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    • 31. 发明申请
    • Nonlinear optical materials comprising fluorine-containing polymer
    • 包含含氟聚合物的非线性光学材料
    • US20050004253A1
    • 2005-01-06
    • US10704829
    • 2003-11-12
    • Takayuki ArakiYoshito TanakaMihoko OhashiYuzo Komatsu
    • Takayuki ArakiYoshito TanakaMihoko OhashiYuzo Komatsu
    • G02F1/361C08F2/46
    • G02F1/3615G02F1/3616G02F1/3617
    • There is provided a fluorine-containing resin composition which is used for nonlinear optical material and comprises (I) a fluorine-containing prepolymer and (II) an organic compound exhibiting a second- or higher-order nonlinear optical effect, in which the fluorine-containing prepolymer (I): (1) is a non-crystalline polymer having a fluorine content of not less than 25% and (2) has a carbon-carbon double bond in a polymer side chain or at an end of a polymer trunk chain and also there is provided a nonlinear optical waveguide device produced from the fluorine-containing resin composition. A suitable nonlinear optical material having a stable structure with a nonlinear substance is produced, and an excellent nonlinear optical waveguide device is produced by relatively simple steps while maintaining transparency in a near infrared region.
    • 提供一种用于非线性光学材料的含氟树脂组合物,其包含(I)含氟预聚物和(II)表现出二级或更高级非线性光学效应的有机化合物,其中氟 - 含氟预聚物(I):(1)是氟含量不小于25%的非结晶聚合物,(2)在聚合物侧链或聚合物主链的末端具有碳 - 碳双键 并且还提供了由含氟树脂组合物制造的非线性光波导器件。 产生具有非线性物质的稳定结构的合适的非线性光学材料,并且通过相对简单的步骤产生优异的非线性光波导器件,同时保持近红外区域的透明度。
    • 38. 发明申请
    • PLASMA DISPLAY DEVICE
    • 等离子体显示设备
    • US20120326604A1
    • 2012-12-27
    • US13203088
    • 2011-01-28
    • Kenji KiriyamaMasayuki KimuraYoshito TanakaKoichi Matsumoto
    • Kenji KiriyamaMasayuki KimuraYoshito TanakaKoichi Matsumoto
    • H01J17/49
    • H01J11/36H01J11/38H01J2211/12H01J2211/368H01J2211/48
    • A plasma display panel has a sealed part where peripheral portions of a front plate and a rear plate are sealed to each other with a sealing member. The sealed part includes bead which regulates any gap formed between the peripheral portions of the front plate and the rear plate. A dielectric layer is formed as far as location of the bead but an insulator layer is formed short of the location of the bead in the sealed part on the side of a direction where display electrodes extend. The insulator layer is formed as far as the location of the bead but the dielectric layer is formed short of the location of the bead in the sealed part on the side of a direction where data electrodes extend. The bead has a diameter larger than a thickness of the dielectric layer and a height of barrier ribs summed with each other and at most twice as large as the thickness of the dielectric layer and the height of the barrier ribs summed with each other.
    • 等离子体显示面板具有密封部分,其中前板和后板的周边部分用密封部件彼此密封。 密封部分包括调节在前板和后板的周边部分之间形成的间隙的凸缘。 形成介质层至珠的位置,但是绝缘体层形成为比密封部分中显示电极延伸方向一侧的焊道位置短。 绝缘体层形成为珠的位置,但是电介质层形成为短于数据电极延伸方向侧的密封部分中的焊道的位置。 珠粒的直径大于电介质层的厚度,并且彼此相加的至少两倍于电介质层的厚度和阻挡肋的高度彼此相加的阻挡肋的高度。
    • 40. 发明授权
    • Inner mirror attachment structure
    • 内镜附件结构
    • US07712810B2
    • 2010-05-11
    • US12183626
    • 2008-07-31
    • Yoshito TanakaAkira Fukai
    • Yoshito TanakaAkira Fukai
    • B60R1/04
    • B60R1/04
    • To improve a force by which a base holds an inner mirror, a base 4 keeping a base inner 6 for holding an inner mirror 2 is constituted by a first base 30 bonded to a front window 3 and a second base 40 clasped by the base inner 6; the second base 40 comprises a recessed mating part 43 where the first base 30 is fitted, and wider parts 41a, 41b abutting against side faces 33a, 33b of the first base 30 and extending outward from the side faces 33a, 33b of the first base 30; when the first base 30 is fitted into the mating part 43 of the second base 40, the mating width of the base 4 mating with the base inner 46 can be expanded by the width of the wider parts 41a, 41b of the second base 40, whereby the force by which the base 4 holds the inner mirror 2 can be improved even if the first base 30 is commoditized.
    • 为了提高基座保持内反射镜的力,保持用于保持内反射镜2的基部内部6的基部4由接合到前窗3的第一基座30和由基部内侧紧固的第二基部40构成 6; 第二基座40包括嵌合第一基座30的凹入配合部43,与第一基座30的侧面33a,33b抵接并从第一基部30的侧面33a,33b向外延伸的较宽部41a,41b 30; 当第一基座30装配到第二基座40的配合部分43中时,与基部内部46匹配的基座4的配合宽度可以扩大第二基座40的较宽部分41a,41b的宽度, 从而即使第一基座30商品化,也能够提高基座4保持内镜2的力。