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    • 1. 发明申请
    • Switching Power Converter Control With Triac-Based Leading Edge Dimmer Compatibility
    • 开关电源转换器控制采用基于Triac的前沿调光器兼容性
    • US20120299501A1
    • 2012-11-29
    • US13488580
    • 2012-06-05
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • H05B37/02
    • H05B33/0815H05B33/0824Y02B20/346
    • In at least one embodiment, a controller allows triac-based dimmer to properly function and dim a load whose voltage is regulated by a switching power converter. In at least one embodiment, the switching power converter includes a switch to control voltage conversion of an input voltage to the switching power converter, wherein phase delays are introduced in the input voltage by a triac-based dimmer during a dimming period. In at least one embodiment, the controller is configured to control the switch of the switching power converter to establish an input resistance of the switching power converter during a dimming portion of the input voltage, wherein the input resistance allows the triac-based dimmer to phase modulate a supply voltage to the dimmer so that an output voltage of the dimmer has a substantially uninterrupted phase delay during each half-cycle of the supply voltage during the dimming period.
    • 在至少一个实施例中,控制器允许基于triac的调光器正确地对其电压由开关功率转换器调节的负载进行功能和调光。 在至少一个实施例中,开关功率转换器包括用于控制输入电压到开关功率转换器的电压转换的开关,其中在调光期间通过基于三端双向可控硅的调光器在输入电压中引入相位延迟。 在至少一个实施例中,控制器被配置为控制开关功率转换器的开关,以在输入电压的调光部分期间建立开关功率转换器的输入电阻,其中输入电阻允许基于triac的调光器相位 调制到调光器的电源电压,使得调光器的输出电压在调光期间的电源电压的每个半周期期间具有基本上不间断的相位延迟。
    • 2. 发明授权
    • Switching power converter control with triac-based leading edge dimmer compatibility
    • 开关电源转换器控制采用基于triac的前沿调光器兼容性
    • US08212491B2
    • 2012-07-03
    • US12347138
    • 2008-12-31
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • H05B41/16
    • H05B33/0815H05B33/0824Y02B20/346
    • In at least one embodiment, a controller allows triac-based dimmer to properly function and dim a load whose voltage is regulated by a switching power converter. In at least one embodiment, the switching power converter includes a switch to control voltage conversion of an input voltage to the switching power converter, wherein phase delays are introduced in the input voltage by a triac-based dimmer during a dimming period. In at least one embodiment, the controller is configured to control the switch of the switching power converter to establish an input resistance of the switching power converter during a dimming portion of the input voltage, wherein the input resistance allows the triac-based dimmer to phase modulate a supply voltage to the dimmer so that an output voltage of the dimmer has a substantially uninterrupted phase delay during each half-cycle of the supply voltage during the dimming period.
    • 在至少一个实施例中,控制器允许基于triac的调光器正确地对其电压由开关功率转换器调节的负载进行功能和调光。 在至少一个实施例中,开关功率转换器包括用于控制输入电压到开关功率转换器的电压转换的开关,其中在调光期间通过基于三端双向可控硅的调光器在输入电压中引入相位延迟。 在至少一个实施例中,控制器被配置为控制开关功率转换器的开关,以在输入电压的调光部分期间建立开关功率转换器的输入电阻,其中输入电阻允许基于triac的调光器相位 调制到调光器的电源电压,使得调光器的输出电压在调光期间的电源电压的每个半周期期间具有基本上不间断的相位延迟。
    • 3. 发明授权
    • Switching power converter control with triac-based leading edge dimmer compatibility
    • 开关电源转换器控制采用基于triac的前沿调光器兼容性
    • US08581504B2
    • 2013-11-12
    • US13488580
    • 2012-06-05
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • H05B37/02
    • H05B33/0815H05B33/0824Y02B20/346
    • In at least one embodiment, a controller allows triac-based dimmer to properly function and dim a load whose voltage is regulated by a switching power converter. In at least one embodiment, the switching power converter includes a switch to control voltage conversion of an input voltage to the switching power converter, wherein phase delays are introduced in the input voltage by a triac-based dimmer during a dimming period. In at least one embodiment, the controller is configured to control the switch of the switching power converter to establish an input resistance of the switching power converter during a dimming portion of the input voltage, wherein the input resistance allows the triac-based dimmer to phase modulate a supply voltage to the dimmer so that an output voltage of the dimmer has a substantially uninterrupted phase delay during each half-cycle of the supply voltage during the dimming period.
