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    • 6. 发明专利
    • Voltage regulator in battery block
    • 电池组中的电压调节器
    • JP2008043182A
    • 2008-02-21
    • JP2007124319
    • 2007-05-09
    • Honeywell Internatl Incハネウェル・インターナショナル・インコーポレーテッド
    • BARON MARK ACALLIGAN LAURA L
    • H02J7/00G05F1/56H01M6/50
    • H02J7/0065F41G7/001F42B15/01H01M2/1022H01M4/505H01M6/14H01M10/052H01M10/0563H01M10/425
    • PROBLEM TO BE SOLVED: To provide an electronic system capable of strengthening with respect to radiations, such as dose factor (DF), long pulse, thermomechanical properties, total dose and single event upset.
      SOLUTION: This electronic system includes at least one electronic component 104 and a battery block 102, which supplies electric power to at least the one electronic component. The battery block is provided, with at least one battery cell 110, a voltage regulator circuit 112, constituted so as to keep the output voltage of the battery block within the operating voltage limit of at least the one electronic component, and a housing constituted so as to house at least the one electronic component and the voltage regulator circuit. The output voltage of at least one battery cell is at the external operation limit, of at least the one electronic component, thus attaining cost reduction and enhancing flexibility; when electric power is supplied to the electronic component, by including the voltage generator circuit in the battery block of the power supply.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够相对于辐射(例如剂量因子(DF)),长脉冲,热机械性能,总剂量和单次事件不适的强化的电子系统。 解决方案:该电子系统包括至少一个电子部件104和电池块102,其向至少一个电子部件提供电力。 提供电池块,具有至少一个电池单元110,稳压电路112,其构成为将电池块的输出电压保持在至少一个电子部件的工作电压极限内,并且由此构成壳体 至少容纳一个电子部件和电压调节器电路。 至少一个电池单元的输出电压处于至少一个电子部件的外部操作极限,从而实现成本降低和增强灵活性; 当通过将电压发生器电路包括在电源的电池组中时,向电子部件供电。 版权所有(C)2008,JPO&INPIT
    • 7. 发明申请
    • OPTICAL TRANSCEIVER BUILT-IN TEST (BIT)
    • 光学收发器内置测试(BIT)
    • WO2011136866A1
    • 2011-11-03
    • PCT/US2011/025900
    • 2011-02-23
    • RAYTHEON COMPANYFEST, Eric, C.MILLS, James, P.TRAIL, Nicholas, D.HICKS, Jim, R.
    • FEST, Eric, C.MILLS, James, P.TRAIL, Nicholas, D.HICKS, Jim, R.
    • F41G7/22
    • G01S7/495F41G7/001F41G7/224F41G7/2246F41G7/2253F41G7/2293G01S7/4818G01S7/497G01S7/499
    • An optical transceiver is provided with a light pipe (50) that intercepts, offsets and redirects a portion of the collimated transmit beam to create a virtual object in the receiver field- of -view (22 ) to perform the BIT. The light pipe comprises an input face and first reflective surface in the transmitter FOV (20) to intercept a portion of the beam along a first axis (38) and re-direct the beam, a second reflective surface and output face in the receiver FOV (22) that re-directs the portion of the beam along a second axis (30) towards the receiver to create the virtual object in the receiver FOV and an optical channel that guides the redirected portion of the beam from the first reflective surface to the second reflective surface to offset the second axis from the first axis. The same detector used during normal operation of the transceiver is used to perform the BIT, which may include a simple "on/off test or a radiometry test. The light pipe may be designed with an acceptance FOV that preserves collimation, which facilitates a measurement of alignment error between the transmit beam and receiver.
    • 光收发器设置有光管(50),其拦截,偏移和重定向准直发射波束的一部分以在接收机视场(22)中创建虚拟对象以执行BIT。 光管包括在发射器FOV(20)中的输入面和第一反射表面,以沿着第一轴线(38)截取光束的一部分并重新引导光束,接收器FOV中的第二反射表面和输出面 (22),其将所述光束的沿着第二轴线(30)的部分重新定向到所述接收器以在所述接收器FOV中创建所述虚拟物体;以及光学通道,其将所述光束的重定向部分从所述第一反射表面引导到 第二反射表面以使第二轴线偏离第一轴线。 在收发器的正常操作期间使用的相同的检测器用于执行BIT,其可以包括简单的“开/关测试或辐射测试”。光管可以被设计成具有保持准直的接受FOV,这有助于测量 发射波束和接收机之间的对准误差。
    • 8. 发明申请
    • THERMAL SENSING SYSTEM HAVING A FAST RESPONSE CALIBRATION DEVICE
    • 具有快速响应校准装置的热传感系统
    • WO1997005742A1
    • 1997-02-13
    • PCT/GB1996001805
    • 1996-07-29
    • THE SECRETARY OF STATE FOR DEFENCEASHLEY, TimothyELLIOTT, Charles, ThomasGORDON, Neil, ThomsonHALL, Ralph, Stephen
    • THE SECRETARY OF STATE FOR DEFENCE
    • H04N05/33
    • H04N5/3651F41G7/001F41G7/2253F41G7/2293H04N5/33
    • A thermal sensing system (10) including an array of photon detectors (14) produces a detector-dependent response to irradiation. Variations in individual detector characteristics produce a fixed pattern noise which degrades an image or other response. A switchable mirror (M1) may at one position (Pcal) direct infrared radiation from a light emitting diode (20) onto the detector array (14). The diode (20) is both a negative and positive luminescent emitter; the flux emitted is current controlled to be equivalent to black body radiation at a range of temperatures both colder and hotter than ambient. Calibration relationships comprising transfer functions relating incident intensity to signal response are derived for each detector. Alternatively the mirror (M1) may be at an observation position (Pobs) and infrared radiation from a remote scene reaches the detector array (14). Resulting detector signals are converted into corrected fluxes using individual calibration relationships previously derived and an image or response with reduced fixed pattern noise is obtained.
