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    • 4. 发明申请
    • Sensor Assembly
    • 传感器装配
    • US20080202235A1
    • 2008-08-28
    • US11996163
    • 2006-07-20
    • Larry D. LapsScott WarrenErnie WannerRobert D. RingleTimothy J. KrabillGreg Piotrowski
    • Larry D. LapsScott WarrenErnie WannerRobert D. RingleTimothy J. KrabillGreg Piotrowski
    • G01D11/24
    • G01D11/30F16C19/386F16C33/583F16C41/007G01D11/245
    • A sensor assembly. A sensor assembly 34 that has a sensing element 26 is mountable in a housing 5. The housing has an inner surface 12, an outer surface 14, a bore 16 disposed there through and further has a sensed object 24 positioned across a gap from the sensing element 26. The sensor assembly 34 comprises a sensor body 35 having a first portion 36 and a second portion 38, the first portion 36 and the second portion 38 being positioned within the bore 16. The second portion 38 positions the sensing element 26 at an end of the second portion 38. The sensor assembly 34 further comprises an anti-corrosion member 56 positioned within the bore 16. Additionally, the sensor assembly 34 comprises a retaining member 58 removably fastened to the first portion 36 wherein the retaining member 58 such that the anti-corrosion member 56 isolates the sensing element 26 from the outer surface 14 to prevent contaminants from contacting the sensing element 26.
    • 传感器组件。 具有感测元件26的传感器组件34可安装在壳体5中。 壳体具有内表面12,外表面14,设置在其中的孔16,并且还具有穿过与感测元件26的间隙定位的感测物体24。 传感器组件34包括具有第一部分36和第二部分38的传感器主体35,第一部分36和第二部分38定位在孔16内。 第二部分38将感测元件26定位在第二部分38的一端。 传感器组件34还包括定位在孔16内的防腐蚀构件56。 此外,传感器组件34包括可拆卸地紧固到第一部分36的保持构件58,其中保持构件58使得防腐蚀构件56将感测元件26与外表面14隔离,以防止污染物接触感测元件26 。
    • 5. 发明申请
    • TACTICAL SIGHT FOR A SEMI-AUTOMATIC HAND GUN
    • 战术瞄准半自动手枪
    • US20070240354A1
    • 2007-10-18
    • US10860333
    • 2004-06-03
    • Scott Warren
    • Scott Warren
    • F41G1/00
    • F41G1/10
    • A rear tactical sight for a handgun having a barrel with a barrel axis. The sight including a base extending in a longitudinal direction parallel to the barrel axis. The base having a front and an oppositely facing back with sides extending in the longitudinal direction between the front, the back and a bottom. The sight further including an upwardly opened notch joined to the base and spaced above the base bottom which at least partially defines boundaries of a sight line for the sight and a pair of side walls spaced on either side of the sight line each having outer surfaces that are opposite to one another and which extend upwardly from the base sides. The outer surfaces being substantially symmetrical to one another and each including a first arcuate surface extending upwardly and inwardly from a corresponding one of the base sides respectively and a second arcuate surface extending inwardly and upwardly from the first surface.
    • 手枪的后部战术视野,具有带枪筒轴的枪管。 视线包括沿平行于镜筒轴线的纵向延伸的底座。 基部具有前部和相对的后部,侧面在前部,后部和底部之间沿纵向方向延伸。 视线还包括连接到基座并在底部底部之上间隔开的向上开口的凹口,其至少部分地限定用于瞄准器的视线的边界,以及在视线的任一侧上间隔开的一对侧壁,每个侧壁具有外表面, 彼此相对并且从基部侧向上延伸。 外表面彼此基本对称,并且每个外表面包括分别从对应的一个底边向上和向内延伸的第一弧形表面和从第一表面向内和向上延伸的第二弓形表面。
    • 7. 发明申请
    • Systems and methods for detecting target focus and tilt errors during genetic analysis
    • 遗传分析过程中检测目标焦点和倾斜误差的系统和方法
    • US20050094856A1
    • 2005-05-05
    • US10700372
    • 2003-11-03
    • Scott Warren
    • Scott Warren
    • B32B5/02G01B11/27G06K9/00G06K9/40
    • G01B11/272
    • Systems and methods for positioning a camera target relative to a signal acquisition frame. Detection of the target's position deviation may be achieved by a calibration beam being reflected from the target surface and being detected by at least two position sensitive detectors (PSDs) to thereby allow removal of ambiguity in the target's Z-focus error from its tilt error. The PSD-measured quantities can be transformed into target control space quantities that can be used in a control loop to reduce the target position error. The calibration beam and one or more of the PSDs can also be used to detect the target's edges, thereby allowing lateral centering of the target relative to the reference frame.
    • 用于相对于信号采集框架定位相机目标的系统和方法。 可以通过从目标表面反射并由至少两个位置敏感检测器(PSD)检测的校准光束来实现目标的位置偏差的检测,从而允许从其倾斜误差中去除目标的Z-聚焦误差中的歧义。 PSD测量的数量可以转换成可用于控制回路中的目标控制空间数量,以减少目标位置误差。 校准光束和一个或多个PSD也可用于检测目标的边缘,从而允许目标相对于参考系的侧向对中。