Abstract:
Disclosed is a method of coating a conductive substrate with an adhesive, wherein the amounts and positions of conductive and non-conductive adhesives for bonding a plurality of circuit elements to the conductive substrate are set, thus preventing the spread of the adhesive from causing defects, including a poor aesthetic appearance, low electrical conductivity, and short circuits.
Abstract:
The present invention relates to a moving walkway having transparent display boards, and more particularly to a moving walkway having transparent display boards, which comprises transparent display boards supported by one or more posts spaced from each other at both sides of the moving walkway having a footplate extending in one direction, wherein the transparent display boards can uniformly supply driving voltage applied to a light-emitting device within a predetermined range by adjusting the width and length of a pattern, so that a plurality of light sources mounted on the transparent display boards can emit light with a uniform intensity.
Abstract:
Disclosed herein is a pattern safety device for preventing interference between patterns. In detail, a separately partitioned space is defined in an adhesion portion, which is formed on a plurality of patterns on the surface of a substrate so that a circuit element is placed on the adhesion portion, thus preventing interference between the patterns.
Abstract:
The present invention relates to a boarding bridge provided with a transparent electric bulletin board, and more specifically, a transparent electric bulletin board arranged in a boarding bridge includes a transparent electrode of which the width and the length of the pattern are adjusted according to the surface resistance so as to supply a uniform drive voltage to light-emitting elements, thus making the light-emitting elements emit a light with a uniform intensity.
Abstract:
The present invention relates to a transparent electronic display board that is capable of uniform optical output and, more particularly, to a transparent electronic display board that is capable of uniform optical output wherein the pattern width and length are adjusted according to the sheet resistance of a transparent electrode of the transparent electronic display board, wherein a driving voltage applied to a light-emitting device can be uniformly supplied within a constant range, and wherein multiple light sources disposed in the transparent electronic display board can emit light at uniform intensity.