the integration of component assembly and wire connection.
[0003] The existing soft circuit board may be affected by external force after installation, which may cause the connection between the circuit board and other components to loosen, making the circuit connection unstable, which may cause signal interference during transmission, affecting the normal work of the equipment, and the unstable connection may cause the exposed parts in the circuit to contact each other, causing short circuit, which may cause equipment damage or fire in severe cases.
[0004] Therefore, in view of the above-mentioned existing soft circuit board that may be affected by external force, making the circuit connection unstable, affecting the normal work of the equipment, and the unstable connection may cause the exposed parts in the circuit to contact each other, causing short circuit and other accidents, a firm installation soft circuit board can be designed, a reinforcing structure is arranged between the circuit board and other components to improve the stability of the circuit board. UTILITY MODEL CONTENTS
[0005] In order to overcome the problem that the existing soft circuit board may be affected by external force, making the circuit connection unstable, affecting the normal work of the equipment, and the unstable connection may cause the exposed parts in the circuit to contact each other, causing short circuit and other accidents.
[0006] The utility model discloses a technical scheme for the firm soft circuit board, which comprises a connecting component, a soft circuit board body and a reinforcing module.
[0007] Preferably, the reinforcing module is first sleeved on the outside of the soft circuit board body, and then the soft circuit board body is inserted into the connecting component, and at the same time, the reinforcing module drives the soft circuit board body to be connected with the connecting component.
[0008] Preferably, the U-shaped limiting plate is horizontally symmetrically arranged, and one end of the U-shaped limiting plate is provided with a rectangular plug-in plate.
[0009] Preferably, the U-shaped limiting plate is horizontally symmetrically arranged, and one end of the U-shaped limiting plate is provided with a rectangular plug-in plate.
[0010] Preferably, the U-shaped limiting plate is horizontally symmetrically arranged, and one end of the U-shaped limiting plate is provided with a rectangular plug-in plate.
[0011] Preferably, the U-shaped limiting plate is horizontally symmetrically arranged, and one end of the U-shaped limiting plate is provided with a rectangular plug-in plate.
[0012] Preferably, the U-shaped limiting plate is horizontally symmetrically arranged, and one end of the U-shaped limiting plate is provided with a rectangular plug-in plate.
[0013] Preferably, the U-shaped limiting plate is horizontally symmetrically arranged, and one end of the U-shaped limiting plate is provided with a rectangular plug-in plate.
[0014] The utility model discloses a technical scheme for the firm soft circuit board, which comprises a connecting component, a soft circuit board body and a reinforcing module. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1The whole structure schematic view of the soft circuit board is shown.
[0016] Figure 2 The soft circuit board body structure schematic view of the soft circuit board is shown.
[0017] Figure 3 The rectangular plug-in plate structure schematic view of the soft circuit board is shown.
[0018] Figure 4 The second stud structure schematic view of the soft circuit board is shown.
[0019] The figure mark explanation: 1, connecting component; 2, soft circuit board body; 101, plug-in hole; 102, rectangular clamping block; 201, clamping column; 301, U-shaped limiting plate; 302, rectangular plug-in plate; 303, rectangular plug-in slot; 304, connecting plate; 305, first stud; 306, first nut; 307, rectangular clamping slot; 308, second stud; 309, second nut; 310, clamping hole. DETAILED DESCRIPTION
[0020] The utility model is further explained below in combination with the drawings and examples.
[0021] Please refer to Figures 1-4 The utility model provides a kind of embodiment: firm soft circuit board of installation, including connecting component 1, soft circuit board body 2 and reinforcement module;Connecting component 1 side is equipped with the soft circuit board body 2 for connecting use, and the connecting place of soft circuit board body 2 and connecting component 1 is equipped with the reinforcement module for reinforcing treatment, connecting component 1 side is equipped with plug-in hole 101, and connecting component 1 is equipped with plug-in hole 101 both sides symmetrically installed rectangular clamping block 102, and soft circuit board body 2 both sides linearly symmetrically installed two groups of clamping columns 201, reinforcement module includes U-shaped limiting plate 301, U-shaped limiting plate 301 is close to the side of connecting component 1 and rectangular clamping block 102 corresponding rectangular clamping slot 307 is equipped with, U-shaped limiting plate 301 is positioned and connected along rectangular clamping block 102 and connecting component 1 by rectangular clamping slot 307, U-shaped limiting plate 301 is equipped with second stud 308 in rectangular clamping slot 307 middle part, second stud 308 is equipped with second nut 309 outside, and U-shaped limiting plate 301 inner wall is equipped with clamping hole 310 corresponding to clamping column 201, and clamping column 201 drives soft circuit board body 2 and is positioned and clamped by clamping hole 310 and U-shaped limiting plate 301.
[0022] Please refer to Figures 3-4In the embodiment, the U-shaped limiting plates 301 are horizontally symmetrically arranged, one end of the U-shaped limiting plate 301 is provided with a rectangular insertion plate 302, the rectangular insertion plate 302 can be inserted into the rectangular insertion slot 303, reinforcing the two groups of U-shaped limiting plates 301, the U-shaped limiting plate 301 away from the rectangular insertion plate 302 is provided with a rectangular insertion slot 303 corresponding thereto, the rectangular insertion slot 303 facilitates the insertion of the rectangular insertion plate 302, the rectangular insertion plate 302 drives a group of U-shaped limiting plates 301 to be positioned and connected along the rectangular insertion slot 303 on the other group of U-shaped limiting plates 301, the rectangular insertion plate 302 drives a group of U-shaped limiting plates 301 to be positioned and connected along the rectangular insertion slot 303 on the other group of U-shaped limiting plates 301, the connecting plates 304 are arranged outside both ends of the U-shaped limiting plate 301, the reinforcing of the connecting plate 304 makes the connection of the two groups of U-shaped limiting plates 301 more closely, the first stud 305 is arranged in the middle of every two groups of horizontally arranged connecting plates 304, the first stud 305 is taken out and passed through the two groups of horizontally arranged connecting plates 304, the first nut 306 is arranged outside both ends of the first stud 305, and the two groups of horizontally arranged connecting plates 304 can be reinforced by tightening the first nut 306.
