Hard-light LED illumination detection equipment for conductive adhesive tape

By designing a high-intensity LED light irradiation testing device, the problem of testing the conductive coating in the middle layer of conductive tape was solved, enabling quality testing of the conductive coating and ensuring production quality.

CN224095720UActive Publication Date: 2026-04-07DONGGUAN KENTAI MEDICAL PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing technologies cannot effectively detect the quality of the conductive coating in the middle layer of conductive tape, making it difficult to detect local defects during the production process.

Method used

Design a high-intensity LED illumination detection device, comprising a detection platform, a mounting frame, high-intensity LED illumination detection components arranged opposite each other on the left and right, and a light control box, to detect the conductive coating in the middle layer of conductive tape by adjusting the angle and brightness.

Benefits of technology

It enables quality inspection of the conductive coating layer in the middle layer of conductive tape, ensuring production quality and allowing for timely detection of local defects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The highlight LED illumination detection equipment comprises a detection platform, a mounting frame arranged on the detection platform, a first highlight LED illumination detection assembly, a second highlight LED illumination detection assembly and a light control box, wherein the first highlight LED illumination detection assembly and the second highlight LED illumination detection assembly are oppositely arranged on the mounting frame left and right, and the light control box is arranged on the mounting frame; a cross beam is arranged in the middle of the mounting frame and provided with a linear guide rail. Each of the first strong-light LED illumination detection assembly and the second strong-light LED illumination detection assembly comprises an angle adjusting clamp, a connecting rod and a strong-light LED lamp, the angle adjusting clamps are slidably connected to the linear guide rails through movable blocks, and the strong-light LED lamps are connected with the angle adjusting clamps through the connecting rods and located above the detection platform; the first strong-light LED lamp and the second strong-light LED lamp are oppositely and obliquely arranged downwards after being adjusted by a specific angle. The device can be used for detecting the conductive coating in the middle layer of the conductive adhesive tape, so that the production quality of the conductive adhesive tape is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of conductive tape production, specifically to a high-intensity LED light illumination detection device for conductive tape. Background Technology

[0002] Conductive tape is a widely used material in electronics manufacturing and other high-tech industries, primarily providing electromagnetic shielding and conductive connections. Conductive tape typically consists of three parts: a substrate, a conductive coating, and an adhesive. The substrate is usually polyester, nylon, or other synthetic fibers, which provide the tape's mechanical strength and flexibility. The conductive coating is generally a metal plating, such as copper, nickel, or silver, which provides conductivity and shielding properties. Therefore, the core of conductive tape lies in the conductive coating. However, current production methods sometimes result in localized deficiencies in the conductive coating, which are difficult to detect during production. Even after production, the condition of the middle conductive coating cannot be observed on the surface of the tape. To address this issue, a high-intensity LED light illumination inspection device for conductive tape is proposed. This device allows for the inspection of the middle conductive coating after the conductive tape production process is complete. Utility Model Content

[0003] The purpose of this invention is to overcome the technical problem that the conductive coating in the middle layer of conductive tape cannot be inspected in the prior art, and to provide a high-intensity LED light irradiation inspection device for conductive tape.

[0004] The technical solution of this utility model is as follows:

[0005] A high-intensity LED light detection device for conductive tape includes a detection platform, a mounting frame disposed on the detection platform, a first high-intensity LED light detection component and a second high-intensity LED light detection component disposed opposite each other on the mounting frame, and a light control box disposed on the mounting frame.

[0006] The mounting frame has a crossbeam in the middle, and a linear guide rail is provided on the crossbeam;

[0007] The first high-intensity LED illumination detection component includes a first angle adjustment fixture, a first connecting rod, and a first high-intensity LED light. The first angle adjustment fixture is slidably connected to the linear guide rail via a first movable block. The first high-intensity LED light is connected to the first angle adjustment fixture via the first connecting rod and is located above the detection platform.

[0008] The second high-intensity LED illumination detection component includes a second angle adjustment fixture, a second connecting rod, and a second high-intensity LED light. The second angle adjustment fixture is slidably connected to the linear guide rail via a second movable block. The second high-intensity LED light is connected to the second angle adjustment fixture via the second connecting rod and is located above the detection platform.

[0009] The first and second high-intensity LED lights are tilted downwards towards each other after being adjusted to a specific angle.

[0010] The first high-intensity LED and the second high-intensity LED are respectively connected to the lighting control box via conductive wires.

[0011] Furthermore, the first angle adjusting clamp and the second angle adjusting clamp are clamped or loosened by fixing bolts.

[0012] Furthermore, the first and second movable blocks are locked or unlocked to the linear guide rail by locking bolts.

[0013] Furthermore, the lighting control box is equipped with a power switch and a brightness adjustment button. The power switch can be used to turn the first high-intensity LED light and the second high-intensity LED light on or off, and the brightness adjustment button can be used to adjust the brightness of the first high-intensity LED light and the second high-intensity LED light.

[0014] Furthermore, the bottom of the detection platform is evenly provided with several pulleys.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model is specifically designed for quality inspection of the conductive coating layer of conductive tape. The equipment includes a testing platform, a mounting frame set on the testing platform, a first high-intensity LED light detection component and a second high-intensity LED light detection component set opposite each other on the mounting frame, and a light control box set on the mounting frame. During testing, the conductive tape is placed on the testing platform and tested according to the light positions of the first high-intensity LED light detection component and the second high-intensity LED light detection component. The conductive coating layer of the conductive tape can show color under strong light, thereby allowing observation of whether there are any local defects, ensuring the production quality of the conductive tape. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This invention provides a structural schematic diagram of a high-intensity LED light illumination detection device for conductive tape. Detailed Implementation

[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0019] To illustrate the technical solution described in this utility model, specific embodiments are described below.

