A novel integrated circuit for driving LED lighting has been proposed, designed and fabricated. Besides the typical parts of LED driver, an integral part was added at the output terminal of error amplifier in the driv...A novel integrated circuit for driving LED lighting has been proposed, designed and fabricated. Besides the typical parts of LED driver, an integral part was added at the output terminal of error amplifier in the driver. In this way, a novel average current mode can be set up to take the place ordinary peak current control mode. In addition, a BUCK low-level topology was adopted, too. It can be used to drive up to eight 1 W HB LED lights with 350 mA constant current. In this way, the LED driver displays high performance, in which output current with less 1% error and total efficiency as high as 96%. The feasibility of the design has been verified by actual measurement on the fabricated chip.展开更多
A high power buck-boost switch-mode LED driver delivering a constant 350 mA with a power efficient current sensing scheme is presented in this paper. The LED current is extracted by differentiating the output capacito...A high power buck-boost switch-mode LED driver delivering a constant 350 mA with a power efficient current sensing scheme is presented in this paper. The LED current is extracted by differentiating the output capacitor voltage and maintained by a feedback. The circuit has been fabricated in a standard 0.35 μm AMS CMOS process. Measurement results demonstrated a power-conversion efficiency over 90% with a line regulation of 8%/V for input voltage of 3.3 V and current output between 200 mA and 350 mA.展开更多
针对传统LED恒流驱动电路存在输出电流受LED电压、关断时间和电感大小等影响的问题,设计了一种采用线性跨导放大器和电压控制延迟电路的新型LED照明恒流驱动电路。通过理论分析,并采用1μm 700 V BCD工艺进行仿真,结果表明,消除了传统LE...针对传统LED恒流驱动电路存在输出电流受LED电压、关断时间和电感大小等影响的问题,设计了一种采用线性跨导放大器和电压控制延迟电路的新型LED照明恒流驱动电路。通过理论分析,并采用1μm 700 V BCD工艺进行仿真,结果表明,消除了传统LED恒流驱动电路的问题。使用新型LED恒流驱动电路,有效提高了应用方案的可靠性和LED照明驱动模块生产的一致性。展开更多
文摘A novel integrated circuit for driving LED lighting has been proposed, designed and fabricated. Besides the typical parts of LED driver, an integral part was added at the output terminal of error amplifier in the driver. In this way, a novel average current mode can be set up to take the place ordinary peak current control mode. In addition, a BUCK low-level topology was adopted, too. It can be used to drive up to eight 1 W HB LED lights with 350 mA constant current. In this way, the LED driver displays high performance, in which output current with less 1% error and total efficiency as high as 96%. The feasibility of the design has been verified by actual measurement on the fabricated chip.
文摘A high power buck-boost switch-mode LED driver delivering a constant 350 mA with a power efficient current sensing scheme is presented in this paper. The LED current is extracted by differentiating the output capacitor voltage and maintained by a feedback. The circuit has been fabricated in a standard 0.35 μm AMS CMOS process. Measurement results demonstrated a power-conversion efficiency over 90% with a line regulation of 8%/V for input voltage of 3.3 V and current output between 200 mA and 350 mA.
文摘针对传统LED恒流驱动电路存在输出电流受LED电压、关断时间和电感大小等影响的问题,设计了一种采用线性跨导放大器和电压控制延迟电路的新型LED照明恒流驱动电路。通过理论分析,并采用1μm 700 V BCD工艺进行仿真,结果表明,消除了传统LED恒流驱动电路的问题。使用新型LED恒流驱动电路,有效提高了应用方案的可靠性和LED照明驱动模块生产的一致性。