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    • 5. 发明授权
    • Magnetic conveying device with non-magnetic guide rails
    • 具有非磁性导轨的磁性输送装置
    • US5816385A
    • 1998-10-06
    • US782795
    • 1997-01-13
    • Katsumi OotsukiTeruo OokawaMasatoshi Kajiwara
    • Katsumi OotsukiTeruo OokawaMasatoshi Kajiwara
    • B65G21/20B65G15/00
    • B65G21/2018
    • A conveying device which is capable of conveying a magnetic workpiece at high speed with low vibration and low noise and which makes it possible to perform a highly accurate positioning. The conveying device includes a non-magnetic rail which has a guide surface for slidably guiding a first surface of the workpiece and a non-magnetic conveying belt which has a conveying surface coming into contact with a second surface of the workpiece and which is movable along the rail. The belt is driven to rotate by a driving device. A magnet is arranged at a position opposite to the rail with the belt therebetween and generates a magnetic force having a component force which causes the second surface of the workpiece to be brought into close contact with the belt and a component force which causes the first surface of the workpiece to be brought into contact with the rail.
    • 一种输送装置,其能够以低振动和低噪声高速输送磁性工件,并且能够执行高精度的定位。 输送装置包括非磁性轨道,其具有用于可滑动地引导工件的第一表面的引导表面和非磁性输送带,该非磁性输送带具有与工件的第二表面接触并且可沿着 铁路。 皮带由驱动装置驱动旋转。 磁体布置在与轨道相对的位置处,带之间,并且产生具有使得工件的第二表面与带紧密接触的分力的磁力和使第一表面 的工件与导轨接触。
    • 6. 发明申请
    • Ultrasonic Transducer
    • 超声波传感器
    • US20110221304A1
    • 2011-09-15
    • US13116445
    • 2011-05-26
    • Taku MatsumotoMasatoshi Kajiwara
    • Taku MatsumotoMasatoshi Kajiwara
    • H01L41/053
    • G10K9/20G01S7/521G01S15/931G10K9/122
    • An ultrasonic transducer that improves workability of a housing, suppresses variations in resonant frequency, and has stable characteristics is constructed. The ultrasonic transducer includes a bottomed circular cylindrical housing and a piezoelectric element provided at substantially a center of a bottom of the housing. The bottom of the housing has a slope portion that gradually becomes thinner from a position at which the piezoelectric element is provided toward an inner wall surface of the housing, and a flat portion that extends from an outer edge of the slope portion to the inner wall surface of the housing while maintaining a thickness of the outer edge of the slope portion.
    • 提高壳体的加工性的超声波换能器,抑制谐振频率的变化,构成稳定的特性。 超声波换能器包括有底的圆柱形壳体和设置在壳体的底部的大致中心处的压电元件。 壳体的底部具有从设置压电元件的位置朝向壳体的内壁表面逐渐变薄的倾斜部分,以及从斜面部分的外边缘延伸到内壁的平坦部分 同时保持斜面部分的外边缘的厚度。
    • 7. 发明授权
    • Ultrasonic transducer
    • 超声波换能器
    • US08264124B2
    • 2012-09-11
    • US13116445
    • 2011-05-26
    • Taku MatsumotoMasatoshi Kajiwara
    • Taku MatsumotoMasatoshi Kajiwara
    • H01L41/053
    • G10K9/20G01S7/521G01S15/931G10K9/122
    • An ultrasonic transducer that improves workability of a housing, suppresses variations in resonant frequency, and has stable characteristics is constructed. The ultrasonic transducer includes a bottomed circular cylindrical housing and a piezoelectric element provided at substantially a center of a bottom of the housing. The bottom of the housing has a slope portion that gradually becomes thinner from a position at which the piezoelectric element is provided toward an inner wall surface of the housing, and a flat portion that extends from an outer edge of the slope portion to the inner wall surface of the housing while maintaining a thickness of the outer edge of the slope portion.
    • 提高壳体的加工性的超声波换能器,抑制谐振频率的变化,构成稳定的特性。 超声波换能器包括有底的圆柱形壳体和设置在壳体的底部的大致中心处的压电元件。 壳体的底部具有从设置压电元件的位置朝向壳体的内壁表面逐渐变薄的倾斜部分,以及从斜面部分的外边缘延伸到内壁的平坦部分 同时保持斜面部分的外边缘的厚度。
    • 9. 发明授权
    • Holding device for electrical and electronic parts
    • 电气和电子零件的保持装置
    • US4049118A
    • 1977-09-20
    • US719383
    • 1976-08-31
    • Fumio HondaTsuneo TakiMasatoshi Kajiwara
    • Fumio HondaTsuneo TakiMasatoshi Kajiwara
    • B65D73/02H01G13/00
    • B65D73/02Y10S269/903
    • A holding device for holding a plurality of electrical and electronic parts or elements. The holding device of paper or similar resilient material includes a base of tape-like configuration and a plurality of holding portions formed in the longitudinal direction of the base. The holding portion further includes tongue portion formed by a slit which is cut in a direction normal to the longitudinal direction of the base to allow U-shaped lead wires of the electrical parts or elements to be inserted into the base through the slit and to be held in position by pressing the tongue portion into the space defined by the lead wire for efficient handling of such parts and elements as one unit on the base.
    • 一种用于保持多个电气和电子部件或元件的保持装置。 纸或类似弹性材料的保持装置包括带状构造的基部和沿基部的纵向方向形成的多个保持部。 保持部还包括由沿着与基部的纵向方向垂直的方向切割的狭缝形成的舌部,以允许电气部件或元件的U形引线通过狭缝插入基座,并且为 通过将舌片部分压入由引线限定的空间中来保持就位,以有效地处理这些部件和元件作为基座上的一个单元。
    • 10. 发明授权
    • Conveying apparatus for conveying magnetic workpieces
    • 用于输送磁性工件的输送装置
    • US06290056B1
    • 2001-09-18
    • US09391004
    • 1999-09-07
    • Katsumi OotsukiTeruo OkawaMasatoshi Kajiwara
    • Katsumi OotsukiTeruo OkawaMasatoshi Kajiwara
    • B65G3500
    • B65G21/2018
    • A conveying apparatus capable for conveying a magnetic workpiece at high speed with low vibration and low noise, superior in durability, and capable of achieving a reduction in driving force. The conveying apparatus includes a non-magnetic rail having a guide surface for slidably guiding a first surface of a workpiece, a non-magnetic belt having a conveying surface in contact with a second surface of the workpiece and movable along the rail, driving means for running the non-magnetic belt in circulation, and a rotatable roller whose peripheral surface is in contact with the surface of the non-magnetic belt opposite to the feeding surface. Provided in the roller is a magnet adapted to generate a magnetic force having a component force for causing the second surface of the workpiece to be attracted to the roller through the intermediation of the non-magnetic belt and a component force for bringing the first surface of the workpiece into contact with the rail.
    • 一种输送装置,其能够以低振动,低噪音,高耐久性,高速度输送磁性工件,能够实现驱动力的降低。 所述输送装置包括:非磁性轨道,具有用于可滑动地引导工件的第一表面的引导表面;非磁性带,其具有与所述工件的第二表面接触并可沿着所述轨道移动的驱动装置; 运行非磁性带循环,以及可旋转的辊,其外周表面与非馈送表面相对的非磁性带的表面接触。 在辊中设置有适于产生磁力的磁体,该磁力具有通过非磁性带的作用使工件的第二表面被吸引到辊上的分力,以及用于使第一表面 工件与导轨接触。