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    • 1. 发明授权
    • Electromagnetic-wave shielding and light transmitting plate and panel laminated plate
    • 电磁波屏蔽和透光板和面板层压板
    • US06469440B1
    • 2002-10-22
    • US09576382
    • 2000-05-22
    • Shinji SaitoShingo OnoMasato SugimachiMasato Yoshikawa
    • Shinji SaitoShingo OnoMasato SugimachiMasato Yoshikawa
    • H01J1716
    • H05K9/0096H01J11/44H01J2211/446
    • An electromagnetic-wave shielding and light transmitting plate is formed by two transparent base plates, a conductive mesh member, and a near infrared ray blocking film, wherein the conductive mesh member and the near infrared ray blocking film are interposed between the transparent base plates and are integrally bonded together. A panel laminated plate is formed by a transparent base plate, a PDP body, a conductive mesh member, and a near infrared ray blocking film, wherein the conductive mesh member and the near infrared ray blocking film are interposed between the transparent base plate and the PDP body and are integrally bonded together. Either in the above electromagnetic-wave shielding and light transmitting plate or in the panel laminated plate, the near infrared ray blocking film is a combination of two or more of near infrared ray blocking layers.
    • 电磁波屏蔽和透光板由两个透明基板,导电网状构件和近红外线阻挡膜形成,其中导电网状构件和近红外线阻挡膜夹在透明基板和 整体结合在一起。 面板层压板由透明基板,PDP体,导电网状构件和近红外线阻挡膜形成,其中导电网状构件和近红外线阻挡膜介于透明基板和近红外线阻挡膜之间, PDP体并且一体地结合在一起。 在上述电磁波屏蔽和透光板或面板层压板中,近红外线阻挡膜是两个或更多个近红外线阻挡层的组合。
    • 7. 发明授权
    • Computer system
    • 电脑系统
    • US5883820A
    • 1999-03-16
    • US870701
    • 1997-06-06
    • Hiroichi OtaShingo Ono
    • Hiroichi OtaShingo Ono
    • G06F15/02G06F1/16
    • G06F1/1628
    • In a computer system comprising a portable computer 100 of a substantially rectangular shape having at least a first side portion 101 and a second side portion 102 and peripheral apparatuses 200 and 300 connectable thereto, the area of the portable computer is at least 182.times.257 mm or less and 140.times.216 mm or more, and among the peripheral apparatuses, the first peripheral apparatus 200 is attached to the first side portion 101 of the portable computer 100 while the second peripheral apparatus 300 is attached to the second side portion 102 of the portable computer 100, and outer dimensions A and B of the computer system, to the side portions of which the peripheral apparatuses 200 and 300 are attached, are approximately equal to those of American letter size paper, whereby the computer system and documents of American letter size can be stored side-by-side in an American letter size carrying case.
    • 在包括具有至少第一侧部101和第二侧部102以及可连接到其的外围设备200和300的基本为矩形形状的便携式计算机100的计算机系统中,便携式计算机的面积至少为182×257mm或更小 140x216mm以上,在周边设备中,第一周边设备200安装在便携式计算机100的第一侧部分101上,而第二周边设备300安装在便携式计算机100的第二侧部分102上, 并且计算机系统的外部尺寸A和B与其外围设备200和300所附接的侧面大致相等于美国信纸尺寸的纸张,由此可以存储计算机系统和美国信件尺寸的文件 并排在美国信件大小的手提箱。
    • 8. 发明申请
    • ULTRAVIOLET LIGHT RECEIVING ELEMENT AND METHOD FOR MEASURING DOSE OF ULTRAVIOLET RADIATION
    • ULTRAVIOLET光接收元件和测量超紫外线辐射剂量的方法
    • US20110122400A1
    • 2011-05-26
    • US13054763
    • 2009-07-29
    • Shingo OnoNoriaki KawaguchiKentaro FukudaToshihisa Suyama
    • Shingo OnoNoriaki KawaguchiKentaro FukudaToshihisa Suyama
    • G01N21/33
    • H01L31/09G01J1/429H01L31/032
    • [Problems to be Solved] To provide a novel ultraviolet light receiving element which is selectively sensitive to ultraviolet radiation, and a method for measuring the dose of ultraviolet radiation using the ultraviolet light receiving element.[Means to Solve the Problems] An ultraviolet detecting layer composed of a thin film of a metal fluoride, such as cerium fluoride, lithium fluoride, magnesium fluoride or calcium fluoride, is formed on a substrate of silica glass, sapphire or the like. Further, at least a pair of an anode and a cathode are formed on the ultraviolet detecting layer to prepare an ultraviolet light receiving element. This ultraviolet light receiving element changes in electric resistivity in accordance with the dose of incident ultraviolet radiation. Thus, the dose of ultraviolet radiation can be measured by taking out and measuring the change as an electric signal.
    • [待解决的问题]提供对紫外线照射选择敏感的新颖的紫外线光接收元件以及使用紫外光接收元件测量紫外线辐射剂量的方法。 解决问题的方法在二氧化硅玻璃,蓝宝石等的基板上形成紫外线检测层,该层由金属氟化物如氟化铈,氟化锂,氟化镁,氟化钙等薄膜构成。 此外,在紫外线检测层上形成至少一对阳极和阴极,以制备紫外光接收元件。 该紫外光接收元件根据入射紫外线辐射的剂量而改变电阻率。 因此,可以通过取出并测量作为电信号的变化来测量紫外线辐射的剂量。