IP Library › Granted Patent US 11,284,514
Granted Patent B2
US 11,284,514 · App. 16/710,364 · Granted Mar 22, 2022

Conductive member for touch panel and touch panel

Inventors: Masaya Nakayama (Kanagawa, JP); Tadashi Kuriki (Kanagawa, JP); Reona Ikeda (Kanagawa, JP)
Assignee: FUJIFILM Corporation
H05K1/119G06F3/0448H05K3/0014H05K3/28G06F3/0445G06F3/0446G06F2203/04112
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Quick Facts
Patent No.
US 11,284,514
App. No.
16/710,364
Granted
Mar 22, 2022
Kind
B2
Abstract

A conductive member 1 for a touch panel includes a plurality of first electrodes 11 extending in a first direction and arranged in parallel in a second direction intersecting the first direction, in which the plurality of first electrodes are constituted by a first mesh conductive film MF 1 constituted by a plurality of fine metal wires Ma, and include a plurality of first main electrodes each having a defined electrode width Wa and at least one first sub-electrode having an electrode width Wb smaller than the electrode width Wa of the first main electrode, and in which over an entire region of the first sub-electrode, a mesh pitch Pb of the first mesh conductive film MF 1 constituting the first sub-electrode in the second direction is smaller than a mesh pitch Pa of the first mesh conductive film MF 1 constituting the first main electrode in the second direction.

Claims (75)

1. A conductive member for a touch panel, comprising:

a transparent insulating member;

a plurality of first electrodes extending in a first direction and arranged in parallel in a second direction intersecting the first direction so as to be insulated from one another on the transparent insulating member; and

a plurality of first dummy electrodes each of which is arranged between the plurality of first electrodes so as to be electrically insulated from the plurality of first electrodes and each of which is constituted by a plurality of fine metal wires,

wherein the plurality of first electrodes are constituted by a first mesh conductive film in which a plurality of fine metal wires are electrically connected to one another,

the plurality of first electrodes include a plurality of first main electrodes each having an electrode width Wa defined in the second direction and at least one first sub-electrode having an electrode width Wb smaller than the electrode width Wa of the first main electrode in the second direction,

the first sub-electrode is the first electrode arranged on an outermost side among the plurality of first electrodes,

over an entire region of the first sub-electrode, a mesh pitch Pb of the first mesh conductive film constituting the first sub-electrode in the second direction is smaller than a mesh pitch Pa of the first mesh conductive film constituting the first main electrode in the second direction,

the first main electrode has a first dummy pattern, which is arranged so as to be electrically insulated from the first mesh conductive film and is constituted by a plurality of fine metal wires, and

a difference between any two of an opening ratio of the first main electrode, an opening ratio of the first sub-electrode, and an opening ratio of the first dummy electrode is within 0.5%, respectively.

2. The conductive member for a touch panel according to claim 1 ,

wherein the mesh pitch Pb and the electrode width Wb satisfy the following Expression (1), and

the mesh pitch Pa and the electrode width Wb satisfy the following Expression (2),

1.5Pb≤Wb  (1),

Wb<1.5 Pa  (2).

3. The conductive member for a touch panel according to claim 2 ,

wherein the first main electrode has a first dummy pattern, which is arranged so as to be electrically insulated from the first mesh conductive film and is constituted by a plurality of fine metal wires and

a difference between an opening ratio of the first main electrode and an opening ratio of the first sub-electrode is within 0.5%.

4. The conductive member for a touch panel according to claim 3 ,

wherein the first mesh conductive film is constituted by a rhombus mesh, and

the mesh pitch Pa and the mesh pitch Pb satisfy the following Expression (3),

Pa=2Pb  (3).

5. The conductive member for a touch panel according to claim 3 , further comprising:

a plurality of second electrodes extending in the second direction and arranged in parallel in the first direction so as to be insulated from one another,

wherein the plurality of first electrodes and the plurality of second electrodes are arranged so as to be insulated from each other,

the plurality of second electrodes are constituted by a second mesh conductive film in which a plurality of fine metal wires are electrically connected to one another,

the plurality of second electrodes include a plurality of second main electrodes each having an electrode width Wc defined in the first direction and at least one second sub-electrode having an electrode width Wd smaller than the electrode width Wc of the second main electrode in the first direction,

over an entire region of the second sub-electrode, a mesh pitch Pd of the second mesh conductive film constituting the second sub-electrode in the first direction is smaller than a mesh pitch Pc of the second mesh conductive film constituting the second main electrode in the first direction,

the mesh pitch Pd and the electrode width Wd satisfy the following Expression (4),

the mesh pitch Pc and the electrode width Wd satisfy the following Expression (5),

the second main electrode has a second dummy pattern, which is arranged so as to be electrically insulated from the second mesh conductive film and is constituted by a plurality of fine metal wires, and

a difference between an opening ratio of the second main electrode and an opening ratio of the second sub-electrode is within 0.5%,

1.5Pd<Wd  (4),

Wd≤1.5Pc  (5).

