Claims
- 1. A pressure sensing switch array comprising:upper, middle, and lower laminar elongated nonconductive members, said middle member having a plurality of openings there through defining a plurality of cavities between said upper and lower members; an array of substantially parallel electrically conductive bands fixed to an upper surface of said lower member and positioned to traverse the middle member cavities; an array of substantially parallel electrically conductive bands fixed to a lower surface of said upper member and positioned to traverse the middle member cavities, a first set of said upper member bands collectively connected to an electrical input connector and a second set of said upper member bands being collectively connected to an electrical output connector; an array of regularly spaced dielectric dots fixed to the upper surface of the lower member bands and partially separating the bands of the upper and lower members from electrical contact with each other through the middle member cavities at specific spaced positions; said upper and lower laminar members being resiliently flexible to permit overlapping areas between said upper and lower member arrays of conductive bands to close into and open out of electrical contact through said middle member cavities upon exertion and removal respectively of a minimal threshold external compressive force against said members.
- 2. The pressure sensing switch array according to claim 1, wherein said upper member conductive band array is generally orthogonal to said lower member conductive band array.
- 3. The pressure sensing switch array according to claim 2, wherein said conductive bands of said upper member array are arranged with center lines substantially equally spaced.
- 4. The pressure sensing switch array according to claim 2, wherein said conductive bands of said lower member array are arranged with center lines substantially equally spaced.
- 5. The pressure sensing switch array according to claim 3, wherein said conductive bands of said lower member array are arranged with center lines substantially equally spaced, whereby said overlapping areas occur in an orthogonal matrix of squares and said regularly spaced dielectric dots occur in a partially offset orthogonal matrix defining a plurality of linear sets of said dielectric dots.
- 6. The pressure sensing switch array according to claim 1, wherein said upper and lower member conductive bands are formed of a low impedance conductive ink.
- 7. The pressure sensing switch array according to claim 6, wherein a maximum internal electrical impedance is 50 ohms on application of 1 pound per square inch of pressure at a distal end of said switch.
- 8. The pressure sensing switch array according to claim 7, wherein said input and output electrical connectors terminate in strain relief stabilized releasable electrical snap stud connectors.
- 9. The pressure sensing switch array according to claim 1, wherein said upper, middle, and lower laminar elongated nonconductive members are comprised of heat stabilized polyester material.
- 10. A pressure sensing switch array comprising:upper, middle and lower laminar substantially rectangular elongated members, said middle member having a plurality of longitudinally aligned substantially rectangular openings there through defining a plurality of cavities between said upper and lower members; an array of substantially parallel and equally spaced electrically conductive bands fixed in longitudinal alignment to an upper surface of said lower member and positioned to traverse said cavities; an array of substantially parallel and equally spaced electrically conductive bands fixed transversely across a lower surface of said upper member in a direction orthogonal to said lower member bands, selected upper member bands being collectively connected to an electrical input lead and other upper member bands being collectively connected to an electrical output lead; an array of linearly arranged and equally spaced dielectric dots fixed to an upper surface of said lower member bands and being arranged to provide a plurality of essentially parallel rows of dielectric dots on said lower member and said dielectric dots providing controlled separation of said electrically conductive arrays on said upper and lower members; said upper and lower members being resiliently flexible to permit said controlled separation of said arrays of conductive bands by said dielectric dot array to close into and open out of electrical contact upon exertion and removal respectively of a threshold external compressive force.
- 11. A pressure sensing switch array comprising:upper, middle and lower laminar non-conductive elongated members, said middle member having at least one opening there through defining at least one cavity between the upper and lower members; an array of spaced electrically conductive bands fixed to an upper surface of said lower member and traversing said at least one cavity; an array of spaced electrically conductive bands fixed to a lower surface of said upper member and traversing said at least one cavity and said lower member bands, selected upper member bands being connected to an electrical input lead and other upper member bands being connected to an electrical output lead; an array of linearly arranged dielectric dots fixed to said upper surface of said lower member and arranged to form parallel rows of dielectric dots providing controlled separation of said upper and lower electrically conductive arrays through said at least one cavity; said upper and lower members being resiliently flexible to permit said upper and lower member electrically conductive arrays to close into and open out of electrical contact upon exertion and removal respectively of an appropriate threshold external compressive force.
- 12. A pressure sensing switch array comprising:a first and a second laminar member having spaced apart opposed interior laminar faces defining a plurality of substantially rectangular longitudinally aligned cavities; at least one electrically conductive band fixed longitudinally to said interior face of said first member and traversing said cavities; an array of substantially parallel and equally spaced electrically conductive bands fixed transversely across said at least one band of said first member, to said interior face of said second member and traversing said cavities, selected second member bands being connected through a strain relief stabilized releasable electrical snap stud connector into a first electrically conductive network and other second member bands being connected by a second strain relief stabilized releasable electrical snap stud connector into a second electrically conductive network; said first and second electrically conductive networks being electrically isolated from each other, said upper and lower members being controllably separated by a matrix of dielectric dots, said upper and lower members being resiliently flexible to permit selected points of said conductive bands to close into and open out of electrical contact upon exertion and removal, respectively, of an appropriate threshold external compressive force.
RELATION TO OTHER APPLICATION
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 60/125,732, filed Mar. 23, 1999.
US Referenced Citations (14)
Provisional Applications (1)
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Number |
Date |
Country |
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60/125732 |
Mar 1999 |
US |