Abstract:
PROBLEM TO BE SOLVED: To provide the subject paper with the antioffset properties for preventing the transfer of a dye accepted on a dye acceptive layer to a back coat layer by providing the back coat layer with a polystyrene resin. SOLUTION: A synthetic paper is provided as a sheet-shaped base 2, on the surface of which a dye acceptive layer forming a coating material of the composition of a polyester resin of approximately 100 pts.wt., methyl ethyl ketone of approximately 100 pts.wt. and toluene of approximately 300 pts.wt. for forming the dry film thickness of approximately 10μm is applied and dried at approximately 120 deg.C for approximately two minutes. Then a back coat 4 forming a coating material of the composition of the polystyrene resin of approximately 100 pts.wt., polyisocyanate of approximately 50 pts.wt., conductive titanium oxide of approximately 100 pts.wt. and methyl ethyl ketone of approximately 400 pts.wt. is manufactured, and the coating material is applied on the face opposite to the face on the dye acceptive layer 3 of the sheet-shaped base 2 so that the dry film thickness is formed as approximately 1μm, and cured at approximately 50 deg.C for two days to manufacture a thermal transfer photographic paper 1.
Abstract:
PROBLEM TO BE SOLVED: To provide a thermal transfer printing paper which keeps set-off suppressing properties and having good running properties. SOLUTION: A back coat layer 4 of a thermal transfer printing paper 1 contains a conductive inorg. filler with a particle size of 0.1-3μm. In a desired example mode, the material quality of a conductive inorg. filler is at least one of calcium carbonate, titanium oxide, tin oxide, zinc oxide, silicon oxide, zinc sulfide and barium sulfide to which conductive treatment is applied and the wt. ratio. of the conductive inorg. filler to the binder resin constituting the back coat layer 4 is set to 0.5-3 to provide thermal transfer printing paper keeping the strike-through suppressing properties of the back coat layer and having good running properties.
Abstract:
PURPOSE: To form a back coat layer on a thermal transfer photographic paper not causing a failure of overlapped feeding, suppressing the offset of dyes, having a good water proofing property as well as a strong adhesiveness to the base material, in addition, with reduced likelihood of fusing with an ink ribbon even when an erroneous feeding is carried out into the printer so that print is conducted in a reversed condition of the photographic paper in its front and back surface. CONSTITUTION: The thermal transfer photographic paper 1 includes a dyes reservoir layer 3 on one surface of a sheet base material 2 and a back coat layer 4 on the other surface, wherein the back coat layer 4 is formed of a cross-linking reaction substance obtained by cross-linking polyvinyl acetal having an acetalization degree of 50% or more with a multi-functional isocyanate compound.
Abstract:
PURPOSE:To produce a magnetic recording medium having improved Bm and Rs and high dispersibility and dilutivity by diluting and kneading a magnetic paint component using a specific kneading apparatus. CONSTITUTION:A magnetic paint component 16 is thrown into a continuous kneader 10 through a charging port 14 and continuously kneaded to sufficiently compacting the component in a state of high solid concentration to obtain a kneaded material having a solid concentration of 78-90%. The product is kneaded batchwise with a batch kneader 20 while diluting with a solvent 29 (e.g. ether or ester) supplied from a solvent tank 21 to obtain a magnetic paint of the diluted mixture having a solid concentration of 50-70%. The objective medium is produced by using the magnetic paint.
Abstract:
PROBLEM TO BE SOLVED: To provide a display apparatus that is able to improve image quality.SOLUTION: A display device comprises: a display section having a plurality of display pixels including a first sub-pixel, a second sub-pixel, and a third sub-pixel, all of which emit basic color light, and a fourth sub-pixel that emits color light other than the basic color light; and a processing section configured to obtain a plurality of pieces of first brightness information corresponding to a plurality of fourth sub-pixels included in a pixel area to which a target pixel among the plurality of display pixels belongs, and second brightness information corresponding to the fourth sub-pixel of the target pixel based on the relative position of the first and fourth sub-pixels among the display pixels, and to substitute the second brightness information for the first brightness information corresponding to the fourth sub-pixel of the target pixel.
