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    • 1. 发明授权
    • Magnetic immunity system (MIS) and monitor incorporating the MIS
    • 磁性免疫系统(MIS)和监控管理系统
    • US5367221A
    • 1994-11-22
    • US68702
    • 1993-05-28
    • Patrick SantyGerrit Verstraete
    • Patrick SantyGerrit Verstraete
    • H04N9/29H01J29/06
    • H04N9/29
    • An automatic axial field compensation and quick-degauss control system is disclosed. Further, a CRT type monitor incorporating such an automatic compensation and quick-degauss control circuit, and a new degauss circuit are disclosed in accordance with the present invention. The compensation and quick-degauss control circuit relies upon three sensors to respectively detect and quantify the axial, lateral, and vertical components of a disturbing ambient magnetic field. The axial and lateral field component sensors have non-parallel axes of sensitivity such that the sum of values represented by the output signals from these sensors indicates the magnitude of the axial component of the disturbing field. Based upon this summation signal, the system applies a correction current to at least one correction coil. If more than one correction coil is employed, the coils are connected in series so that only one current need be generated to effect compensation. Outputs from all three of the sensors are involved in quick-degauss control. The third sensor is a vertical component sensor. The disclosed quick degauss system is different from the resonant types, it operates by a switched mode. Voltage over the degaussing coils is switched between a positive and negative voltage, which voltages are stored in large capacitors.
    • 公开了一种自动轴向场补偿和快速消磁控制系统。 此外,根据本发明公开了一种包括这种自动补偿和快速消磁控制电路的CRT型监视器,以及新的消磁电路。 补偿和快速消磁控制电路依靠三个传感器来分别检测和量化扰动环境磁场的轴向,横向和垂直分量。 轴向和横向场分量传感器具有不平行的灵敏度轴,使得由这些传感器的输出信号表示的值之和指示干扰场的轴向分量的大小。 基于该求和信号,系统向至少一个校正线圈施加校正电流。 如果使用多于一个的校正线圈,则线圈被串联连接,使得只需要产生一个电流来实现补偿。 所有三个传感器的输出都涉及快速消磁控制。 第三传感器是垂直分量传感器。 所公开的快速消磁系统与谐振类型不同,它通过开关模式操作。 消磁线圈上的电压在正电压和负电压之间切换,电压存储在大电容器中。
    • 2. 发明授权
    • Device and method for performing multiple view imaging by means of a plurality of video processing devices
    • 通过多个视频处理装置执行多视图成像的装置和方法
    • US07411611B2
    • 2008-08-12
    • US10647845
    • 2003-08-25
    • Ive Bracke
    • Ive Bracke
    • H04N13/00
    • H04N13/398H04N13/139
    • In one aspect, the present invention provides an imaging system for multiple view imaging. Multiple view imaging comprises, but is not limited to, stereoscopic imaging. The imaging system for multiple view imaging comprises at least two video processing devices, each of the video processing devices being for displaying a video image on one or more display devices. Each video processing device receives at least a first sequence of image frames comprising at least second sequence of image frames and a third sequence of image frames, the at least second and third sequences being for generating at least first and second video images, respectively. Each video processing device outputs at least a fourth sequence of image frames, the fourth sequences being for generating at least one of the first or second video images, the fourth sequences of image frames from the first and second video processing devices being asynchronous with respect to each other. The imaging system is adapted to generate a linking signal for synchronising images displayed by the at least first and second video processing devices on the one or more display devices. In other aspects, the present invention provides a method for performing multiple view imaging by means of at least two video processing devices, and a controller for controlling the operation of at least two video processing devices in an imaging system for displaying multiple view images.
    • 一方面,本发明提供了一种用于多视图成像的成像系统。 多视点成像包括但不限于立体成像。 用于多视图成像的成像系统包括至少两个视频处理设备,每个视频处理设备用于在一个或多个显示设备上显示视频图像。 每个视频处理设备至少接收包括图像帧的至少第二序列和第三图像帧序列的图像帧的至少第一序列,所述至少第二和第三序列分别用于生成至少第一和第二视频图像。 每个视频处理设备输出至少第四序列的图像帧,第四序列用于产生第一或第二视频图像中的至少一个,来自第一和第二视频处理设备的第四序列图像帧相对于 彼此。 成像系统适于产生用于同步由一个或多个显示装置上的至少第一和第二视频处理装置显示的图像的链接信号。 在其他方面,本发明提供了一种通过至少两个视频处理装置执行多重视图成像的方法,以及用于控制用于显示多个视图图像的成像系统中的至少两个视频处理装置的操作的控制器。