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    • 6. 发明申请
    • Global Satellite Positioning System Tracking System for Handcuffs and Feetcuffs
    • 全球卫星定位系统的手铐和脚趾跟踪系统
    • US20110199256A1
    • 2011-08-18
    • US12349946
    • 2009-01-07
    • Charles Chu
    • Charles Chu
    • G01S19/42G01S19/16
    • G01S19/16G01S5/0027G08B21/0269G08B21/22
    • A GPS tracking system for handcuffs and feetcuffs, which includes a sensor, fitted with a GPS tracker, disposed within a mobile restraining device (such as: handcuffs, feetcuffs, police device, and the like). The GPS tracker is provided with a GPS receiving circuit, a microprocessor and a signal transmission circuit, and the sensor detects circumstances regarding the mobile restraining device being illegally opened, which are transmitted to the microprocessor. The GPS receiving circuit is able to receive geographic positioning satellite coordinate signals, after which the geographic positioning satellite coordinate signals are matched with an internal prestored geographic data base to obtain the position of the mobile restraining device, whereupon the position is transmitted to the microprocessor. Accordingly, the microprocessor transmits the position of the mobile restraining device and circumstances regarding being illegally opened to a remote server using the signal transmission circuit, thereby effectively controlling the whereabouts of criminals.
    • 一种用于手铐和脚A的GPS跟踪系统,其包括配备有GPS追踪器的传感器,其设置在移动限制装置(例如:手铐,脚uff,警察装置等)内。 GPS跟踪器设置有GPS接收电路,微处理器和信号传输电路,并且传感器检测到被非法打开的移动限制装置的情况,这些情况被发送到微处理器。 GPS接收电路能够接收地理定位卫星坐标信号,之后将地理定位卫星坐标信号与内部预先存储的地理数据库相匹配,以获得移动限制装置的位置,从而将位置发送到微处理器。 因此,微处理器使用信号传输电路将移动限制装置的位置和非法打开的情况发送到远程服务器,从而有效地控制犯罪分子的下落。
    • 7. 发明申请
    • WIND POWERED GLOBAL POSITIONING TRACKING DEVICE
    • 风力发电全球定位跟踪装置
    • US20080309085A1
    • 2008-12-18
    • US11882075
    • 2007-07-30
    • Charles Chu
    • Charles Chu
    • G01S5/00G01S1/00F03D9/02H02J7/14H02P9/04
    • G01S5/0027F03D9/11F03D9/25F05B2240/941G01S19/34G01S19/35Y02E10/725
    • A wind powered global positioning tracking device, which is disposed on a vehicle, and includes a wind driven generator, a power regulating circuit, a central processing unit, a charging circuit, a rechargeable battery, a general packet radio service module and a global positioning system receiver module. When in use, the power regulating circuit converts electricity generated by the wind driven generator to provide electric energy to the central processing unit, the general packet radio service module and the global positioning system receiver module. Furthermore, the electric energy is input into the charging circuit to charge the rechargeable battery. Accordingly, when there is no wind for the wind driven generator to generate electricity, the charging circuit can be placed in an electric discharge state controlled by the central processing unit, thereby enabling the rechargeable battery to continue supplying electric energy, thus ensuring normal operation of the global positioning tracking device.
    • 一种风力发电的全球定位跟踪装置,其设置在车辆上,并且包括风力发电机,功率调节电路,中央处理单元,充电电路,可充电电池,通用分组无线电服务模块和全球定位 系统接收模块。 在使用中,功率调节电路转换由风力发电机产生的电力,以向中央处理单元,通用分组无线电业务模块和全球定位系统接收机模块提供电能。 此外,电能被输入到充电电路中以对可再充电电池充电。 因此,当风力发电机没有风发电时,可以将充电电路置于由中央处理单元控制的放电状态,从而使可再充电电池能够继续供电,从而确保正常运行 全球定位跟踪设备。
    • 8. 发明授权
    • 2-D optical switch with lens mount
    • 带镜头座的2-D光开关
    • US06937783B2
    • 2005-08-30
    • US10282612
    • 2002-10-28
    • Charles ChuJingyu Zhou
    • Charles ChuJingyu Zhou
    • G02B6/35G02B6/26G02B6/42
    • G02B6/3514G02B6/3546G02B6/356G02B6/3572
    • An optical cross-connect switch includes a switching mirror, a lens mount for securing an optical fiber collimating lens so that a light path from the optical fiber collimating lens is in an alignment relative to the switching mirror and a second lens, and an actuator. The actuator is connected to the switching mirror. The actuator comprises a flexure, and a mechanical motion amplifier. The switching mirror is attached to the mechanical motion amplifier in a thermally stable manner. Mechanical motion of the actuator is damped using a damping fluid. Repeatability of actuator motion is provided for switching the switching mirror into and out of the light path.
    • 光学交叉连接开关包括切换镜,用于固定光纤准直透镜的透镜座,使得来自光纤准直透镜的光路相对于切换镜和第二透镜对准,以及致动器。 执行器连接到切换镜。 致动器包括挠曲件和机械运动放大器。 开关镜以热稳定的方式连接到机械运动放大器。 致动器的机械运动使用阻尼流体进行阻尼。 提供致动器运动的重复性,用于将切换镜转换成光路进出光路。
    • 9. 发明授权
    • 3D image feedback optical beam alignment
    • 3D图像反馈光束对准
    • US06947629B2
    • 2005-09-20
    • US10383958
    • 2003-03-07
    • Charles ChuJingyu ZhouMichael Young
    • Charles ChuJingyu ZhouMichael Young
    • G02B6/35
    • G02B6/359G02B6/3512G02B6/3556G02B6/356
    • A feedback control system for an optical switch includes a reference mirror that reflects a signal wavelength of light and transmits a reference wavelength. A detector array indicates positions, on the reference mirror, of first and second reference light beams transmitted through the reference mirror onto the detector array. An array of adjustable mirrors is controlled by a controller for adjusting each mirror in the array. The controller receives the position of the first reference light beam and adjusts a first mirror so that the first position is moved to a pre-determined location on the detector array, and receives the position of the second reference light beam and adjusts a second mirror so that the second position is moved to the same pre-determined location on the detector array, forming an aligned optical path on which a signal light beam can be transmitted through the optical switch.
    • 用于光开关的反馈控制系统包括反射光的信号波长并发射参考波长的参考反射镜。 检测器阵列指示在参考反射镜上将通过参考反射镜传输到检测器阵列上的第一和第二参考光束的位置。 可调镜子的阵列由用于调整阵列中的每个反射镜的控制器控制。 控制器接收第一参考光束的位置并调节第一反射镜,使得第一位置移动到检测器阵列上的预定位置,并且接收第二参考光束的位置并调整第二反射镜 第二位置被移动到检测器阵列上的相同的预定位置,形成对准的光路,信号光束可以在其上通过光开关传输。