IP Library › Granted Patent US 11,099,683
Granted Patent B1
US 11,099,683 · App. 17/268,055 · Granted Aug 24, 2021

Touch panel, touch panel module, and method for inspecting touch panel

Inventor: Mitsuru Kagase (Kyoto, JP)
Assignee: NISSHA CO., LTD.
G06F3/04164G06F3/0446
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Quick Facts
Patent No.
US 11,099,683
App. No.
17/268,055
Granted
Aug 24, 2021
Kind
B1
Abstract

A touch panel includes a substrate having insulating properties and including a sensing region and a non-sensing region, a plurality of sensor electrodes formed in the sensing region, a plurality of external connection terminals formed in the non-sensing region, and a lead-out wiring line electrically connecting one end of each of the plurality of sensor electrodes to each of the plurality of external connection terminals. The external connection terminal and the lead-out wiring line are continuously divided by a single slit along an extension direction of the external connection terminal and the lead-out wiring line in an entire length, or in a portion of the entire length from which an end portion in a sensor electrode side of the lead-out wiring line is excluded.

Claims (21)

1. A touch panel comprising: a substrate having insulating properties and including a sensing region and a non-sensing region around the sensing region; a plurality of sensor electrodes formed in the sensing region; a plurality of external connection terminals formed in the non-sensing region; and a lead-out wiring line electrically connecting one end of each of the plurality of sensor electrodes to each external connection terminal of the plurality of external connection terminals, wherein the external connection terminal and the lead-out wiring line are continuously divided by a single slit along an extension direction of the external connection terminal and the lead-out wiring line in an entire length, or in a portion of the entire length from which an end portion in a sensor electrode side of the lead-out wiring line is excluded.

2. The touch panel according to claim 1 , wherein the plurality of sensor electrodes include a plurality of first electrodes extending in a first direction and arranged in a second direction intersecting the first direction, and a plurality of second electrodes extending in the second direction and arranged in the first direction, and each electrode of the plurality of first electrodes is connected to the external connection terminal and the lead-out wiring line, and each electrode of the plurality of second electrodes is connected to the external connection terminal and the lead-out wiring line.

3. The touch panel according to claim 2 , wherein the plurality of external connection terminals is formed in only one surface of the substrate.

4. The touch panel according to claim 2 , wherein the slit extends into the plurality of sensor electrodes in a range where the slit does not completely divide the plurality of sensor electrodes.

5. A method for inspecting the touch panel according to claim 2 , the method comprising:

bringing a probe of a continuity inspection device into contact with each of a pair of split terminals including one of the plurality of external connection terminals divided; and

inspecting continuity between the pair of split terminals via a pair of split wiring lines including the lead-out wiring line divided, and via one of the plurality of sensor electrodes.

6. The touch panel according to claim 1 , wherein the plurality of external connection terminals are formed in only one surface of the substrate.

7. The touch panel according to claim 6 , wherein the slit extends into the plurality of sensor electrodes in a range where the slit does not completely divide the plurality of sensor electrodes.

8. A method for inspecting the touch panel according to claim 6 , the method comprising:

bringing a probe of a continuity inspection device into contact with each of a pair of split terminals including one of the plurality of external connection terminals divided; and

inspecting continuity between the pair of split terminals via a pair of split wiring lines including the lead-out wiring line divided, and via one of the plurality of sensor electrodes.

9. The touch panel according to claim 1 , wherein the slit extends into the plurality of sensor electrodes in a range where the slit does not completely divide the plurality of sensor electrodes.

10. A method for inspecting the touch panel according to claim 9 , the method comprising:

bringing a probe of a continuity inspection device into contact with each of a pair of split terminals including one of the plurality of external connection terminals divided; and

inspecting continuity between the pair of split terminals via a pair of split wiring lines including the lead-out wiring line divided, and via one of the plurality of sensor electrodes.

11. A method for inspecting the touch panel according to claim 1 , the method comprising:

bringing a probe of a continuity inspection device into contact with each of a pair of split terminals including one of the plurality of external connection terminals divided; and

inspecting continuity between the pair of split terminals via a pair of split wiring lines including the lead-out wiring line divided, and via one of the plurality of sensor electrodes.

12. The touch panel according to claim 1 , wherein the plurality of external connection terminals are formed in both surfaces of the substrate.

13. A touch panel module comprising: a substrate having insulating properties and including a sensing region and a non-sensing region around the sensing region; a plurality of sensor electrodes formed in the sensing region; a plurality of external connection terminals formed in the non-sensing region; a lead-out wiring line electrically connecting one end of each of the plurality of sensor electrodes to each external connection terminal of the plurality of external connection terminals; and a flexible printed circuit (FPC) crimped with the plurality of external connection terminals and including a plurality of FPC wiring lines, wherein the external connection terminal and the lead-out wiring line are continuously divided by a single slit along an extension direction of the external connection terminal and the lead-out wiring line in an entire length, or in a portion of the entire length from which an end portion in a sensor electrode side of the lead-out wiring line is excluded, and the plurality of FPC wiring lines of the FPC are connected to the plurality of external connection terminals while extending across both sides of the slit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2021
From: KAGASE, MITSURU
To: NISSHA CO., LTD.
Reel/Frame 055282/0720 →
Priority Claims (1)
JP JP2018-237793 · Dec 19, 2018 · national
Cited By (1)
US 12,619,328