[0023] In the embodiment, the U-shaped limiting plates 301 are horizontally symmetrically arranged, one end of the U-shaped limiting plate 301 is provided with a rectangular insertion plate 302, the rectangular insertion plate 302 can be inserted into the rectangular insertion slot 303, reinforcing the two groups of U-shaped limiting plates 301, the U-shaped limiting plate 301 away from the rectangular insertion plate 302 is provided with a rectangular insertion slot 303 corresponding thereto, the rectangular insertion slot 303 facilitates the insertion of the rectangular insertion plate 302, the rectangular insertion plate 302 drives a group of U-shaped limiting plates 301 to be positioned and connected along the rectangular insertion slot 303 on the other group of U-shaped limiting plates 301, the rectangular insertion plate 302 drives a group of U-shaped limiting plates 301 to be positioned and connected along the rectangular insertion slot 303 on the other group of U-shaped limiting plates 301, the connecting plates 304 are arranged outside both ends of the U-shaped limiting plate 301, the reinforcing of the connecting plate 304 makes the connection of the two groups of U-shaped limiting plates 301 more closely, the first stud 305 is arranged in the middle of every two groups of horizontally arranged connecting plates 304, the first stud 305 is taken out and passed through the two groups of horizontally arranged connecting plates 304, the first nut 306 is arranged outside both ends of the first stud 305, and the two groups of horizontally arranged connecting plates 304 can be reinforced by tightening the first nut 306.
[0024] Through the above-mentioned steps, first, the reinforcing module is sleeved outside the flexible circuit board body 2, then the flexible circuit board body 2 is inserted into the connecting component 1, at the same time, the reinforcing module drives the flexible circuit board body 2 to be reinforced and connected with the connecting component 1, through the reinforcing structure arranged between the circuit board and other components, the flexible circuit board body 2 is not easy to loosen or fall off, thereby reducing the fault caused by poor contact, helping to improve the operation efficiency and stability of the equipment, avoiding causing short circuit, improving safety, to solve the problem that the existing flexible circuit board may be affected by external force, the circuit connection is unstable, the normal work of the equipment is affected, and the connection is not firm, which may cause the exposed parts in the circuit to contact each other, causing short circuit and other accidents.
Claims
1. A flexible printed circuit board which is firmly mounted, comprising a connecting member (1), characterized in that: The utility model also includes a flexible circuit board body (2) and a reinforcing module; one side of the connecting component (1) is provided with a flexible circuit board body (2) for connection, the connecting position of the flexible circuit board body (2) and the connecting component (1) is provided with a reinforcing module for reinforcing treatment, one side of the connecting component (1) is provided with an insertion hole (101), the connecting component (1) is provided with a rectangular clamping block (102) symmetrically installed on both sides of the insertion hole (101), two groups of clamping columns (201) are linearly and symmetrically installed on both sides of the flexible circuit board body (2), the reinforcing module comprises a U-shaped limiting plate (301), the U-shaped limiting plate (301) is provided with a rectangular clamping groove (307) corresponding to the rectangular clamping block (102) close to one side of the connecting component (1), the U-shaped limiting plate (301) is positioned and connected with the connecting component (1) through the rectangular clamping groove (307) along the rectangular clamping block (102), a second stud (308) is arranged in the middle of the rectangular clamping groove (307) of the U-shaped limiting plate (301), a second nut (309) is arranged on the outside of the second stud (308), a clamping hole (310) is formed in the inner wall of the U-shaped limiting plate (301) corresponding to the clamping column (201), and the clamping column (201) drives the flexible circuit board body (2) to be positioned and clamped with the U-shaped limiting plate (301) through the clamping hole (310).
2. The flexible wiring board according to claim 1, wherein: The U-shaped limiting plate (301) is horizontally symmetrically arranged, and a rectangular insertion plate (302) is arranged at one end of the U-shaped limiting plate (301).
3. The flexible wiring board according to claim 2, wherein: A rectangular insertion groove (303) is formed in the U-shaped limiting plate (301) corresponding to the rectangular insertion plate (302) away from the rectangular insertion plate (302).
4. The ruggedized flexible circuit board of claim 2, wherein: The rectangular insertion plate (302) drives one group of U-shaped limiting plates (301) to be positioned and connected with another group of U-shaped limiting plates (301) along the rectangular insertion grooves (303) on the another group of U-shaped limiting plates (301).
5. The ruggedized flexible circuit board of claim 1, wherein: A connecting plate (304) is arranged on the outside of each end of the U-shaped limiting plate (301).
6. The ruggedized flexible circuit board of claim 5, wherein: A first stud (305) is arranged in the middle of each two groups of horizontally arranged connecting plates (304).
7. The ruggedized flexible circuit board of claim 6, wherein: A first nut (306) is arranged on the outside of each end of the first stud (305).