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    • 2. 发明申请
    • GENERATOR FOR A FLASH DEVICE AND A METHOD IN A GENERATOR FOR A FLASH DEVICE
    • 用于闪存器件的发生器和用于闪存器件的发生器中的方法
    • US20150245453A1
    • 2015-08-27
    • US14426640
    • 2013-09-06
    • PROFOTO AB
    • Anton FalkUlf Carlsson
    • H05B41/30G03B15/05
    • H05B41/30G03B15/05G03B2215/05H05B41/32
    • A generator for a flash device includes a first capacitor bank with at least one capacitor of a first type. The first capacitor bank is connectable to a charger via a first switch, and connected to an output via a first component which only allows current flow from the first capacitor bank to the output. A second capacitor bank includes at least one capacitor of a second type connectable to the charger via a second switch, and connected to the output via a second component which only allows current flow from the second capacitor bank to the output. The generator individually controls the first and second switches so that each of the first and second capacitor banks can be individually charged to the same or different voltages. A flash trigger switch is connected to a trigger output for providing a trigger voltage to a flash device connectable to the generator.
    • 用于闪存器件的发生器包括具有第一类型的至少一个电容器的第一电容器组。 第一电容器组可通过第一开关连接到充电器,并且经由第一部件连接到输出端,第一部件仅允许电流从第一电容器组流到输出端。 第二电容器组包括经由第二开关连接到充电器的第二类型的至少一个电容器,并且经由第二部件连接到输出端,第二部件仅允许电流从第二电容器组流到输出端。 发电机单独地控制第一和第二开关,使得第一和第二电容器组中的每一个可以被单独地充电到相同或不同的电压。 闪光触发开关连接到触发输出,用于向可连接到发生器的闪光装置提供触发电压。
    • 3. 发明申请
    • PULSE-EXCITED MERCURY-FREE LAMP SYSTEM
    • 无刺激的无汞灯泡系统
    • US20140252979A1
    • 2014-09-11
    • US13788611
    • 2013-03-07
    • Philip E. Moskowitz
    • Philip E. Moskowitz
    • H05B41/30
    • H05B41/288Y10S315/07
    • A pulse-excited mercury-free lamp system, and method of sustaining the emission of light emission from such a lamp, is provided. The system includes a light-transmissive envelope having an inner surface and a phosphor layer coated thereon. A discharge-sustaining gaseous mixture of a noble gas, at a low pressure, and a metal halide, is retained inside the light-transmissive envelope. An electrical system provides a plurality of pulses to the discharge-sustaining gaseous mixture, resulting in a discharge, which causes the lamp system to emit light. The emission of light is maintained by turning the discharge on during a pulse width of each pulse in the plurality of pulses and by turning the discharge off during a remainder of each period in the plurality of pulses. Particularly in systems where the metal halide is indium-based, this maintains an efficient emission of light without the use of mercury.
    • 提供了脉冲激发的无汞灯系统以及维持这种灯发光的方法。 该系统包括具有涂覆在其上的内表面和荧光体层的透光外壳。 惰性气体在低压下和金属卤化物的放电维持气体混合物保持在透光外壳内。 电系统向放电维持气体混合物提供多个脉冲,导致放电,这导致灯系统发光。 通过在多个脉冲中的每个脉冲的脉冲宽度期间接通放电并且在多个脉冲的每个周期的剩余时间期间关闭放电来保持光的发射。 特别是在金属卤化物为铟系的系统中,这种保持有效的光发射而不使用汞。
    • 4. 发明申请
    • DISCHARGE LAMP SYSTEM AND METHOD FOR CONTROLLING DISCHARGE LAMP
    • 放电灯系统和控制放电灯的方法
    • US20130026938A1
    • 2013-01-31
    • US13241318
    • 2011-09-23
    • Qi ZHANGWei-Qiang ZHANGJian-Ping YING
    • Qi ZHANGWei-Qiang ZHANGJian-Ping YING
    • H05B41/36H05B41/30
    • H05B41/288H05B41/38
    • A discharge lamp system includes a discharge lamp, a power source, a converter, a lamp state signal detection module and a controller. The power source provides a DC power. The converter converts the DC power into a current required by the discharge lamp. The lamp state signal detection module receives a lamp state signal and outputs a lamp state detection signal. The controller processes the lamp state detection signal and a given synchronization signal to generate an average lamp current signal and a pulse current signal, and then processes the average lamp current signal and the pulse current signal to generate a control signal. The controller performs current control of the discharge lamp through the converter according to the control signal. Furthermore, a method for controlling a discharge lamp is also disclosed herein.
