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    • 11. 发明申请
    • Group III nitride semiconductor light-emitting device
    • III族氮化物半导体发光器件
    • US20110062488A1
    • 2011-03-17
    • US12923318
    • 2010-09-14
    • Toshiya UemuraJun Ito
    • Toshiya UemuraJun Ito
    • H01L33/40
    • H01L33/38H01L33/44H01L2924/0002H01L2924/00
    • A Group III nitride semiconductor light-emitting device includes an electrically conductive support; a p-electrode provided on the support; a p-type layer, an active layer, and an n-type layer, which are formed of a Group III nitride semiconductor and are sequentially provided on the p-electrode; an n-electrode which is connected to the n-type layer; a first trench extending from the surface of the p-type layer on the p-electrode's side to reach the n-type layer; an auxiliary electrode which is in contact with the surface of the n-type layer serving as the bottom of the first trench, but is not in contact with the side walls of the first trench; and an insulating film which exhibits light permeability and covers the auxiliary electrode and the bottom and side walls of the first trench.
    • III族氮化物半导体发光器件包括导电支撑体; 设置在支撑体上的p电极; p型层,有源层和n型层,其由III族氮化物半导体形成,并且依次设置在p电极上; 与n型层连接的n电极; 从p型层的p电极侧的表面延伸到n型层的第一沟槽; 与作为第一沟槽的底部的n型层的表面接触但不与第一沟槽的侧壁接触的辅助电极; 以及表现出透光性并覆盖第一沟槽的辅助电极和底壁和侧壁的绝缘膜。
    • 12. 发明授权
    • Bias adjustment of radio frequency unit in radar apparatus
    • 雷达设备射频单元的偏置调整
    • US07821447B2
    • 2010-10-26
    • US12232067
    • 2008-09-10
    • Kenji OkaHiroshi ItoJun Ito
    • Kenji OkaHiroshi ItoJun Ito
    • G01S13/00
    • G01S7/4004G01S7/032
    • Disclosed is a method of bias adjustment for a millimeter wave radar apparatus that can efficiently and highly accurately adjust the bias of an MMIC used in a radio frequency circuit in the millimeter wave radar apparatus. The method comprises: providing a DA converter in a bias circuit in the millimeter wave radar apparatus comprising an antenna, a radio frequency unit, and a processing unit for performing transmission and reception processing of the radio frequency unit; connecting a signal generator in place of the antenna; and connecting a test processing unit and a control apparatus to the radio frequency unit, wherein the control apparatus applies an initial bias value in the form of a digital value to the MMIC, calculates the target value for the digital bias value based on the result of the measurement of the received signal, and takes the target value as the digital bias value for the production processing unit when the radio frequency characteristic of the received signal obtained by applying the target value to the MMIC lies within specified limits.
    • 公开了一种毫米波雷达装置的偏置调整方法,其能够高效且高精度地调整毫米波雷达装置中用于射频电路的MMIC的偏置。 该方法包括:在毫米波雷达装置的偏置电路中设置DA转换器,该雷达装置包括天线,射频单元和用于执行射频单元的发送和接收处理的处理单元; 连接信号发生器代替天线; 以及将测试处理单元和控制装置连接到所述射频单元,其中,所述控制装置将数字值形式的初始偏置值应用于所述MMIC,基于所述MMIC的结果来计算所述数字偏置值的目标值 当通过将目标值应用于MMIC而获得的接收信号的射频特性位于规定的限度内时,接收信号的测量,并将目标值作为生产处理单元的数字偏置值。
    • 16. 发明授权
    • Magnus type wind power generator
    • 马格努斯型风力发电机
    • US07504740B2
    • 2009-03-17
    • US10569581
    • 2004-06-14
    • Nobuhiro MurakamiJun Ito
    • Nobuhiro MurakamiJun Ito
    • F03B5/00
    • F03D1/0616F05B2240/201F05B2240/40Y02E10/721
    • A Magnus type wind power generator includes a horizontal rotary shaft for transmitting torque to a power generating mechanism. Rotary columns are disposed radially of the horizontal rotary shaft. Driving motors rotatively drive the respective rotary columns around the axes thereof. The relative action between rotation of each rotary column and wind produces Magnus lift, which rotates the horizontal rotary shaft so as to drive the power generating mechanism. An air flow device is installed for producing air flow on the outer peripheral surfaces of the rotary columns so as to increase the Magnus lift.
