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Electrographic tough sensor having reduced bow of equipotential field line therein

  • US 4,731,508 A
  • Filed: 06/05/1986
  • Issued: 03/15/1988
  • Est. Priority Date: 12/24/1984
  • Status: Expired due to Term
First Claim
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1. A position touch sensor having resistive electrodes which provides a linear output response over an enhanced proportion of the surface area of said sensor by reducing the bow of equipotential lines along edges of said sensor, which comprises:

  • a resistive layer having a selected substantially uniform resistivity throughout said layer, said resistive layer defining perimeter edges;

    a resistance element positioned proximate each of said perimeter edges of said resistive layer for providing orthogonal electrical fields to said resistive layer, each of said resistance elements having opposite ends joined to proximate ends of adjoining resistance elements, each of said resistance elements comprising a plurality of substantially identical discontinuous units in electrical contact with said resistive layer, each of said units formed by at least one line of conductive material spaced from a line of conductive material of an adjacent unit to define a separation gap of a selected width and length whereby said width and length of said gap and said resisitivity of said resistive layer establish a unit resistance value for said units;

    a plurality of electrodes positioned on, and electrically connected to, said layer along a preselected symmetrical path proximate each perimeter edge of said layer, said electrodes each being electrically connected to selected positions along said resistance elements and having a selected center-to-center spacing and each electrode having an effective length along said path, said length and spacing of said electrodes, and said positions of connection of said resistance elements selected to produce a selected voltage gradient along said path of said electrodes to compensate for any voltage drop along said resistance element during operation of said sensor when said orthogonal fields are introduced into said resistive layer whereby said bow is reduced; and

    means for deriving output signals corresponding to coordinates of a selected point on said resistive layer.

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