Abstract:
The present invention provides a conductive composition solution, comprising: an (A) conductive polymer, comprising: a Π-conjugated conductive polymer and a multivalent anionic polymer, wherein the multivalent anionic polymer is mixed with the Π-conjugated conductive polymer; a (B) alkoxy silane, having a weight percentage to the conductive composition solution in a range of 1-5.5 wt %; and a (C) solvent, comprising: a low-boiling-point solvent, having a boiling point in a range of 55-120° C.; a high-boiling-point solvent, having a boiling point in a range of 170-250° C., and being soluble in water; and water.
Abstract:
An electronic endoscope includes a distal end portion of an insertion portion which incorporates electronic components, a metal frame which holds an observation window, an earth member which is connected to a patient-side ground of an external device, and a static-protective member which is disposed in the distal end portion to have a predetermined clearance from the metal frame and is electrically connected to the earth member to let static electricity applied to the distal end portion flow to the earth member. With the configuration, the electronic endoscope prevents occurrence of trouble, a fault, and the like in an electronic component incorporated in the distal end portion due to applied static electricity.
Abstract:
The present invention relates to a double-sided conductive film having a relatively high transmittance, which can be widely applied in the field of manufacturing flat panel displays. The flexible transparent film is polyethylene terephthalate, the flexible transparent film is a flexible material having an index of refraction of 1.4 to 1.5; the hardened layer is a surface hardening treatment layer of the flexible transparent film, and is made by coating the upper and the lower surfaces of the flexible transparent film; the adhesive layer is sputtered on a surface of the hardened layer by magnetron sputtering, the main purpose of forming the adhesive is to make the hardened layer and the high refractive index dielectric layer bonded together more firmly; the high refractive index dielectric layer is made of a high refractive index material having a refractive index of 1.8 to 2.5; the low refractive index dielectric layer is made of a low refractive index material having a refractive index of 1.4 to 1.8.
Abstract:
An antireflective film is provided and includes: a transparent substrate; at least one conductive layer formed from a composition including at least one transparent conductive polymeric material and a compound forming a cross-liking site, the compound having a plurality of cross-linking reactive groups, at least one of which cross-links with the transparent conductive polymeric material; and at least one low refractive index layer.
Abstract:
The present invention provides a pattern formation substrate provided with a transparent substrate, a partition pattern formed on the transparent substrate in an approximately orthogonal grid shape, and a coloring pattern of plural colors, provided in an opening partitioned off with the partition pattern. The coloring pattern is formed in an approximately stripe shape in each of the colors, the partition pattern is composed of an X-direction partition pattern provided in an approximately orthogonal direction to a longitudinal direction of the stripe of the coloring pattern and a Y-direction partition pattern provided in an approximately parallel direction to the longitudinal direction of the stripe of the coloring pattern, and an average film thickness of the X-direction partition pattern is smaller than that of the Y-direction partition pattern.
Abstract:
An optical film includes a transparent support and at least one antistatic layer formed from a composition containing an electrically conductive polymer, a polyfunctional monomer having two or more polymerizable groups, at least one compound selected from a compound represented by the formula (1) as defined herein, a compound represented by the formula (2) as defined herein and a trivalent phosphorus compound, and a photopolymerization initiator.
Abstract:
A method for producing an optical article includes: forming a first layer that is light-transmissive on an optical substrate directly or with another layer in between; and reducing the resistance of at least a portion of a surface layer of the first layer by ion-assisted deposition of at least one composition selected from the group consisting of titanium, niobium, oxides of titanium, and oxides of niobium.
Abstract:
It is an object of the present invention to provide an improved optical layered body with reduced scintillation, gloss blackness, color effects and interference fringes, while maintaining antistatic and antiglare performance.The optical layered body comprises, in order, an antistatic layer, an antiglare layer and a low refractive index layer on a light-transmitting substrate, The antistatic layer is a thin resin layer containing antimony-doped tin oxide and a diffusion filler, and having a predetermined surface roughness on its surface.
Abstract:
A front filter for a plasma display that is mainly used as a TV display. The front filter has an anti-glare function which is capable of effectively preventing reflection concurrently with achieving black color reproduction, and a functional layer for imparting a function required of an image display device such as a light absorbing function and/or an adhesion function. This front filter has an anti-glare layer having a concavo-convex shape on an outermost surface thereof, a polyester film and a functional layer. The anti-glare layer is disposed on the observer-side surface of the front filter; at least one functional layer is disposed on the display device side.
Abstract:
A lens system includes a first lens and a second lens in order from the object side thereof. The first lens includes a first optical portion and a first mounting portion surrounding the first optical portion. The second lens includes a second optical portion with a convex object side surface, and a second mounting portion surrounding the second optical portion. The convex object side surface includes an optical surface at the center thereof and a first connecting surface surrounding the optical surface. The second mounting portion includes a second connecting surface surrounding the first connecting surface. Wherein the angle measured anti-clockwise from the first connecting surface to the axis of the lens system satisfies a certain condition.