Test Device and Method for Roll-to-Roll Board of Flexible Circuit Board
20220341987 · 2022-10-27
Inventors
- An Xie (Xiamen, CN)
- Dongya Sun (Xiamen, CN)
- Chunyan Cao (Xiamen, CN)
- Yuechan Li (Xiamen, CN)
- Xiangjun Lu (Xiamen, CN)
- Liang Yang (Xiamen, CN)
Cpc classification
G01R31/2812
PHYSICS
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
G01R31/2808
PHYSICS
International classification
Abstract
Provided is a test device for roll-to-roll board of flexible circuit boards. The test device comprises a detection probe frame, front and rear ends of the detection probe frame being connected to a sliding frame, and a bottom of the sliding frame being connected to a magnetic plate; wherein the magnetic plate is consisted of a square panel in the middle and four isosceles trapezoidal panels in upright direction; the four isosceles trapezoidal panels is movable and is capable of being rotated towards the square panel; a bottom of the square panel is provided with 4×4 centralized ports, the angle between the centralized port and a vertical line of the panel is 30°; the upper surface of the magnetic plate is provided with four catching splints, the catching splint is movable on the magnetic plate.
Claims
1. A test device for roll-to-roll board of flexible circuit boards, comprising a detection probe frame (20), front and rear ends of the detection probe frame (20) being connected to a sliding frame (21), and a bottom of the sliding frame (21) being connected to a magnetic plate (23); wherein the magnetic plate (23) is consisted of a square panel in the middle and four isosceles trapezoidal panels in upright direction; the four isosceles trapezoidal panels is movable and is capable of being rotated towards the square panel; a bottom of the square panel is provided with 4×4 centralized ports, the angle between the centralized port and a vertical line of the panel is 30°; the upper surface of the magnetic plate (23) is provided with four catching splints (22), the catching splint (22) is movable on the magnetic plate (23), and there is a magnetic relationship between the catching splint and the magnetic plate; a pulling force of the catching splint (22) is 50 N-980 N; the catching splint (22) comprises a buckle frame (221); the buckle frame (221) is welded with two side lifting plates (220); a bottom of the side lifting plate (220) is a right-angled triangle with an apex angle of 15°, and a square slot is connected to the side lifting plate (220); a depth of the square slot is 5 cm; a top of the square slot is a right-angle trapezoid; one side of an oblique side of side lifting plate faces outward and a vertical positioning pin is connected inside.
2. The test device according to claim 1, wherein inner side nails of the two side lifting plates (220) are connected to corner fixing clips (222); a section of the corner fixing clip (222) facing the outside is arc-shaped.
3. The test device according to claim 2, wherein the corner fixing clip (222) comprises a clamping concave plate connected between the two side lifting plates (220); an inner center of the clamping concave plate (200) is connected to an electromagnetic wheel (400); the electromagnetic wheel (400) is magnetic, and a supercharger is located within the electromagnetic; increasing the overall voltage in the case of constant resistance, the current is increased and, therefore, the magnetic force of the electromagnetic wheel (400) is increased.
4. The test device according to claim 3, wherein an inner side of one end of the arc edge of the clamping concave plate (200) is also connected to a corner piece (300); the inner side of the corner piece (300) has an occlusal head, the occlusal head is an equilateral triangle structure, one of the vertices being used as the fulcrum, and the other two vertices being used as the fulcrum to contact the circuit board.
5. The test device according to claim 1, wherein the detection probe (20) comprises a clamping portion (51) connected therein; a probe (52) is movably connected to a bottom of the clamping portion (51), and a movable angle of the top of the probe (52) in the clamping portion (51) is −30° to 30°; a bottom part of the probe (52) is a triangular body, and three downward faces of the probe (52) are all connected with friction hair balls; the friction hair balls are round colloids and have certain flexibility; the top of the clamping portion (51) also comprises an indicator light (50) electrically connected to the probe (52); the indicator light (50) turns green when the indicator light is energized and transmits current; the indicator light (50) turns gray when the indicator light (50) loses power; the indicator light (50) turns red when the indicator light (50) contacts the circuit and there is no current.
6. The test device according to claim 1, wherein the density of the probes (52) distributed on the lower surface of the detection probe (20) is 18×11; a total of 198 probes (52) cover all the points on the flexible circuit board; the probes (52) correspond to the number and positions of the clamping portion (51) and the indicator light (50) one by one.
7. The test device according to claim 5, wherein the clamping portion (51) comprises a clamping cavity (510) connected therein; an upper left corner and an upper right corner of the clamping cavity (510) are respectively connected with a disassembly adjusting arm (511); the disassembly adjusting arm (511) is capable of being rotated 30° left and right with the inner vertex as the axis, so the left and right ends of the inner side of the clamping cavity (510) also comprise two sets of oscillating heads (512); the oscillating heads (512) have an oscillator inside which can be controlled to perform periodic reciprocating movements; the disassembly adjusting arm (511) is capable of opening the clamping cavity (510).
