FIELD: electricity.
SUBSTANCE: invention is referred to transparent and electrically conductive functional layer, in particular to an object made of laminated material. The electrical functional layer comprises conductive non-transparent paths with thickness varying in the range from 2 nm up to 5 mcm, which are placed in parallel to the surface of the transparent carrier forming the pattern so that between the conductive paths there is distance ensuring surface conductance of the electrical functional layer at simultaneous transparency for human eye; at that non-transparent paths of the functional layer form electrically conductive segments made so that they may provide a separate electrical connection, at that the transparent carrier is a flexible film and the pattern is structured so that formation of straight parallel lines is prevented for the non-transparent paths.
EFFECT: high transparency and simultaneous high conductivity of the functional layer.
17 cl, 13 dwg
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Authors
Dates
2015-02-20—Published
2010-03-26—Filed