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    • 31. 发明申请
    • LIQUID DISCHARGE HEAD AND METHOD OF PRODUCING LIQUID DISCHARGE HEAD
    • 液体排出头和液体排放头的生产方法
    • US20120007926A1
    • 2012-01-12
    • US13171048
    • 2011-06-28
    • Shogo KawamuraToshiaki HirosawaAkira Yamamoto
    • Shogo KawamuraToshiaki HirosawaAkira Yamamoto
    • B41J2/045B29C65/48
    • B41J2/14072B41J2/14016B41J2/14201B41J2/1601B41J2/1607B41J2/1623B41J2002/14491Y10T156/109
    • A liquid discharge head includes an element substrate including an energy generating element; a supporting member adhesively supporting the element substrate; a sheet member adhesively bonded to the supporting member to adjoin the inner surface of an opening accommodating the element substrate in the sheet member and an end section of the element substrate; a wiring substrate bonded to the sheet member to adjoin the inner surface of an opening accommodating the element substrate in the wiring substrate and the end section of the element substrate and including a wire electrically connected to the energy generating element; and a sealant sealing a part electrical connecting the wiring substrate and element substrate, wherein the height of a wiring substrate surface opposite to that contacting the sheet member from supporting member is smaller than the element substrate surface opposite to that contacting the supporting member from the supporting member.
    • 液体排出头包括包括能量产生元件的元件基板; 支撑构件,其粘附地支撑所述元件基板; 粘合到所述支撑构件上以与所述片状构件中容纳所述元件基板的开口的内表面和所述元件基板的端部部分相邻接的片状构件; 接合到所述片状构件的布线基板,以与所述布线基板中容纳所述元件基板的开口的内表面和所述元件基板的端部相邻并且包括电连接到所述能量产生元件的导线; 以及密封密封部分电连接所述布线基板和元件基板的密封件,其中,与所述片状部件与支撑部件接触的布线基板表面的相反的高度小于与从所述支撑部件接触所述支撑部件的所述元件基板表面相反的元件基板表面 会员。
    • 36. 发明授权
    • Information reproducing device
    • 信息再生装置
    • US08059510B2
    • 2011-11-15
    • US12303221
    • 2007-01-26
    • Akira Yamamoto
    • Akira Yamamoto
    • G11B7/00
    • G11B20/10009G11B20/10037G11B20/10055G11B20/10222G11B20/10296G11B20/14G11B2220/2562
    • In an information reproducing device for performing maximum likelihood decoding using asynchronous sample data, data from the recording medium 101 is sampled by an A/D converter 103 at an asynchronous sampling clock generated by a clock generator 104, to obtain asynchronous sample data. A timing detector 106 detects a phase θ of the asynchronous sampling clock, where recording timings of data of the recording medium 101 are reference points. A reference value generator 108 generates reference values used in a Viterbi decoder 107, based on basic phase reference values at a phase of 0 and a phase signal θ of the asynchronous sampling clock. A basic reference value learner 109 learns and modifies the phase-0 basic reference values based on the phase signal θ, the asynchronous sample data, and the reference values.
    • 在用于使用异步采样数据执行最大似然解码的信息再现装置中,来自记录介质101的数据由时钟发生器104产生的异步采样时钟由A / D转换器103采样,以获得异步采样数据。 定时检测器106检测相位和时间; 其中记录介质101的数据的记录定时是参考点。 参考值发生器108基于相位为0的基本相位参考值和相位信号,生成维特比解码器107中使用的参考值; 的异步采样时钟。 基本参考值学习者109基于相位信号和异步采样数据以及参考值来学习和修改相位0基本参考值。
    • 38. 发明授权
    • Scanning image display apparatus
    • 扫描图像显示装置
    • US07986462B2
    • 2011-07-26
    • US12481821
    • 2009-06-10
    • Shuichi KobayashiAkira Yamamoto
    • Shuichi KobayashiAkira Yamamoto
    • G02B27/14
    • G02B26/105G02B5/18G02B27/0081G02B27/0101G02B2027/0123
    • A scanning type image display apparatus is disclosed which is capable of forming an exit pupil with a shape and a size which facilitate observation. The apparatus includes a scanning unit, a first optical system introducing a light flux to the scanning unit, a second optical system converging the light flux from the scanning unit, a diffractive optical element receiving the converged light flux, and an ocular optical system. Two directions in diametral directions of the light flux are first and second directions. The optical element increases the divergent angles of an emerging light flux therefrom in the first and second directions as compared with the convergent angles of an incident light flux thereinto in the two directions and increases the divergent angle of the emerging light flux in the first direction as compared with the divergent angle thereof in the second direction.
