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    • 2. 发明授权
    • Solution for dynamic lighting control
    • 动态照明控制解决方案
    • US08872432B2
    • 2014-10-28
    • US13421357
    • 2012-03-15
    • Bertalan KercsoLaszlo BalazsIstvan Maros
    • Bertalan KercsoLaszlo BalazsIstvan Maros
    • H05B37/02
    • H05B37/0227Y02B20/40Y02B20/44
    • A lighting system and method for controlling illumination of the same upon detection of a user in at least one of a first detection area and a second detection area. The lighting system can include a lighting fixture having one or more lighting sources and at least two sensors associated with separate detection areas. Each sensor can send a signal to a controller associated with the lighting fixture, and the controller can be configured to vary the illumination of one or more of the lighting sources depending on the each sensor's detection area. The present subject matter facilitates energy savings since areas away from an occupied area are not illuminated. Communication between neighboring lighting fixtures is not required since each lighting fixture can detect the presence of a user in an area proximate an adjacent lighting fixture in order to trigger illumination of the lighting fixture.
    • 一种在第一检测区域和第二检测区域中的至少一个检测用户时控制照明系统的照明系统和方法。 照明系统可以包括具有一个或多个照明源的照明器具和与单独检测区域相关联的至少两个传感器。 每个传感器可以将信号发送到与照明器具相关联的控制器,并且控制器可以被配置为根据每个传感器的检测区域来改变一个或多个照明源的照明。 本专题促进了能量节约,因为远离占用区域的区域不被照亮。 不需要相邻照明灯具之间的通信,因为每个照明灯具可以在靠近相邻照明灯具的区域中检测用户的存在以触发照明器具的照明。
    • 5. 发明申请
    • FLUORESCENT LAMPS HAVING DESIRABLE MERCURY CONSUMPTION AND LUMEN RUN-UP TIMES
    • 具有可消耗的消费和发光时间的荧光灯
    • US20090230837A1
    • 2009-09-17
    • US12047678
    • 2008-03-13
    • Istvan DemeLaszlo BalazsKatalin TothJon B. Jansma
    • Istvan DemeLaszlo BalazsKatalin TothJon B. Jansma
    • H01J1/62
    • H01H50/00C03C17/3411C03C2217/214H01J61/20H01J61/302H01J61/35H01J61/46
    • A fluorescent lamp includes a light-transmissive glass envelope having an inner surface, means for providing an electric discharge to the interior of the glass envelope, a phosphor layer within the interior of the glass envelope and a discharge-sustaining fill gas and a mercury dose sealed inside the light-transmissive glass envelope. The light-transmissive glass envelope can comprise a light-transmissive mixed alkali glass envelope and the phosphor layer can comprise a phosphor layer of approximately three mg/cm2. A barrier layer of approximately 0.3 mg/cm2 or less of alumina can be applied to the inner surface of the light-transmissive glass envelope. The mercury dose can be present in an amount to provide a saturated mercury vapor pressure within the light-transmissive glass envelope throughout substantially the entire life of the lamp. The lamp can have an end-of-life mercury consumption value of approximately 0.63 mg or less, including 0.44 mg or less, and a warm-up value in the range of approximately 40 to 50 seconds or less, including 30 seconds or less.
    • 荧光灯包括具有内表面的透光玻璃外壳,用于向玻璃外壳内部提供放电的装置,玻璃外壳内部的荧光体层和放电维持填充气体和汞剂量 密封在透光玻璃外壳内。 透光玻璃外壳可以包括透光的混合碱玻璃外壳,并且荧光体层可以包括约3mg / cm 2的荧光体层。 可以在透光玻璃外壳的内表面施加约0.3mg / cm 2以下的氧化铝的阻挡层。 汞剂量可以以在灯的整个使用寿命的基础上在透光玻璃封套内提供饱和汞蒸气压的量存在。 该灯可以具有约0.63mg或更小的寿命终止汞消耗值,包括0.44mg或更少,并且预热值在大约40至50秒或更短(包括30秒或更短)的范围内。
    • 10. 发明授权
    • Fluorescent lamps having desirable mercury consumption and lumen run-up times
    • 荧光灯具有理想的汞消耗和流明启动时间
    • US07737639B2
    • 2010-06-15
    • US12047678
    • 2008-03-13
    • Istvan DemeLaszlo BalazsKatalin TothJon B. Jansma
    • Istvan DemeLaszlo BalazsKatalin TothJon B. Jansma
    • H01J17/16
    • H01H50/00C03C17/3411C03C2217/214H01J61/20H01J61/302H01J61/35H01J61/46
    • A fluorescent lamp includes a light-transmissive glass envelope having an inner surface, means for providing an electric discharge to the interior of the glass envelope, a phosphor layer within the interior of the glass envelope and a discharge-sustaining fill gas and a mercury dose sealed inside the light-transmissive glass envelope. The light-transmissive glass envelope can comprise a light-transmissive mixed alkali glass envelope and the phosphor layer can comprise a phosphor layer of approximately three mg/cm2. A barrier layer of approximately 0.3 mg/cm2 or less of alumina can be applied to the inner surface of the light-transmissive glass envelope. The mercury dose can be present in an amount to provide a saturated mercury vapor pressure within the light-transmissive glass envelope throughout substantially the entire life of the lamp. The lamp can have an end-of-life mercury consumption value of approximately 0.63 mg or less, including 0.44 mg or less, and a warm-up value in the range of approximately 40 to 50 seconds or less, including 30 seconds or less.
    • 荧光灯包括具有内表面的透光玻璃外壳,用于向玻璃外壳内部提供放电的装置,玻璃外壳内部的荧光体层和放电维持填充气体和汞剂量 密封在透光玻璃外壳内。 透光玻璃外壳可以包括透光的混合碱玻璃外壳,并且荧光体层可以包括约3mg / cm 2的荧光体层。 可以在透光玻璃外壳的内表面施加约0.3mg / cm 2以下的氧化铝的阻挡层。 汞剂量可以以在灯的整个使用寿命的基础上在透光玻璃封套内提供饱和汞蒸气压的量存在。 该灯可以具有约0.63mg或更小的寿命终止汞消耗值,包括0.44mg或更少,并且预热值在大约40至50秒或更短(包括30秒或更短)的范围内。