    • Magnus型风力发电机包括用于将扭矩传递到发电机构的水平旋转轴。 旋转柱设置在水平旋转轴的径向上。 驱动马达围绕其各轴旋转驱动相应的旋转柱。 每个旋转柱和风的旋转之间的相对作用产生马格纳斯提升,马克努斯提升使水平旋转轴旋转以驱动发电机构。 安装有用于在旋转柱的外周面上产生气流的气流装置,以增加Magnus升力。
    • 17. 发明申请
    • Intake device for outboard motors
    • 舷外马达进气装置
    • US20070240681A1
    • 2007-10-18
    • US11787539
    • 2007-04-17
    • Yasushi MiyashitaHiromichi TakewakiJun ItoHideo Koyama
    • Yasushi MiyashitaHiromichi TakewakiJun ItoHideo Koyama
    • F02D11/10F02M35/10
    • F02M35/116F02M35/10032F02M35/10039F02M35/167
    • An intake device for outboard motors, which makes it possible to improve intake performance and reduce the size of the device at the same time. Cylinder banks have a plurality of cylinder bores arranged in a vertical direction, and extend rearward to form a V shape. Intake ports of the respective cylinder bores are formed in the cylinder banks to open in the inner sides of the V shape. An intake manifold is connected to the intake ports. A surge tank is connected to the intake manifold. A throttle body is connected to the surge tank. The surge tank comprises a plurality of intake passage members connected to the respective cylinder bores via the intake manifold, wall members provided between respective adjacent ones of the intake passage members, and a lid member configured to hermetically close a space defined by the intake passage members and the wall members.
    • 用于舷外马达的进气装置,其可以同时提高进气性能并减小装置的尺寸。 气缸组具有沿垂直方向布置的多个气缸孔,并且向后延伸以形成V形。 各气缸孔的进气口形成在气缸组中,以在V形的内侧开口。 进气歧管连接到进气口。 缓冲罐连接到进气歧管。 节气门体连接到缓冲罐。 缓冲罐包括多个进气通道构件,其经由进气歧管连接到相应的气缸孔,设置在相邻的进气通道构件之间的壁构件和盖构件,其构造成气密地封闭由进气通道构件限定的空间 和墙壁成员。
    • 18. 发明申请
    • Magnus type wind power generator
    • 马格努斯型风力发电机
    • US20070046029A1
    • 2007-03-01
    • US10569581
    • 2004-06-14
    • Nobuhiro MurakamiJun Ito
    • Nobuhiro MurakamiJun Ito
    • F03D9/00H02P9/04
    • F03D1/0616F05B2240/201F05B2240/40Y02E10/721
    • A Magnus type wind power generator (A) comprising a horizontal rotary shaft (3) for transmitting torque to a power generating mechanism (2), rotary columns (5) disposed radially of the horizontal rotary shaft (3), driving motors (15) for rotatively driving the respective rotary columns (5) around the axes thereof, in which the relative action between rotation of each rotary column (5) and wind produces Magnus lift, which rotates the horizontal rotary shaft (3) so as to drive the power generating mechanism (2), wherein an air flow means (6) is installed for producing air flows on the outer peripheral surfaces of the rotary columns (5) so as to increase the Magnus lift.
    • 一种Magnus型风力发电机(A),包括用于向发电机构(2)传递扭矩的水平旋转轴(3),设置在水平旋转轴(3)的径向的旋转柱(5),驱动马达(15) 用于围绕其旋转驱动相应的旋转柱(5),其中每个旋转柱(5)的旋转与风之间的相对作用产生Magnus提升,其使水平旋转轴(3)旋转以驱动动力 生成机构(2),其中安装有用于在旋转柱(5)的外周表面上产生空气流的空气流动装置(6),以增加Magnus升力。