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    • 11. 发明申请
    • APPARATUS AND METHODS FOR IMAGING INTERIOR SURFACES OF A TUBE OR THE LIKE
    • 用于成像管的内部表面的装置和方法
    • US20150229887A1
    • 2015-08-13
    • US14180062
    • 2014-02-13
    • UT-Battelle, LLC
    • Roger A. KisnerTimothy J. McIntyreVincent C. Paquit
    • H04N7/18H04N5/225G02B23/24
    • H04N5/2256G02B5/001G02B5/10G02B23/243G02B23/2461G02B23/2476G02B23/2484H04N5/2252H04N2005/2255
    • An exemplary device includes, on a longitudinal axis, an illumination-light source, an axicon (conic) mirror, an image sensor, and a tilted optical element. The light source provides illumination light propagating forwardly on the axis. The axicon mirror reflects the illumination light radially outward, relative to the axis, to the interior surface of a tube to produce reflected light propagating, from the illuminated interior surface, as imaging light back to the axicon, which reflects the imaging light rearwardly. The image sensor receives at least a portion of the imaging light rearwardly reflected by the axicon mirror. The tilted optical element, situated between the axicon mirror and the interior surface, moves a selected first portion of the imaging light away from being incident on the image sensor, while allowing a second portion of the imaging light to be incident on the image sensor.
    • 示例性装置在纵向轴线上包括照明光源,轴锥体(圆锥镜),图像传感器和倾斜的光学元件。 光源提供在轴上向前传播的照明光。 旋转镜将相对于轴向照射的照明光径向向外反射到管的内表面,以产生从被照明的内表面传播到成像光的反射光,反射到向后反射成像光的旋转三棱镜。 图像传感器接收由旋转镜反射器向后反射的成像光的至少一部分。 位于旋转镜和内表面之间的倾斜光学元件移动成像光的所选择的第一部分远离入射到图像传感器上,同时允许成像光的第二部分入射到图像传感器上。
    • 15. 发明申请
    • Direct Write Sensors
    • 直写式传感器
    • US20170070204A1
    • 2017-03-09
    • US15246907
    • 2016-08-25
    • UT-Battelle, LLC
    • Timothy J. McIntyre
    • H03H9/02H01L41/314
    • H03H9/02535G01N29/022G01N2291/0255G01N2291/0256G01N2291/0423G01N2291/0426H01L41/314H03H9/02007H03H9/02275
    • A method of making an acoustic wave sensor includes the steps of providing a piezoelectric substrate layer and printing on the substrate layer a sensor layer comprising a first interdigitated acoustic wave transducer, a sensing film, and positioned on an opposing side of the sensing film from the first interdigitated acoustic wave transducer at least one selected from the group consisting of a second interdigitated acoustic wave transducer and a Bragg reflector. An insulation layer can be printed. An antenna can be printed in an antenna layer, and the insulation layer can be interposed between the antenna layer and the sensor layer. An electrical connection can be printed between the antenna and the first interdigitated acoustic wave transducer. An acoustic wave sensor is also disclosed.
    • 制作声波传感器的方法包括以下步骤:提供压电基片层,并在基片层上印刷传感器层,该传感器层包括第一交叉声波换能器,感测膜,并位于感测膜的相对侧上 第一叉指声波换能器,其选自由第二叉指声波换能器和布拉格反射器组成的组中的至少一个。 可以打印绝缘层。 天线可以印刷在天线层中,并且绝缘层可以插入在天线层和传感器层之间。 可以在天线和第一叉指声波换能器之间打印电连接。 还公开了一种声波传感器。
    • 16. 发明授权
    • Sensor system for fuel transport vehicle
    • 燃油运输车辆传感器系统
    • US09291609B2
    • 2016-03-22
    • US13787430
    • 2013-03-06
    • UT-Battelle, LLC
    • Dennis Duncan EarlTimothy J. McIntyreDavid L. West
    • G01N33/22C10L1/00G01N33/28
    • G01N33/22C10L1/003G01N33/2882
    • An exemplary sensor system for a fuel transport vehicle can comprise a fuel marker sensor positioned between a fuel storage chamber of the vehicle and an access valve for the fuel storage chamber of the vehicle. The fuel marker sensor can be configured to measure one or more characteristics of one or more fuel markers present in the fuel adjacent the sensor, such as when the marked fuel is unloaded at a retail station. The one or more characteristics can comprise concentration and/or identity of the one or more fuel markers in the fuel. Based on the measured characteristics of the one or more fuel markers, the sensor system can identify the fuel and/or can determine whether the fuel has been adulterated after the marked fuel was last measured, such as when the marked fuel was loaded into the vehicle.
    • 用于燃料运输车辆的示例性传感器系统可以包括位于车辆的燃料存储室和用于车辆的燃料储存室的进入阀之间的燃料标记传感器。 燃料标记传感器可以被配置成测量存在于邻近传感器的燃料中的一个或多个燃料标记的一个或多个特性,例如当标记的燃料在零售站卸载时。 一个或多个特征可以包括燃料中的一个或多个燃料标记物的浓度和/或身份。 基于一个或多个燃料标记的测量特性,传感器系统可以识别燃料和/或可以确定在最后测量标记的燃料之后燃料是否被掺杂,例如当标记的燃料被加载到车辆中时 。
    • 17. 发明申请
    • SENSOR SYSTEM FOR FUEL TRANSPORT VEHICLE
    • 燃油运输车辆传感器系统
    • US20130283893A1
    • 2013-10-31
    • US13787430
    • 2013-03-06
    • UT-BATTELLE, LLC
    • Dennis Duncan EarlTimothy J. McIntyreDavid L. West
    • G01N33/22
    • G01N33/22C10L1/003G01N33/2882
    • An exemplary sensor system for a fuel transport vehicle can comprise a fuel marker sensor positioned between a fuel storage chamber of the vehicle and an access valve for the fuel storage chamber of the vehicle. The fuel marker sensor can be configured to measure one or more characteristics of one or more fuel markers present in the fuel adjacent the sensor, such as when the marked fuel is unloaded at a retail station. The one or more characteristics can comprise concentration and/or identity of the one or more fuel markers in the fuel. Based on the measured characteristics of the one or more fuel markers, the sensor system can identify the fuel and/or can determine whether the fuel has been adulterated after the marked fuel was last measured, such as when the marked fuel was loaded into the vehicle.
    • 用于燃料运输车辆的示例性传感器系统可以包括位于车辆的燃料存储室和用于车辆的燃料储存室的进入阀之间的燃料标记传感器。 燃料标记传感器可以被配置成测量存在于邻近传感器的燃料中的一个或多个燃料标记的一个或多个特性,例如当标记的燃料在零售站卸载时。 一个或多个特征可以包括燃料中的一个或多个燃料标记物的浓度和/或身份。 基于一个或多个燃料标记的测量特性,传感器系统可以识别燃料和/或可以确定在最后测量标记的燃料之后燃料是否被掺杂,例如当标记的燃料被加载到车辆中时 。