    • 在至少一个实施例中,控制器允许基于triac的调光器正确地对其电压由开关功率转换器调节的负载进行功能和调光。 在至少一个实施例中,开关功率转换器包括用于控制输入电压到开关功率转换器的电压转换的开关,其中在调光期间通过基于三端双向可控硅的调光器在输入电压中引入相位延迟。 在至少一个实施例中,控制器被配置为控制开关功率转换器的开关,以在输入电压的调光部分期间建立开关功率转换器的输入电阻,其中输入电阻允许基于triac的调光器相位 调制到调光器的电源电压,使得调光器的输出电压在调光期间的电源电压的每个半周期期间具有基本上不间断的相位延迟。
    • 4. 发明申请
    • SWITCHING POWER CONVERTER CONTROL WITH TRIAC-BASED LEADING EDGE DIMMER COMPATIBILITY
    • 使用基于TRIAC的引线边缘调光器兼容性切换电源转换器控制
    • US20100164406A1
    • 2010-07-01
    • US12347138
    • 2008-12-31
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • Michael A. KostMauro L. GaetanoJohn L. Melanson
    • H05B37/02
    • H05B33/0815H05B33/0824Y02B20/346
    • In at least one embodiment, a controller allows triac-based dimmer to properly function and dim a load whose voltage is regulated by a switching power converter. In at least one embodiment, the switching power converter includes a switch to control voltage conversion of an input voltage to the switching power converter, wherein phase delays are introduced in the input voltage by a triac-based dimmer during a dimming period. In at least one embodiment, the controller is configured to control the switch of the switching power converter to establish an input resistance of the switching power converter during a dimming portion of the input voltage, wherein the input resistance allows the triac-based dimmer to phase modulate a supply voltage to the dimmer so that an output voltage of the dimmer has a substantially uninterrupted phase delay during each half-cycle of the supply voltage during the dimming period.
    • 在至少一个实施例中,控制器允许基于triac的调光器正确地对其电压由开关功率转换器调节的负载进行功能和调光。 在至少一个实施例中,开关功率转换器包括用于控制输入电压到开关功率转换器的电压转换的开关,其中在调光期间通过基于三端双向可控硅的调光器在输入电压中引入相位延迟。 在至少一个实施例中,控制器被配置为控制开关功率转换器的开关,以在输入电压的调光部分期间建立开关功率转换器的输入电阻,其中输入电阻允许基于triac的调光器相位 调制到调光器的电源电压,使得调光器的输出电压在调光期间的电源电压的每个半周期期间具有基本上不间断的相位延迟。
    • 6. 发明申请
    • SWITCHING REGULATOR WITH BOOSTED AUXILIARY WINDING SUPPLY
    • 带升压辅助绕组电源的开关稳压器
    • US20090190379A1
    • 2009-07-30
    • US12242298
    • 2008-09-30
    • John L MelansonMauro L. GaetanoKarl Thompson
    • John L MelansonMauro L. GaetanoKarl Thompson
    • H02M3/335
    • H02M3/156H02M2001/0006Y10S323/901
    • A boosted auxiliary winding power supply for a switched-power converter circuit provides operating voltage for control and other circuits early in the start-up phase of converter operation. A boost circuit has an input coupled to the auxiliary winding to boost the voltage available from the auxiliary winding at least during start-up of the switched-power converter. The boost thereby provides a voltage that is greater than the voltage across the auxiliary winding during start-up of the switched-power converter. The boost circuit may be actively switched at a rate higher than a switching rate of the switched-power converter, to increase a rate of rise of the operating voltage. Polarity information, which may be provided from the switched-power converter control circuit, can be used to actively rectify the output of the auxiliary winding.
    • 用于开关电源转换器电路的升压辅助绕组电源在转换器运行的启动阶段的早期提供控制和其他电路的工作电压。 升压电路具有耦合到辅助绕组的输入,以至少在开关功率转换器的启动期间升高从辅助绕组可用的电压。 因此,在开关功率转换器的启动期间,升压提供大于辅助绕组上的电压的电压。 升压电路可以以高于开关功率转换器的开关速率的速率主动切换,以增加工作电压的上升速率。 可以从开关电源转换器控制电路提供的极性信息可用于主动地校正辅助绕组的输出。
    • 8. 发明授权
    • Switching power converter with selectable mode auxiliary power supply
    • 具有可选模式辅助电源的开关电源转换器
    • US08222872B1
    • 2012-07-17
    • US12493045
    • 2009-06-26
    • John L. MelansonMauro L. GaetanoLarry L. Harris
    • John L. MelansonMauro L. GaetanoLarry L. Harris
    • G05F1/613H02M7/162
    • H02M3/155H02M3/33561H02M2001/0006
    • A auxiliary power supply having a selectable operating mode raises efficiency of a switched-power converter. By selectably controlling the input/output behavior of the auxiliary power supply receiving a voltage from an auxiliary winding of one of the power converter magnetic elements, more efficient operation of the auxiliary power supply over the full variation range of the input line voltage is achieved. By selecting the operating mode according to the relationship between the required auxiliary power supply output and the voltage available across the auxiliary winding under current operating conditions, the turns ratio of the auxiliary winding and other circuit parameters can be optimized for efficiency. Selection of the operating mode may be made by detecting the output or input voltage of the multiplier, and the selection may be performed under hysteretic control so that the variation in auxiliary power supply output voltage is reduced dynamically.
