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    • 2. 发明授权
    • Differential pressure wind meter
    • 差压风力计
    • US07093483B2
    • 2006-08-22
    • US10848533
    • 2004-05-18
    • Francis Scott CoreyBen Lane
    • Francis Scott CoreyBen Lane
    • G01P5/00
    • G01P5/14G01P13/02
    • A wind meter comprising a plurality of micro-electro-mechanical (MEM) differential pressure sensors positioned in a lobed housing, with an even number of circumferential ports arranged in an equally-spaced, circular pattern at the distal ends of the lobes of the housing, with tubes leading inward from the ports to the MEM sensors. The MEM sensors and other control system electronics are contained in the housing and are fully enclosed therein. The lobed housing structure does not impede or influence the movement of the wind as it passes and yet serves to prevent the ingress of moisture into the housing, thereby preventing fouling of the sensors. The tubular structures include an internal coating of hydrophobic material and are oriented at a slight angle from the horizontal in order to accomplish this protection. The openings at the ends of the tubular structures are positioned outside the fluid boundary layer.
    • 一种风量计,其包括定位在叶状壳体中的多个微电机械(MEM)差压传感器,其中偶数个周向端口以等间隔的圆形图案布置在壳体的凸角的远端 ,从端口向内传导到MEM传感器。 MEM传感器和其他控制系统电子装置包含在壳体中并被完全封闭在其中。 叶片的壳体结构不会阻碍或影响风在其通过时的运动,并且还用于防止湿气进入壳体,从而防止传感器的结垢。 管状结构包括疏水材料的内部涂层,并且与水平方向成微小的角度定向以实现该保护。 管状结构端部的开口位于流体边界层的外侧。
    • 5. 发明申请
    • Table-mounted surgical instrument stabilizers with single-handed or voice activated maneuverability
    • 台式手术器械稳定器具有单手或声控激活的机动性
    • US20100152749A1
    • 2010-06-17
    • US12584366
    • 2009-09-03
    • Walter von PechmannSamuel C. YoonBen LaneKeith LipfordAustin Cox
    • Walter von PechmannSamuel C. YoonBen LaneKeith LipfordAustin Cox
    • A61B19/00
    • A61B90/50A61B2090/508A61B2090/571
    • A surgical instrument stabilizer system for securely holding virtually any instrument during any procedure, delivering vacuum when applicable, and yet allowing easy single-handed or voice activated repositioning by a user. The system utilizes opposing horizontal side-rails mounted to opposing sides of a surgical table, and opposing arms each slidably mounted on a side rail for global lengthwise positioning along the side rails. The arms carry a transverse beam at the foot of the operating table, and a flexible arm is movably mounted on the beam for global lengthwise positioning along the beam. Alternately, the flexible arm may be affixed directly to one of the existing horizontal side rails. The flexible arm leads to an instrument-supporting hand piece pivotally mounted for angular orientation of an instrument supported thereby. The flexible arm can be freely articulated to any position and locked in place. Thus, a supported instrument can be repositioned quickly and easily by single-handed or voice activated manipulation by a surgeon or surgical assistant, and locked in any position up and down along a vertical axis, forward and back, i.e, toward or away from the patient, and rotationally.
    • 一种手术器械稳定器系统,用于在任何程序中可靠地夹持任何仪器,在适用时提供真空,并允许用户轻松进行单手或声音激活的重新定位。 该系统利用安装在手术台的相对侧的相对的水平侧轨,以及相对的臂,每个臂可滑动地安装在侧轨上,用于沿侧轨整体纵向定位。 手臂在手术台的脚部处携带横梁,并且柔性臂可移动地安装在梁上,用于沿着梁的全局纵向定位。 或者,柔性臂可以直接固定在现有的水平侧轨之一上。 柔性臂通向枢轴安装的仪器支撑手柄,用于由其支撑的仪器的角度定向。 柔性臂可以自由铰接到任何位置并锁定到位。 因此,可以通过外科医生或外科助手的单手或声音激活的操纵来快速且容易地重新定位被支撑的器械,并且沿着垂直轴线向前和向后,即朝向或远离 耐心等候。