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    • 1. 发明授权
    • Universal lighting source controller with integral power metering
    • 通用光源控制器,具有集成的电能计量功能
    • US08649882B2
    • 2014-02-11
    • US13765318
    • 2013-02-12
    • Joe StelzerKenneth WalmaJames Moan
    • Joe StelzerKenneth WalmaJames Moan
    • G05B11/01G05F1/00
    • H05B37/02H05B37/0254
    • A universal lighting source controller including integral power metering for use with substantially all light source types including fluorescent, incandescent, magnetic low voltage, electronic low voltage, light emitting diode (“LED”), high density discharge (“HID”), neon, and cold cathode. The lighting source controller includes a line voltage dimming circuit that can control the intensity of light sources in a lighting circuit and measures the actual amount of power consumed by the light sources. The line voltage dimming circuit includes a triac circuit for controlling this intensity and current and voltage detection circuits for measuring the power consumption. The lighting source controller can also include low voltage dimming circuits to provide a control signal to light sources having electronic or magnetic dimming ballasts to set the intensity of these light sources.
    • 一种通用的光源控制器,其包括用于基本上所有光源类型的整体功率计量,包括荧光灯,白炽灯,低电压,电子低压,发光二极管(“LED”),高密度放电(“HID”),氖灯, 和冷阴极。 照明源控制器包括能够控制点亮电路中的光源的强度的线路电压调光电路,并且测量光源消耗的实际功率量。 线路电压调光电路包括用于控制该强度的三端双向可控硅开关电路和用于测量功耗的电流和电压检测电路。 光源控制器还可以包括低电压调光电路,以向具有电子或磁调光镇流器的光源提供控制信号以设置这些光源的强度。
    • 2. 发明申请
    • Universal Lighting Source Controller with Integral Power Metering
    • 具有整体功率计的通用照明光源控制器
    • US20130154511A1
    • 2013-06-20
    • US13765318
    • 2013-02-12
    • Joe StelzerKenneth WalmaJames Moan
    • Joe StelzerKenneth WalmaJames Moan
    • H05B37/02
    • H05B37/02H05B37/0254
    • A universal lighting source controller including integral power metering for use with substantially all light source types including fluorescent, incandescent, magnetic low voltage, electronic low voltage, light emitting diode (“LED”), high density discharge (“HID”), neon, and cold cathode. The lighting source controller includes a line voltage dimming circuit that can control the intensity of light sources in a lighting circuit and measures the actual amount of power consumed by the light sources. The line voltage dimming circuit includes a triac circuit for controlling this intensity and current and voltage detection circuits for measuring the power consumption. The lighting source controller can also include low voltage dimming circuits to provide a control signal to light sources having electronic or magnetic dimming ballasts to set the intensity of these light sources.
    • 一种通用的光源控制器,其包括用于基本上所有光源类型的整体功率计量,包括荧光灯,白炽灯,低电压,电子低压,发光二极管(“LED”),高密度放电(“HID”),氖灯, 和冷阴极。 照明源控制器包括能够控制点亮电路中的光源的强度的线路电压调光电路,并且测量光源消耗的实际功率量。 线路电压调光电路包括用于控制该强度的三端双向可控硅开关电路和用于测量功耗的电流和电压检测电路。 光源控制器还可以包括低电压调光电路,以向具有电子或磁调光镇流器的光源提供控制信号以设置这些光源的强度。
    • 3. 发明申请
    • Universal Lighting Source Controller with Integral Power Metering
    • 具有整体功率计的通用照明光源控制器
    • US20100289430A1
    • 2010-11-18
    • US12466077
    • 2009-05-14
    • Joe StelzerKenneth Walma
    • Joe StelzerKenneth Walma
    • H05B37/02
    • H05B37/02H05B37/0254
    • A universal lighting source controller including integral power metering for use with substantially all light source types including fluorescent, incandescent, magnetic low voltage, electronic low voltage, light emitting diode (“LED”), high density discharge (“HID”), neon, and cold cathode. The lighting source controller includes a line voltage dimming circuit that can control the intensity of light sources in a lighting circuit and measures the actual amount of power consumed by the light sources. The line voltage dimming circuit includes a triac circuit for controlling this intensity and current and voltage detection circuits for measuring the power consumption. The lighting source controller can also include low voltage dimming circuits to provide a control signal to light sources having electronic or magnetic dimming ballasts to set the intensity of these light sources.