    • 包括光子检测器(14)阵列的热感测系统(10)产生对照射的依赖于检测器的响应。 单个检测器特性的变化产生固定模式噪声,降低图像或其他响应。 可切换镜(M1)可以在从发光二极管(20)到检测器阵列(14)的一个位置(Pcal)的直接红外辐射。 二极管(20)既为负发光发射极; 在比环境温度更冷和更热的温度范围内,发射的通量被电流控制为等于黑体辐射。 对于每个检测器导出包括将入射强度与信号响应相关联的传递函数的校准关系。 或者,反射镜(M1)可以在观察位置(Pobs)处,并且来自远程场景的红外辐射到达检测器阵列(14)。 得到的检测器信号使用先前导出的各个校准关系被转换成校正的通量,并且获得具有降低的固定模式噪声的图像或响应。
    • 9. 发明申请
    • MOTION ANALYSIS UNIT
    • 运动分析单元
    • WO2018089077A1
    • 2018-05-17
    • PCT/US2017/047765
    • 2017-08-21
    • RAYTHEON COMPANY
    • CLARK, AlanLATTIMORE, Aaron C.
    • F41G7/00F41G9/00
    • F41G7/001F41G9/00F42C15/40G01C21/16
    • A motion analysis system includes an acceleration measuring device, an acceleration processor, a velocity processor, a distance processor, a peak velocity processor, a profile correlation processor, and a vehicle action processor. The system determines a time for an initiation of an action for a vehicle by determining that a distance traveled by the vehicle is greater than a safe separation distance and that a peak velocity is greater than a minimum velocity. The system initiates the action for the vehicle based on the verified position of the vehicle and the confirmed profile data as determined by the profile correlation processor, and based on the determination that the distance traveled by the vehicle is greater than the safe separation distance and that the peak velocity is greater than the minimum velocity as determined by the vehicle action processor.
    • 运动分析系统包括加速度测量装置,加速度处理器,速度处理器,距离处理器,峰值速度处理器,轮廓关联处理器和车辆动作处理器。 该系统通过确定车辆行驶的距离大于安全间隔距离并且峰值速度大于最小速度来确定用于车辆的动作开始的时间。 系统基于车辆的经验证的位置和由档次相关性处理器确定的确认的档案数据来启动车辆的动作,并且基于车辆行驶的距离大于安全分隔距离的确定以及 峰值速度大于由车辆动作处理器确定的最小速度。
    • 10. 发明申请
    • POINTE AVANT D'AERONEF AVEC DISPOSITIF DE CALIBRATION D'UN DETECTEUR IR ET PROCEDE DE CALIBRATION
    • 具有用于校准IR检测器和校准方法的装置的飞行器编号
    • WO2014108421A1
    • 2014-07-17
    • PCT/EP2014/050187
    • 2014-01-08
    • THALES
    • RIVIERE, PhilippeGIRARD, Olivier
    • F41G7/00F41G7/22G01S3/78G01S3/784H04N5/33F42B15/34
    • F41G7/2253F41G7/001F41G7/2293F42B10/46F42B15/34G01S3/7803G01S3/784H04N5/33H04N5/365H04N5/3655
    • L'invention concerne une pointe avant (100') d'aéronef munie d'une coiffe éjectable (10) dans laquelle sont situés : - un autodirecteur (20) équipé d'un détecteur IR (22), d'un dôme (21) et d'une optique (24) apte à former une image d'une scène sur le détecteur IR placé dans le plan focal (23) de l'optique (24), - un dispositif de calibration (25') équipé d'une référence de température (251) et d'une optique (253) apte à diriger le rayonnement émis par la référence de température. Le dispositif de calibration (25') est placé en dehors de l'autodirecteur (20), en amont de celui-ci de manière à ce que l'optique de calibration (253) soit apte à former une image de la référence de température (251) sur le détecteur (22) à travers le dôme (21) et l'optique (24) de l'autodirecteur, et le dispositif de calibration (25') est éjectable avec la coiffe (10).
    • 本发明涉及一种装有可排出帽(10)的飞行器鼻(100'),其中有以下位置: - 设置有IR检测器(22)的回原点头(20),穹顶(21)和光学系统 (24),其能够形成位于所述光学系统(24)的焦平面(23)中的IR检测器上的场景的图像, - 校准装置(25'),其设置有温度基准(251)和光学 系统(253)能够引导由温度参考发射的辐射。 校准装置(25')被放置在归位头(20)的外部,在其上游,使得校准光学系统(253)能够通过圆顶形成检测器(22)上的温度基准(251)的图像 (21)和归位头的光学系统(24),并且校准装置(25')可以与盖(10)一起喷射。