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing apparatus and method that are able to output a stereoscopic image capable of being three-dimensionally displayed in any one of cases of horizontally and vertically holding a twin-lens camera for photographing.SOLUTION: The image processing apparatus comprises: an image input unit that receives a right eye image and a left eye image which have been photographed at different viewpoints as an input image; and a photographing angle determining unit that outputs a control signal according to the angle of a camera when it photographs the images as inputs. When the control signal represents a horizontally photographed image obtained in horizontal photographing by a twin-lens camera, the right eye image and the left eye image are output as the input image. When the control signal indicates a vertically photographed image obtained in vertically photographing by the twin-lens camera, any one of the right eye image and the left eye image is input to a stereoscopic image generating processor, and the stereoscopic image generating processor outputs a right eye image and a left eye image that are generated by two-dimensional-and-three-dimensional conversion processing based on a single image.
Abstract:
PROBLEM TO BE SOLVED: To form an image for three-dimensional image display by obtaining a plurality of viewpoint images on the basis of one captured image.SOLUTION: An image processing apparatus includes: an imaging sensor for capturing a plurality of viewpoint images corresponding to observation images viewed from different view points; and an image processing section for separating an output signal of the imaging sensor to obtain the plurality of viewpoint images corresponding to the observation images viewed from the different view points to form a left-eye image and a right-eye image for three-dimensional image display on the basis of the plurality of obtained viewpoint images. The image processing section forms parallax information on the basis of the plurality of viewpoint images obtained from the imaging sensor, to form the left-eye image and the right-eye image for the three-dimensional image display by 2D/3D conversion processing using the formed parallax information.
Abstract:
PROBLEM TO BE SOLVED: To provide a display device capable of displaying a better stereoscopic video.SOLUTION: A display device includes: a display part that includes respective plural display pixels of plural colors with different brightness from each other, has display pixels of plural colors cyclically arranged in a given sequence in a first direction, and display pixels of the same color arranged in a second direction different from the first direction, and displays plural parallax images; and a separation element that has plural parallax separation parts extending in a third direction different from both the first and second directions and separates the plural parallax images in plural viewpoint directions. Further, the following two expressions (1) and (2) are satisfied: Nx=2*Npix+Yo/(2*S)...(1); S=Nsy/Nsx...(2)
Abstract:
PROBLEM TO BE SOLVED: To provide a display device capable of displaying a better stereoscopic video.SOLUTION: A display device includes: a display part that includes respective plural display pixels of first through fourth colors, has a first pixel column and a second pixel column alternately arranged in a second direction different from a first direction, and displays plural parallax images, with the first pixel column having the display pixels of the first and second colors being alternately arranged in the first direction, and the second pixel column having the display pixels of the third and fourth colors being alternately arranged in the first direction; and a separation element that has plural parallax separation parts extending in a third direction different from both the first and second directions and separates the plural parallax images in plural viewpoint directions. Further, the following two expressions (1) and (2) are satisfied: Nx=Npix+Yo/(2×S)...(1); S=Nsy/Nsx...(2).
Abstract translation:要解决的问题:提供能够显示更好的立体视频的显示装置。 解决方案:显示装置包括:显示部分,其包括相应的第一至第四颜色的多个显示像素,具有沿与第一方向不同的第二方向交替布置的第一像素列和第二像素列,并且显示多个 具有第一和第二颜色的显示像素的第一像素列在第一方向上交替布置,并且具有第三和第四颜色的显示像素的第二像素列沿第一方向交替排列; 以及分离元件,其具有沿与第一和第二方向不同的第三方向延伸的多个视差分离部,并且在多个视点方向上分离多个视差图像。 此外,满足以下两个表达式(1)和(2):Nx = Npix + Yo /(2×S)...(1); S = NSY / NSX ...(2)。 版权所有(C)2013,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To suppress occurence of, at the time of following and viewing a moving image with a high speed motion, deviation of a stereoscopic fusion position in simultaneous viewing.SOLUTION: A 3D signal processing part 114 sequentially generates a pair of a left-eye image signal SL and a right-eye image signal SR for displaying a left-eye image and a right-eye image of a same time having a parallax. A luminance correction part 115 corrects a luminance value of both of or either one of the left-eye image signal SL and the right-eye image signal SR obtained in the 3D signal processing part 114 so that in the brightness of the left-eye image and the right-eye image displayed on an image display part in each pair of continuous first term and second term, the brightness of the left-eye image becomes lower than the brightness of the right-eye image. On the basis of Pulfrich effect, a perception time of the left-eye image displayed first on the time base becomes slower than a perception time of the right-eye image displayed later on the time base. Therefore, it is possible to suppress occurence of, at the time of following and viewing, deviation of a stereoscopic fusion position in simultaneous viewing so as to allow a viewer to perceive a good stereoscopic image.