    • 一种通用的光源控制器,其包括用于基本上所有光源类型的整体功率计量,包括荧光灯,白炽灯,低电压,电子低压,发光二极管(“LED”),高密度放电(“HID”),氖灯, 和冷阴极。 照明源控制器包括能够控制点亮电路中的光源的强度的线路电压调光电路,并且测量光源消耗的实际功率量。 线路电压调光电路包括用于控制该强度的三端双向可控硅开关电路和用于测量功耗的电流和电压检测电路。 光源控制器还可以包括低电压调光电路,以向具有电子或磁调光镇流器的光源提供控制信号以设置这些光源的强度。
    • 4. 发明授权
    • Pre-programmed output for demand response electrical devices
    • 预编程输出用于需求响应电气设备
    • US09236737B1
    • 2016-01-12
    • US13287977
    • 2011-11-02
    • James MoanKenneth Walma
    • James MoanKenneth Walma
    • G05D25/02H02J3/00
    • H02J3/00H05B33/0815H05B37/0245
    • A method is described herein for adjusting energy consumption of a pre-programmed device operating at a first energy level. The method includes receiving a first signal from a first utility signal that includes first instructions to adjust the energy consumption of the pre-programmed device to a second energy level. The pre-programmed device is programmed during manufacturing to operate at the first energy level and the second energy level. The method further includes processing the first signal to retrieve the instructions. The method also includes adjusting an energy source from the first energy level to the second energy level based on the first instructions. The method also includes sending a first notification to the first utility confirming that the pre-programmed device is operating at the second energy level.
    • 本文描述了一种用于调节在第一能级操作的预编程设备的能量消耗的方法。 该方法包括从第一公用事业信号接收第一信号,该第一公用信号包括将预编程设备的能量消耗调整到第二能级的第一指令。 预编程的装置在制造期间被编程,以在第一能量级和第二能级操作。 该方法还包括处理第一信号以检索指令。 该方法还包括基于第一指令将能量源从第一能级调整到第二能级。 该方法还包括向第一实用程序发送第一通知,确认预编程的设备在第二能级操作。
    • 5. 发明授权
    • Systems and methods for self commissioning and locating lighting system
    • 自动调试和定位照明系统的系统和方法
    • US09192028B2
    • 2015-11-17
    • US14215758
    • 2014-03-17
    • Kenneth WalmaJames Moan
    • Kenneth WalmaJames Moan
    • H05B37/02
    • H05B37/0227H05B37/0218H05B37/0245H05B37/0272Y02B20/46
    • The present disclosure provides techniques for a self-commissioning and locating lighting system. The system includes a group of light fixtures, each emitting a unique optical data signal. A remote control device detects the unique optical data signal from the light fixtures when the light fixture is within a visual field of the remote control device. A central controller receives a signal from the remote control device, wherein the signal comprises data regarding the GPS location of the remote control device and the digital identities of the light fixture within the visual field of the remote control, wherein the signal further comprises a control command for operation of the light fixtures, and wherein the central controller sends a control signal to the light fixture implementing the control command.
    • 本公开提供了用于自调试和定位照明系统的技术。 该系统包括一组灯具,每组灯具都发出独特的光学数据信号。 当灯具处于远程控制装置的视野内时,遥控装置检测来自灯具的唯一光学数据信号。 中央控制器从远程控制装置接收信号,其中该信号包括关于远程控制装置的GPS位置和远程控制的视野内的照明装置的数字身份的数据,其中信号还包括一个控制 命令,用于操作灯具,并且其中中央控制器向执行控制命令的灯具发送控制信号。
    • 6. 发明申请
    • Systems and Methods for Self Commissioning and Locating Lighting System
    • 自动调试和定位照明系统的系统和方法
    • US20140265870A1
    • 2014-09-18
    • US14215758
    • 2014-03-17
    • Kenneth WalmaJames Moan
    • Kenneth WalmaJames Moan
    • H05B37/02
    • H05B37/0227H05B37/0218H05B37/0245H05B37/0272Y02B20/46
    • The present disclosure provides techniques for a self-commissioning and locating lighting system. The system includes a group of light fixtures, each emitting a unique optical data signal. A remote control device detects the unique optical data signal from the light fixtures when the light fixture is within a visual field of the remote control device. A central controller receives a signal from the remote control device, wherein the signal comprises data regarding the GPS location of the remote control device and the digital identities of the light fixture within the visual field of the remote control, wherein the signal further comprises a control command for operation of the light fixtures, and wherein the central controller sends a control signal to the light fixture implementing the control command.
