Abstract:
A color filter substrate and a liquid crystal display apparatus include, on a substrate: a colorized layer including color layers; a stacked layer protruding in comparison with the colorized layer; an opposing electrode covering the colorized layer and the stacked layer; an alignment layer formed at least on a part of the opposing electrode covering the colorized layer; and an insulating layer stacked on an entire surface of another part of the opposing electrode covering the stacked layer. With this, the short circuit between the opposing electrode and a pixel electrode is prevented, so that a color filter substrate, a liquid crystal display apparatus including the color filter substrate, and a method of manufacturing the color substrate, those being able to improve the yield of the liquid crystal display apparatus, are provided.
Abstract:
An active matrix substrate suppresses reduction in production yield and increase in production steps and simultaneously permits both sufficient securing of a storage capacity and improvement of an aperture ratio of a pixel. The active matrix substrate is an active matrix substrate and includes a thin film transistor disposed at an intersection of a scanning signal line with a data signal line on a substrate, the thin film transistor including a gate electrode connected to the scanning signal line, a source electrode connected to the data signal line, and a drain electrode connected to a drain lead-out wiring; a storage capacitor upper electrode connected to the drain lead-out wiring and a pixel electrode; and a storage capacitor wiring overlapping with the storage capacitor upper electrode through an insulating film, wherein the storage capacitor wiring has an extending portion overlapping with the drain lead-out wiring through the insulating film.
Abstract:
A color filter substrate according to the present invention includes a transparent substrate; at least three colors of colored layers provided on the transparent substrate; first columnar structure bodies 101 provided in pixel outskirts within a display region, the first columnar structure bodies 101 defining a cell gap; and second columnar structure bodies 102 provided in the pixel outskirts within the display region or outside the display region, the second columnar structure bodies having a smaller height than that of the first columnar structure bodies 101, such that a difference from the height of the first columnar structure bodies 101 exceeds a range of elastic deformation of the first columnar structure bodies 101.
Abstract:
A display device includes a color filter substrate having a flat upper surface. The color filter substrate of the display device includes a transparent substrate, a color filter layer provided on the transparent substrate and having a plurality of color filters arranged so that gaps are formed between the color filters, a light shielding layer having a plurality of light shielding portions disposed in the gaps between the plurality of color filters, and a light-transmitting resin layer having a plurality of light-transmitting resin portions respectively disposed on the plurality of first light shielding portions on the substrate side of the same. The upper surfaces of the plurality of first light shielding portions and the plurality of color filters form a substantially flat surface.
Abstract:
A color filter substrate is used in a display device including pixels arranged in columns and rows to define a matrix pattern. The color filter substrate includes a transparent substrate and coloring layers, including a first color filter layer, a second color filter layer and an light shielding layer, provided on the transparent substrate. The first and second color filter layers include a first color filter column and a second color filter column, respectively, each of which is arranged for an associated column of pixels. The light shielding layer includes an light shielding column, which is provided for a gap between two adjacent columns of pixels. In a gap between two pixels that are adjacent in a row direction, an intercolumnar overlap area, in which the light shielding column and at least one of the first and second color filter columns overlap each other, and an intercolumnar non-overlap area, in which the light shielding column is overlapped by neither the first nor the second color filter column, are defined, and the intercolumnar non-overlap area is defined so as to extend continuously in the row direction through the gap between the two adjacent pixels.
Abstract:
The fabrication method for a color filter substrate of the present invention includes the step of forming a coloring layer, which includes the steps of: forming first coloring lines each including a plurality of first coloring portions lined in a first direction with a gap given between the adjacent first coloring portions; and forming second coloring lines after the formation of the first coloring lines. The step of forming second coloring lines includes the step of pressing a dry film for the second coloring lines against a substrate to stick the dry film on the substrate along a third direction crossing the first direction.
Abstract:
An electric blower includes a motor unit having a stator and a rotor, a fan unit having an impeller attached to an output shaft of the rotor, and a circuit unit having a heat-generating component for controlling electric power to the motor unit. The circuit unit is arranged in an airflow path of air expelled from an outer periphery of the impeller toward the stator and the rotor of the motor unit. The air suctioned by rotation of the impeller cools the heat-generating component in the circuit unit before cooling the stator and the rotor.
Abstract:
A color filter substrate includes: a base substrate; a light-shield layer and a color filter layer provided on the base substrate; a plurality of columnar spacers, made of a resin and provided to stick out of the base substrate; and an undercoat layer, provided between the columnar spacers and the base substrate. The color filter layer includes first, second, and third types of color filters, which transmit light rays in mutually different colors. The undercoat layer is made of the same film as one of the first, second and third types of color filters and the light-shield layer. A portion of the undercoat layer, associated with a first one of the columnar spacers, has a different area and/or shape from another portion of the undercoat layer, associated with a second one of the columnar spacers. The first and second columnar spacers have mutually different heights.
Abstract:
A substrate for a liquid crystal display panel includes a first projection structure and a second projection structure and/or a depression structure, the substrate for the liquid crystal display panel includes a specific structure at a part of or near the first projection structure, the specific structure having at least one of a planar shape different from a planar shape of the second projection structure and/or the depression structure and a planar area of ⅔ times or less or 1.5 times or more than a planar area of the second projection structure and/or the depression structure.
Abstract:
An electric blower includes an electric motor including a stator and a rotor. The impeller is rotated by the electric motor. An air guide having a plurality of guide blades is disposed around the impeller, and a casing encloses the impeller and the air guide. The casing is provided with a number of exhaust openings through which a part of an air stream suctioned by the impeller is discharged, and a circumferential length of each of the exhaust openings is substantially identical to a circumferential distance between outer peripheral ends of adjacent guide blades. Alternatively, the circumferential length of each of the exhaust openings may be less or greater than the circumferential distance between outer peripheral ends of adjacent guide blades.