    • 具有可选操作模式的辅助电源提高了开关电源转换器的效率。 通过可选择地控制从功率转换器磁性元件之一的辅助绕组接收电压的辅助电源的输入/输出特性,实现了在输入线电压的整个变化范围内辅助电源的更有效的操作。 通过根据所需辅助电源输出与辅助绕组在当前工作条件下可用的电压之间的关系选择工作模式,辅助绕组和其他电路参数的匝数比可以优化效率。 可以通过检测乘法器的输出或输入电压来进行操作模式的选择,并且可以在滞后控制下执行选择,使得辅助电源输出电压的变化被动态地减小。
    • 9. 发明授权
    • Resonant switching power converter with burst mode transition shaping
    • 具有突发模式转换整形的谐振开关电源转换器
    • US08014176B2
    • 2011-09-06
    • US12242199
    • 2008-09-30
    • John L. MelansonMauro L. Gaetano
    • John L. MelansonMauro L. Gaetano
    • H02M3/335
    • H01F38/02H01F3/10H01F3/14H01F38/08H01F2038/026H02M1/42H02M2001/0032Y02B70/12Y02B70/16
    • A resonant switching power converter having burst mode transitioning operates during low or zero load conditions with reduced audible noise and component stresses, while improving efficiency. Pulse bursts are generated with a beginning and/or ending pulse duration that differs from mid-burst pulse durations, in order to reduce an amplitude of transients otherwise generated at the beginning and/or end of the bursts. Alternatively, the spacing between the pulses at the beginning and/or end of the bursts may differ from the spacing between the pulses in the middle of the bursts to reduce the transient(s). A number of pulses at the beginning and/or end of the burst can also be set with gradually varying durations, to further reduce component stress and audible vibration in a transformer that couples the resonant tank to the output of the converter.
    • 具有突发模式转换的谐振开关功率转换器在低或零负载条件下操作,同时提高效率,同时具有降低的可听噪声和分量应力。 产生具有不同于脉冲串脉冲持续时间的开始和/或结束脉冲持续时间的脉冲脉冲串,以便减少在脉冲串的开始和/或结束时另外产生的瞬变幅度。 或者,脉冲串的开始和/或结束处的脉冲之间的间隔可能与脉冲串中间的脉冲之间的间隔不同,以减少瞬态。 在脉冲串的开始和/或结束处的脉冲数也可以设定为具有逐渐变化的持续时间,以进一步降低将谐振回路耦合到转换器的输出端的变压器中的分量应力和可听振动。
    • 10. 发明授权
    • Switching regulator with boosted auxiliary winding supply
    • 带升压辅助绕组电源的开关稳压器
    • US08008898B2
    • 2011-08-30
    • US12242298
    • 2008-09-30
    • John L. MelansonMauro L. GaetanoKarl Thompson
    • John L. MelansonMauro L. GaetanoKarl Thompson
    • G05F1/613
    • H02M3/156H02M2001/0006Y10S323/901
    • A boosted auxiliary winding power supply for a switched-power converter circuit provides operating voltage for control and other circuits early in the start-up phase of converter operation. A boost circuit has an input coupled to the auxiliary winding to boost the voltage available from the auxiliary winding at least during start-up of the switched-power converter. The boost thereby provides a voltage that is greater than the voltage across the auxiliary winding during start-up of the switched-power converter. The boost circuit may be actively switched at a rate higher than a switching rate of the switched-power converter, to increase a rate of rise of the operating voltage. Polarity information, which may be provided from the switched-power converter control circuit, can be used to actively rectify the output of the auxiliary winding.
    • 用于开关电源转换器电路的升压辅助绕组电源在转换器运行的启动阶段的早期提供控制和其他电路的工作电压。 升压电路具有耦合到辅助绕组的输入,以至少在开关功率转换器的启动期间升高从辅助绕组可用的电压。 因此,在开关功率转换器的启动期间,升压提供大于辅助绕组上的电压的电压。 升压电路可以以高于开关功率转换器的开关速率的速率主动切换,以增加工作电压的上升速率。 可以从开关电源转换器控制电路提供的极性信息可用于主动地校正辅助绕组的输出。