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    • 3. 发明授权
    • Ultrasonic device for detecting direction to object
    • 用于检测物体方向的超声波装置
    • US08089826B2
    • 2012-01-03
    • US12458924
    • 2009-07-28
    • Mitsuyasu MatsuuraToshiki IsogaiAyako OkamotoHiromi AriyoshiYasuyuki Okuda
    • Mitsuyasu MatsuuraToshiki IsogaiAyako OkamotoHiromi AriyoshiYasuyuki Okuda
    • G01N29/00
    • G01S15/931G01S7/52006G01S15/42
    • A ultrasonic device detecting a direction to an object includes: a transmitting element of a ultrasonic wave; first and second receiving elements; a diffraction wave phase detector; an initial phase memory for an initial phase of a diffraction wave; a sound speed detector; a phase correction amount calculator calculating a phase shift caused by a sound speed change and calculating a phase correction amount based on the phase of the diffraction wave, the initial phase and the phase shift; a phase correction element correcting a phase of the reflection wave based on the phase correction amount; and a direction detector for detecting the direction to the object based on a difference between corrected phases of the reflection wave received by the first and second receiving elements, a distance between the first and second receiving elements, and a wavelength of the transmission ultrasonic wave corresponding to a sound speed.
    • 检测到物体的方向的超声波装置包括:超声波的发送元件; 第一和第二接收元件; 衍射波相位检测器; 用于衍射波的初始相位的初始相位存储器; 声速检测器; 计算由声速变化引起的相移的相位校正量计算器,并且基于所述衍射波的相位,所述初始相位和所述相位来计算相位校正量; 相位校正元件,基于相位校正量校正反射波的相位; 以及方向检测器,用于基于由第一和第二接收元件接收的反射波的校正相位之间的差异,第一和第二接收元件之间的距离以及对应于发射超声波的波长来检测对象的方向 达到声速。
    • 4. 发明申请
    • Ultrasonic device for detecting direction to object
    • 用于检测物体方向的超声波装置
    • US20100024557A1
    • 2010-02-04
    • US12458924
    • 2009-07-28
    • Mitsuyasu MatsuuraToshiki IsogaiAyako OkamotoHiromi AriyoshiYasuyuki Okuda
    • Mitsuyasu MatsuuraToshiki IsogaiAyako OkamotoHiromi AriyoshiYasuyuki Okuda
    • G01N29/00
    • G01S15/931G01S7/52006G01S15/42
    • A ultrasonic device detecting a direction to an object includes: a transmitting element of a ultrasonic wave; first and second receiving elements; a diffraction wave phase detector; an initial phase memory for an initial phase of a diffraction wave; a sound speed detector; a phase correction amount calculator calculating a phase shift caused by a sound speed change and calculating a phase correction amount based on the phase of the diffraction wave, the initial phase and the phase shift; a phase correction element correcting a phase of the reflection wave based on the phase correction amount; and a direction detector for detecting the direction to the object based on a difference between corrected phases of the reflection wave received by the first and second receiving elements, a distance between the first and second receiving elements, and a wavelength of the transmission ultrasonic wave corresponding to a sound speed.
    • 检测到物体的方向的超声波装置包括:超声波的发送元件; 第一和第二接收元件; 衍射波相位检测器; 用于衍射波的初始相位的初始相位存储器; 声速检测器; 计算由声速变化引起的相移的相位校正量计算器,并且基于所述衍射波的相位,所述初始相位和所述相位来计算相位校正量; 相位校正元件,基于相位校正量校正反射波的相位; 以及方向检测器,用于基于由第一和第二接收元件接收的反射波的校正相位之间的差异,第一和第二接收元件之间的距离以及对应于发射超声波的波长来检测对象的方向 达到声速。
    • 5. 发明申请
    • OBSTACLE DETECTION DEVICE
    • 障碍物检测装置
    • US20110149690A1
    • 2011-06-23
    • US12956778
    • 2010-11-30
    • Yasuyuki OKUDAHiromi Ariyoshi
    • Yasuyuki OKUDAHiromi Ariyoshi
    • G01S3/80
    • G01S5/22G01S7/539G01S15/42
    • An obstacle detection device mountable on a surface of a movable body includes a transmitting portion for transmitting a transmitting wave, a receiving portion for receiving a reflected wave from an obstacle, a distance calculating portion, a direction calculating portion, a distance storing portion, a direction storing portion, a distance change calculating portion, a direction change calculating portion, and a determining portion. The determining portion determines a shape of the obstacle and a relative position of the obstacle to the movable body based on a direction of the obstacle calculated by the direction calculating portion, the amount of distance change calculated by the distance change calculating portion, and the amount of direction change calculated by the direction change calculating portion.
