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Design of a LED constant-current driver using a novel hysteresis-current control method with adaptive off-time control

机译:采用自适应关断时间控制的新型磁滞电流控制方法设计LED恒流驱动器

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摘要

A novel adaptive off-time (AOT) technique, which is applicable to the circuit design of an AC-DC constant-current LED driver using hysteresis-current control method, is proposed in this paper. The AOT is achieved by a novel off-time control method, which is based on the combination of peak-current-loop and error sample feedback-loop, to solve the problem that peak current is not consistent with average current due to the constant off-time (COT) technique in the typical low side current sense topology. Output current magnitude is controlled by sense resistor. The simulation result shows that the average current error is no more than 1.1%. The average current achieves less than 1.5% variation in the output voltage range from 20V to 100V, which means good load regulation characteristic can be achieved. The design was implemented with TSMC' 0.25??m 40V BCD process.
机译:提出了一种新颖的自适应关断时间(AOT)技术,该技术适用于采用滞环电流控制方法的AC-DC恒流LED驱动器的电路设计。 AOT是通过一种新颖的关断时间控制方法实现的,该方法基于峰值电流环路和误差样本反馈环路的组合,以解决由于恒定关断导致峰值电流与平均电流不一致的问题典型的低侧电流检测拓扑中的实时(COT)技术。输出电流大小由检测电阻控制。仿真结果表明,平均电流误差不超过1.1%。在20V至100V的输出电压范围内,平均电流的变化小于1.5%,这意味着可以实现良好的负载调节特性。该设计是通过TSMC的0.25Ωm 40V BCD工艺实现的。

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