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. 发明授权
    • Outboard propulsion unit supporting system
    • 舷外推进单元支撑系统
    • US4889507A
    • 1989-12-26
    • US129551
    • 1987-12-07
    • Hideo TaharaNovuo MakiharaHiroshi Ono
    • Hideo TaharaNovuo MakiharaHiroshi Ono
    • B63H20/02B63H20/08F02B61/04
    • F02B61/045B63H20/06B63H20/08B63H20/106B63H20/12
    • An outboard propulsion unit supporting system by which an outboard propulsion unit is vertically movably supported to the rear end section of a boat. The supporting system is comprised of a pair of slit brackets installed to the rear end section of the boat. Each slit bracket is formed with a generally vertically extending slit in which a guide roller rotatably secured to the side of the propulsion unit is movably engaged. The boat is provided at its transom with a pair of thrust rollers on which a pair of generally vertically extending guide rails formed on the propulsion unit side are detachably contact, respectively. Additionally, a tilt cylinder is provided between the boat transom and the propulsion unit side thereby to raise the propulsion unit generally vertically.
    • 外侧推进单元支撑系统,外部推进单元通过该外部推进单元垂直地可移动地支撑在船的后端部分。 支撑系统由安装在船尾后端部分的一对狭缝支架组成。 每个狭缝支架形成有大致垂直延伸的狭缝,其中可旋转地固定在推进单元侧的导辊可移动地接合。 船在其横梁上设置有一对推力辊,分别在其上形成在推进单元侧的一对大致垂直延伸的导轨可拆卸地接触。 此外,在船艉板和推进单元侧之间设置倾斜缸,从而大致垂直地升高推进装置。
    • 2. 发明授权
    • Outboard propulsion unit supporting system for boat
    • 船外推进单元支撑系统
    • US4878865A
    • 1989-11-07
    • US129561
    • 1987-12-07
    • Novuo MakiharaHiroshi OnoNorimasa Kawamura
    • Novuo MakiharaHiroshi OnoNorimasa Kawamura
    • B63H20/02B63H20/00B63H20/08F02B61/04
    • B63H20/10B63B1/20B63H20/06B63H20/106
    • A system for supporting an outboard propulsion unit to the transom of a boat. The system is comprised of a pair of transom brackets which are fixedly secured to the boat transom and positioned spaced from each other to support the outboard propulsion unit. A pair of deflector side plate sections are provided to be respectively integral with the transom brackets, and extend downwardly and rearwardly relative to the boat transom. Additionally, a deflector bottom plate section is provided to connect the lower end portions of the deflector side plate sections. The deflector bottom plate section extends rearwardly relative to the boat transom and positioned between the boat and the outboard propulsion unit. The deflector side and bottom plate sections constitute a deflector for regulating backward water flow from the boat transom, thereby preventing generation of water splash.
    • 用于将船外侧推进单元支撑到船的横梁的系统。 该系统由一对艉板支架组成,它们固定地固定在船艉板上并且彼此间隔设置以支撑舷外推进单元。 一对偏转器侧板部分分别设置成与艉板支架一体,并相对于船艉板向下和向后延伸。 另外,偏转器底板部分设置成连接偏转器侧板部分的下端部分。 偏转器底板部分相对于船尾板向后延伸并且定位在船和外侧推进单元之间。 偏转器侧和底板部分构成用于调节来自船尾板的向后水流的偏转器,从而防止产生水飞溅。
    • 10. 发明授权
    • Acceleration sensor
    • 加速度传感器
    • US08497672B2
    • 2013-07-30
    • US12881765
    • 2010-09-14
    • Takashi KawakuboToshihiko NaganoMichihiko NishigakiHiroshi Ono
    • Takashi KawakuboToshihiko NaganoMichihiko NishigakiHiroshi Ono
    • G01P15/00
    • G01P15/097G01P15/0888G01P15/18G01P2015/0817G01P2015/0845
    • The present embodiments provide an acceleration sensor, which enables highly accurate detection and has an extremely compact size. The acceleration sensor of the present embodiments is provided with a substrate, a anchor portion formed on the substrate, a support beam, which has one end connected to the anchor portion and extends across a space from the substrate, and a proof mass which is connected to the other end of the support beam and held across a space from the substrate. The acceleration sensor is further provided with first and second piezoelectric bending resonators, a comparison unit, and a calculation unit. The first and second piezoelectric bending resonators have one end connected to the anchor portion and the other end connected to the proof mass or the support beam and have a stack of a first electrode, a first piezoelectric film, and a second electrode. The first and second piezoelectric bending resonators extend on the both sides of the support beam and perform bending resonance motion in a direction perpendicular to the piezoelectric film. The comparison unit measures a difference of a resonance frequency between the first and second piezoelectric bending resonators. The calculation unit calculates an acceleration in a direction perpendicular to the extending direction of the support beam in the substrate surface from the difference of the resonance frequency.
    • 本实施例提供加速度传感器,其能够进行高精度的检测并具有非常紧凑的尺寸。 本实施例的加速度传感器设置有基板,形成在基板上的锚固部分,支撑梁,其一端连接到锚定部分并且延伸穿过基板的空间,以及连接的检测质量块 到支撑梁的另一端并且保持在与基板的空间上。 加速度传感器还设置有第一和第二压电弯曲谐振器,比较单元和计算单元。 第一和第二压电弯曲谐振器的一端连接到锚定部分,另一端连接到检测质量块或支撑梁,并且具有第一电极,第一压电膜和第二电极的堆叠。 第一和第二压电弯曲谐振器在支撑梁的两侧延伸,并在垂直于压电薄膜的方向上进行弯曲共振运动。 比较单元测量第一和第二压电弯曲谐振器之间的谐振频率的差。 计算单元从谐振频率的差计算与基板表面中的支撑梁的延伸方向垂直的方向的加速度。