[0020] Example

[0021] Please see Figure 1 This embodiment provides a high-intensity LED light detection device for conductive tape, including a detection platform 1, a mounting frame 2 disposed on the detection platform 1, a first high-intensity LED light detection component 3 and a second high-intensity LED light detection component 4 disposed on the mounting frame 2 from left to right opposite each other, and a light control box 5 disposed on the mounting frame 2.

[0022] During testing, the conductive tape is placed on the testing platform 1 and tested according to the illumination positions of the first high-intensity LED light detection component 3 and the second high-intensity LED light detection component 4.

[0023] Specifically, the mounting frame 2 has a crossbeam 21 in the middle, and a linear guide rail 22 is provided on the crossbeam 21. The first high-intensity LED illumination detection component 3 includes a first angle adjustment clamp 31, a first connecting rod 32, and a first high-intensity LED light 33. The first angle adjustment clamp 31 is slidably connected to the linear guide rail 22 through a first movable block 34. The first high-intensity LED light 33 is connected to the first angle adjustment clamp 31 through the first connecting rod 32 and is located above the detection platform 1. The first high-intensity LED light 33 can be adjusted left and right along the linear guide rail 22 through the first angle adjustment clamp 31 and the first movable block 34, and the illumination angle can be adjusted through the first angle adjustment clamp 31. The first movable block 34 and the linear guide rail 22 are locked or unlocked by locking bolts, and the first angle adjustment clamp 31 clamps or releases the first connecting rod 32 through fixing bolts. The second high-intensity LED illumination detection component 4 includes a second angle adjustment clamp 41, a second connecting rod 42, and a second high-intensity LED light 43. The second angle adjustment clamp 41 is slidably connected to the linear guide rail 22 via a second movable block 44. The second high-intensity LED light 43 is connected to the second angle adjustment clamp 41 via the second connecting rod 42 and is located above the detection platform 1. The second high-intensity LED light 43 can be adjusted left and right along the linear guide rail 22 via the second angle adjustment clamp 41 and the second movable block 44, and the illumination angle can be adjusted via the second angle adjustment clamp 41. The second movable block 44 is locked or unlocked from the linear guide rail 22 by a locking bolt, and the second angle adjustment clamp 41 clamps or releases the second connecting rod 42 via a fixing bolt.

[0024] The first high-intensity LED light 33 and the second high-intensity LED light 43 are tilted downwards towards each other after being adjusted to a specific angle. The conductive tape is placed in the overlapping area of ​​the first high-intensity LED light 33 and the second high-intensity LED light 43 for detection. The conductive coating in the middle layer of the conductive tape can show color under strong light, so that it can be observed whether there are any local defects.

[0025] The first high-intensity LED 33 and the second high-intensity LED 43 are respectively connected to the lighting control box 5 via conductive wires. The lighting control box 5 is equipped with a power switch 51 and a brightness adjustment button 52. The power switch 51 is used to turn the first high-intensity LED 33 and the second high-intensity LED 43 on or off, and the brightness adjustment button 52 is used to adjust the brightness of the first high-intensity LED 33 and the second high-intensity LED 43.

[0026] Preferably, the bottom of the detection platform 1 is evenly provided with a number of pulleys 6, which makes the device movable and easy to use.

[0027] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A high-intensity LED light illumination detection device for conductive tape, characterized in that: It includes a testing platform, a mounting frame set on the testing platform, a first high-intensity LED light detection component and a second high-intensity LED light detection component set on the mounting frame from left to right opposite each other, and a light control box set on the mounting frame; The mounting frame has a crossbeam in the middle, and a linear guide rail is provided on the crossbeam; The first high-intensity LED illumination detection component includes a first angle adjustment fixture, a first connecting rod, and a first high-intensity LED light. The first angle adjustment fixture is slidably connected to the linear guide rail via a first movable block. The first high-intensity LED light is connected to the first angle adjustment fixture via the first connecting rod and is located above the detection platform. The second high-intensity LED illumination detection component includes a second angle adjustment fixture, a second connecting rod, and a second high-intensity LED light. The second angle adjustment fixture is slidably connected to the linear guide rail via a second movable block. The second high-intensity LED light is connected to the second angle adjustment fixture via the second connecting rod and is located above the detection platform. The first and second high-intensity LED lights are tilted downwards towards each other after being adjusted to a specific angle. The first high-intensity LED and the second high-intensity LED are respectively connected to the lighting control box via conductive wires.

2. The high-intensity LED light illumination detection device for conductive tape according to claim 1, characterized in that: The first angle adjustment fixture and the second angle adjustment fixture are clamped or loosened by fixing bolts.

3. The high-intensity LED light illumination detection device for conductive tape according to claim 1, characterized in that: The first and second movable blocks are locked or unlocked to the linear guide rail by locking bolts.

4. The high-intensity LED light illumination detection device for conductive tape according to claim 1, characterized in that: The lighting control box is equipped with a power switch and a brightness adjustment button. The power switch can be used to turn the first high-intensity LED light and the second high-intensity LED light on or off, and the brightness adjustment button can be used to adjust the brightness of the first high-intensity LED light and the second high-intensity LED light.

5. The high-intensity LED light illumination detection device for conductive tape according to claim 1, characterized in that: The bottom of the testing platform is evenly equipped with several pulleys.