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    • 1. 发明申请
    • LED ANTI-COLLISION LIGHT HAVING A XENON ANTI-COLLISION LIGHT POWER SUPPLY
    • LED防撞灯具有XENON防碰撞灯电源
    • US20120126698A1
    • 2012-05-24
    • US13296959
    • 2011-11-15
    • Len De OtoDon KulasekeraBrian Barnhart
    • Len De OtoDon KulasekeraBrian Barnhart
    • H05B37/02B64D47/02
    • H02J7/345B64D47/06B64D2203/00
    • Methods and systems for easily integrating a light-emitting diode (LED) light assembly with an existing xenon power supply. An exemplary system includes a xenon power supply that includes an energy storage device and a device that commands the energy storage device to discharge the stored energy and transmit a trigger signal after a predefined amount of time since at least one of a previous discharge or a beginning of initial charge of the energy storage device. The LED light assembly includes one or more LEDs and a current regulator that receives the discharge from the storage device and regulates current to the LEDs based on LED requirements. The LED light assembly also includes a processing device that receives the trigger signal, resets and begins a timer upon reception of the trigger signal and deactivates the current regulator when the timer has reached predefined threshold.
    • 用于将发光二极管(LED)灯组件与现有氙气电源轻松集成的方法和系统。 示例性系统包括氙电源,其包括能量存储装置和指令能量存储装置放出所存储的能量并在预先确定的时间量之后发送触发信号的装置,这是从先前放电或开始的至少一个之后 的储能装置的初始充电。 LED灯组件包括一个或多个LED和电流调节器,其接收来自存储装置的放电并根据LED要求调节对LED的电流。 LED灯组件还包括接收触发信号的处理装置,在接收到触发信号时复位并开始定时器,并且当定时器达到预定义的阈值时,使电流调节器停用。
    • 2. 发明授权
    • LED anti-collision light having a xenon anti-collision light power supply
    • LED防碰撞灯具有氙气防碰撞光源
    • US08610378B2
    • 2013-12-17
    • US13296959
    • 2011-11-15
    • Len De OtoDon KulasekeraBrian Barnhart
    • Len De OtoDon KulasekeraBrian Barnhart
    • H05B37/02H05B39/04H05B41/36
    • H02J7/345B64D47/06B64D2203/00
    • Methods and systems for easily integrating a light-emitting diode (LED) light assembly with an existing xenon power supply. An exemplary system includes a xenon power supply that includes an energy storage device and a device that commands the energy storage device to discharge the stored energy and transmit a trigger signal after a predefined amount of time since at least one of a previous discharge or a beginning of initial charge of the energy storage device. The LED light assembly includes one or more LEDs and a current regulator that receives the discharge from the storage device and regulates current to the LEDs based on LED requirements. The LED light assembly also includes a processing device that receives the trigger signal, resets and begins a timer upon reception of the trigger signal and deactivates the current regulator when the timer has reached predefined threshold.
    • 用于将发光二极管(LED)灯组件与现有氙气电源轻松集成的方法和系统。 示例性系统包括氙电源,其包括能量存储装置和指令能量存储装置放出所存储的能量并在预先确定的时间量之后发送触发信号的装置,这是从先前放电或开始的至少一个之后 的储能装置的初始充电。 LED灯组件包括一个或多个LED和电流调节器,其接收来自存储装置的放电并根据LED要求调节对LED的电流。 LED灯组件还包括接收触发信号的处理装置,在接收到触发信号时复位并开始定时器,并且当定时器达到预定义的阈值时,使电流调节器停用。
    • 3. 发明申请
    • SYSTEMS AND METHODS FOR MONITORING OPERATION OF AN LED STRING
    • 监控LED灯的运行的系统和方法
    • US20120239326A1
    • 2012-09-20
    • US13048461
    • 2011-03-15
    • Len De OtoRichard PolicyStan Hodge
    • Len De OtoRichard PolicyStan Hodge
    • G01R19/00
    • G01R31/2635H05B33/0893
    • Methods and systems for monitoring operation of an LED string. An exemplary system includes an LED string, a circuit that supplies current to the LEDs, a current measuring circuit that measures current through the LEDs, a voltage measuring circuit that measures voltage across the LEDs, and a temperature sensor that measures temperature proximate to the LEDs. A processor calculates a predicted string voltage based on a predefined voltage-current curve, number of LEDs, a predefined temperature coefficient value, the measured string current, a measured junction temperature, a life curve function, a prestored calibration string current value, a prestored calibration string voltage value, a prestored junction calibration temperature and an accumulated time value. The process also calculates an error value based on the predicted string voltage and a measured string voltage and generates an indication that there is a failure in the LED string if the calculated error value is greater than the predefined error limit.
    • 用于监视LED串的操作的方法和系统。 示例性系统包括LED串,向LED提供电流的电路,测量通过LED的电流的电流测量电路,测量LED两端的电压的电压测量电路以及测量靠近LED的温度的温度传感器 。 处理器基于预定的电压 - 电流曲线,LED的数量,预定的温度系数值,测量的串电流,测量的结温,寿命曲线函数,预先存储的校准串电流值,预先存储的 校准串电压值,预存的接点校准温度和累计时间值。 该过程还基于预测的串电压和测量的串电压来计算误差值,并且如果计算的误差值大于预定义的误差极限,则产生LED串中的故障的指示。
    • 4. 发明授权
    • Systems and methods for monitoring operation of an LED string
    • 监视LED串的操作的系统和方法
    • US08635035B2
    • 2014-01-21
    • US13048461
    • 2011-03-15
    • Len De OtoRichard PolicyStan Hodge
    • Len De OtoRichard PolicyStan Hodge
    • H05B33/08G01R31/36G06F17/40G06F19/00
    • G01R31/2635H05B33/0893
    • Methods and systems for monitoring operation of an LED string. An exemplary system includes an LED string, a circuit that supplies current to the LEDs, a current measuring circuit that measures current through the LEDs, a voltage measuring circuit that measures voltage across the LEDs, and a temperature sensor that measures temperature proximate to the LEDs. A processor calculates a predicted string voltage based on a predefined voltage-current curve, number of LEDs, a predefined temperature coefficient value, the measured string current, a measured junction temperature, a life curve function, a prestored calibration string current value, a prestored calibration string voltage value, a prestored junction calibration temperature and an accumulated time value. The process also calculates an error value based on the predicted string voltage and a measured string voltage and generates an indication that there is a failure in the LED string if the calculated error value is greater than the predefined error limit.
    • 用于监视LED串的操作的方法和系统。 示例性系统包括LED串,向LED提供电流的电路,测量通过LED的电流的电流测量电路,测量LED两端的电压的电压测量电路以及测量靠近LED的温度的温度传感器 。 处理器基于预定的电压 - 电流曲线,LED的数量,预定的温度系数值,测量的串电流,测量的结温,寿命曲线函数,预先存储的校准串电流值,预先存储的 校准串电压值,预存的接点校准温度和累计时间值。 该过程还基于预测的串电压和测量的串电压来计算误差值,并且如果计算的误差值大于预定义的误差极限,则产生LED串中的故障的指示。