Abstract:
A touch device and a fabrication method thereof are provided. The touch device includes a cover lens, a first light shielding pattern and a touch sensing element disposed on the cover lens, a passivation layer covering the touch sensing element and the first light shielding pattern, and a second light shielding pattern disposed on the passivation layer, wherein the second light shielding pattern overlaps with a part of the first light shielding pattern.
Abstract:
A touch device and a fabrication method thereof are provided. The touch device includes a cover lens, a first light shielding pattern and a touch sensing element disposed on the cover lens, a passivation layer covering the touch sensing element and the first light shielding pattern, and a second light shielding pattern disposed on the passivation layer, wherein the second light shielding pattern overlaps with a part of the first light shielding pattern.
Abstract:
A method of forming a color filter layer having a light-scattering effect. First, substrate is provided, and a color filter layer is coated on the substrate. Then, an exposure-and-development process is performed to pattern the color filter layer. Subsequently, the color filter layer is post-baked to render the color filter layer a rough surface to provide the light-scattering effect, wherein the color filter layer has a surface roughness index Rz in the range of 0.5 to 2.0 μm.
Abstract:
A method of forming a color filter layer having a light-scattering effect. First, substrate is provided, and a color filter layer is coated on the substrate. Then, an exposure-and-development process is performed to pattern the color filter layer. Subsequently, the color filter layer is post-baked to render the color filter layer a rough surface to provide the light-scattering effect, wherein the color filter layer has a surface roughness index Rz in the range of 0.5 to 2.0 μm.
Abstract:
An LCD panel includes a first substrate, at least a supporting pad, a second substrate, at least a spacer and a liquid crystal layer. The supporting pad is disposed on the first substrate. The second substrate is disposed opposite to the first substrate. The spacers are disposed on the second substrate. The liquid crystal layer is disposed between the first substrate and the second substrate. The top facet of the spacer contacts with the top facet of the supporting pad and the top facet area of the supporting pad is smaller than the top facet area of the spacer. The LCD panel is able to stand a larger finger pressure, so as to prevent the liquid crystal layer from producing bubbles and mura defect.