Addressable ptf receptor for iradiated images

Stock material or miscellaneous articles – Structurally defined web or sheet – Discontinuous or differential coating – impregnation or bond

Reexamination Certificate

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C428S195100

Reexamination Certificate

active

06936335

ABSTRACT:
An addressable receptor in laminate form, and advantageously in PTF laminate form, comprising a front conductive layer including a plurality of substantially parallel front electrode strips and a rear conductive layer also including a plurality of substantially parallel rear electrode strips. The conductive layers are orientated with respect to each other so that an array of electrode regions of intersection is formed corresponding to the regions at which the front electrode strips cross over the rear electrode strips. The first and second conductive layers are separated by a reactive layer comprising a plurality of defined reactive regions. The reactive regions are deployed in a reactive array substantially in register with the array of electrode regions of intersection, so that the reactive regions are electrically addressable by coordinate pairs of first and second electrode strips. The front electrode strips are partially transparent to radiation in a selected waveband. In operation, an irradiated image in the selected waveband is directed onto the receptor laminate. The irradiated pattern passes through the transparent front electrode strips and selectively energizes the addressable reactive regions in a corresponding pattern.

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R. Peruzzi and M. D'Ovidio, “Realization of a Wholly Screen Printed Silicon Solar Cell Production Line,” 12th European Photovoltaic Solar Energy Conference, (Apr., 1994).
M. Hammonds, “Harnessing the Power of Light,” Vacuum and Thin Film, p. 20-25, (Feb., 1999).
Robert H. Detig, Ph.D., “Electrostatic Printing of Functional Materials, a Versatile Manufacturing Process for Flat Panel Displays,” delivered to K. Burrows, (Mar. 15, 1999).

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