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    • 93. 发明授权
    • Passive outdoor millimeter wave illuminator
    • 被动户外毫米波照明器
    • US08035091B2
    • 2011-10-11
    • US12118960
    • 2008-05-12
    • Robert Patrick DalyWillem H. Reinpoldt, III
    • Robert Patrick DalyWillem H. Reinpoldt, III
    • G01S17/02
    • H01Q15/147H01Q15/14
    • A passive outdoor millimeter wave illuminator for use with a concealed object detection system is disclosed. In a particular embodiment, the illuminator includes a panel having a plurality of horizontal louvers each having reflective properties for reflecting millimeter wave energy from the sky to a target and a pair of rear support arms for biasing the panel upwards. The illuminator further includes a base wherein a lower portion of the panel is rotatably mounted to a front edge of the base and the rear edge of the base is fixed to a lower end of the rear support so that the panel is capable of rotatable motion in a horizontal plane relative to the base. In addition, a slidable bushing engaged with a portion of the rear support arms is frictionally operable as to maintain the panel at the desired angle.
    • 公开了一种用于隐蔽物体检测系统的被动室外毫米波照明器。 在特定实施例中,照明器包括具有多个水平百叶窗的面板,每个水平百叶窗具有用于将来自天空的毫米波能量反射到目标的反射特性,以及用于将面板向上偏压的一对后支撑臂。 照明器还包括基座,其中面板的下部可旋转地安装到基座的前边缘,并且基座的后边缘固定到后支撑件的下端,使得面板能够以 相对于基座的水平面。 此外,与后支撑臂的一部分接合的可滑动衬套可摩擦地操作以将面板保持在期望的角度。
    • 95. 发明授权
    • Tunable high impedance surface device
    • 可调高阻抗表面装置
    • US07518465B2
    • 2009-04-14
    • US11616061
    • 2006-12-26
    • Jovica SavicGregory J. DunnJohn A. Svigelj
    • Jovica SavicGregory J. DunnJohn A. Svigelj
    • H01P1/06H01P5/04H01Q1/38
    • H05K1/162H01G5/18H01Q15/0066H01Q15/147H05K1/116H05K3/0023H05K3/4652H05K2201/0195H05K2201/09109H05K2201/09436H05K2201/096Y10T29/49117
    • A tunable high impedance surface device (100) includes a conductive ground plane (105) and a plurality of conductive elements (110-114) electrically connected to the conductive ground plane (105). The device (100) also includes a plurality of capacitive elements (120-124) operable to vary a predetermined electromagnetic characteristic of the apparatus and standoffs (130, 132) between the plurality of capacitive elements (120-124) and the plurality of conductive elements (110-114). In one form, laser-drilled and electrically conductive micro-vias (136, 138) extend through the standoffs (130, 132) thereby electrically connecting the plurality of capacitive elements (120-124) to a data bus (140). The capacitive elements (120-124) may be integral with a circuit board (144) that supports the plurality conductive elements (110-114). Either the capacitive elements (120-124) or the conductive elements (110-114) are mechanically flexible and selectively movable to controllably adjust the distance (142) between the capacitive and conductive elements.
    • 可调谐高阻抗表面器件(100)包括导电接地平面(105)和电连接到导电接地平面(105)的多个导电元件(110-114)。 设备(100)还包括多个电容元件(120-124),可操作以改变设备的预定电磁特性和多个电容元件(120-124)与多个导电(120-124)之间的支座(130,132) 元素(110-114)。 在一种形式中,激光钻孔和导电微通孔(136,138)延伸穿过支座(130,132),从而将多个电容元件(120-124)电连接到数据总线(140)。 电容元件(120-124)可以与支撑多个导电元件(110-114)的电路板(144)成一体。 电容元件(120-124)或导电元件(110-114)中的任何一个都是机械地柔性的并且选择性地可移动以可控地调节电容元件和导电元件之间的距离(142)。
    • 98. 发明授权
    • Non-uniform thickness electroactive device
    • 不均匀厚度的电活性器件
    • US07015624B1
    • 2006-03-21
    • US09696526
    • 2000-10-23
    • Ji SuJoycelyn S. Harrison
    • Ji SuJoycelyn S. Harrison
    • H01L41/08
    • H01Q15/147C08F255/10C08F259/00C08F259/08C08F265/08C08F273/00C08F283/006C08F283/12H01L41/094H01L41/0973H01L41/193
    • An electroactive device comprises at least two layers of material, wherein at least one layer is an electroactive material and wherein at least one layer is of non-uniform thickness. The device can be produced in various sizes, ranging from large structural actuators to microscale or nanoscale devices. The applied voltage to the device in combination with the non-uniform thickness of at least one of the layers (electroactive and/or non-electroactive) controls the contour of the actuated device. The effective electric field is a mathematical function of the local layer thickness. Therefore, the local strain and the local bending/torsion curvature are also a mathematical function of the local thickness. Hence the thinnest portion of the actuator offers the largest bending and/or torsion response. Tailoring of the layer thicknesses can enable complex motions to be achieved.
    • 电活性器件包括至少两层材料,其中至少一层是电活性材料,并且其中至少一层具有不均匀的厚度。 该装置可以生产各种尺寸,从大型结构致动器到微尺寸或纳米级装置。 结合至少一个层(电活性和/或非电活性)的非均匀厚度的装置施加的电压控制致动装置的轮廓。 有效电场是局部层厚度的数学函数。 因此,局部应变和局部弯曲/扭曲曲率也是局部厚度的数学函数。 因此,致动器的最薄部分提供最大的弯曲和/或扭转响应。 层厚度的裁剪可以实现复杂的运动。
    • 99. 发明授权
    • Electromagnetic radiation structure control system
    • 电磁辐射结构控制系统
    • US07012271B2
    • 2006-03-14
    • US10401651
    • 2003-03-28
    • Dimitry GorinevskyTristram T. HydeLawrence P. Davis
    • Dimitry GorinevskyTristram T. HydeLawrence P. Davis
    • G01V8/00
    • G01B11/24G02B26/06G02B26/0825H01Q3/01H01Q15/147H01Q19/00
    • A control system is provided for controlling the shape of a flexible electromagnetic radiation structure. The control system includes a plurality of actuators and a plurality of computational elements. Each of the plurality of actuators is coupled to a portion of the radiation structure and can be selectively actuated by the plurality of computational elements. Thus, the plurality of actuators and the plurality of computational elements provide control of the flexible electromagnetic radiation structure shape. In one embodiment, each of the plurality of computational elements controls one section of the flexible electromagnetic radiation structure. Thus each of the plurality of computational elements receives controls the one or more of the plurality of actuator within its section. Together, the plurality of computational elements provide a distributed control network for the radiation structure. The control system thus provides the ability to accurately control and shape a flexible electromagnetic radiation structure.
    • 提供一种用于控制柔性电磁辐射结构的形状的控制系统。 控制系统包括多个致动器和多个计算元件。 多个致动器中的每一个被耦合到辐射结构的一部分并且可以由多个计算元件选择性地致动。 因此,多个致动器和多个计算元件提供对柔性电磁辐射结构形状的控制。 在一个实施例中,多个计算元件中的每一个控制柔性电磁辐射结构的一部分。 因此,多个计算元件中的每一个接收控制其部分内的多个致动器中的一个或多个。 多个计算元件一起提供用于辐射结构的分布式控制网络。 因此,控制系统提供了精确控制和形成柔性电磁辐射结构的能力。