摘要:
To brighten a screen of a liquid crystal display device in the case of reflection type display and increase the planarity of a color filter substrate surface to improve a display quality. The liquid crystal display device according to the present invention includes a reflective film formed between a colored layer of a color filter and a liquid crystal layer to thereby prevent an incident light in the case of reflection type display from passing through the colored layer. A color display is available in the case of transmission type display, and a black-and-white display is available in the case of reflection type display; an image formed with light not passing through the colored layer is viewed in the case of reflection type display to thereby ensure a brightness in the case of reflection type display. In addition, the reflective film can be formed to be thin and therefore the planarity of the color filter substrate surface can be improved.
摘要:
To provide a semi-transmissive type color liquid crystal display device that is capable of realizing high color reproducibility as well as increase in reflection brightness upon light transmission and upon light reflection. In display pixel elements of a color filter substrate used in the semi-transmissive type color liquid crystal display device, a color filter layer formed on a reflection part is thin and a color filter layer formed on a transmission part is thick, and a thickness of a metallic reflective film formed on the reflection part is set to 0.2 μm or more. Further, the color layer filter at the transmission part and the color layer filter at the reflection part are formed at the same time, and a continuous color filter layer is obtained.
摘要:
A reflective liquid crystal display device comprises a transparent first substrate having formed thereon a transparent electrode, a first filter having a first color, and a second filte having a second color. A second substrate is disposed opposite and spaced-apart from the first substrate. A reflection layer is disposed on the second substrate. A polymer dispersed liquid crystal layer is disposed between the transparent electrode and the reflection layer and is formed by exposure to an ultraviolet ray in a preselected wavelength range. A ratio of a transmissivity of the first filter for the ultraviolet ray to a transmissivity of the second filter for the ultraviolet ray is 3.0 or less.
摘要:
A color electrooptical device is disclosed wherein an active matrix substrate and a color filter substrate face each other and are disposed spaced apart a predetermined distance. A plurality of color filters are formed on the color filter substrate. A protection film is formed on the color filter substrate and on the color filters. The protection film is capable of adhering to the color filters and to a transparent conductive film. The transparent conductive film is formed on the protection film. A metal film is formed on the transparent conductive film which is effective for decreasing the resistivity of the transparent conductive film. A liquid crystal is sealed between the active matrix substrate and the color filter substrate and a plurality of switching elements are formed on the active matrix substrate. The metal film comprises a light blocking chromium film etched into a grid shape. The color filters are formed by electrodeposition onto a previously formed ITO film formed in a striped pattern on the color filter substrate.
摘要:
A liquid crystal display device has a wiring electrode and an independent gap electrode without wiring formed on a substrate, and an insulating film formed on the wiring and gap electrodes. A first display electrode, an outer second display electrode, and an inner second display electrode are formed on the insulating film and are electrically connected to the wiring electrode or the gap electrode via respective contact regions provided in the insulating film. The first display electrode overlaps with an edge portion of the gap electrode through intermediation of the insulating film. The outer second display electrode and the inner second display electrode each overlap with another edge portion of the gap electrode through intermediation of the insulating film. By such a construction, the wiring electrode is prevented from being visible or from having portions thereof being half-lit.
摘要:
A conductivity measuring apparatus includes a probe base having a pair of electrodes disposed on respective opposite surfaces of a portion of the probe base. Observing and grasping probes are supported by the probe base in a cantilever state and are arranged adjancent to and spaced apart from one another by a predetermined distance. The grasping probe has a pair of electrodes disposed on respective opposite surfaces of a portion of the grasping probe confronting the portion of the probe base. A voltage apparatus applies a voltage between the pairs of electrodes on the probe base and the grasping probe to adjust the predetermined distance between the grasping and observing probes. A movement mechanism moves a sample base and the observing and grasping probes relative to each other to bring conductive tips of the observing and grasping probes into contact with respective contact points on a sample supported on the sample base. A measurement apparatus measures a conductivity between the contact points on the sample on the basis of a current flow generated between the conductive tips of the observing and grasping probes.
摘要:
Provided is a color filter substrate in which satisfactory planarity at any portion on a black matrix is materialized. In a color filter substrate used in the present invention, a planarizing layer is formed so as to cover a light shielding layer (12) having a black matrix (41) and colored layers. The colored layers are partitioned into shapes corresponding to the shape of the black matrix (41), edges of the respective partitioned colored layers (16R, 16G, and 16B) overlap the light shielding layer (12), the edges have spaced portions (43) formed therebetween so that the edges are distance from each other, and the planarizing layer is formed over the light shielding layer (12) so as to fill the spaced portions (43).
摘要:
The quality of a simple matrix type liquid crystal display device is improved. Thus, in a liquid crystal display device in the present invention, in the case of multi-screen drive with divided signal electrodes, wiring electrodes are formed on a first electrode on which plural signal electrodes are formed, and an insulating layer is formed on portions except connecting regions on the wiring electrodes. Further, the wiring electrodes and the signal electrodes are electrically connected with each other in the connecting regions in which the insulating layer is not formed.
摘要:
The present invention discloses color pattern manufacturing method comprising the steps of forming a conductive film having an arbitrary pattern on a substrate, forming a colored layer on the conductive film by electrodeposition, and forming a method film having an arbitrary pattern on the colored layer to shield undesirable light transmittance through between the arbitrary patterns of the colored layer, so that the color filter having high quality is made by remarkably simple process.
摘要:
To prevent a wiring electrode from being visible or prevent a part of the wiring electrode from being half-lit, a wiring electrode (4) and an independent gap electrode (5) without wiring are formed, an insulating film (6) is formed thereon, and a display electrode (7), an outer second display electrode (8a), and an inner second display electrode (8b) are formed thereon. The display electrode (7), the outer second display electrode (8a), and the inner second display electrode (8b) are electrically connected to the wiring electrode (4) or the gap electrode (5) via respective contact regions provided in the insulating film (6). The display electrode (7) is formed so as to overlap with an edge portion of the gap electrode (5) through intermediation of the insulating film (6). Further, the outer second display electrode (8a) and the inner second display electrode (8b) are each formed so as to overlap with another edge portion of the gap electrode (5) through intermediation of the insulating film (6).