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    • 64. 发明授权
    • Vehicle seat
    • 车座
    • US08668225B2
    • 2014-03-11
    • US13701136
    • 2011-06-03
    • Jogen YamakiHisato OkuTakashi InoueTakuya HoriMasato MiyaguchiKazuyoshi Arata
    • Jogen YamakiHisato OkuTakashi InoueTakuya HoriMasato MiyaguchiKazuyoshi Arata
    • B60R21/207
    • B60N2/4235B60N2/4249B60N2/68B60N2/682B60N2/686B60N2/7011B60N2/7094B60N2/72B60R21/207
    • A vehicle seat includes: a seat back frame that is provided with a pair of side frame portions that are located on both left and right sides in the seat transverse direction; an outer-side load transmitting block that is located further to an outer side in the transverse direction of the seat back frame than the side frame portion of the seat back frame, and that transmits an impact load that is input from a side of the vehicle body to the seat back frame; a protruding portion that protrudes from a side surface of the side frame portion on the outer side in the transverse direction of the seat back frame towards the outer side in the transverse direction of the seat back frame; a side airbag apparatus that is located on a front surface of the protruding portion; and an engaging portion that is formed in the outer-side load transmitting block, and that receives the protruding portion. The protruding portion is formed in a box shape that has a supporting surface on a surface thereof that faces the side airbag apparatus.
    • 车辆座椅包括:座椅靠背框架,其设置有位于座椅横向方向上的左右两侧的一对侧框架部分; 位于座椅靠背框架的横向方向上比座椅靠背框架的侧框架部分更靠外侧的外侧载荷传递块,并且传递从车辆侧面输入的冲击载荷 身体到座椅靠背框架; 从座椅靠背框架的宽度方向的外侧的侧框架部的侧面朝向座椅靠背框架的宽度方向的外侧突出的突出部; 位于突出部的前表面上的侧面安全气囊装置; 以及形成在所述外侧负载传递块中并且接收所述突出部的接合部。 突出部形成为在与侧面安全气囊装置相对的表面上具有支撑面的盒状。
    • 65. 发明授权
    • PLC-type demodulator and optical transmission system
    • PLC型解调器和光传输系统
    • US08526102B2
    • 2013-09-03
    • US13409343
    • 2012-03-01
    • Takashi InoueKazutaka Nara
    • Takashi InoueKazutaka Nara
    • G02B6/26G02B6/42H04J14/06
    • H04B10/60H04B10/613H04B10/614
    • The invention provides a PLC-type DP-QPSK demodulator that reduces connection loss between a polarization beam splitter and a 90-degree hybrid circuit and aims at reducing the manufacturing cost and an optical transmission system using the same. In an embodiment of the invention, a PLC-type DP-QPSK demodulator that receives a DP-QPSK signal includes one PLC chip having a planar lightwave circuit. Input ports and output ports of signal light are provided at an input end and at an output end of the PLC chip, respectively. Within the planar lightwave circuit, there are integrated a polarization beam splitter that splits the DP-QPSK signal into an X-polarization QPSK signal and a Y-polarization QPSK signal, and two 90-degree hybrid circuits that mix the X-polarization QPSK signal and local oscillation light and the Y-polarization QPSK signal and local oscillation light, respectively, split each QPSK signal into orthogonal components I, Q and output them.
    • 本发明提供一种PLC型DP-QPSK解调器,其减少偏振分束器和90度混合电路之间的连接损耗,并旨在降低制造成本,并且使用该DP-QPSK解调器的光传输系统。 在本发明的实施例中,接收DP-QPSK信号的PLC型DP-QPSK解调器包括具有平面光波回路的一个PLC芯片。 信号灯的输入端口和输出端口分别设置在PLC芯片的输入端和输出端。 在平面光波电路内,集成有偏振分束器,其将DP-QPSK信号分解成X偏振QPSK信号和Y偏振QPSK信号,以及混合X偏振QPSK信号的两个90度混合电路 并且本地振荡光和Y偏振QPSK信号和本地振荡光分别将每个QPSK信号分成正交分量I,Q并输出。
    • 68. 发明申请
    • ISOLATED POWER SUPPLY DEVICE AND ILLUMINATION DEVICE
    • 隔离电源装置和照明装置
    • US20130134892A1
    • 2013-05-30
    • US13813218
    • 2011-07-26
    • Minoru KadoSatoshi ArimaTakashi Inoue
    • Minoru KadoSatoshi ArimaTakashi Inoue
    • H02M3/335H05B37/02
    • H02M3/33523H05B33/0815H05B33/0848H05B37/02Y02B20/347
    • An insulated power supply device includes: an electric power conversion unit, a rectifier, a filter, a detection unit, a control circuit, and a signal transmission unit. The control circuit generates and outputs a control signal for a switching element that controls a current to be flown through a primary side of the electric power conversion unit. The signal transmission unit transmits, to the control circuit, a detection signal by the detection unit for detecting an output current or an output voltage. An output control pulse signal having control information in a duty ratio can be supplied as an outputted control signal individually to both of the control circuit and a secondary side of the electric power conversion unit. The output current or the output voltage can be thereby controlled.
    • 绝缘电源装置包括:电力转换单元,整流器,滤波器,检测单元,控制电路和信号传输单元。 控制电路产生并输出用于控制要经过电力转换单元的初级侧的电流的开关元件的控制信号。 信号传输单元通过检测单元向控制电路发送用于检测输出电流或输出电压的检测信号。 可以将具有占空比的控制信息的输出控制脉冲信号作为输出的控制信号分别提供给电力转换单元的控制电路和次级侧。 可以控制输出电流或输出电压。
    • 70. 发明授权
    • Scanning probe microscope and sample observing method using the same
    • 扫描探针显微镜及使用其的样品观察方法
    • US08272068B2
    • 2012-09-18
    • US12523369
    • 2008-02-26
    • Toshihiko NakataMasahiro WatanabeTakashi InoueKishio HidakaMotoyuki Hirooka
    • Toshihiko NakataMasahiro WatanabeTakashi InoueKishio HidakaMotoyuki Hirooka
    • G01N13/00G01B11/30
    • G01Q60/18G01Q60/22
    • In a near-field scanning microscope using an aperture probe, the upper limit of the aperture formation is at most several ten nm in practice. In a near-field scanning microscope using a scatter probe, the resolution ability is limited to at most several ten nm because of the external illuminating light serving as background noise. Moreover, measurement reproducibility is seriously lowered by a damage or abrasion of a probe. Optical data and unevenness data of the surface of a sample can be measured at a nm-order resolution ability and a high reproducibility while damaging neither the probe nor the sample by fabricating a plasmon-enhanced near-field probe having a nm-order optical resolution ability by combining a nm-order cylindrical structure with nm-order microparticles and repeatedly moving the probe toward the sample and away therefrom at a low contact force at individual measurement points on the sample.
    • 在使用孔径探针的近场扫描显微镜中,实际上孔径形成的上限为至多几十nm。 在使用散射探针的近场扫描显微镜中,由于外部照明光作为背景噪声,分辨能力被限制在至多几十nm。 此外,通过探针的损伤或磨损,测量再现性被严重降低。 可以以nm级分辨能力和高再现性测量样品表面的光学数据和不均匀性数据,同时通过制造具有nm级光学分辨率的等离子体增强近场探针而不损害探针和样品 通过将nm级圆柱形结构与nm级微粒组合,并在样品上的各个测量点处以低接触力将探针重复地移动到样品并从中离开它们的能力。