Contact Sensor
First Claim
1. A contact sensor apparatus, the sensor comprising:
- a first insulative layer;
a second insulative layer;
a first resistor strip on the first insulative layer;
a second resistor strip on the second insulative layer;
a plurality of first conductive traces provided on the first insulative layer and electrically connected to the first resistor strip; and
a plurality of second conductive traces provided on the second insulative layer and electrically connected to the second resistor strip;
wherein the first insulative layer and second insulative layer face each other such that the plurality of first conductive traces face the plurality of second conductive traces with each of the first conductive traces extending across the plurality of second conductive traces and each of the second conductive traces extending across the plurality of first conductive traces thereby forming an array of points of intersection of the first and second conductive traces,wherein the first insulative layer and second insulative layer are spaced apart such that there is no electrical contact between the plurality of first and second conductive traces when a contact is not applied to the contact sensor,wherein when a contact is applied there is an electrical contact between at least one of each of the plurality of first and second conductive traces in a region of the contact, andwherein when the contact is applied to the apparatus, the apparatus is operable to determine the dimensions of the contact as projected to the first and second resistor strips by measuring an electrical quantity across the first and second resistor strips.
1 Assignment
0 Petitions
Accused Products
Abstract
A contact sensor apparatus comprises: a first insulative layer (100); a second insulative layer (200); a first resistor strip (101) on the first insulative layer; a second resistor strip (201) on the second insulative layer; a plurality of first conductive traces (102) provided on the first insulative layer and electrically connected to the first resistor strip; and a plurality of second conductive traces (202) provided on the second insulative layer and electrically connected to the second resistor strip. The first insulative layer and second insulative layer face each other such that the plurality of first conductive traces face the plurality of second conductive traces with each of the first conductive traces extending across the plurality of second conductive traces and each of the second conductive traces extending across the plurality of first conductive traces thereby forming an array of points of intersection of the first and second conductive traces. The first insulative layer and second insulative layer are spaced apart such that there is no electrical contact between the plurality of first and second conductive traces when a contact is not applied to the contact sensor. When a contact is applied there is an electrical contact between at least one of each of the plurality of first and second conductive traces in a region of the contact.
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Citations
36 Claims
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1. A contact sensor apparatus, the sensor comprising:
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a first insulative layer; a second insulative layer; a first resistor strip on the first insulative layer; a second resistor strip on the second insulative layer; a plurality of first conductive traces provided on the first insulative layer and electrically connected to the first resistor strip; and a plurality of second conductive traces provided on the second insulative layer and electrically connected to the second resistor strip; wherein the first insulative layer and second insulative layer face each other such that the plurality of first conductive traces face the plurality of second conductive traces with each of the first conductive traces extending across the plurality of second conductive traces and each of the second conductive traces extending across the plurality of first conductive traces thereby forming an array of points of intersection of the first and second conductive traces, wherein the first insulative layer and second insulative layer are spaced apart such that there is no electrical contact between the plurality of first and second conductive traces when a contact is not applied to the contact sensor, wherein when a contact is applied there is an electrical contact between at least one of each of the plurality of first and second conductive traces in a region of the contact, and wherein when the contact is applied to the apparatus, the apparatus is operable to determine the dimensions of the contact as projected to the first and second resistor strips by measuring an electrical quantity across the first and second resistor strips. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 30)
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29. A method of manufacturing a contact sensor apparatus, the method comprising:
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providing a first insulative layer; providing a second insulative layer; providing a first resistor strip on the first insulative layer; providing a second resistor strip on the second insulative layer; providing a plurality of first conductive traces on the first insulative layer to be electrically connected to the first resistor strip; and providing a plurality of second conductive traces on the second insulative layer to be electrically connected to the second resistor strip, wherein the first insulative layer and second insulative layer are arranged to face each other such that the plurality of first conductive traces face the plurality of second conductive traces with each of the first conductive traces extending across the plurality of second conductive traces and each of the second conductive traces extending across the plurality of first conductive traces, thereby forming an array of points of intersection of the first and second conductive traces, wherein the first insulative layer and second insulative layer are spaced apart such that there is no electrical contact between the plurality of first and second conductive traces when a contact is not applied to the contact sensor, wherein when a contact is applied there is an electrical contact between at least one of each of the plurality of first and second conductive traces in a region of the contact, and wherein when the contact is applied to the apparatus, the apparatus determines the dimensions of the contact as projected to the first and second resistor strips by measuring an electrical quantity across the first and second resistor strips.
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31. A contact sensor apparatus comprising:
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a first insulative layer; a second insulative layer; a resistor strip on the first insulative layer; a plurality of conductive traces provided on the first insulative layer and electrically connected to the resistor strip; and a conductive layer provided on the second insulative layer, wherein the first insulative layer and second insulative layer face each other such that the plurality of conductive traces face the conductive layer, wherein the first insulative layer and second insulative layer are spaced apart such that there is no electrical contact between the plurality of conductive traces and the conductive layer when a contact is not applied to the contact sensor, and wherein when a contact is applied there is an electrical contact between at least one of each of the plurality of conductive traces and the conductive layer. - View Dependent Claims (32, 33, 34, 35)
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36. A method of manufacturing a contact sensor apparatus, the method comprising:
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providing a first insulative layer; providing a second insulative layer; providing a resistor strip on the first insulative layer; providing a plurality of conductive traces on the first insulative layer to be electrically connected to the resistor strip; and providing a conductive layer on the second insulative layer, wherein the first insulative layer and second insulative layer are arranged to face each other such that the plurality of conductive traces face the conductive layer, wherein the first insulative layer and second insulative layer are spaced apart such that there is no electrical contact between the plurality of conductive traces and the conductive layer when a contact is not applied to the contact sensor, and wherein when a contact is applied there is an electrical contact between at least one of the plurality of conductive traces and the conductive layer in a region of the contact.
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Specification