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    • 3. 发明申请
    • SYSTEMS AND METHODS FOR CONTROLLING SOLID STATE LIGHTING DEVICES AND LIGHTING APPARATUS INCORPORATING SUCH SYSTEMS AND/OR METHODS
    • 用于控制固态照明装置的系统和方法以及包含这样的系统和/或方法的照明装置
    • WO2012060966A1
    • 2012-05-10
    • PCT/US2011/054846
    • 2011-10-05
    • CREE, INC.CHOBOT, Joseph Paul
    • CHOBOT, Joseph Paul
    • G09G3/34
    • H05B33/0872H05B33/0866
    • A solid state lighting apparatus includes a first plurality of light emitting devices configured to emit light when energized having a first chromaticity, a second plurality of light emitting devices configured to emit light when energized having a second chromaticity, different from the first chromaticity, and a controller configured to control a duty cycle of current supplied to the first plurality of light emitting devices. The controller is configured to control the duty cycle of the first plurality of light emitting devices in response to a change in a plurality of operating conditions of the solid state lighting apparatus in accordance with a model of the duty cycle that relates the duty cycle of the first plurality of light emitting devices to the plurality of operating conditions of the solid state lighting apparatus for a target light output characteristic of the solid state lighting apparatus. Related methods are also disclosed.
    • 一种固态照明装置,包括:第一多个发光装置,被配置为在通电时具有第一色度发光;第二多个发光装置,被配置为在通电时具有不同于第一色度的第二色度发光;以及 控制器被配置为控制提供给第一多个发光器件的电流的占空比。 控制器被配置为响应于固态照明装置的多个操作条件的变化,根据占空比的模型来控制第一多个发光装置的占空比,该模型将占空比的占空比 在固体照明装置的目标光输出特性的固态照明装置的多个工作状态下的第一多个发光装置。 还公开了相关方法。
    • 4. 发明申请
    • STORED ENERGY DISSIPATING CIRCUITS AND METHODS FOR SWITCHED MODE POWER SUPPLIES
    • 存储能量消耗电路和开关电源的方法
    • WO2011119700A1
    • 2011-09-29
    • PCT/US2011/029578
    • 2011-03-23
    • CREE, INC.MYERS, Peter J.CHOBOT, Joseph Paul
    • MYERS, Peter J.CHOBOT, Joseph Paul
    • H02J1/00
    • H02M1/32H02M2001/322
    • A circuit includes a detector configured to detect a state of a power supply including an energy storage component and to generate a control signal responsive to the state of the power supply, a dissipating component, and a switch configured to controllably couple the dissipating component to the energy storage component in response to the control signal output by the detector. Methods of operating a power supply including an energy storage component and a dissipating component are disclosed. The methods include monitoring the power supply to determine if the power supply may be active, and, in response to determining that the power supply may be inactive, coupling the dissipating component to the energy storage component to dissipate energy from the energy storage component.
    • 电路包括检测器,其被配置为检测包括能量存储部件的电源的状态,并且响应于电源的状态产生控制信号,消散部件和开关,其被配置为可控制地将散热部件耦合到 响应由检测器输出的控制信号的能量存储部件。 公开了包括能量存储部件和耗散部件的电源的操作方法。 这些方法包括监视电源以确定电源是否可以被激活,并且响应于确定电源可能不活动,将耗散部件耦合到能量存储部件以从能量存储部件消散能量。
    • 5. 发明申请
    • DYNAMIC LOADING OF POWER SUPPLIES
    • 电力动力装载
    • WO2011119705A1
    • 2011-09-29
    • PCT/US2011/029585
    • 2011-03-23
    • CREE, INC.MYERS, Peter J.CHOBOT, Joseph, Paul
    • MYERS, Peter J.CHOBOT, Joseph, Paul
    • G08B21/00
    • H05B33/0815H05B33/0809
    • A circuit for altering a level of impedance presented to a power supply including a power supply line includes an energy dissipating circuit, a detection circuit configured to generate a control signal indicative of a power consumption level in a load circuit coupled to the power supply line, and an activation circuit configured to controllably couple the energy dissipating circuit to the power supply line in response to the control signal. Methods of operating a solid state lighting apparatus including a power supply and a solid state lighting device coupled to the power supply include detecting a level of power consumption by the solid state lighting device, and coupling an energy dissipating circuit to the power supply in response to the level of power consumption by the solid state lighting device falling below a threshold level.
    • 用于改变呈现给包括电源线的电源的阻抗水平的电路包括能量耗散电路,检测电路,被配置为产生指示耦合到电源线的负载电路中的功率消耗电平的控制信号, 以及激活电路,其被配置为响应于所述控制信号可控地将所述能量消散电路耦合到所述电源线。 操作包括耦合到电源的电源和固态照明装置的固态照明装置的方法包括检测固态照明装置的功率消耗水平,以及响应于所述固态照明装置将能量消散电路耦合到电源 固态照明装置的功耗水平低于阈值水平。