8. A test method for the test device according to claim 1, comprising the following steps: S1: transmission: providing a processed flexible circuit board without components soldered thereon onto a magnetic board (23), no need to specify the position, the magnetic board (23) attracts the flexible circuit board to a middle square panel, and central ports in the square panel allows the flexible circuit board to move to the middle position. S2: positioning: moving the electromagnetic wheel (400) to four corners of the flexible circuit board; if a pattern of the circuit board has multiple branches, a wire board is divided into multiple tests; the lifting board (220) clamps the two sides, and the corner piece (300) clamps the top corner and allows the electromagnetic wheel (400) to expand outward, so that the flexible circuit board is tightened; S3: judgment: moving the probe (52) down to the copper foil of the flexible circuit board; at this time, the normal copper foil point is formed with the probe (52) and the indicator light (50); when the circuit is turned on, the indicator light (50) will light up; when the abnormal copper foil is in contact with the probe (52) and the indicator light (50), the indicator light (50; no normal current is received, but the pressure signal feedback of the probe (52) touching the copper foil is obtained, and the red fault light is lit up immediately, which is the fault point; S4: correction: for the location of the fault point, activating the oscillating head (512) to periodically impact the probe (52), so that the friction hair ball at the bottom of the probe (52); rubbing the circuit on the copper foil, wipe away the excess oxidation and possible contamination of foreign objects, and stimulating the circuit to make it through the test as much as possible. S5: marking: when all the indicator lights (50) in a flexible circuit board are all lit green, the entire circuit is on, and the marking mechanism in the detection probe (20) is activated to mark the detection probe; the marked flexible circuit board is a qualified circuit board, and the rest without being marked are unqualified.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to explain the technical solutions of the embodiments of the present disclosure more clearly, the following will briefly introduce the drawings that need to be used in the embodiments. It should be understood that the following drawings only show certain embodiments of the present disclosure, and therefore do not It should be regarded as a limitation of the scope. For those of ordinary skill in the art, without creative work, other related drawings can be obtained based on these drawings.
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033] In the drawings: detection probe frame—20; sliding frame—21; catching splint—22; magnetic plate—23; side lifting plate—220; buckle frame—221, corner fixing clip—222, clamping concave plate—200, corner piece—300, electromagnetic wheel—400, indicator light—50, clamping portion—51, probe—52, clamping cavity—510, disassembly adjusting arm—511, oscillation head—512.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0034] In order to make the objectives, technical solutions, and advantages of the embodiments of the present disclosure clearer, the technical solutions in the embodiments of the present disclosure will be described clearly and completely in conjunction with the accompanying drawings in the embodiments of the present disclosure. Obviously, the described embodiments It is a part of the embodiments of the present disclosure, but not all of the embodiments. Therefore, the following detailed description of the embodiments of the present disclosure provided in the accompanying drawings is not intended to limit the scope of the claimed disclosure, but merely represents selected embodiments of the present disclosure. Based on the embodiments of the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present disclosure.
First Embodiment
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[0040] As shown in
[0041] As shown in
[0042] The method for the test device as described above comprises the following steps.
[0043] S1: transmission: providing a processed flexible circuit board without components soldered thereon onto a magnetic board, no need to specify the position, the magnetic board attracts the flexible circuit board to a middle square panel, and central ports in the square panel allows the flexible circuit board to move to the middle position.
[0044] S2: positioning: moving the electromagnetic wheel to four corners of the flexible circuit board; if a pattern of the circuit board has multiple branches, a wire board is divided into multiple tests; the lifting board clamps the two sides, and the corner piece clamps the top corner and allows the electromagnetic wheel to expand outward, so that the flexible circuit board is tightened;
[0045] S3: judgment: moving the probe down to the copper foil of the flexible circuit board; at this time, the normal copper foil point is formed with the probe and the indicator light; when the circuit is turned on, the indicator light will light up; when the abnormal copper foil is in contact with the probe and the indicator light, the indicator light; no normal current is received, but the pressure signal feedback of the probe touching the copper foil is obtained, and the red fault light is lit up immediately, which is the fault point;
[0046] S4: correction: for the location of the fault point, activating the oscillating head to periodically impact the probe, so that the friction hair ball at the bottom of the probe; rubbing the circuit on the copper foil, wipe away the excess oxidation and possible contamination of foreign objects, and stimulating the circuit to make it through the test as much as possible.
[0047] S5: marking: when all the indicator lights in a flexible circuit board are all lit green, the entire circuit is on, and the marking mechanism in the detection probe is activated to mark the detection probe; the marked flexible circuit board is a qualified circuit board, and the rest without being marked are unqualified.
[0048] The above are only the preferred embodiments of the present disclosure and are not used to limit the present disclosure. For those skilled in the art, the present disclosure can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present disclosure shall be included in the protection scope of the present disclosure.