IP Library Granted Patent US 10,641,666
Granted Patent B2
US 10,641,666 · App. 15/756,821 · Granted May 5, 2020

Pressure sensor

Inventors: Bi Yi Kim (Seoul, KR); Jeong Han Kim (Seoul, KR); Hyun Gyu Park (Seoul, KR); Won Keun Cho (Seoul, KR); In Hee Cho (Seoul, KR); Hyun Jin Jo (Seoul, KR)
Assignee: LG INNOTEK CO., LTD.
G01L1/18B32B5/024D03D1/0088D03D11/00D03D15/00B32B2250/03B32B2250/40B32B2307/202B32B2457/00D10B2401/16H01C10/10H01C10/103
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Quick Facts
Patent No.
US 10,641,666
App. No.
15/756,821
Granted
May 5, 2020
Kind
B2
Abstract

A pressure sensor formed in a sheet type is provided, including conductive fibers, nonconductive fibers, and piezoresistive fibers, which are woven together, wherein the pressure sensor includes a first electrode layer including the conductive fibers and the nonconductive fibers, a second electrode layer including the conductive fibers and the nonconductive fibers, and a piezoresistive layer including the piezoresistive fibers and disposed between the first electrode layer and the second electrode layer.

Claims (35)

1. A pressure sensor formed in a sheet type and including conductive fibers, nonconductive fibers, and piezoresistive fibers, which are woven together, the pressure sensor comprising:

a first electrode layer comprising the conductive fibers and the nonconductive fibers;

a second electrode layer comprising the conductive fibers and the nonconductive fibers; and

a piezoresistive layer comprising the piezoresistive fibers and disposed between the first electrode layer and the second electrode layer,

wherein the nonconductive fibers of the first electrode layer and the conductive fibers of the second electrode layer are formed as warps, while the conductive fibers of the first electrode layer and the nonconductive fibers of the second electrode layer are formed as wefts; and

wherein each of the piezoresistive fibers comprises a nonconductive fiber filled by a piezoresistive material.

2. The pressure sensor of claim 1 , wherein the first electrode layer comprises a plurality of first electrode patterns arranged in parallel in a first direction and formed of the conductive fibers.

3. The pressure sensor of claim 1 , wherein:

the first electrode layer comprises the nonconductive fibers and a plurality of first electrode patterns arranged in parallel in a first direction and formed of the conductive fibers; and

the second electrode layer comprises a plurality of second electrode patterns arranged in parallel in a second direction intersecting the first direction and formed of the conductive fibers.

4. The pressure sensor of claim 1 , wherein each of the piezoresistive fibers comprises a core and a piezoresistive material with which an outer surface of the core is coated.

5. The pressure sensor of claim 4 , wherein the piezoresistive material comprises a material selected from among a carbon material, a conductive polymer, and a semiconducting inorganic metal oxide.

6. The pressure sensor of claim 1 , wherein the piezoresistive material comprises a material selected from among a carbon material, a conductive polymer, and a semiconducting inorganic metal oxide.

7. The pressure sensor of claim 1 , wherein the conductive fibers are formed entirely of a conductive material.

8. The pressure sensor of claim 1 , wherein each of the conductive fibers comprises a core and a conductive material with which an outer surface of the core is coated.

9. The pressure sensor of claim 1 , wherein the nonconductive fibers comprise a material selected from among polyester, nylon, acryl, polypropylene, polyurethane, cotton, silk, and acetate.

10. A pressure sensor formed in a sheet type and including conductive fibers and nonconductive fibers, which are woven together, the pressure sensor comprising:

a first electrode layer comprising the conductive fibers and the nonconductive fibers;

a second electrode layer comprising the conductive fibers and the nonconductive fibers;

a piezoresistive layer comprising the nonconductive fibers and disposed between the first electrode layer and the second electrode layer; and

a piezoresistive material layer configured to fill gaps between the conductive fibers and the nonconductive fibers,

wherein the nonconductive fibers of the first electrode layer and the conductive fibers of the second electrode layer are formed as warps, while the conductive fibers of the first electrode layer and the nonconductive fibers of the second electrode layer are formed as wefts; and

wherein the piezoresistive material layer comprises nonconductive material filled by a piezoresistive material.

11. The pressure sensor of claim 10 , comprising a piezoresistive coating film with which outer side surfaces of the first electrode layer and the second electrode layer are coated.

12. The pressure sensor of claim 11 , wherein a surface resistance of each of the piezoresistive coating film and the piezoresistive material layer is in a range of 100 Ω/square to 10 MΩ/square.

13. The pressure sensor of claim 10 , wherein the first electrode layer comprises a plurality of first electrode patterns arranged in parallel in a first direction and formed of the conductive fibers.

14. The pressure sensor of claim 10 , wherein:

the first electrode layer comprises the nonconductive fibers and a plurality of first electrode patterns arranged in parallel in a first direction and formed of the conductive fibers; and

the second electrode layer comprises a plurality of second electrode patterns arranged in parallel in a second direction intersecting the first direction and formed of the conductive fibers.

15. The pressure sensor of claim 10 , wherein the piezoresistive material layer comprises a core and a piezoresistive material with which an outer surface of the core is coated.

16. The pressure sensor of claim 15 , wherein the piezoresistive material comprises a material selected from among a carbon material, a conductive polymer, and a semiconducting inorganic metal oxide.

17. The pressure sensor of claim 10 , wherein the piezoresistive material comprises a material selected from among a carbon material, a conductive polymer, and a semiconducting inorganic metal oxide.

18. The pressure sensor of claim 10 , wherein the conductive fibers are formed entirely of a conductive material.

19. The pressure sensor of claim 10 , wherein each of the conductive fibers comprises a core and a conductive material with which an outer surface of the core is coated.

20. The pressure sensor of claim 10 , wherein each of the nonconductive fibers comprises a material selected from among polyester, nylon, acryl, polypropylene, polyurethane, cotton, silk, and acetate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2018
From: KIM, BI YI; KIM, JEONG HAN; CHO, IN HEE; JO, HYUN JIN
To: LG INNOTEK CO., LTD.
Reel/Frame 045407/0327 →
Priority Claims (1)
KR 10-2015-0125076 · Sep 3, 2015 · national
Continuity (1)
Related Publication 20180266900A1 · Sep 20, 2018
Cited By (1)
US 12,442,697