    • 本公开提供了用于自调试和定位照明系统的技术。 该系统包括一组灯具,每组灯具都发出独特的光学数据信号。 当灯具处于远程控制装置的视野内时,遥控装置检测来自灯具的唯一光学数据信号。 中央控制器从远程控制装置接收信号,其中该信号包括关于远程控制装置的GPS位置和远程控制的视野内的照明装置的数字身份的数据,其中信号还包括一个控制 命令,用于操作灯具,并且其中中央控制器向执行控制命令的灯具发送控制信号。
    • 8. 发明授权
    • Lighting control device with demand response indicator
    • 具有需求响应指示灯的照明控制装置
    • US09110449B1
    • 2015-08-18
    • US13725205
    • 2012-12-21
    • Kenneth WalmaMatthew CongerAngela Maddox
    • Kenneth WalmaMatthew CongerAngela Maddox
    • G05B11/00G05B11/01
    • G05B11/01H05B37/0227Y02B20/40
    • An occupancy sensing and energy indicating load control device includes an occupancy sensor, an energy savings feedback indicator, and a manual controller. The occupancy sensor detects occupancy within a monitored area. The device is electrically coupled to at least one load positioned within the monitored area and controls the energy consumption of the load. The energy savings feedback indicator provides awareness to an end user regarding energy savings and provides the end user with opportunities for additional energy savings. The device optionally includes a demand response indicator for providing awareness to the end user regarding when a demand response condition exists, its severity, and opportunities for additional energy savings.
    • 占用感测和能量指示负载控制装置包括占用传感器,节能反馈指示器和手动控制器。 占用传感器检测监视区域内的占用。 该装置电耦合到位于监测区域内的至少一个负载,并控制负载的能量消耗。 节能反馈指示器向最终用户提供关于节能的意识,并为终端用户提供额外的节能机会。 该设备可选地包括需求响应指示器,用于向终端用户提供关于何时存在需求响应条件的意识,其严重性以及额外节能的机会。
    • 10. 发明授权
    • Occupancy sensor with energy usage indicator
    • 带能量使用指示器的占用传感器
    • US08340834B1
    • 2012-12-25
    • US12762021
    • 2010-04-16
    • Kenneth WalmaMatthew CongerAngela Maddox
    • Kenneth WalmaMatthew CongerAngela Maddox
    • G05B11/01
    • G05B11/01H05B37/0227Y02B20/40
    • An occupancy sensing and energy indicating load control device includes an occupancy sensor, an energy savings feedback indicator, and a manual controller. The occupancy sensor detects occupancy within a monitored area. The device is electrically coupled to at least one load positioned within the monitored area and controls the energy consumption of the load. The energy savings feedback indicator provides awareness to an end user regarding energy savings and provides the end user with opportunities for additional energy savings. The device optionally includes a demand response indicator for providing awareness to the end user regarding when a demand response condition exists, its severity, and opportunities for additional energy savings.
    • 占用感测和能量指示负载控制装置包括占用传感器,节能反馈指示器和手动控制器。 占用传感器检测监视区域内的占用。 该装置电耦合到位于监测区域内的至少一个负载,并控制负载的能量消耗。 节能反馈指示器向最终用户提供关于节能的意识,并为终端用户提供额外的节能机会。 该设备可选地包括需求响应指示器,用于向终端用户提供关于何时存在需求响应条件的意识,其严重性以及额外节能的机会。