会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • MANUFACTURING METHOD OF PIEZOELECTRIC DEVICE
    • 压电器件的制造方法
    • US20110173787A1
    • 2011-07-21
    • US12976252
    • 2010-12-22
    • Atsushi ONOTakayuki KIKUCHI
    • Atsushi ONOTakayuki KIKUCHI
    • H01L41/22
    • H03H9/1014H03H3/02Y10T29/42
    • A manufacturing method of a piezoelectric device includes: forming a lid for sealing a cavity of a package base by forming a recess part and forming a through hole in an inner surface of the recess part in a metal plate; fixing the lid to the package base containing a piezoelectric vibrating reed so that the recess part may project toward the package base side; providing a metal piece in the recess part; decompressing the cavity via the through hole; and closing the through hole by applying a laser to the metal piece to melt the metal piece, wherein, at forming of the lid, the through hole is formed in a direction orthogonal to a thickness direction of the metal plate.
    • 压电装置的制造方法包括:形成用于通过形成凹部密封封装基座的空腔并在金属板的凹部的内表面形成通孔的盖; 将盖固定到包含压电振动片的包装基底上,使得凹部可朝向包装基部侧突出; 在所述凹部中设置金属片; 通过通孔减压空腔; 并且通过对所述金属片施加激光来关闭所述通孔,以熔化所述金属片,其中,在形成所述盖时,所述通孔形成在与所述金属板的厚度方向正交的方向上。
    • 2. 发明申请
    • PHYSICAL QUANTITY DETECTION ELEMENT, PHYSICAL QUANTITY DETECTION DEVICE, AND ELECTRONIC APPARATUS
    • 物理量检测元件,物理量检测装置及电子装置
    • US20130036819A1
    • 2013-02-14
    • US13568454
    • 2012-08-07
    • Fumio ICHIKAWAYoichi OKUMURATakayuki KIKUCHI
    • Fumio ICHIKAWAYoichi OKUMURATakayuki KIKUCHI
    • G01C19/56
    • G01C19/5607
    • A physical quantity detection element includes a base part, a first connection part and a second connection part respectively extending from the base part in opposite directions to each other along the X-axis, a pair of first drive vibrating arm and second drive vibrating arm and a pair of third drive vibrating arm and fourth drive vibrating arm respectively extending from the first connection part or the second connection part in opposite directions to each other along the Y-axis, a first drive detection vibrating arm and a second drive detection vibrating arm obliquely extending from the first connection part, a third drive detection vibrating arm and a fourth drive detection vibrating arm obliquely extending from the second connection part, and a first detection vibrating arm and a second detection vibrating arm respectively extending from the base part in opposite directions to each other along the Y-axis.
    • 物理量检测元件包括基部,第一连接部和第二连接部,其分别沿着X轴相对于彼此沿相反方向从基部延伸;一对第一驱动振动臂和第二驱动振动臂, 一对第三驱动振动臂和第四驱动振动臂,其分别从所述第一连接部或所述第二连接部沿着相对于所述Y轴彼此相反的方向延伸;第一驱动检测振动臂和第二驱动检测振动臂, 从第一连接部分延伸,第三驱动检测振动臂和从第二连接部分倾斜延伸的第四驱动检测振动臂,以及第一检测振动臂和第二检测振动臂,分别从基部向相反方向延伸到 彼此沿着Y轴。
    • 4. 发明申请
    • PHYSICAL QUANTITY SENSOR
    • 物理量传感器
    • US20090205421A1
    • 2009-08-20
    • US12364074
    • 2009-02-02
    • Hideto NARUSETakayuki KIKUCHI
    • Hideto NARUSETakayuki KIKUCHI
    • G01C19/56
    • G01C19/5607
    • [Problems to be Solved] To confirm whether a physical quantity sensor operates normally or not with a simple structure.[Means to Solve the Problems] A physical quantity sensor includes a vibration element having drive arm sections and a detection arm section a driving circuit generating a driving signal for driving the drive arm sections with a first driving line and a second driving line, and a detection circuit detecting a detected signal from the detection arm section with a first detection line and a second detection line. At least one of the first driving line and the second driving line is wired so that a static coupling is generated with respect to the first detection line and the second detection line.