    • 公开了一种扫描型图像显示装置,其能够形成具有便于观察的形状和尺寸的出射光瞳。 该装置包括扫描单元,向扫描单元引入光束的第一光学系统,会聚来自扫描单元的光束的第二光学系统,接收会聚光束的衍射光学元件和眼睛光学系统。 光通量沿直径方向的两个方向是第一和第二方向。 与在两个方向上的入射光束的会聚角度相比,光学元件在第一和第二方向上增加其出射光束的发散角,并且增加出射光束在第一方向上的发散角, 与其在第二方向上的发散角相比较。
    • 40. 发明授权
    • Method for preparing a vehicle interior material
    • 车辆内部材料的制备方法
    • US07923074B2
    • 2011-04-12
    • US12832807
    • 2010-07-08
    • Harukazu OkudaIchiro TaniiNorio NakamuraKazuyuki MatsumuraAkira YamamotoToshiaki Ihara
    • Harukazu OkudaIchiro TaniiNorio NakamuraKazuyuki MatsumuraAkira YamamotoToshiaki Ihara
    • B05D3/00
    • C08K3/32C08K3/016C08K5/31C08K5/34928C08K9/02C09D5/18
    • A method for preparing a vehicle interior material comprises the steps of feeding 100 parts by weight of phosphorus and nitrogen-containing non-halogen flame retardant particles and 0.1 to 20 parts by weight of hydrophobic inorganic oxide fine particles having hydrophobic groups and having an average particle size of 0.001 to 5 μm to a mixer equipped with a high-speed agitation means having a revolution capability of about 100 to 5,000 rpm, agitating and mixing the phosphorus and nitrogen-containing non-halogen flame retardant particles and the hydrophobic inorganic oxide fine particles to produce the phosphorus and nitrogen-containing non-halogen flame retardant particles coated with the hydrophobic inorganic oxide fine particles, mixing 100 parts by weight as solids of a synthetic resin emulsion and 1 to 300 parts by weight of the phosphorus and nitrogen-containing non-halogen flame retardant particles coated with the hydrophobic inorganic oxide fine particles to produce a coating composition, coating the coating composition onto the vehicle interior material, and drying the coated vehicle interior material.
    • 一种制备车辆内部材料的方法包括以下步骤:将100重量份的磷和含氮非卤素阻燃剂颗粒和0.1至20重量份具有疏水基团并具有平均颗粒的疏水性无机氧化物细颗粒 尺寸为0.001〜5μm,配备有具有约100〜5,000rpm的转速的高速搅拌装置的混合机,搅拌并混合含磷的含氮无卤阻燃粒子和疏水性无机氧化物微粒 制备涂覆有疏水性无机氧化物细颗粒的含磷和氮的非卤素阻燃剂颗粒,将100重量份的固体合成合成树脂乳液和1至300重量份的含磷和不含氮的非卤素阻燃剂颗粒混合, - 卤素阻燃颗粒涂覆有疏水性无机氧化物细颗粒以产生涂层c 将涂料组合物涂覆到车辆内部材料上,并干燥涂覆的车辆内部材料。