Abstract:
The disclosure provides a liquid crystal display device and a method for manufacturing a light guiding plate thereof. Wherein, multiple first protrusions are disposed on an irradiating surface of the light guiding plate, a prism sheet of an optical film assembly is disposed adjacent with the light guiding plate, multiple of second protrusions are disposed on the prism sheet of the optical film assembly, the second protrusions and the first protrusions are alternatively arranged, and translucent adhesives are disposed between each of the first protrusions and two adjacent second protrusions, such that the prism sheet is fixed with the light guiding plate. The disclosure can improve the phenomena of Hotspot Mura when displaying and decrease the thickness of the backlight module, such that it is beneficial for the designs of narrow frame and non-frame of liquid crystal display devices.
Abstract:
The invention provides a shell frame and a manufacturing method thereof. The shell frame includes: a substrate; at least one ink layer coated on the substrate and each being mixed with particles containing a color dye; and at least one cured layer, each of the at least one ink layer being coated with one cured layer, the outmost cured layer having concave and convex shapes to thereby exhibit different colors and patterns at different viewing angles. When the shell frame is pressed, the color dye in the particles is released to make the shell frame exhibit different patterns according to different pressed situations. By the above solution, the invention is capable of making the shell frame transform the pattern along with different angles and thereby achieving visual impact and tactile effect.
Abstract:
A liquid crystal display panel and a fan-out area thereof are provided. The fan-out area is arranged in a peripheral circuit area of the liquid crystal display panel and includes a middle wire and multiple fan-out wires arranged at two sides thereof. The middle wire and the fan-out wires each are disposed with at least one first wire pattern. Along each of directions toward the middle wire, widths of the first wire patterns of different wires are successively increased and/or lengths of the first wire patterns are successively decreased. The first wire patterns of a same wire have same width and length. Accordingly, the present invention can reduce the resistance differences among the wires in the fan-out area, color washout and non-uniform brightness caused by the resistance differences can be relieved or avoided, and is beneficial to the narrow border design of the liquid crystal display panel.
Abstract:
The LCD panel of the present invention includes an array substrate, a color film substrate, and a liquid crystal layer. The array substrate includes a substrate, a data line, a scanning line, a pixel electrode, a thin-film field-effect transistor, and an insulative layer. The pixel electrode corresponds to a first area of the array substrate. The data line, the scanning line, and the thin-film field-effect transistor correspond to a second area of the array substrate. The thickness of the insulative layer on the first area is less than the thickness of the insulative layer on the second area. Liquid crystal usage is reduced by reducing the thickness of the insulative layer on the first area of the array substrate in the present invention.