    • [待解决的问题]通过简单的结构确认物理量传感器是否正常工作。 解决问题的手段物理量传感器包括具有驱动臂部分的振动元件和检测臂部分,驱动电路产生用于利用第一驱动线和第二驱动线驱动驱动臂部分的驱动信号,以及 检测电路用第一检测线和第二检测线检测来自检测臂部分的检测信号。 第一驱动线和第二驱动线中的至少一方被布线,使得相对于第一检测线和第二检测线产生静态耦合。
    • 8. 发明申请
    • VIBRATION GYRO ELEMENT, GYRO SENSOR, AND ELECTRONIC APPARATUS
    • 振动陀螺元件,陀螺传感器和电子设备
    • US20130019681A1
    • 2013-01-24
    • US13550903
    • 2012-07-17
    • Masashi SHIMURATakayuki KIKUCHI
    • Masashi SHIMURATakayuki KIKUCHI
    • G01C19/5607
    • G01C19/5607
    • A vibration gyro element includes drive vibrating arms and detection vibrating arms at the opposite side, and has a first detection mode in which the drive vibrating arms flexurally vibrate oppositely to each other in an out-of-plane direction in an opposite phase to an action direction of Coriolis force and the detection vibrating arms flexurally vibrate oppositely to each other in the out-of-plane direction in an opposite phase to that of the drive vibrating arms, and a second detection mode in which the drive vibrating arms flexurally vibrate oppositely to each other in the out-of-plane direction in the same phase as the action direction of the Coriolis force and the detection vibrating arms flexurally vibrate oppositely to each other in the out-of-plane direction in the same phase as that of the drive vibrating arms.
    • 振动陀螺元件包括在相对侧的驱动振动臂和检测振动臂,并且具有第一检测模式,其中驱动振动臂在与驱动振动臂相反的相位的相位相反的方向上彼此相反地彼此振动 科里奥利力的方向和检测振动臂在与驱动振动臂相反的相位的方向上在面外方向上彼此相反地弯曲振动;第二检测模式,其中驱动振动臂相对于 在与科里奥利力的作用方向相同的相位的面外方向上彼此相邻,并且检测用振动臂在与驱动器相同的相位的面外的方向上彼此相反地弯曲地振动 振动臂。
    • 9. 发明申请
    • BENDING VIBRATION PIECE, METHOD FOR MANUFACTURING THE SAME AND ELECTRONIC DEVICE
    • 弯曲振动片,其制造方法和电子设备
    • US20120326571A1
    • 2012-12-27
    • US13533511
    • 2012-06-26
    • Masashi SHIMURATakayuki KIKUCHI
    • Masashi SHIMURATakayuki KIKUCHI
    • H01L41/04H01L41/22
    • H03H3/02H03H9/21H03H2003/026Y10T29/42
    • A double-side tuning fork-type bending vibration piece having a basal part, a pair of drive vibration arms, a pair of detection vibration arms, drive electrodes and detection electrodes includes adjustment films of a metallic material or the like formed in connecting areas between the vibration arms and the basal part. The adjustment films are formed in such a way as to cover an area of tapered portions formed in connecting parts between the drive vibration arms and the basal part, an area of the basal part near the tapered portions and an area of the drive vibration arms. While monitoring a detection current outputted from the detection electrodes when the drive vibration arms are excited in driving mode, the adjustment films are partly deleted by laser irradiation so that the detection current becomes 0.
    • 具有基部,一对驱动振动臂,一对检测振动臂,驱动电极和检测电极的双侧音叉式弯曲振动片包括形成在金属材料等之间的连接区域中的调整膜 振动臂和基部。 调整膜形成为覆盖形成在驱动振动臂和基部之间的连接部分的锥形部分的区域,靠近锥形部分的基部的区域和驱动振动臂的区域。 当在驱动模式下驱动振动臂被激励时监测从检测电极输出的检测电流,通过激光照射部分地去除调整膜,使得检测电流变为0。
    • 10. 发明申请
    • BENDING VIBRATION PIECE AND ELECTRONIC DEVICE
    • 弯曲振动片和电子装置
    • US20120325000A1
    • 2012-12-27
    • US13527077
    • 2012-06-19
    • Masashi SHIMURATakayuki KIKUCHI
    • Masashi SHIMURATakayuki KIKUCHI
    • G01C19/5607
    • G01C19/5621
    • A bending vibration piece has a pair of drive vibration arms and a pair of detection vibration arms in an opposite direction thereto which are connected to a supporting part. The supporting part has recessed portions formed on both lateral parts in a direction of width, and a through-hole formed substantially at the center in a plane part of the supporting part and more toward the drive vibration arms than the recessed portions are. On a surface of the supporting part, drive electrode pads are arranged toward the drive vibration arms and detection electrode pads are arranged toward the detection vibration arms, with these electrode pads being separated from each other in a longitudinal direction by the recessed portions on both lateral part of the supporting part and the through-hole in the plane part.
    • 弯曲振动片具有与支撑部连接的一对驱动振动臂和与其相反的方向的一对检测振动臂。 支撑部分沿宽度方向形成在两个横向部分上的凹陷部分,以及在支撑部分的平面部分中基本上形成在中心并且比凹部更靠近驱动振动臂的通孔。 在支撑部件的表面上,驱动电极焊盘被布置成朝向驱动振动臂,并且检测电极焊盘被布置成朝向检测振动臂,这些电极焊盘在纵向方向上被两个侧面上的凹部彼此分离 支撑部分的一部分和平面部分中的通孔。