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    • 1. 发明申请
    • RELAY SYSTEM WITH BRANCH CIRCUIT METERING
    • 具有分支电路计量的继电器系统
    • US20130231793A1
    • 2013-09-05
    • US13410106
    • 2012-03-01
    • Randall B. ElliottSubramanian MuthuDavid Bruno
    • Randall B. ElliottSubramanian MuthuDavid Bruno
    • G05F5/00
    • G05B15/02G05B2219/2642
    • A networked lighting control device may include a switching device to control power to a load, a communication interface to couple the relay module to a control module at the relay panel, revenue-grade metering circuitry to monitor power flowing to the load, and a controller to control the switching device in response to inputs received at the communication interface and to transmit metrology data to the control module. A control module may include a mounting interface to mount the control module to a relay panel, a first communication port to receive first control inputs using a first protocol, a second communication port to receive second control inputs using a second protocol, a third communication port to control one or more relay modules mounted to the relay panel using the local communication format, and logic to translate the first and second control inputs to the local communication format.
    • 网络照明控制装置可以包括用于控制负载的电力的开关装置,将继电器模块耦合到继电器面板上的控制模块的通信接口,用于监测流向负载的功率的收入级计量电路,以及控制器 以响应于在通信接口处接收的输入来控制开关装置,并将测量数据传送到控制模块。 控制模块可以包括将控制模块安装到中继面板的安装接口,使用第一协议接收第一控制输入的第一通信端口,使用第二协议接收第二控制输入的第二通信端口,第三通信端口 使用本地通信格式控制安装到中继面板的一个或多个继电器模块,以及将第一和第二控制输入转换为本地通信格式的逻辑。
    • 10. 发明授权
    • LED luminaire with electrically adjusted color balance using photodetector
    • 具有电调色彩平衡的LED灯具采用光电探测器
    • US06495964B1
    • 2002-12-17
    • US09749154
    • 2000-12-27
    • Subramanian MuthuChin Chang
    • Subramanian MuthuChin Chang
    • H05B3702
    • G01J1/32F21V9/40F21V23/0442F21W2111/02F21Y2115/10G01J3/46G01J3/463G01J3/465G01J3/50G01J3/501G02B6/003G08G1/095H05B33/0803H05B33/0818H05B33/086H05B33/0863H05B33/0869
    • The combined light output (chromaticity) of a white light emitting LED luminaire is electronically controlled based on measurements by a single photodiode arranged to measure the light outputs of at least a plurality of the LEDs in the array. This is accomplished by measuring the light output of the LEDs in each color separately in a sequence of time pulses. For an array of red, green, and blue LEDs there are three time pulses in a measuring sequence. During each time pulse, the current for the color being measured is turned off. The response time of a typical photodiode is extremely short, so the measuring sequence can be performed in a sufficiently short time that an-observer will not detect it (e.g. 10 ms). Measured light outputs for the colors are compared to desired outputs, which may be set by user controls, and changes to the power supply for the color blocks are made as necessary. Chromaticity is thus automatically controlled without regard to the factors which may cause it to change. The user inputs permit varying the desired chromaticity to either warm white (more red output) or cool white (more blue output).
    • 基于被布置为测量阵列中的至少多个LED的光输出的单个光电二极管的测量,电子控制白光发射LED灯具的组合光输出(色度)。 这是通过以时间脉冲序列分别测量每种颜色的LED的光输出来实现的。 对于红色,绿色和蓝色LED阵列,测量顺序中有三个时间脉冲。 在每个时间脉冲期间,被测量的颜色的电流被关闭。 典型的光电二极管的响应时间非常短,所以可以在足够短的时间内执行测量序列,观察者将不会检测它(例如10ms)。 将颜色的测量光输出与可由用户控制设置的所需输出进行比较,并根据需要进行颜色块的电源更改。 因此,色度自动控制,而不考虑可能导致其改变的因素。 用户输入允许将所需色度改变为暖白色(更多红色输出)或冷白色(更蓝色输出)。