IP Library Granted Patent US 9,546,859
Granted Patent B2
US 9,546,859 · App. 14/007,232 · Granted Jan 17, 2017

Composite material

Inventors: Christopher John Lussey (Brompton on Swale, GB); Paul Jonathan Laughlin (Brompton on Swale, GB); Adam Graham (Brompton on Swale, GB); David Bloor (Brompton on Swale, GB); David Lussey (Brompton on Swale, GB)
Assignee: Peratech Holdco Limited
G01B7/003G01B7/16G06F3/045G06F3/0414H01B1/20H01C10/10H01C10/106Y10T156/10Y10T428/249921Y10T428/268
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Quick Facts
Patent No.
US 9,546,859
App. No.
14/007,232
Granted
Jan 17, 2017
Kind
B2
Abstract

An electrically responsive composite material ( 1110 ) specially adapted for touch screen, comprising a carrier layer ( 1301 ) having a length and a width and a thickness ( 1303 ) that is relatively small compared to said length and said width. The composite material also comprises a plurality of electrically conductive or semi-conductive particles ( 201 ). The particles ( 201 ) are agglomerated to form a plurality of agglomerates ( 104, 1403 ) dispersed within the carrier layer such that each said agglomerate comprises a plurality of the particles ( 201 ). The agglomerates are arranged to provide electrical conduction across the thickness of the carrier layer in response to applied pressure such that the electrically responsive composite material has a resistance that reduces in response to applied pressure.

Claims (20)

1. An electrically responsive composite material, comprising:

a carrier layer having a length extending in a first direction and a width extending in a second direction and a thickness extending in a third direction, said thickness being relatively small compared to said length and said width; and

a plurality of electrically conductive or semi-conductive particles, said particles being agglomerated to form a plurality of agglomerates dispersed within the carrier layer such that each said agglomerate comprises a plurality of said particles,

wherein each said agglomerate has a first dimension in said third direction, that is equal to or longer than said thickness of said carrier layer, such that

each said agglomerate by itself is arranged to provide a path of electrical conduction across the thickness of said carrier layer in response to applied pressure such that said electrically responsive composite material has a resistance that reduces in response to applied pressure.

2. The electrically responsive composite material of claim 1 , in which the largest dimension of each of said plurality of agglomerates is smaller than 40 micrometers.

3. The electrically responsive composite material of claim 1 , in which the largest dimension of said plurality of agglomerates is smaller than 15 micrometers.

4. The electrically responsive composite material of claim 1 , in which the largest dimension of each of said plurality of agglomerates is greater than 5 micrometers.

5. The electrically responsive composite material of claim 1 , in which said carrier layer comprises electrically conductive material such that said carrier layer is conductive in the directions of the length and the width of said layer.

6. The electrically responsive composite material of claim 1 , in which said carrier layer comprises a polymer.

7. The electrically responsive composite material of claim 6 , in which said polymer is transparent.

8. The electrically responsive composite material of claim 1 , in which said agglomerates comprise further particles formed of a dielectric material.

9. A position sensing device comprising:

the electrically responsive composite material of claim 1 ;

a first conductive layer that is electrically conductive along said layer; and

a second conductive layer that is electrically conductive along said layer;

wherein said agglomerates are arranged to provide conduction between said first conductive layer and said second conductive layer.

10. The position sensing device of claim 9 , wherein the first dimension of said first plurality of agglomerates is longer than said thickness of said carrier layer, and said second conducting layer rests against a plurality of said first plurality of agglomerates to provide a gap between said second conducting layer and said carrier layer.

11. The position sensing device of claim 9 , wherein said carrier layer comprises electrically conductive material such that said carrier layer is conductive in the directions of the length and the width of said carrier layer, and said carrier layer provides said first conductive layer.

12. The position sensing device of claim 9 , wherein said first conductive layer is transparent and formed on a first transparent substrate, said second conductive layer is transparent and formed on a second conductive substrate, and said carrier layer is transparent, so that said position sensing device is transparent.

Assignments (6)
LIEN Recorded Oct 28, 2024
From: PERATECH IP LTD.; PERATECH HOLDCO LTD.
To: DARK MATTER LEND CO LTD.
Reel/Frame 069272/0745 →
LICENSE Recorded Oct 28, 2024
From: PERATECH IP LTD.
To: PERATECH HOLDCO LTD.
Reel/Frame 069444/0115 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2024
From: PERATECH HOLDCO LTD.
To: PERATECH IP LTD
Reel/Frame 068840/0351 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2014
From: PERATECH LIMITED
To: PERATECH HOLDCO LIMITED
Reel/Frame 034271/0549 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2014
From: PERATECH LIMITED
To: PERATECH HOLDCO LIMITED
Reel/Frame 033803/0653 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2013
From: LUSSEY, CHRISTOPHER JOHN; LAUGHLIN, PAUL JONATHAN; GRAHAM, ADAM; BLOOR, DAVID; LUSSEY, DAVID
To: PERATECH LIMITED
Reel/Frame 031271/0814 →
Priority Claims (2)
GB 1105025.9 · Mar 25, 2011 · national
GB 1117492.7 · Oct 11, 2011 · national
Continuity (1)
Related Publication 20140109698A1 · Apr 24, 2014