Abstract:
A color imaging device comprises a semiconductor substrate (110) including a plurality of photoelectric transducers (112), and a color filter including a plurality of coloring layers (124,126) provided to associate with the plurality of photoelectric transducers of the semiconductor substrate. Each of the plurality of coloring layers of the color filter includes a side surface (124a,126a) that is perpendicularly erected with respect to a surface of the semiconductor substrate, and an inclined surface (124c,126c) that is continuous from an end of the side surface located in the opposite side of the semiconductor substrate toward an end portion (124b,126b) of the coloring layer located in the opposite side of the semiconductor substrate, and the plurality of coloring layers are arranged with their side surfaces being in contact with each other without a gap therebetween, wherein the end portion (124b,126b) of the coloring layer includes a flat surface crossing the inclined surface.
Abstract:
A multilayered conductive film (10) has a silver-based layer (11) formed of a silver-based metallic material. A first transparent oxide layer (12) is provided on one surface of the silver-based layer (11), and a second transparent oxide layer (13) is provided on the other surface of the silver-based layer (11). The first and second transparent oxide layers (12, 13) are independently formed of a compound oxide material of indium oxide with at least one secondary metal oxide whose metallic element has substantially no solid solubility in silver.
Abstract:
Disclosed is an electrochromic display device having an electrochromic layer and a solid proton conductive layer between a transparent electrode and a counter electrode. The main component of the solid proton conductive layer is a mixture of at least one of titanic acid, stannic acid, antimonic acid, zirconic acid, niobic acid, tantalic acid and silicic acid. The response time is shortened, the service life is prolonged, and printing may be adopted for formation of cells.
Abstract:
A multilayered conductive film (10) has a silver-based layer (11) formed of a silver-based metallic material. A first transparent oxide layer (12) is provided on one surface of the silver-based layer (11), and a second transparent oxide layer (13) is provided on the other surface of the silver-based layer (11). The first and second transparent oxide layers (12, 13) are independently formed of a compound oxide material of indium oxide with at least one secondary metal oxide whose metallic element has substantially no solid solubility in silver.
Abstract:
An electrode plate for a display device is here disclosed which is characterized in that a protective material (12) of elements constituting the electrode plate which is to be patterned comprises a novolak type epoxy resin into which a photosensitive group and a group to make the resin alkaline liquid-soluble are introduced. Furthermore, a method for the preparation of the electrode plate for the display device is also disclosed which comprises the step of patterning the novolak type epoxy resin by photolithography, and then polymerizing the patterned resin in order to form a protective material (12) of elements constituting the electrode plate. The protective material can be applied to a color filter coating layer on a color filter, a surface coating layer on a transparent electrode, and a solder dam in the electrode plate.
Abstract:
An electrode plate for a display device is here disclosed which is characterized in that a protective material (12) of elements constituting the electrode plate which is to be patterned comprises a novolak type epoxy resin into which a photosensitive group and a group to make the resin alkaline liquid-soluble are introduced. Furthermore, a method for the preparation of the electrode plate for the display device is also disclosed which comprises the step of patterning the novolak type epoxy resin by photolithography, and then polymerizing the patterned resin in order to form a protective material (12) of elements constituting the electrode plate. The protective material can be applied to a color filter coating layer on a color filter, a surface coating layer on a transparent electrode, and a solder dam in the electrode plate.