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    • 3. 发明授权
    • Run-flat tire
    • 润滑轮胎
    • US07077182B2
    • 2006-07-18
    • US11073698
    • 2005-03-08
    • Naoya NagaharaTakayuki Shibata
    • Naoya NagaharaTakayuki Shibata
    • B60C17/00B60C9/18B60C15/00
    • B60C15/0045B60C9/18B60C17/0009B60C2001/0033
    • A run-flat tire comprises: a carcass comprising a carcass ply of cords extending between bead portions and turned up around a bead core in each bead portion from the inside to outside of the tire so as to form a pair of turnup portions and a main portion therebetween a belt disposed radially outside the carcass in the tread portion and a reinforcing rubber layer comprising a pair of side parts each provided between the main portion and the turnup portion and extending from the bead core to the proximity of axially outer edge of the belt, and a center part disposed between the carcass and the belt and connected to the side parts of both side.
    • 漏气保用轮胎包括:胎体,其包括在胎圈部分之间延伸的帘线帘布层,并且从轮胎的内部到外部在每个胎圈部分中围绕胎圈芯圈卷起,以形成一对折叠部分和主体 设置在胎面部分的胎体径向外侧的带部分和增强橡胶层,该增强橡胶层包括一对侧部,每个侧部设置在主要部分和翻转部分之间并且从胎圈芯延伸到带的轴向外边缘附近 以及设置在胎体和带之间并连接到两侧的侧部的中心部分。
    • 4. 发明申请
    • Confocal microscope, fluorescence measuring method and polarized light measuring method using cofocal microscope
    • 共焦显微镜,荧光测量法和偏光测量方法采用共焦显微镜
    • US20060012872A1
    • 2006-01-19
    • US10529395
    • 2003-09-18
    • Terutake HayashiKatsuhiro MaekawaTakayuki Shibata
    • Terutake HayashiKatsuhiro MaekawaTakayuki Shibata
    • G02B21/06
    • G01N21/6458G01N21/21G01N21/6445G01N21/6452G01N2021/6471G01N2021/6478G01N2201/0675G02B21/0024G02B21/0068G02B21/0076
    • The present invention relates to a confocal microscope and the measuring methods of fluorescence and the polarized light using the same, and said confocal microscope is provided with the inlet optical part (10, 10′) to let the polarized light from an illuminating light source (11) onto an object to be observed (2) via a matrix type liquid crystal device (22) provided with a microlens array (21) on its top part, and an objective lens (23), the light detecting part (30, 30′) to detect the reflected or the fluorescent light from the object to be observed, and the liquid crystal control subpart (52) to control a liquid crystal device (22), and it transmits the light passing through said microlens array (21) from each microlens to each pixel (22a) of the liquid crystal device (22), and makes a plurality of foci (24) on the object to be observed (2) by the objective lens (23), as well as controls polarization directions of the lights transmitted through each pixel of the liquid crystal device (22) using the liquid crystal control subpart (52) so that they are made mutually orthogonal.
    • 本发明涉及共焦显微镜以及使用其的荧光和偏振光的测量方法,并且所述共聚焦显微镜设置有入射光学部件(10,10'),以使来自照明光源的偏振光 11)通过在其顶部设置有微透镜阵列(21)的矩阵型液晶装置(22)和物镜(23)到待观察的物体(2)上,光检测部分(30,30) ')来检测来自被观察物体的反射光或荧光,以及液晶控制部(52)来控制液晶装置(22),将通过所述微透镜阵列(21)的光从 每个微透镜到液晶装置(22)的每个像素(22a),并且通过物镜(23)在被观察物体(2)上形成多个焦点(24),并且控制偏振方向 的光线通过每个像素传输 使用液晶控制子部(52)使液晶装置(22)相互正交。
    • 5. 发明申请
    • Hydraulic pressure controller
    • 液压控制器
    • US20050057093A1
    • 2005-03-17
    • US10941093
    • 2004-09-15
    • Taro SegawaTakayuki ShibataMasuhiro Kondo
    • Taro SegawaTakayuki ShibataMasuhiro Kondo
    • B60T8/34B60T8/1761B60T8/36B60T8/40
    • B60T8/368Y10S303/10Y10T137/87885
    • A hydraulic pressure controller is provided which includes a hydraulic unit for controlling hydraulic pressure and an electronic control unit. The hydraulic unit includes a block in which are mounted electric actuators. The electronic control unit controls the electric actuators by applying electric signals thereto to control hydraulic pressure produced in the hydraulic unit to external elements in a controlled manner, thereby controlling the behavior of the vehicle. The electronic control unit includes a housing in which are mounted a circuit board and other electronic and electric parts, and a fitting portion provided on the housing so as to face one side of the block. The controller further includes a fastener for joining the block to the fitting portion.
    • 提供了一种液压控制器,其包括用于控制液压的液压单元和电子控制单元。 液压单元包括其中安装有电致动器的块。 电子控制单元通过向其施加电信号来控制电致动器,以控制方式将液压单元产生的液压控制在外部元件上,从而控制车辆的行为。 电子控制单元包括:壳体,其中安装有电路板和其它电子和电气部件,以及设置在壳体上以与块的一侧相对的配合部分。 控制器还包括用于将块连接到装配部分的紧固件。
    • 6. 发明授权
    • Transmission signal level control device for radio transmitter
    • 无线电发射机的传输信号电平控制装置
    • US5697072A
    • 1997-12-09
    • US603386
    • 1996-02-20
    • Takayuki Shibata
    • Takayuki Shibata
    • H03G3/30H04B1/04
    • H03G3/3047H04B2001/0416
    • In order to realize control of a transmission signal level from a radio transmitter of TDMA (Time Division Multiplex System) with a simplified arrangement and with a high precision, a control circuit 9 outputs a transmission signal for each time slot and a level designation signal. A level control signal generator circuit 4 generates a level control signal in response to the level designation signal and outputs the level control signal through D/A converter 5 to a level control circuit 2. The level of the modulated transmission signal is controlled by the level control circuit 2 and is amplified by a RF amplifier circuit 3 thereby being output outside. The output level is detected by a detector circuit 8 and fedback through A/D converter 7 and a detection characteristic storage circuit 8 to level control signal generator circuit 4 so that the value of the level control signal is corrected.
    • 为了以简化的排列和高精度实现来自TDMA(时分复用系统)的无线电发射机的传输信号电平的控制,控制电路9输出每个时隙的传输信号和电平指定信号。 电平控制信号发生器电路4响应于电平指定信号产生电平控制信号,并通过D / A转换器5将电平控制信号输出到电平控制电路2.调制的发送信号的电平由电平 控制电路2,并由RF放大器电路3放大,从而被输出到外部。 输出电平由检测器电路8检测并通过A / D转换器7和检测特性存储电路8反馈到电平控制信号发生器电路4,以便校正电平控制信号的值。