6. The conductive member for a touch panel according to claim 5 ,

wherein the first mesh conductive film is constituted by a rhombus mesh,

the mesh pitch Pa and the mesh pitch Pb satisfy the following Expression (3),

the second mesh conductive film is constituted by a rhombus mesh, and

the mesh pitch Pc and the mesh pitch Pd satisfy the following Expression (6),

Pa=2Pb  (3),

Pc=2Pd  (6).

7. The conductive member for a touch panel according to claim 6 ,

wherein the first sub-electrode is the first electrode arranged on an outermost side among the plurality of first electrodes, and

the second sub-electrode is the second electrode arranged on an outermost side among the plurality of second electrodes.

8. A touch panel using the conductive member for a touch panel according claim 7 .

9. The conductive member for a touch panel according to claim 1 ,

wherein the first mesh conductive film is constituted by a rhombus mesh, and

the mesh pitch Pa and the mesh pitch Pb satisfy the following Expression (3),

Pa=2Pb  (3).

10. The conductive member for a touch panel according to claim 1 , further comprising:

a plurality of second electrodes extending in the second direction and arranged in parallel in the first direction so as to be insulated from one another,

wherein the plurality of first electrodes and the plurality of second electrodes are arranged so as to be insulated from each other,

the plurality of second electrodes are constituted by a second mesh conductive film in which a plurality of fine metal wires are electrically connected to one another,

the plurality of second electrodes include a plurality of second main electrodes each having an electrode width Wc defined in the first direction and at least one second sub-electrode having an electrode width Wd smaller than the electrode width Wc of the second main electrode in the first direction, and

over an entire region of the second sub-electrode, a mesh pitch Pd of the second mesh conductive film constituting the second sub-electrode in the first direction is smaller than a mesh pitch Pc of the second mesh conductive film constituting the second main electrode in the first direction.

11. The conductive member for a touch panel according to claim 10 ,

wherein the second sub-electrode is the second electrode arranged on an outermost side among the plurality of second electrodes.

12. The conductive member for a touch panel according to claim 10 ,

wherein the mesh pitch Pd and the electrode width Wd satisfy the following Expression (4), and

the mesh pitch Pc and the electrode width Wd satisfy the following Expression (5),

1.5Pd<Wd  (4),

Wd≤1.5Pc  (5).

13. The conductive member for a touch panel according to claim 10 ,

wherein the second mesh conductive film is constituted by a rhombus mesh, and

the mesh pitch Pc and the mesh pitch Pd satisfy the following Expression (6),

Pc=2Pd  (6).

14. The conductive member for a touch panel according to claim 10 ,

wherein the second mesh conductive film has the same mesh shape as a mesh shape of the first mesh conductive film.

15. The conductive member for a touch panel according to claim 10 ,

wherein the second main electrode has a second dummy pattern, which is arranged so as to be electrically insulated from the second mesh conductive film and is constituted by a plurality of fine metal wires, and

a difference between an opening ratio of the second main electrode and an opening ratio of the second sub-electrode is within 0.5%.

16. The conductive member for a touch panel according to claim 15 , further comprising:

a plurality of second dummy electrodes each of which is arranged between the plurality of second electrodes so as to be electrically insulated from the plurality of second electrodes and each of which is constituted by a plurality of fine metal wires,

wherein a difference between any two of an opening ratio of the second main electrode, an opening ratio of the second sub-electrode, and an opening ratio of the second dummy electrode is within 0.5%, respectively.

17. A touch panel using the conductive member for a touch panel according claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2019
From: NAKAYAMA, MASAYA; KURIKI, TADASHI; IKEDA, REONA
To: FUJIFILM CORPORATION
Reel/Frame 051248/0208 →
Priority Claims (1)
JP JP2017-145673 · Jul 27, 2017 · national
Continuity (2)
Continuation PCTJP2018025178 · Jul 3, 2018
Related Publication 20200117295A1 · Apr 16, 2020