Armored Capacitive Keypad
First Claim
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1. An armored capacitive keypad comprising an array of switches, each switch comprising:
- a dielectric substrate having an upper surface and a lower surface;
at least one pair of electrodes upon the upper surface of the substrate;
an electrically isolated protective metal plate forming a surface for the keypad, having a lower surface facing the at least one pair of electrodes, and a touch surface opposite the lower surface; and
an insulating layer between the electrodes and the lower surface of the protective metal plate;
a driver circuit coupled to one of the electrodes of the at least one pair of electrodes, the driver circuit providing a drive signal to the electrode such that an electric field is created between the electrode and an other electrode of the pair of electrodes, and having an output with a touch signal responsive to changes in the electric field,such that when an object approaches the touch surface of the plate adjacent to the at least one pair of electrodes, the driver circuit causes the touch signal to change.
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Abstract
An apparatus and method for detecting a key press using an armored capacitive keypad device. The device consists of two interdigitated electrodes, located behind a protective metal plate, and separated by an insulating gap or material. An electronic driver circuit sends a signal to one of the electrodes and senses the change in signal with the proximity of a finger to the key. The driver is calibrated with the metal plate in place such that the finger can be sensed through the metal plate. The device is tamper resistant and provides some immunity to external electromagnetic interference as well.
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Citations
15 Claims
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1. An armored capacitive keypad comprising an array of switches, each switch comprising:
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a dielectric substrate having an upper surface and a lower surface; at least one pair of electrodes upon the upper surface of the substrate; an electrically isolated protective metal plate forming a surface for the keypad, having a lower surface facing the at least one pair of electrodes, and a touch surface opposite the lower surface; and an insulating layer between the electrodes and the lower surface of the protective metal plate; a driver circuit coupled to one of the electrodes of the at least one pair of electrodes, the driver circuit providing a drive signal to the electrode such that an electric field is created between the electrode and an other electrode of the pair of electrodes, and having an output with a touch signal responsive to changes in the electric field, such that when an object approaches the touch surface of the plate adjacent to the at least one pair of electrodes, the driver circuit causes the touch signal to change. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9)
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10. An armored capacitive switch comprising:
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a dielectric substrate having an upper surface and a lower surface; at least one pair of electrodes upon the upper surface of the substrate; an electrically isolated protective metal plate forming a surface for the switch, having a lower surface facing the at least one pair of electrodes, and a touch surface opposite the lower surface; and an insulating layer between the electrodes and the lower surface of the protective metal plate; a driver circuit coupled to one of the electrodes of the at least one pair of electrodes, the driver circuit providing a drive signal to the electrode such that an electric field is created between the electrode and an other electrode of the pair of electrodes, and having an output with a touch signal responsive to changes in the electric field, such that when an object approaches the touch surface of the plate adjacent to the at least one pair of electrodes, the driver circuit causes the touch signal to change. - View Dependent Claims (11, 12, 13, 14, 15)
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Specification