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    • 93. 发明申请
    • MEMS TUNNELING MICRO SEISMIC SENSOR
    • MEMS隧道微地震传感器
    • US20140190259A1
    • 2014-07-10
    • US14151487
    • 2014-01-09
    • Farrokh Mohamadi
    • Farrokh Mohamadi
    • G01P15/03B81C1/00
    • G01P15/032G01P15/08G01P15/0802G01P15/0894
    • A tunneling accelerometer that can be implemented as a MEMS micro sensor provides differential sensing that minimizes large forces resulting from undesired environmental effects. Used as a seismic sensor, for example, the accelerometer exhibits maximum sensitivity for small seismic waves and suppresses very large seismic activities occurring at shallower depths. In one embodiment, detected current decreases from its maximum for stronger forces and is maximized for small vibrations. In another embodiment, separation of columns of top and bottom tunneling tip pairs, one column from the next, increases gradually so that the tunneling accelerometer suppresses sensitivity to large accelerations such as large seismic activity. A manufacturing process for the accelerometer provides reduced complexity for better yield.
    • 可以实现为MEMS微型传感器的隧道式加速度计提供差分感测,使得由不期望的环境影响产生的大力量最小化。 例如,作为地震传感器,加速度计对小地震波具有最大的灵敏度,并抑制在较浅的深度发生的非常大的地震活动。 在一个实施例中,检测到的电流从其最大值下降到较强的力,并且对于小的振动而最大化。 在另一个实施例中,顶部和底部隧穿尖端对的分离,一列从下一个逐渐增加,使得隧道加速度计抑制对诸如大地震活动的大加速度的敏感性。 加速度计的制造过程提供了降低的复杂性以获得更好的产量。
    • 94. 发明申请
    • EXTENDED RANGE, HIGH DATA RATE, POINT-TO-POINT CROSSLINK PLACED ON FIXED OR MOBILE ELEVATED PLATFORMS
    • 固定或移动平台上的扩展范围,高数据速率,点对点交换
    • US20140168010A1
    • 2014-06-19
    • US13706220
    • 2012-12-05
    • Farrokh Mohamadi
    • Farrokh Mohamadi
    • H04B7/04G01S19/01
    • H04B7/18506
    • Methods and systems are provided for relocatable wireless communication links to locations that may present accessibility problems using, for example, small unmanned aerial systems (sUAS). An sUAS implemented as an easy-to-operate, small vertical take-off and landing (VTOL) aircraft with hovering capability for holding station position may provide an extended range, highly secure, high data rate, point-to-point wireless communication link (also referred to as a “crosslink”) that is easily relocatable with very fast set-up and relocating times. A transceiver using beam forming and power combining techniques enables a very high gain antenna array with very narrow beam width and superb pointing accuracy. The aircraft includes a control system enabling three-dimensional pointing and sustaining directivity of the beam independently of flight path of the aircraft.
    • 为可重定位的无线通信链路提供方法和系统,该链路可能使用例如小型无人空中系统(sUAS)来呈现可访问性问题的位置。 作为一种易于操作的小型垂直起飞和降落(VTOL)飞机实现的sUAS,具有用于保持站位置的悬停能力,可以提供扩展范围,高度安全,高数据速率的点对点无线通信链路 (也称为“交联”),其以非常快的设置和重新定位时间容易地重新定位。 使用波束形成和功率组合技术的收发机能够实现非常高的增益天线阵列,其具有非常窄的波束宽度和极好的指向精度。 该飞机包括一个控制系统,能够独立于飞行器飞行路径的三维指向和维持梁的方向性。
    • 96. 发明申请
    • HIGH-EFFICIENCY COMPACT MINIATURIZED ENERGY HARVESTING AND STORAGE DEVICE
    • 高效小型化能源采集和存储设备
    • US20120228995A1
    • 2012-09-13
    • US13476732
    • 2012-05-21
    • Farrokh Mohamadi
    • Farrokh Mohamadi
    • H01L41/113B29C33/40H01L41/22
    • H01L41/29H01L41/047H01L41/113H02N2/186Y10T29/42
    • An energy harvesting and storage system includes an array of piezoelectric electrodes, in which the piezoelectric electrodes generate electrical energy from mechanical displacements of the piezoelectric electrodes; and an array of capacitor electrodes disposed in proximity to the piezoelectric electrodes, in which the array of capacitor electrodes stores a portion of the energy generated by the piezoelectric electrodes. An energy system includes a substrate including an array of micro-post electrodes connected to a cathode layer of the substrate; an isolation material covering the array of micro-post electrodes; and an anode layer including electrodes filling the remaining region between the isolation material-covered micro-post electrodes, in which the anode layer, electrodes, isolation material, micro-post electrodes, and substrate are monolithically coupled.
    • 能量收集和存储系统包括压电电极阵列,其中压电电极从压电电极的机械位移产生电能; 以及设置在压电电极附近的电容器电极阵列,其中电容器电极阵列存储由压电电极产生的能量的一部分。 能量系统包括:衬底,其包括连接到衬底的阴极层的微柱电极阵列; 覆盖微柱电极阵列的隔离材料; 以及阳极层,其包括填充隔离材料覆盖的微柱电极之间的剩余区域的电极,其中阳极层,电极,隔离材料,微柱电极和衬底是单片耦合的。
    • 100. 发明申请
    • Hand-Held See-Through-The-Wall Imaging And Unexploded Ordnance (UXO) Detection System
    • 手持式穿透墙成像和未爆弹药(UXO)检测系统
    • US20110227778A1
    • 2011-09-22
    • US12983229
    • 2010-12-31
    • Farrokh MohamadiDavid Sharbaugh
    • Farrokh MohamadiDavid Sharbaugh
    • G01S13/00H01Q3/00
    • G01S13/888G01S13/0209G01S13/06
    • The housing of a portable radar unit includes features for providing positioning of auxiliary handles between a first position and a second position, in which: the first position places the auxiliary handles in a position to act as handgrips in conjunction with integral handles and the second position places the auxiliary handles at an angle to the integral handles, so that the radar unit can be held with one hand and supported by a forearm of the same hand. Rotation of each auxiliary handle about a pivot moves the auxiliary handle between the first position and the second position; and a friction mechanism resists the rotation so that the auxiliary handle tends to stay in position until purposefully moved. The housing also includes internal space for housing a radar antenna, a reflector, and a mechanism for adjusting distance between the reflector and the antenna for tuning performance of the antenna. The housing provides external access without intrusion into the housing for operating the adjusting mechanism.
    • 便携式雷达单元的壳体包括用于在第一位置和第二位置之间提供辅助手柄的定位的特征,其中:第一位置将辅助手柄放置在与整体手柄一起作为手柄的位置,并且第二位置 将辅助手柄放置在与整体手柄成一定角度的位置,使得雷达单元可以用一只手握住并由同一只手的前臂支撑。 每个辅助手柄围绕枢轴的旋转使辅助手柄在第一位置和第二位置之间移动; 并且摩擦机构抵抗旋转,使得辅助手柄倾向于保持就位直到有目的地移动。 壳体还包括用于容纳雷达天线的内部空间,反射器和用于调整反射器和天线之间的距离的机构,用于调谐天线的性能。 壳体提供外部访问,而不会侵入壳体以操作调节机构。