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HYBRID COMPOSITE MATERIALS CAPABLE OF FABRICATION OF SELECTIVE CONDUCTING PATTERN BY LASER FOR 3D PRINTING, MANUFACTURING METHOD OF 3D ELECTRONIC DEVICES WITH THE SELECTIVE CONDUCTING PATTERN AND 3D ELECTRONIC DEVICES THEREBY
HYBRID COMPOSITE MATERIALS CAPABLE OF FABRICATION OF SELECTIVE CONDUCTING PATTERN BY LASER FOR 3D PRINTING, MANUFACTURING METHOD OF 3D ELECTRONIC DEVICES WITH THE SELECTIVE CONDUCTING PATTERN AND 3D ELECTRONIC DEVICES THEREBY
The present invention relates to a composite material for 3D printing having a selective conductor pattern by laser in order to manufacture a 3D electronic component by the 3D printing. The present invention comprises: an organic material enabling to be manufactured as the 3D electronic component by photocure or fused deposition by the 3D printing; and an inorganic filler material provided as being mixed in the organic material, and enabling to manufacture the selective conductor pattern as a certain area of the 3D electronic component is activated by the laser. Therefore, the composite material for 3D printing having a selective conductor pattern by laser enables to shape the 3D electronic component by the photocure or the fused deposition by the 3D printing, and to easily form the conductor pattern on the 3D electronic component as making a certain component of the electronic component be activated.
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