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    • 1. 发明授权
    • Ultrasonic sensor
    • 超声波传感器
    • US07737609B2
    • 2010-06-15
    • US12425548
    • 2009-04-17
    • Koji MurataMasato KotaniTakaaki AsadaTakayuki ShimamotoHiroyuki HiranoMio Furuya
    • Koji MurataMasato KotaniTakaaki AsadaTakayuki ShimamotoHiroyuki HiranoMio Furuya
    • H01L41/08H04R17/00
    • G10K9/122G01S7/521G01S15/931G10K9/22
    • An ultrasonic sensor includes a cylindrical outer case with a bottom and a piezoelectric element fixed to the inner side of the bottom portion of the outer case. A ring-shaped inner case having a central hole extending in the axial direction in the central portion thereof is disposed inside the sidewall portion of the outer case. A flat or substantially flat portion is provided around the central hole of the inner case, and a viscoelastic filler is arranged so as to extend from the central hole to the flat or substantially flat portion of the inner case. A tabular member is disposed on the flat or substantially flat portion so as to face the flat or substantially flat portion with the filler interposed therebetween. When the inner case vibrates, shear deformation occurs in the filler interposed between the flat or substantially flat portion and the tabular member since the tabular member is not substantially deformed, and the vibration is reduced by the viscoelastic damping effect.
    • 超声波传感器包括具有底部的圆柱形外壳和固定到外壳的底部的内侧的压电元件。 具有在其中心部分沿轴向延伸的中心孔的环形内壳设置在外壳的侧壁部分的内侧。 在内壳的中心孔周围设置平坦或基本上平坦的部分,并且粘弹性填料被布置成从中心孔延伸到内壳的平坦或基本上平坦的部分。 板状构件设置在平坦或基本上平坦的部分上,以便面对平坦或基本上平坦的部分,填充物插入其间。 当内壳体振动时,由于平板状构件基本上不变形,插入在平坦部分或基本上平坦的部分之间的填料中产生剪切变形,并且通过粘弹性阻尼效应减小了振动。
    • 2. 发明授权
    • Ultrasonic transducer
    • 超声波换能器
    • US07548014B2
    • 2009-06-16
    • US12103912
    • 2008-04-16
    • Takaaki AsadaTakayuki ShimamotoKoji MurataMio Furuya
    • Takaaki AsadaTakayuki ShimamotoKoji MurataMio Furuya
    • H01L41/08
    • G10K9/122G01S7/521G01S15/931G01S2015/938G10K9/22
    • An ultrasonic transducer includes a cylindrical cap member having a bottom. A piezoelectric element is bonded to the inner side of a bottom portion of the cap member using a conductive adhesive or other suitable adhesive. An inner frame made of a material having an acoustic impedance greater than that of the cap member is fitted into the cap member so as to be in contact with a side portion, including the end portion, of the cap member. Through-holes are provided in the side portion of the inner frame. Lead wires are connected to the piezoelectric element and the inner frame, respectively. A sound absorber and a damper are inserted into the inner frame. The damper is in direct contact with the side portion of the cap member via the through-holes of the inner frame.
    • 超声波换能器包括具有底部的圆柱形盖构件。 使用导电粘合剂或其它合适的粘合剂将压电元件结合到盖构件的底部的内侧。 由具有大于盖构件的声阻抗的材料制成的内框架被装配到盖构件中以便与帽构件的包括端部的侧部接触。 在内框架的侧部设有通孔。 引线分别连接到压电元件和内框架。 吸音器和阻尼器插入到内框架中。 阻尼器经由内框架的通孔与盖构件的侧部直接接触。
    • 4. 发明授权
    • Ultrasonic transducer
    • 超声波换能器
    • US07692367B2
    • 2010-04-06
    • US12467361
    • 2009-05-18
    • Hiroyuki HiranoTakaaki AsadaMio FuruyaJunichi Nishie
    • Hiroyuki HiranoTakaaki AsadaMio FuruyaJunichi Nishie
    • H01L41/053
    • G10K9/22H04R17/00
    • A piezoelectric device is attached to an inner bottom surface of the outer case having a tubular shape including a bottom, and an inner case is disposed within the outer case. In an ultrasonic vibration acting surface of the inner case that is arranged to face the bottom surface of the outer case, a mass of the inner case is arranged to restrain vibration of the outer case, which is generated by the piezoelectric device. A first cutout is provided in a portion of the ultrasonic vibration acting surface and arranged to face the piezoelectric device so as to flatten an ultrasonic beam generated by vibrations of the piezoelectric device and the outer case. Second cutouts are provided at locations on the ultrasonic vibration acting surface spaced away from the first cutout in a line symmetrical relationship with a long axis of the first cutout defining a symmetrical axis.
    • 压电装置附接到具有包括底部的管状形状的外壳的内底表面,并且内壳设置在外壳内。 在内壳的配置成面向外壳的底面的超声波振动作用面中,内壳的质量被配置为抑制由压电元件产生的外壳的振动。 第一切口设置在超声波振动作用面的一部分上,并配置为面对压电装置,以使由压电装置和外壳振动产生的超声波束变平。 第二切口设置在与限定对称轴线的第一切口的长轴线对称关系的与第一切口间隔开的超声波振动作用面上的位置处。
    • 6. 发明授权
    • Arteriosclerosis diagnostic device
    • 动脉硬化诊断装置
    • US08414500B2
    • 2013-04-09
    • US12784103
    • 2010-05-20
    • Mami MatsukawaYoshiaki WatanabeMasashi SaitoTakaaki AsadaMio Furuya
    • Mami MatsukawaYoshiaki WatanabeMasashi SaitoTakaaki AsadaMio Furuya
    • A61B5/0402
    • A61B7/04A61B5/02007A61B5/0285
    • An arteriosclerosis diagnostic device according to various embodiments is a simple device, resistant to an external factor, such as an error resulting from a skin surface, and capable of measuring the degree of hardness of an artery. The arteriosclerosis diagnostic device detects a heart sound and a pulse wave at least one location of a living body, the pulse wave propagating through an artery in relation to the heart sound, converts detected signals thereof into respective frequency signals, specifies the peak frequency of each of the frequency signals, and determines the degree of arteriosclerosis on the basis of the difference between the peak frequency of the heart sound and the peak frequency of the pulse wave. Accordingly, the degree of arteriosclerosis can be determined by comparison between the frequency signals.
    • 根据各种实施方式的动脉硬化症诊断装置是能够抵抗外部因素的简单装置,例如由皮肤表面产生的误差,并且能够测量动脉的硬度。 动脉硬化诊断装置通过与心脏声音相关的动脉传播的脉搏波将检测到的信号转换成各自的频率信号,来确定生物体的至少一个位置的心脏声音和脉搏波,将各个频率信号的峰值频率 的频率信号,并且基于心音的峰值频率与脉搏波的峰值频率之间的差来确定动脉硬化的程度。 因此,可以通过频率信号之间的比较来确定动脉硬化的程度。