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    • 3. 发明申请
    • INTERFERENCE FILTERS WITH HIGH TRANSMISSION AND LARGE REJECTION RANGE FOR MINI-SPECTROMETER
    • 具有高传输干扰滤波器和小型光谱仪的大型抑制范围
    • US20120092666A1
    • 2012-04-19
    • US13378382
    • 2010-06-11
    • Eduard Johannes MeijerEugene Timmering
    • Eduard Johannes MeijerEugene Timmering
    • G02B5/28B23P11/00G01J3/28
    • G02B5/288G01J3/02G01J3/0256G01J3/51G01J3/513G02B5/284Y10T29/49826
    • The invention relates to an interference filter (100) for receiving an incident light (135) and selecting a light component of the incident light to be transmitted (115). The interference filter (100) includes a metal mirror (110), a dielectric mirror (130), and a spacer (120) placed between the metal mirror (110) and the dielectric mirror (130). The metal mirror (110) and the dielectric mirror (130) are configured to enable optical interference in the spacer (120) to select the light component of the incident light to be transmitted (115). Using one metal mirror and one dielectric mirror allows achieving a spectral response with high finesse and large rejection band while reducing the total number of layers in the filter and reducing the number of additional filters necessary for removing transmitted side bands, relative to prior art approaches.
    • 本发明涉及一种用于接收入射光(135)并选择要透射的入射光的光分量(115)的干涉滤光器(100)。 干涉滤光器(100)包括金属反射镜(110),电介质反射镜(130)和放置在金属反射镜(110)和电介质反射镜(130)之间的间隔物(120)。 金属镜(110)和电介质镜(130)被配置为使得间隔物(120)中的光学干涉能够选择待透射的入射光的光分量(115)。 使用一个金属镜和一个电介质镜可以实现具有高精细度和大阻尼带的光谱响应,同时相对于现有技术的方法减少了滤波器中的总层数并减少了除去传输边带所需的附加滤波器的数量。
    • 4. 发明申请
    • METHOD AND SYSTEM FOR CONTROLLING THE OUTPUT OF A LUMINAIRE
    • 用于控制灯泡输出的方法和系统
    • US20100148675A1
    • 2010-06-17
    • US11993480
    • 2006-06-26
    • Eduard Johannes MeijerRonald DekkerEugene TimmeringPeter Hubertus Franciscu DeurenbergMatthias Wendt
    • Eduard Johannes MeijerRonald DekkerEugene TimmeringPeter Hubertus Franciscu DeurenbergMatthias Wendt
    • H05B37/02
    • H05B33/0803H05B33/0863H05B33/0869
    • The present invention relates to a method of controlling the output of a luminaire comprising an array of LEDs emitting light of at least one color. The array has single color LED groups, wherein each group consists of at least one LED. The method comprises the following steps for each LED group:spectrally filtering the light emitted by the LED group by means of a first filter as well as by means of a second filter; detecting the spectrally filtered light from said first and said second filter and generating respective first and second response signals, wherein the levels of said first and second response signals are related to the respective amounts of detected spectrally filtered light; and controlling the light output of said LED group on the basis of said first and second response signals, wherein the filter characteristics of said first and said second filter are at least partly non-overlapping. The invention also relates to a corresponding control system for performing the method.
    • 本发明涉及一种控制照明器的输出的方法,该方法包括发射至少一种颜色的光的LED阵列。 阵列具有单色LED组,其中每组由至少一个LED组成。 该方法包括以下步骤:对每个LED组进行以下步骤:通过第一滤光器以及借助于第二滤光器对由LED组发射的光进行光谱滤波; 检测来自所述第一和所述第二滤波器的频谱滤波的光,并产生相应的第一和第二响应信号,其中所述第一和第二响应信号的电平与检测到的光谱滤波光的相应量相关; 以及基于所述第一和第二响应信号来控制所述LED组的光输出,其中所述第一和所述第二滤波器的滤波器特性至少部分地不重叠。 本发明还涉及用于执行该方法的相应控制系统。
    • 7. 发明授权
    • Interference filters with high transmission and large rejection range for mini-spectrometer
    • 干扰滤波器,具有高传输和大的抑制范围,用于微型光谱仪
    • US08941834B2
    • 2015-01-27
    • US13378382
    • 2010-06-11
    • Eduard Johannes MeijerEugene Timmering
    • Eduard Johannes MeijerEugene Timmering
    • G01N21/25G02B5/28G01J3/02G01J3/51
    • G02B5/288G01J3/02G01J3/0256G01J3/51G01J3/513G02B5/284Y10T29/49826
    • The invention relates to an interference filter (100) for receiving an incident light (135) and selecting a light component of the incident light to be transmitted (115). The interference filter (100) includes a metal mirror (110), a dielectric mirror (130), and a spacer (120) placed between the metal mirror (110) and the dielectric mirror (130). The metal mirror (110) and the dielectric mirror (130) are configured to enable optical interference in the spacer (120) to select the light component of the incident light to be transmitted (115). Using one metal mirror and one dielectric mirror allows achieving a spectral response with high finesse and large rejection band while reducing the total number of layers in the filter and reducing the number of additional filters necessary for removing transmitted side bands, relative to prior art approaches.
    • 本发明涉及一种用于接收入射光(135)并选择要透射的入射光的光分量(115)的干涉滤光器(100)。 干涉滤光器(100)包括金属反射镜(110),电介质反射镜(130)和放置在金属反射镜(110)和电介质反射镜(130)之间的间隔物(120)。 金属镜(110)和电介质镜(130)被配置为使得间隔物(120)中的光学干涉能够选择待透射的入射光的光分量(115)。 使用一个金属镜和一个电介质镜可以实现具有高精细度和大阻尼带的光谱响应,同时相对于现有技术的方法减少了滤波器中的总层数并减少了除去传输边带所需的附加滤波器的数量。