Abstract:
A touch module includes a display module, a touch sensing layer and a protecting substrate. The touch sensing layer includes a shielding part, a hardening layer and a flat layer. The hardening layer has an open slot near the shielding part for separating a portion from another portion of the hardening layer. The touch module will not have uneven surface occurred at stacking and bending positions of the edge of the touch module and can avoid the occurrence of mura phenomenon, so as to enhance the display effect of the touch module. In addition, the flat layer is covered onto the hardening layer and the open slot, so that pattern of the touch sensing layer is mild visually, so as to improve the visual effect of the display of the touch module.
Abstract:
A display method of a two-dimensional and naked eye type stereoscopic switchable display device is disclosed. The two-dimensional and naked eye type stereoscopic switchable display device includes a two-dimensional and naked eye type stereoscopic switchable display module, at least one detection device and an indicator device. The two-dimensional and naked eye type stereoscopic switchable display module provides a plurality of stereoscopic image regions in a naked eye type stereoscopic display mode. Then, detect a viewer's position with the detection device. And, determine whether or not the viewer's position is in the stereoscopic image regions with the two-dimensional and naked eye type stereoscopic switchable display device. When the viewer locates in the stereoscopic image regions, the indicator device emits a first color light. When the viewer locates outside of the stereoscopic image regions, the indicator device emits a second color light.
Abstract:
A capacitive touch control system includes a sensing matrix, a comparator and a control unit. The control unit is configured to couple the sensing matrix to at least one of two input terminals of the comparator, to provide at least one variable voltage to at least one of the two input terminals of the comparator and to adjust the at least one variable voltage according to a comparison result of the comparator so as to balance the two input terminals of the comparator to accordingly identify a touch event and a contact extent.
Abstract:
A shift register and a voltage adjusting circuit and method thereof are disclosed. The voltage adjusting circuit includes a first input terminal, a second input terminal, a transistor, a first capacitor, a second capacitor, and an output terminal. The first input terminal receives a second clock signal. The second input terminal receives a fourth clock signal. The transistor has a source electrode, a drain electrode, and a gate electrode. The source electrode is coupled to ground and the gate electrode is coupled to the second input terminal. The first capacitor is coupled between the drain electrode and the first input terminal. One end of second capacitor is coupled between the first capacitor and drain electrode, and the other end of second capacitor is coupled between the second input terminal and gate electrode. The output terminal is coupled between the first capacitor and drain electrode to output an adjusted voltage.
Abstract:
A driven electrode structure of an in-plane switching liquid crystal display is divided into a plurality of sub-regions, each of the sub-regions includes a plurality of sub-driven electrodes, a plurality of intervals is formed between adjacent sub-driven electrodes, so as each of the sub-regions has the intervals, and at least two of the intervals in the sub-regions are different from one another. By changing the width or shape of each sub-driven electrode, at least two of the intervals in the sub-regions are different from one another, so as the Mura condition of the in-plane switching liquid crystal display can be obscure, so as the Mura defect can be minimized uniformly without being visually recognized by human eyes and further improve the visual defect of the Mura.
Abstract:
A manufacturing method for an in-plane switching mode liquid crystal display (LCD) unit is provided. The method includes steps of: providing a substrate, forming a first conductive layer on the substrate, patterning the first conductive layer to form a gate line, a comb-shaped first electrode, a wiring pad, and a comb-shaped second electrode by a first photo etching process, forming a first insulation layer and a first semi-conductive layer, patterning the first insulation layer and the first semi-conductive layer to form a channel, an insulation structure, a dielectric layer, and plural crossed-conductive line insulation structures by a second photo etching process, forming a second semi-conductive layer and a second conductive layer on the substrate, patterning the second semi-conductive layer and the second conductive layer to form a source/drain electrode, a data line, a connecting electrode, and a first electrode by a third photo etching process, and forming a passivation layer.
Abstract:
A CMOS process for double vertical channel thin film transistor (DVC TFT). This process fabricates a CMOS with a double vertical channel (DVC) structure and defines the channel without an additional mask. The DVC structure of the CMOS side steps the photolithography limitation because the deep-submicrometer-channel length is determined by the thickness of gate, thereby decreasing the channel length of the CMOS substantially.
Abstract:
A polarized light source device comprises a light source, a reflector, a transparent substrate, an antireflection layer, and a plurality of metal grid wires. The reflector surrounds the light source for reflecting the light, and has an opening for emitting the light. The transparent substrate is disposed at the opening. The antireflection layer is disposed on the transparent substrate. The metal grid wires are disposed on the antireflection layer for transmitting the light with a predetermined polarization therethrough.
Abstract:
An automated soldering system includes a robotic soldering machine and a plurality of feed lines for delivering workpieces to be soldered by the soldering machine. Each of the feed lines transports workpieces such as LCD modules from an input end to a soldering area, and from the soldering area to an outlet end. The soldering areas are arranged within the range of motion of a soldering arm of the soldering machine are preferably arranged in a bilateral triangle having the pivot axis of the soldering are at its apex. The soldering arm is programmed to work reciprocally among the soldering areas, thus increasing the yield of the robotic soldering machine so that the soldering machine is more cost effective. The soldering machine may be programmed to perform different soldering operations at different soldering areas.
Abstract:
A method for preventing a liquid from permeating into a cell for facilitating fabrication of a plurality of planels is provided. The method includes steps of providing a first substrate having a first exhaust area and a plurality of first portions of the planels, providing a second substrate having a second exhaust area and a plurality of second portions of the planels, printing a plurality of orienting films on the plurality of first and second portions of the planels, printing a plurality of thickening films respectively on the first and the second substrates for narrowing an intermediate distance of the first and second exhaust areas to prevent the liquid from permeating into the cell therethrough, coating a dummy seal around a periphery of the second substrate for preventing the liquid permeating into the cell, and assembling the first and the second substrates for forming the cell.