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    • 2. 发明授权
    • Optical sensor employing motion compensated integration-device and process
    • 光学传感器采用运动补偿积分装置和工艺
    • US06714240B1
    • 2004-03-30
    • US09339053
    • 1999-06-23
    • Robert L. Caswell
    • Robert L. Caswell
    • H04N5217
    • H04N5/33H04N5/3653
    • A motion compensated integration system and process for scanning a field and producing images of one or more densely filled wavebands has a moveable platform, an optical sensor, and optical sensor line-of-sight measuring device, and a processor. The optical sensor is mounted to the moveable platform and is made up of a telescope that is in functional relationship with a focal plane array. The focal plane array comprises one or more sets of detectors capable of receiving one or more wavebands and producing focal plane array data of the wavebands, respectively. The optical sensor line-of-sight measuring device is capable of producing optical sensor line-of-sight movement data. The processor is capable of receiving the focal plane array data and the optical sensor line-of-sight movement data and producing output images representing the wavebands, respectively. The system and process may normalize the data to account for border regions of the stabilized arrays. The focal plane array has a plurality of sets of detectors and the sets of detectors are intermingled to form a pattern. The pattern may be stripes, checkers, zigzags, or random. The moveable platform of the motion compensated integration system is a component of a missile, the telescope, a satellite, a space vehicle, an air vehicle, an aircraft, a ground vehicle, or a watercraft. As this invention provides inertially and electronically stabilized waveband arrays, the system and the process does not use scan mirrors, gimbals, or position pickoffs.
    • 用于扫描场并产生一个或多个密集填充的波段的图像的运动补偿积分系统和过程具有可移动平台,光学传感器和光学传感器视线测量装置以及处理器。 光学传感器安装到可移动平台上,并由与焦平面阵列功能关系的望远镜组成。 焦平面阵列包括一组或多组检测器,能够分别接收一个或多个波段并产生波段的焦平面阵列数据。 光学传感器视距测量装置能够产生光学传感器的视距移动数据。 该处理器能够分别接收焦平面阵列数据和光学传感器视距移动数据并产生表示波段的输出图像。 系统和过程可以将数据归一化以解决稳定阵列的边界区域。 焦平面阵列具有多组检测器,并且这些检测器组被混合以形成图案。 图案可以是条纹,棋子,曲折或随机。 运动补偿整合系统的可移动平台是导弹,望远镜,卫星,太空飞行器,空中飞行器,飞机,地面车辆或船只的组成部分。 由于本发明提供了惯性和电子稳定的波段阵列,所以系统和过程不使用扫描镜,万向节或位置传感器。
    • 5. 发明授权
    • One shot pulse generator and logic level converter circuit
    • 单脉冲发生器和逻辑电平转换器电路
    • US4056735A
    • 1977-11-01
    • US691755
    • 1976-06-01
    • Robert L. Caswell
    • Robert L. Caswell
    • G01R13/26G06K15/12G09G1/00H03K17/00
    • G01R13/26G06K15/1233G09G1/002
    • An intensity control system for a cathode ray tube (CRT) is disclosed. The system provides precise intensity control for a CRT whose control characteristics are only slowly varying. Precise intensity control is provided by measuring the cathode ray tube beam current. The beam current is set at a desired value without producing an image on the tube face. Thus, tube intensity can be set without fogging photoresponsive media which is in position for exposure by images on the cathode ray tube screen. The intensity may be set to a value determined by a manually adjustable intensity control. The intensity is preferably set by iterative threshold comparison of the actual beam current with the value corresponding to the setting of the intensity control. A unique threshold comparison circuit provides precise comparison between the reference level set by the intensity control and the actual beam current.
    • 公开了一种用于阴极射线管(CRT)的强度控制系统。 该系统为控制特性仅缓慢变化的CRT提供精确的强度控制。 通过测量阴极射线管束电流来提供精确的强度控制。 射束电流被设定在期望值,而不会在管面上产生图像。 因此,可以设置管强度,而不会使阴影射线管屏幕上的图像曝光的光响应介质起雾。 强度可以被设置为由手动可调节的强度控制确定的值。 强度优选地通过实际波束电流与对应于强度控制的设置的值的迭代阈值比较来设置。 独特的阈值比较电路提供了通过强度控制设置的参考电平与实际光束电流之间的精确比较。
    • 10. 发明授权
    • Character generating method and system
    • 字符生成方法和系统
    • US4029947A
    • 1977-06-14
    • US359591
    • 1973-05-11
    • Gregory W. EvansRobert L. Caswell
    • Gregory W. EvansRobert L. Caswell
    • B41B19/01B41B27/28G09G1/14G06F3/14
    • G09G1/14B41B19/01B41B27/28
    • A digital character generator method and system encode characters based on a normalized quad in accordance with coordinates of initial starting points of outlines of the character and variational parameters defining changes in those outlines such as slope and curvature. All characters of all formats are encoded for a maximum point size display. Vertical scaling factors permit character generation at any desired point size display. Horizontal scaling factors are employed both for transforming computations based on the encoded parameters for the normalized quad to a desired point size of display and also to adapt cyclic computations to the stroking density of a display CRT.
    • 数字字符发生器方法和系统根据字符轮廓的初始起始点的坐标和变化参数,基于归一化四边形对字符进行编码,该变化参数定义了诸如斜率和曲率等轮廓的变化。 所有格式的所有字符都被编码为最大点尺寸显示。 垂直缩放因子允许在任何所需的点尺寸显示器上生成字符。 采用水平缩放因子,用于将基于归一化四舍五入的编码参数转换为期望的显示点大小的变换计算,并且还使循环计算适应于显示CRT的抚摸密度。