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    • 1. 发明申请
    • ROUNDS COUNTER REMOTELY LOCATED FROM GUN
    • 距离枪支远近的ROUNDS COUNTER
    • WO2008150356A1
    • 2008-12-11
    • PCT/US2008/006308
    • 2008-05-15
    • RECON/OPTICAL, INC.QUINN, James, P.SEELYE, Jason, L.PRICHARD, MarkDILLON, James, T.
    • QUINN, James, P.SEELYE, Jason, L.PRICHARD, MarkDILLON, James, T.
    • F41A99/00G06M1/00
    • F41A19/01
    • A rounds counter for a weapon mount is disclosed. The rounds counter is mounted on the mount in a remote location from the weapon itself, such as to a pedestal supporting a gimbal rotating the weapon mount in azimuth, inside an elevation drive housing, or to other structure. The mounting location is selected to be one where shock loads are relatively high, as compared to other locations on the mount. The rounds counter includes a sensor which senses shock due to the firing of the weapon, such as an accelerometer or strain gauge. The sensor could also be an acoustic transducer. Analog and digital circuitry for processing the sensor signal and to count the firing of the gun is also disclosed. The rounds counter is particularly useful as a common, single rounds counter unit for a weapon mount is adapted to receive and fire a variety of weapons, such as remotely operated weapon mounts mounted to military vehicles and patrol watercraft adapted to receive and fire four different types of guns.
    • 披露了一个用于武器装置的回合计数器。 圆形计数器安装在远离武器本身的位置上的安装座上,诸如支撑支架的支架,支架将方位角上的武器支架旋转,升降驱动器外壳内或其他结构。 与安装座上的其他位置相比,安装位置选择为冲击载荷相对较高的位置。 回合计数器包括感测由于诸如加速度计或应变计的武器的射击引起的冲击的传感器。 传感器也可以是声学换能器。 还公开了用于处理传感器信号并计数枪的点火的模拟和数字电路。 回合计数器特别有用,因为用于武器支架的常见的单回计数器单元适于接收和发射各种武器,例如安装在军用车辆上的远程操作的武器支架和适于接收和发射四种不同类型的巡逻船只 的枪支
    • 9. 发明申请
    • MULTISPECTRAL OR HYPERSPECTRAL IMAGING SYSTEM AND METHOD FOR TACTICAL RECONNAISSANCE
    • 多目标或高分辨率成像系统及其战术重建方法
    • WO2003106917A2
    • 2003-12-24
    • PCT/US2003/002401
    • 2003-01-24
    • RECON/OPTICAL, INC.
    • LAREU, Andre, G.SPEER, BradfordPFISTER, William, R.BERAN, Stephen, R.SWARTZ, BarryKARINS, James, P.LINTELL, Robert, J.WARREN, Chris, P.
    • G01B
    • H04N5/37206G01J3/02G01J3/0256G01J3/2803G01J3/2823G01J3/51H04N5/353H04N5/3743
    • A two-dimensional focal plane array (FPA) is divided into sub-arrays of rows and columns of pixels, each sub-array being responsive to light energy from a target object which has been separated by a spectral filter or other spectrum dividing element into a predetermined number of spectral bands. There is preferably one sub-array on the FPA for each predetermined spectral band. Each sub-array has its own read out channel to allow parallel and simultaneous readout of all sub-arrays of the array. The scene is scanned onto the array for simultaneous imaging of the terrain in many spectral bands. Time Delay and Integrate (TDI) techniques are used as a clocking mechanism within the sub-arrays to increase the signal to noise ratio (SNR) of the detected image. Additionally, the TDI length (i.e., number of rows of integration during the exposure) within each sub-array is adjustable to optimize and normalize the response of the photosensitive substrate to each spectral band. The array provides for parallel and simultaneous readout of each sub-array to increase the collection rate of the spectral imagery. All of these features serve to provide a substantial improvement in the area coverage of a hyperspectral imaging system while at the same time increasing the SNR of the detected spectral image.
    • 二维焦平面阵列(FPA)被划分为行和列的像素的子阵列,每个子阵列响应于已经被光谱滤波器或其他频谱分割元件分离的目标对象的光能 预定数量的光谱带。 对于每个预定的光谱带,FPA上最好有一个子阵列。 每个子阵列都有自己的读出通道,以允许并行和同时读出阵列的所有子阵列。 将场景扫描到阵列上,以便在许多光谱带中同时成像地形。 时间延迟和积分(TDI)技术被用作子阵列内的时钟机制,以增加检测到的图像的信噪比(SNR)。 此外,每个子阵列内的TDI长度(即,曝光期间的积分行数)是可调整的,以使感光基片对每个光谱带的响应进行优化和归一化。 该阵列提供并行和同时读取每个子阵列以增加光谱图像的采集速率。 所有这些特征用于提供高光谱成像系统的面积覆盖的显着改进,同时增加检测到的光谱图像的SNR。