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    • 31. 发明授权
    • Ultrasonic sensor
    • 超声波传感器
    • US07714482B2
    • 2010-05-11
    • US12230955
    • 2008-09-09
    • Yasuyuki OkudaMakiko Sugiura
    • Yasuyuki OkudaMakiko Sugiura
    • H01L41/08
    • G01S7/521G01S15/931H04R17/02
    • An ultrasonic sensor is disclosed. The ultrasonic sensor includes a plurality of sensor elements arranged in an array. Each sensor element includes an ultrasonic sensing element and an acoustic matching member. The ultrasonic sensor further includes a bonding member having a thickness approximately equal to a space interval between adjacent ultrasonic sensing elements. The bonding member adhesively fixes the plurality of sensor elements, and includes a portion contacting each ultrasonic sensing element. An elastic modulus of the portion is smaller than that of each ultrasonic sensing element.
    • 公开了一种超声波传感器。 超声波传感器包括排列成阵列的多个传感器元件。 每个传感器元件包括超声波感测元件和声匹配元件。 超声波传感器还包括具有大致等于相邻的超声波感测元件之间的间隔的厚度的接合构件。 粘合构件粘合地固定多个传感器元件,并且包括接触每个超声波感测元件的部分。 该部分的弹性模量小于每个超声波感测元件的弹性模量。
    • 34. 发明申请
    • Ultrasonic sensor
    • 超声波传感器
    • US20090085439A1
    • 2009-04-02
    • US12230955
    • 2008-09-09
    • Yasuyuki OkudaMakiko Sugiura
    • Yasuyuki OkudaMakiko Sugiura
    • H01L41/00
    • G01S7/521G01S15/931H04R17/02
    • An ultrasonic sensor is disclosed. The ultrasonic sensor includes a plurality of sensor elements arranged in an array. Each sensor element includes an ultrasonic sensing element and an acoustic matching member. The ultrasonic sensor further includes a bonding member having a thickness approximately equal to a space interval between adjacent ultrasonic sensing elements. The bonding member adhesively fixes the plurality of sensor elements, and includes a portion contacting each ultrasonic sensing element. An elastic modulus of the portion is smaller than that of each ultrasonic sensing element.
    • 公开了一种超声波传感器。 超声波传感器包括排列成阵列的多个传感器元件。 每个传感器元件包括超声波感测元件和声匹配元件。 超声波传感器还包括具有大致等于相邻的超声波感测元件之间的间隔的厚度的接合构件。 粘合构件粘合地固定多个传感器元件,并且包括接触每个超声波感测元件的部分。 该部分的弹性模量小于每个超声波感测元件的弹性模量。
    • 37. 发明申请
    • Ultrasonic sensor
    • 超声波传感器
    • US20070268783A1
    • 2007-11-22
    • US11797205
    • 2007-05-01
    • Yasuyuki OkudaTakahiko YoshidaMakiko SugiuraRyounosuke TeraYuuta Hasebe
    • Yasuyuki OkudaTakahiko YoshidaMakiko SugiuraRyounosuke TeraYuuta Hasebe
    • G01S15/02
    • G01S15/931G01H11/08G01S7/521
    • An ultrasonic sensor includes a plurality of vibrating parts, a plurality of receiving elements, and a waveguide. Each of the vibrating parts vibrates when a corresponding ultrasonic wave reflected by a detection object is transmitted thereto, and receives the ultrasonic wave. Each of the elements includes corresponding one of the vibrating parts and detects the object using the corresponding ultrasonic wave. The ultrasonic wave is transmitted through the waveguide to each of the elements. The waveguide includes a first opening facing the object, a second opening, and a reflecting surface that reflects the ultrasonic wave in a direction to each of the vibrating parts. The ultrasonic wave enters through the first opening. The second opening is not viewable from the first opening. The second opening holds the elements such that the each of the vibrating parts faces a direction where the each of the vibrating parts receives the ultrasonic wave.
    • 超声波传感器包括多个振动部件,多个接收元件和波导管。 当由检测对象反射的相应的超声波被传送到每个振动部分时,其振动,并接收超声波。 每个元件包括对应的一个振动部件,并使用相应的超声波检测物体。 超声波通过波导传输到每个元件。 波导包括朝向物体的第一开口,第二开口和反射表面,该反射表面朝向每个振动部分的方向反射超声波。 超声波通过第一个开口进入。 第二个开口不能从第一个开口看到。 第二开口保持元件,使得每个振动部件面对每个振动部件接收超声波的方向。
    • 40. 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。