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    • 5. 发明授权
    • Laminated glass
    • 层压玻璃
    • US07517583B2
    • 2009-04-14
    • US10572321
    • 2004-09-15
    • Tadashi OnishiIsao NakamuraChiharu Takimoto
    • Tadashi OnishiIsao NakamuraChiharu Takimoto
    • B32B5/16B32B17/10
    • B32B17/10036B32B17/10174B32B17/1055B32B17/10788Y10T428/24942Y10T428/256Y10T428/257Y10T428/259Y10T428/31627Y10T428/3163
    • The present invention relates to a laminated glass having an interlayer film between at least two transparent glass platy bodies. Functional ultra-fine particles of a particle diameter of not greater than 0.2 μm are dispersed in the interlayer film. The functional ultra-fine particles comprise a single substance of metal, oxide, nitride, sulfide or Sb- or F-doped substance of Sn, Ti, Si, Zn, Zr, Fe, Al, Cr, Co, Ce, In, Ni, Ag, Cu, Pt, Mn, Ta, W, V and Mo, or a composite selected from at least two of these, or a mixture containing an organic resin substance in the single substance or composite, or a coated substance coated with the single substance or composite, or an antimony-doped tin oxide and/or tin-doped indium oxide. An infrared-reflective film that selectively reflects a near-infrared ray and has a sheet resistivity ranging from 1 kΩ/□ to 10 GΩ/□ is formed on at least one surface of the interlayer film or at least one transparent glass platy body.
    • 本发明涉及在至少两个透明玻璃板状体之间具有中间膜的夹层玻璃。 粒径不大于0.2μm的功能性超细颗粒分散在层间膜中。 功能性超细颗粒包括Sn,Ti,Si,Zn,Zr,Fe,Al,Cr,Co,Ce,In,Ni中的单一物质的金属,氧化物,氮化物,硫化物或Sb或F掺杂物质 ,Ag,Cu,Pt,Mn,Ta,W,V和Mo,或选自这些中的至少两种的复合材料,或在单一或复合材料中含有有机树脂物质的混合物或涂覆有 单体或复合材料,或掺杂锑的氧化锡和/或锡掺杂的氧化铟。 在中间膜或至少一个透明玻璃板状体的至少一个表面上形成选择性地反射近红外线并且具有1kOmega /□至10Gegaga的□电阻率的红外线反射膜。
    • 6. 发明申请
    • Laminated glass
    • 层压玻璃
    • US20070026210A1
    • 2007-02-01
    • US10572321
    • 2004-09-15
    • Tadashi OnishiIsao NakamuraChiharu Takimoto
    • Tadashi OnishiIsao NakamuraChiharu Takimoto
    • B32B17/06B32B27/20
    • B32B17/10036B32B17/10174B32B17/1055B32B17/10788Y10T428/24942Y10T428/256Y10T428/257Y10T428/259Y10T428/31627Y10T428/3163
    • The present invention relates to a laminated glass having an interlayer film between at least two transparent glass platy bodies. Functional ultra-fine particles of a particle diameter of not greater than 0.2 μm are dispersed in the interlayer film. The functional ultra-fine particles comprise a single substance of metal, oxide, nitride, sulfide or Sb— or F-doped substance of Sn, Ti, Si, Zn, Zr, Fe, Al, Cr, Co, Ce, In, Ni, Ag, Cu, Pt, Mn, Ta, W, V and Mo, or a composite selected from at least two of these, or a mixture containing an organic resin substance in the single substance or composite, or a coated substance coated with the single substance or composite, or an antimony-doped tin oxide and/or tin-doped indium oxide. An infrared-reflective film that selectively reflects a near-infrared ray and has a sheet resistivity ranging from 1 kΩ/□ to 10 GΩ/□ is formed on at least one surface of the interlayer film or at least one transparent glass platy body.
