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    • 1. 发明申请
    • Method and Systems for Illuminating
    • 照明方法和系统
    • US20080055931A1
    • 2008-03-06
    • US11663830
    • 2005-09-26
    • Gerrit VerstraeteGino De Brabander
    • Gerrit VerstraeteGino De Brabander
    • F21V8/00
    • G02B6/0068G02B6/0021G02B6/0026G02B6/0031G02B6/0036G02B6/0041G02B6/0096
    • Methods and systems are described for illumination in different applications. Real thin illumination systems (200) with good luminance uniformity, good efficiency and good colour mixing uniformity are obtained, even if different light sources emitting different colours are used. A plurality of light sources (102), emitting light from different colours, couple their light sideways, i.e. substantially parallel to the plane of light out-coupling, into a light guide (104) through recesses (108) distributed over the light guide (104). Providing a specially structured surface pattern (106), in combination with light in-coupling parallel to the plane of light out-coupling of the light guide (104) allows to obtain a good colour mixing of the differently coloured light originating from the plurality of light sources (102). The light then is only coupled out after it has been in the light guide (104) for a significant long time such that the light emanating from different light sources (102) is significantly mixed. The illumination system (200) has an important application in non-emissive displays.
    • 描述了不同应用中的照明方法和系统。 即使使用不同颜色的不同的光源,也可以获得具有良好的亮度均匀性,良好的效率和良好的混色均匀性的真薄的照明系统(200)。 发射不同颜色的光的多个光源(102)通过分布在导光体上的凹槽(108)将其光侧向(即基本上平行于光出射平面)耦合到光导(104)中 104)。 提供特殊结构化的表面图案(106)与平行于光导(104)的光出射平面的光耦合,可以获得源于多个光源的不同颜色的光的良好颜色混合 光源(102)。 然后,光在光导(104)中已经存在很长时间后才被耦合出来,使得从不同光源(102)发出的光被显着地混合。 照明系统(200)在非发光显示器中具有重要的应用。
    • 4. 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。