IP Library Granted Patent US 9,134,807
Granted Patent B2
US 9,134,807 · App. 13/468,918 · Granted Sep 15, 2015

Pressure sensitive key normalization

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Quick Facts
Patent No.
US 9,134,807
App. No.
13/468,918
Granted
Sep 15, 2015
Kind
B2
Abstract

Pressure sensitive key techniques are described. In one or more implementations, a device includes at least one pressure sensitive key having a flexible contact layer spaced apart from a sensor substrate by a spacer layer, the flexible contact layer configured to flex responsive to pressure to contact the sensor substrate to initiate an input, for a computing device, associated with the pressure sensitive key. At least one of the flexible contact layer or the sensor substrate are configured to at least partially normalize an output resulting from pressure applied at a first location of the flexible contact layer with an output resulting from pressure applied at a second location of the flexible contact layer that has lesser flexibility than the first location.

Claims (26)

1. An input device comprising a plurality of pressure sensitive keys configured to initiate corresponding inputs of a computing device, each of the plurality of pressure sensitive keys formed from flexible contact layer spaced apart from a sensor substrate by a spacer layer, a first said pressure sensitive key configured to have a greater sensitivity to pressure than a second said pressure sensitive key through

configuration by varying amounts of force sensitive ink.

2. An input device as described in claim 1 , wherein the first said pressure sensitive key is positioned at a location of a keyboard that is likely to receive less pressure when pressed by one or more fingers of a user than the second said pressure sensitive key.

3. An input device as described in claim 1 , wherein the flexible contact layer of the first said pressure sensitive key has a greater sensitivity to pressure than the second said pressure sensitive key by having decreased electrical resistance than the second said pressure sensitive key through arrangement of gaps, amount of conductive material, or surface area.

4. An input device as described in claim 1 , wherein the flexible contact layer of the first said pressure sensitive key has a greater sensitivity to pressure than the second said pressure sensitive key by including a greater amount of force sensitive ink than included at the second said pressure sensitive key.

5. An input device as described in claim 1 , wherein the force sensitive ink is configured such that an amount of resistance of the force sensitive ink varies directly in relation to an amount of pressure applied.

6. An input device comprising:

a plurality of pressure sensitive keys configured to initiate corresponding inputs of a computing device, each of the plurality of pressure sensitive keys comprising:

a sensor substrate;

a spacer layer; and

a flexible contact layer spaced apart from the sensor substrate by the spacer layer, in which the plurality of pressure sensitive keys are configured to have different sensitivities, one to another, through

configuration by varying amounts of force sensitive material.

7. An input device as described in claim 6 , wherein a first said pressure sensitive key is positioned at a location of a keyboard that is likely to receive less pressure when pressed by one or more fingers of a user than a second said pressure sensitive key and the different sensitivities are configured accordingly.

8. An input device as described in claim 7 , wherein the different sensitivities are configured by varying electrical resistance through arrangement of gaps, amount of conductive material, or surface area.

9. An input device as described in claim 6 , wherein the force sensitive material is a force sensitive ink.

10. An input device as described in claim 9 , wherein the force sensitive ink is configured such that an amount of resistance of the force sensitive ink varies directly in relation to an amount of pressure applied.

11. A keyboard comprising:

a plurality of pressure sensitive keys configured to initiate corresponding inputs of a computing device, each of the plurality of pressure sensitive keys comprising:

a sensor substrate;

a spacer layer; and

a flexible contact layer spaced apart from the sensor substrate by the spacer layer, in which the plurality of pressure sensitive keys are configured to have different sensitivities, one to another, through

configuration by varying amounts of force sensitive material.

12. A keyboard as described in claim 11 , wherein a first said pressure sensitive key is positioned at a location of a keyboard that is likely to receive less pressure when pressed by one or more fingers of a user than a second said pressure sensitive key and the different sensitivities are configured accordingly.

13. A keyboard as described in claim 11 , wherein the different sensitivities are configured by varying electrical resistance. through arrangement of gaps, amount of conductive material, or surface area.

14. A keyboard as described in claim 11 , wherein the force sensitive material is a force sensitive ink.

15. A keyboard as described in claim 14 , wherein the force sensitive ink is configured such that an amount of resistance of the force sensitive ink varies directly in relation to an amount of pressure applied.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2014
From: MICROSOFT CORPORATION
To: MICROSOFT TECHNOLOGY LICENSING, LLC
Reel/Frame 034544/0541 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2013
From: SHAW, TIMOTHY C.; BELESIU, JIM TOM; DIETZ, PAUL HENRY; STOUMBOS, CHRISTOPHER HARRY; MATHIAS, DENNIS J.
To: MICROSOFT CORPORATION
Reel/Frame 029840/0072 →