    • 放电灯系统包括放电灯,电源,转换器,灯状态信号检测模块和控制器。 电源提供直流电源。 该转换器将直流功率转换成放电灯所需的电流。 灯状态信号检测模块接收灯状态信号并输出​​灯状态检测信号。 控制器处理灯状态检测信号和给定的同步信号以产生平均灯电流信号和脉冲电流信号,然后处理平均灯电流信号和脉冲电流信号以产生控制信号。 控制器根据控制信号通过转换器对放电灯进行电流控制。 此外,本文还公开了一种用于控制放电灯的方法。
    • 7. 发明申请
    • Color Display
    • 彩色显示
    • US20100225238A1
    • 2010-09-09
    • US12400668
    • 2009-03-09
    • David L. MedinTakatoshi IshiiYves Faroudja
    • David L. MedinTakatoshi IshiiYves Faroudja
    • H05B41/30H05B41/38
    • G09G3/3413G09G3/2003G09G2310/0235G09G2320/062G09G2320/0626G09G2320/0666G09G2330/021H04N9/3111H04N9/3155H04N9/3164
    • A colored light generating element can be configured to, while in an active state, pulse between an off state and an on state. A substantially constant offset voltage or current can be applied to the colored light generating element during a predetermined time interval when the light generating element is in the off state so as to cause the colored light generating element to emit, during the off state, some amount of light greater than a minimum amount of light that the light generating element is capable of generating while part of an active system. In some implementations, two or more offset voltages or currents can be applied. Implementations may include a preprocessor configured to receive an image signal and optimize color saturation of the image signal, such as by limiting and non-linearly increasing color saturation. Implementations may include multiple colored light generating elements.
    • 彩色光产生元件可以被构造成在处于活动状态时处于断开状态和接通状态之间的脉冲。 当发光元件处于关闭状态时,可以在预定的时间间隔内对彩色光产生元件施加基本恒定的偏移电压或电流,以使得着色光产生元件在关闭状态期间发射一定量 的光大于发光元件能够在活动系统的一部分时产生的最小光量。 在一些实施方案中,可以施加两个或多个偏移电压或电流。 实现可以包括配置成接收图像信号并且优化图像信号的颜色饱和度的预处理器,例如通过限制和非线性地增加色彩饱和度。 实现可以包括多个彩色光产生元件。
    • 9. 发明申请
    • Apparatus and method for use in triggering a flash lamp
    • 用于触发闪光灯的装置和方法
    • US20050264236A1
    • 2005-12-01
    • US10854444
    • 2004-05-25
    • Samuel LloydEddie Brown
    • Samuel LloydEddie Brown
    • H05B37/00H05B41/30
    • H05B41/30
    • An apparatus, system and method are provided for use in triggering a flash lamp and treating fluids. In some embodiments, a flash lamp assembly is provided that includes a chamber that surrounds a flash lamp with first and second electrodes that extend through the chamber, and a trigger element positioned adjacent an exterior of the chamber. First and second ends of the trigger element can, in some implementations be proximate the first and second electrodes. Some embodiments provide a fluid treatment system that includes a flash lamp enclosed within a chamber, and a trigger element positioned adjacent an exterior of the chamber. The chamber include an inlet and outlet where fluid to be treated is pushed into the chamber to pass about the flash lamp without contacting the trigger element.
    • 提供了一种用于触发闪光灯和处理流体的装置,系统和方法。 在一些实施例中,提供了一种闪光灯组件,其包括围绕闪光灯的腔室,第一和第二电极延伸穿过腔室,以及触发器元件,其邻近腔室的外部定位。 在一些实施方式中,触发元件的第一和第二端可以靠近第一和第二电极。 一些实施例提供一种流体处理系统,其包括封闭在室内的闪光灯和邻近室的外部定位的触发元件。 该室包括入口和出口,其中待处理的流体被推入室中以在闪光灯附近通过而不接触触发元件。
    • 10. 发明申请
    • Device and method for synchronizing a flasher frequency with a central flashing frequency
    • 闪光器频率与中央闪烁频率同步的装置和方法
    • US20050248442A1
    • 2005-11-10
    • US11126060
    • 2005-05-09
    • Michael Wagner
    • Michael Wagner
    • B60Q1/38B60Q1/46B60Q1/52B60R16/02G08B5/00H05B37/02H05B41/30
    • B60Q1/46H05B37/029H05B41/30Y02B20/40
    • A device performs a synchronization between flasher frequencies of flasher devices and a central flashing frequency of a central control device at times when a data transmission device is in the active state. For a synchronization, a correction signal is determined in the central control device from a deviation of a phase of the flasher frequency relative to a phase of the central flashing frequency and transmitted to a flasher control device which modifies the flasher frequency phase in response to the correction signal. Following the modification of the flasher frequency phase the data transmission device is switched back once more into an idle state. This offers the advantage that a synchronization of flasher devices with a central control device can be performed, whereby a data transmission device does not need to be permanently active and can therefore be used in a power-saving way.
    • 当数据传输设备处于活动状态时,设备执行闪光器设备的闪光器频率和中央控制设备的中央闪烁频率之间的同步。 为了同步,在中央控制装置中根据闪光器频率相对于中心闪烁频率的相位的偏差来确定校正信号,并且发送到闪光器控制装置,该闪光器控制装置响应于闪光器频率相位 校正信号。 在修改闪光器频率相位之后,数据传输装置再次切换回到空闲状态。 这提供了可以执行闪光器装置与中央控制装置的同步的优点,由此数据传输装置不需要永久地活动,因此可以以省电的方式使用。