    • 安装在可移动体的表面上的障碍物检测装置包括:用于发送发送波的发送部,用于从障碍物接收反射波的接收部,距离计算部,方向计算部,距离存储部, 方向存储部分,距离变化计算部分,方向改变计算部分和确定部分。 确定部分基于由方向计算部分计算出的障碍物的方向,由距离变化计算部分计算的距离变化量,确定障碍物的形状和障碍物相对于可移动体的相对位置,以及量 由方向变化计算部计算出的方向变化。
    • 6. 发明授权
    • Obstacle detection device
    • 障碍物检测装置
    • US08588029B2
    • 2013-11-19
    • US12956778
    • 2010-11-30
    • Yasuyuki OkudaHiromi Ariyoshi
    • Yasuyuki OkudaHiromi Ariyoshi
    • G01S3/80G01S5/22
    • G01S5/22G01S7/539G01S15/42
    • An obstacle detection device mountable on a surface of a movable body includes a transmitting portion for transmitting a transmitting wave, a receiving portion for receiving a reflected wave from an obstacle, a distance calculating portion, a direction calculating portion, a distance storing portion, a direction storing portion, a distance change calculating portion, a direction change calculating portion, and a determining portion. The determining portion determines a shape of the obstacle and a relative position of the obstacle to the movable body based on a direction of the obstacle calculated by the direction calculating portion, the amount of distance change calculated by the distance change calculating portion, and the amount of direction change calculated by the direction change calculating portion.
    • 安装在可移动体的表面上的障碍物检测装置包括:用于发送发送波的发送部,用于从障碍物接收反射波的接收部,距离计算部,方向计算部,距离存储部, 方向存储部分,距离变化计算部分,方向改变计算部分和确定部分。 确定部分基于由方向计算部分计算出的障碍物的方向,由距离变化计算部分计算的距离变化量,确定障碍物的形状和障碍物相对于可移动体的相对位置,以及量 由方向变化计算部计算出的方向变化。
    • 9. 发明授权
    • Thermal type air flow meter
    • 热式空气流量计
    • US08806933B2
    • 2014-08-19
    • US13438148
    • 2012-04-03
    • Yasushi KohnoHiromi Ariyoshi
    • Yasushi KohnoHiromi Ariyoshi
    • G01F1/68G01F1/684G01F1/699
    • G01F1/699G01F1/6842
    • A thermal type air flow meter, which detects a flow rate of air flowing in an air passage, includes a sensor portion having a heating element in an air passage, a temperature control unit. The temperature control unit includes a first arm serially connecting a first resistive element and a heater temperature detection resistor which detects a temperature of the heating element, a second arm serially connecting a second resistive element and an air temperature detection resistor which detects a temperature of air flowing in the air passage, and a voltage supply unit which supplies first and second voltages respectively to the first and second arms. The voltage supply unit includes a voltage adjusting portion which can adjust at least one of the first and second voltages such that the detection temperature difference between the heater temperature detection resistor and the air temperature detection resistor becomes constant.
    • 检测在空气通道中流动的空气的流量的热式空气流量计包括在空气通道中具有加热元件的传感器部分,温度控制单元。 温度控制单元包括串联连接第一电阻元件和检测加热元件的温度的加热器温度检测电阻器的第一臂,串联连接第二电阻元件的第二臂和检测空气温度的空气温度检测电阻器 在空气通道中流动;以及电压供应单元,其分别向第一和第二臂提供第一和第二电压。 电压供给单元包括电压调整部,其能够调整第一和第二电压中的至少一个,使得加热器温度检测电阻和空气温度检测电阻之间的检测温度差变为恒定。
    • 10. 发明申请
    • Clock signal output circuit
    • 时钟信号输出电路
    • US20070146072A1
    • 2007-06-28
    • US11604198
    • 2006-11-27
    • Norikazu OhtaYoshie OhiraYasuaki MakinoHiromi Ariyoshi
    • Norikazu OhtaYoshie OhiraYasuaki MakinoHiromi Ariyoshi
    • H03F3/45
    • H03K3/354H03K3/0315H03K2005/0013H03K2005/00143H03K2005/00169
    • 1st to nth pairs of transistors (n=an odd number) are connected in parallel, and each pair of transistors has an upper transistor and a lower transistor connected in series. A point between the upper transistor and the lower transistor of a preceding pair of transistors is connected to a gate of the lower transistor of a subsequent transistor, and the point between the upper transistor and the lower transistor of nth pair of transistors is connected to the gate of the first lower transistor. A capacitor is inserted between the lower transistor and a direct power source. A current regulating circuit connected to gates of the upper transistors, wherein the current regulating circuit supplies a gate voltage to each gate of the each upper transistor. The magnitude of the gate voltage is adjusted such that a magnitude of current that flows between the source and drain of the upper transistor due to the gate voltage is proportional to a voltage between the source and gate of the corresponding lower transistor when the lower transistor is turned on.
    • 并联连接第n个第n个(n =奇数)对的第一个第一和第二个晶体管,每对晶体管具有串联连接的上部晶体管和下部晶体管 。 先前一对晶体管的上部晶体管和下部晶体管之间的点连接到后续晶体管的下部晶体管的栅极,并且上部晶体管和下部晶体管之间的点位于第n / >一对晶体管连接到第一下晶体管的栅极。 电容器插在下晶体管和直接电源之间。 连接到上部晶体管的栅极的电流调节电路,其中电流调节电路向每个上部晶体管的每个栅极提供栅极电压。 调整栅极电压的大小,使得由于栅极电压而在上部晶体管的源极和漏极之间流动的电流的大小与当下部晶体管为相应的下部晶体管的源极和栅极之间的电压成比例时 打开。