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    • 44. 发明授权
    • Operation control system for vehicular air bag system
    • 车用气囊系统操作控制系统
    • US5390951A
    • 1995-02-21
    • US79380
    • 1993-06-21
    • Motomi Iyoda
    • Motomi Iyoda
    • B60R21/16B60R21/01B60R21/22
    • B60R21/0152
    • An operation control system to be used with a vehicular air bag system having an air bag and an inflator comprises an inhibit circuit for preventing a useless expansion of the air bag and inhibiting the later operation of the air bag by detecting that a touch sensor already has its contacts closed, when the ignition switch acting as a main switch for an igniting circuit of the squib of the inflator is switched from OFF to ON, if the contacts of the touch sensor are closed when the ignition switch is OFF. Also comprised is an acceleration type collision sensor acting as a second collision sensor for causing the air bag to be expanded if an acceleration detected exceeds a predetermined level, even if in the inhibited state by the inhibit circuit. Further comprised are a timer for releasing the inhibited state by the inhibit circuit after the state has been held for a predetermined time period, and a unit for releasing the inhibited state if there is detected a vehicular state in which the air bag can be operated.
    • 与具有气囊和充气机的车辆气囊系统一起使用的操作控制系统包括禁止电路,用于防止气囊的无用的膨胀,并通过检测到触摸传感器已经具有 当点火开关作为充气机爆管点火电路的主开关的点火开关从OFF切换到ON时,如果点火开关关闭时触摸传感器的触点闭合,则触点闭合。 还包括作为第二碰撞传感器的加速型碰撞传感器,即使被禁止电路处于禁止状态,如果检测到的加速度超过预定水平,则使气囊膨胀。 进一步包括一个定时器,用于在状态已经保持预定时间段之后通过禁止电路释放禁止状态;以及用于在检测到可以操作气囊的车辆状态时释放禁止状态的单元。
    • 47. 发明授权
    • Apparatus and a method for controlling a windshield wiper
    • 用于控制挡风玻璃刮水器的装置和方法
    • US4689536A
    • 1987-08-25
    • US835726
    • 1986-03-03
    • Motomi Iyoda
    • Motomi Iyoda
    • B60S1/08
    • B60S1/0818B60S1/0822B60S1/0829Y10S15/15Y10S318/02
    • An apparatus and a method for controlling a wiper which smoothly starts to move the wipers at different wiping speeds from an initial position thereof in accordance with a detected amount of rain. The apparatus includes a sensor, a first comparator, an actuator, a second comparator, a memory and a changing device.The sensor detects the amount of rain. The memory memorizes the second actuating signal outputted from the second comparator and the memory outputs the memorized signal. The changing device for changing the wiping speed of the wiper at the time when the wiper starts to move from the initial position in accordance with a memorized second actuating signal outputted from the memory at the time when the wiper starts to move from the initial position, the changing device changes a low wiping speed of the wiper to a high wiping speed or a high wiping speed of the wiper to a low wiping speed.
    • 一种用于控制刮水器的装置和方法,其根据检测到的雨量平滑地开始以不同的擦拭速度从其初始位置移动刮水器。 该装置包括传感器,第一比较器,致动器,第二比较器,存储器和更换装置。 传感器检测雨量。 存储器存储从第二比较器输出的第二启动信号,存储器输出存储的信号。 该改变装置用于根据在刮水器从初始位置开始移动时从存储器输出的存储的第二致动信号来改变刮水器从初始位置开始移动时刮水器的擦拭速度, 改变装置将擦拭器的低擦拭速度改变为擦拭器的高擦拭速度或高擦拭速度到低擦拭速度。
    • 48. 发明申请
    • RADAR SYSTEM AND DIRECTION DETECTING METHOD
    • 雷达系统和方向检测方法
    • US20120306685A1
    • 2012-12-06
    • US13574449
    • 2011-01-26
    • Hisateru AsanumaMasahiro SakaguchiTomoya KawasakiMotomi Iyoda
    • Hisateru AsanumaMasahiro SakaguchiTomoya KawasakiMotomi Iyoda
    • G01S13/44
    • G01S13/931G01S7/354G01S13/345G01S2013/9375
    • A reflected wave that a transmitted wave is reflected by targets including a stationary target and a moving target is received as receiving signals of at least two reception antennas. A phase difference between beat signals at respective peak frequencies, generated from a transmitting signal and the receiving signals, is calculated. Directions of the targets are calculated in such a manner that the calculated phase difference of the targets is stored in a storage area in advance, it is predicted whether peak frequencies of the plurality of targets overlap each other, a predicted phase difference of the stationary target at the time when the peak frequencies overlap each other is calculated on the basis of the stored phase difference, and a predicted phase difference of the moving target is calculated on the basis of the calculated phase difference and the predicted phase difference of the stationary target.
    • 作为至少两个接收天线的接收信号,接收发射波被包括固定目标和移动目标的目标反射的反射波。 计算从发送信号和接收信号产生的各个峰值频率的差拍信号之间的相位差。 以目标计算的相位差预先存储在存储区域中的方式计算目标的方向,预测多个目标的峰值频率是否彼此重叠,预测的静止目标的相位差 基于存储的相位差来计算峰值频率彼此重叠的时间,并且基于计算出的相位差和静止目标的预测相位差来计算移动目标的预测相位差。