    • 本发明涉及在至少两个透明玻璃板状体之间具有中间膜的夹层玻璃。 粒径不大于0.2μm的功能性超细颗粒分散在层间膜中。 功能性超细颗粒包括Sn,Ti,Si,Zn,Zr,Fe,Al,Cr,Co,Ce,In,Ni中的单一物质的金属,氧化物,氮化物,硫化物或Sb或F掺杂物质 ,Ag,Cu,Pt,Mn,Ta,W,V和Mo,或选自这些中的至少两种的复合物,或单体或复合物中含有有机树脂物质的混合物或涂覆有 单体或复合材料,或掺杂锑的氧化锡和/或锡掺杂的氧化铟。 在中间膜或至少一个透明玻璃板状体的至少一个表面上形成选择性地反射近红外线并且具有1kOmega /□至10Gegaga的□电阻率的红外线反射膜。
    • 9. 发明授权
    • Attraction state inspection device, surface mounting apparatus, and part test device
    • 吸引状态检查装置,表面安装装置和部件测试装置
    • US08634079B2
    • 2014-01-21
    • US13468420
    • 2012-05-10
    • Tadashi Onishi
    • Tadashi Onishi
    • G01N21/47
    • H05K13/0452H05K13/041H05K13/0812
    • An attraction state inspection device includes a diffusion member that is disposed inside a nozzle group in which a plurality of nozzles that attract parts are disposed, and transmits incident light while diffusing the light, an image pickup is disposed on a side of the nozzle group apart from the diffusion member in a first direction, picks up an image of a part attracted by one nozzle positioned in the first direction with respect to the diffusion member, from among the plurality of nozzles, against a background of the diffusion member, and obtains an image of the part, an irradiation unit that is disposed opposite the image pickup unit with the diffusion member interposed therebetween, and radiates light toward the nozzle group, and an inspection unit that inspects an attraction state of the part on the basis of the image of the picked up part.
    • 吸引状态检查装置包括扩散部件,其设置在喷嘴组内,吸嘴部分的多个喷嘴配置在喷嘴组内,并且在散射光的同时透射入射光,图像拾取器设置在喷嘴组分开的一侧 从扩散构件沿第一方向从多个喷嘴中相对于扩散构件在与第一方向相对的第一方向上吸引的部分相对于扩散构件的背景拾取图像,并且获得 图像,照射单元,其设置在与摄像单元相对的扩散构件插入其间并且朝向喷嘴组发射光;以及检查单元,其基于图像的图像检查该部分的吸引状态 拾起的部分。
    • 10. 发明申请
    • ELECTRON GUN
    • 电子枪
    • US20120062094A1
    • 2012-03-15
    • US13322025
    • 2010-04-14
    • Mikio IchihashiTadashi OnishiShunichi WatanabeKeiji Tamura
    • Mikio IchihashiTadashi OnishiShunichi WatanabeKeiji Tamura
    • H01J29/48H01J29/00
    • H01J37/063H01J37/073H01J37/141H01J2237/06316H01J2237/06341H01J2237/065H01J2237/26
    • The present invention has an object to provide a cold cathode field-emission electron gun with low aberration, to thereby provide a high-brightness electron gun even in the case of a large current. The present invention provides a field-emission electron gun which extracts an electron beam from a cathode and converges the extracted electron beam, the field-emission electron gun including: a magnetic field lens which is provided such that the cathode is disposed inside of a magnetic field of the lens; and an extraction electrode for extracting electrons from the cathode, the extraction electrode being formed into a cylindrical shape without an aperture structure. The present invention can provide an electron gun having a function of converging an electron beam using a magnetic field, the electron gun which is capable of reducing an incidental electrostatic lens action and has small aberration and high brightness.
    • 本发明的目的是提供一种具有低像差的冷阴极场致发射电子枪,从而即使在大电流的情况下也提供高亮度电子枪。 本发明提供一种场致发射电子枪,其从阴极提取电子束并使所提取的电子束会聚,该场发射电子枪包括:磁场透镜,其被设置为使得阴极设置在磁性 镜头领域; 以及用于从阴极提取电子的引出电极,所述引出电极形成为没有孔结构的圆筒形状。 本发明可以提供一种电子枪,其具有使用磁场会聚电子束的功能,该电子枪能够减少偶然的静电透镜作用并且具有小的像差和高亮度。