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    • 1. 发明专利
    • Inflator filter for air bag
    • JP2004034843A
    • 2004-02-05
    • JP2002195529
    • 2002-07-04
    • Masato Imai今井 正人
    • IMAI MASATO
    • B60R21/26B60R21/264
    • PROBLEM TO BE SOLVED: To mass-produce small diameter inflator filters for swelling an air bag at the time of collision of a vehicle or the like with good quality. SOLUTION: In an inflator filter for an air bag installed on an inflator for swelling the air bag for the vehicle and having a swelling medium pass therethrough, a screen 5 is formed on a periphery surface of a cylindrical filter fitting 6 of a designated diameter of the inflator filter 1 by cutting and opening a rectangular flow out hole 7 for inserting a swelling medium integrally in a designated mesh shape. The Screen 5 of a designated mesh shape can be integrally formed by carving tap screw 11 of a designated pitch on an inner peripheral surface side or outer peripheral surface side of the filter fitting 6 and cutting spline shape recess and projection grooves 12 of a designated pitch on the outer peripheral surface side or the inner peripheral surface side perpendicularly to the tap screw 11. COPYRIGHT: (C)2004,JPO
    • 3. 发明授权
    • Stereoscopic image displaying apparatus
    • 立体图像显示装置
    • US08441584B2
    • 2013-05-14
    • US12854344
    • 2010-08-11
    • Tsuyoshi OhyamaMasato ImaiTsutomu Tanaka
    • Tsuyoshi OhyamaMasato ImaiTsutomu Tanaka
    • G02F1/1343G02F1/1335G02B27/22
    • G02B27/2214G02F1/134309H04N13/315H04N13/317H04N13/356
    • A stereoscopic image displaying apparatus is provided. The stereoscopic image displaying apparatus, including: an image generation section having a plurality of pixels for a plurality of colors arranged in a two-dimensional matrix and adapted to drive the pixels for the colors to generate a color image; and a parallax applying section adapted to apply a parallax to the image to allow color display of a three-dimensional image and capable of changing over a parallax direction between a first direction of the color image and a second direction perpendicular to the first direction. The parallax applying section has a first parallel state and a second parallel state. The image generation section and the parallax application section are configured so that the rates of the colors at the pixels for the colors corresponding to light transmission regions between adjacent ones of the parallax barrier regions are uniform or got closer in both of the parallel states.
    • 提供立体图像显示装置。 所述立体图像显示装置包括:图像生成部,具有以二维矩阵排列的多种颜色的多个像素,适于驱动所述颜色的像素,生成彩色图像; 以及视差施加部,其适于对所述图像施加视差,以允许三维图像的彩色显示,并且能够在所述彩色图像的第一方向和垂直于所述第一方向的第二方向之间的视差方向上变化。 视差施加部具有第一平行状态和第二平行状态。 图像生成部和视差施加部被配置为使得与相邻的视差屏障区域中的光透射区域对应的颜色的像素的颜色的速率在两个并行状态下均匀或更接近。
    • 8. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US06721024B1
    • 2004-04-13
    • US09612389
    • 2000-07-07
    • Katsuhiko KishimotoToshihisa UchidaMasato Imai
    • Katsuhiko KishimotoToshihisa UchidaMasato Imai
    • G02F113
    • G02F1/133707G02F1/133753G02F1/1397G02F2001/133374G02F2001/133757
    • The liquid crystal display device of the present invention includes a first substrate, a second substrate, and a liquid crystal layer sandwiched by the first and second substrates. The first substrate includes polymer walls made of a transparent resin, the liquid crystal layer has a plurality of liquid crystal regions separated from one another by the polymer walls, and liquid crystal molecules in the plurality of liquid crystal regions are aligned axially symmetrically with respect to respective axes formed in the plurality of liquid crystal regions, the axes being vertical to a surface of the first substrate, and liquid crystal molecules above the polymer walls are aligned axially symmetrically with respect to respective axes formed on the polymer walls, the axes being vertical to the surface of the first substrate.
    • 本发明的液晶显示装置包括第一基板,第二基板以及被第一基板和第二基板夹持的液晶层。 第一基板包括由透明树脂制成的聚合物壁,液晶层具有通过聚合物壁彼此分离的多个液晶区域,并且多个液晶区域中的液晶分子相对于 形成在多个液晶区域中的各轴,该轴垂直于第一基板的表面,并且聚合物壁上方的液晶分子相对于形成在聚合物壁上的相应轴线轴对称地排列,轴是垂直的 到第一基板的表面。
    • 9. 发明授权
    • Method of manufacturing semiconductor wafer
    • 制造半导体晶片的方法
    • US06323140B1
    • 2001-11-27
    • US09646718
    • 2001-02-26
    • Masanori MayusumiMasato ImaiKazutoshi InoueShinji Nakahara
    • Masanori MayusumiMasato ImaiKazutoshi InoueShinji Nakahara
    • H01L2131
    • C30B29/06C30B25/02H01L21/02488H01L21/02532H01L21/0262Y10S438/906
    • Disclosed is a method for manufacturing a semiconductor wafer having an epitxial layer on a surface thereof, by the steps of forming a pritective oxide film on a surface of a semiconductor wafer prior to loading of the wafer into an eptaxial growth furnace, removing the protective oxide film formed on the surface of the wafer by heating after the wafer is loaded in the furnace, and performing epitaxial growth of the epitaxial layer on the surface from which the protective oxide film is removed in the furnace. The protective oxide film is removed by heating the wafer in the furnace in an ambience of hydrogen gas at a pressure ranging from 0.0133×105 Pa to 1.013×105 Pa and at a temperature ranging from 800° C. to 1,000 ° C., or by heating the wafer in the furnace at a pressure of 5×106 Pa or under and at a temperature ranging from 800° C. to 1,000° C.
    • 本发明公开了一种在其表面上具有外延层的半导体晶片的制造方法,其特征在于,在将晶片装入轴向生长炉之前,在半导体晶片的表面形成保护性氧化膜,除去保护氧化物 在晶片装载到炉中之后通过加热在晶片的表面上形成的膜,并且在炉中除去保护性氧化物膜的表面上进行外延层的外延生长。 通过在氢气气氛中在0.0133×10 5 Pa〜1.013×10 5 Pa的压力范围内,在800〜1000℃的温度范围内加热炉内的晶片,或者通过加热来除去保护性氧化膜 炉中的晶片在5×10 6 Pa的压力下或在800℃至1000℃的温度下。