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    • 51. 发明申请
    • Ultrasound sensor
    • 超声波传感器
    • US20070115102A1
    • 2007-05-24
    • US11602497
    • 2006-11-21
    • Akio NakanoTakeo TsuzukiYoshihisa SatoKiyonari Kojima
    • Akio NakanoTakeo TsuzukiYoshihisa SatoKiyonari Kojima
    • B60Q1/00
    • G01S7/521G01S15/931G01S2015/938G10K9/122
    • An ultrasound sensor for a vehicle has a housing which is fixedly arranged at a vehicle inner side of a periphery member of the vehicle, an ultrasound vibrator for sending and receiving ultrasound, and an ultrasound transferring member which is constructed of a different material from that of the housing to have an acoustic impedance with a medium value between an acoustic impedance of the ultrasound vibrator and that of the periphery member. The ultrasound vibrator is accommodated in the housing and fixed to an end portion of the housing, which faces the periphery member. The ultrasound transferring member is arranged at the end portion of the housing, and contacts both the ultrasound vibrator and the periphery member of the vehicle.
    • 一种用于车辆的超声波传感器具有固定地布置在车辆的周边部件的车辆内侧的壳体,用于发送和接收超声波的超声波振动器,以及超声波传递部件,其由与 所述壳体具有在所述超声波振动器的声阻抗和所述外围构件的声阻抗之间具有中等值的声阻抗。 超声波振动器容纳在壳体中并固定到壳体的面向周边构件的端部。 超声波传送构件布置在壳体的端部处,并且与超声波振动器和车辆的周边构件接触。
    • 52. 发明授权
    • Driving assisting apparatus for vehicles
    • 车辆驾驶辅助装置
    • US07126461B2
    • 2006-10-24
    • US10972476
    • 2004-10-26
    • Masakazu TakeichiYoshihisa SatoKoji Kato
    • Masakazu TakeichiYoshihisa SatoKoji Kato
    • B60Q1/00
    • G01S15/46B60Q9/006B60Q9/007G01S15/876G01S15/931G01S2015/939
    • A pair of distance measurement sensors provided at different heights measures distances to an obstruction. When the measured distances are shorter than a threshold distance, the height of the vehicle is found based on the measured distances. When the height of the vehicle is found greater than a threshold height, the existence of the obstruction is reported to the driver. When the height of the vehicle is found smaller than the threshold height, on the other hand, a change in obstruction height is found and compared with a threshold. When the change in obstruction height is greater than the threshold, the existence of the obstruction is reported to the driver since the height is determined to be an unreliable result of computation.
    • 在不同高度处提供的一对距离测量传感器测量到障碍物的距离。 当测量的距离小于阈值距离时,基于所测量的距离找到车辆的高度。 当发现车辆的高度大于阈值高度时,向驾驶员报告障碍物的存在。 另一方面,当发现车辆的高度小于阈值高度时,发现障碍物高度的变化并与阈值进行比较。 当阻塞高度的变化大于阈值时,障碍物的存在被报告给驾驶员,因为高度被确定为不可靠的计算结果。
    • 53. 发明申请
    • Optical apparatus and projection apparatus
    • 光学装置和投影装置
    • US20060066811A1
    • 2006-03-30
    • US11218634
    • 2005-09-06
    • Yoshihisa SatoMasami Sato
    • Yoshihisa SatoMasami Sato
    • G03B21/14
    • G02B27/283G03B21/2066G03B21/2073H04N9/3105H04N9/317
    • An optical apparatus provided with a light combining prism having three light incident faces, receiving the three beams of light having different wavelength bands through the three light incident faces, and combining the three incident beams of light for output, three reflection type polarization plates, three plate-like reflection type polarization elements provided corresponding to the three reflection type liquid crystal panels, each receiving a different wavelength band of light among the three different wavelength bands, each selecting a first polarized beam component to pass and making it strike the corresponding reflection type liquid crystal panel by two perpendicular polarized beam components, and each making modulated light spatially modulated and converted to a second polarized beam component at the reflection type liquid crystal panel strike the corresponding incident face among the three light incident faces of the combining prism, and at least three fixing plates with surfaces which can be joined with the three light incident faces of the light combining prism, wherein at least the reflection type polarization elements between the reflection type polarization elements and reflection type liquid crystal panels are fixed to the corresponding light incident faces of the light combining prism via the fixing plates, and a projection apparatus using the same.
    • 一种设置有具有三个光入射面的光合成棱镜的光学装置,通过三个光入射面接收具有不同波长带的三束光束,并组合用于输出的三个入射光束,三个反射型偏振板,三个反射型偏振板 对应于三个反射型液晶面板设置的板状反射型偏振元件,其分别在三个不同的波长带中接收不同的波长带,各自选择第一偏振光束分量通过并使其对应于相应的反射型 液晶面板通过两个垂直偏振光束分量进行调制,并且在反射型液晶板上进行空间调制并转换成第二偏振光束分量的调制光照射组合棱镜的三个光入射面中的相应入射面, 最少三个固定板与sur 可以与光组合棱镜的三个光入射面接合的面,其中至少反射型偏振元件与反射型液晶面板之间的反射型偏振元件固定在光组合棱镜的对应的光入射面上 通过固定板和使用其的投影装置。
    • 56. 发明授权
    • Communication apparatus with fault tolerance
    • 具有容错能力的通信设备
    • US5268907A
    • 1993-12-07
    • US840897
    • 1992-02-26
    • Satoshi SuzukiYoshihisa Sato
    • Satoshi SuzukiYoshihisa Sato
    • H04L25/08G06F11/20
    • H04L25/08
    • A fault tolerant communication apparatus provided with balanced type transmission lines composed of first and second complementary transmission lines respectively transmitting first and second communication signals of different polarity, a transmission device for transmitting the first and second complementary communication signals through the balanced type transmission lines, a reception device for receiving the first and second complementary communication signals through the balanced type transmission lines and for receiving contents of a communication based on the complementary relation between the first and second communication signals, and a failure detection circuit for determining whether or not each of the first and second transmission lines fails. The failure detection circuit is provided with a first judgement device for monitoring the second transmission line according to the first communication signal, for resetting a second-transmission-line monitoring state, in which the second transmission line is monitored, in response to the second communication signal and for judging whether or not the second transmission line fails, on the basis of a fact that the second-transmission-line monitoring state continues for a predetermined period of time, and a second judgement device for monitoring the first transmission line according to the second communication signal, for resetting a first-transmission-line monitoring state, in which the first transmission line is monitored, in response to the first communication signal and for judging whether or not the first transmission line fails, on the basis of a fact that the first-transmission-line monitoring state continues for a predetermined period of time.