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Applying Hybrid Passive Current-Sharing Components to Non-Isolated LED Driver

机译:将混合无源电流共享组件应用于非隔离式LED驱动器

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The capacitive current balancing LED driver based on the boost converter features simple structure and high-precision LED current balance. However, when the number of the LED strings is increased, the output voltage will also increase because the output voltage is the sum of total LED string voltages. Consequently, the duty cycle will increase to achieve the requirement of a high output voltage. In this paper, an improved non-isolated single-switch four-channel LED driver with automatic current balance is presented. Although there are four LED strings, the output voltage is only the sum of two LED strings. Thus, more LED strings can be used. In the proposed LED driver, the currents flowing through the LED string 1 and LED string 2 are balanced by one current sharing capacitor, and the currents flowing through the LED string 3 and LED string 4 are balanced by the other current sharing capacitor. Owing to the manufacturing deviation of LEDs and different trace impedance, the sum of the currents in LED string 1 and LED string 2 are not equal to the sum of the currents in LED string 3 and LED string 4. Therefore, a differential-mode transformer is connected between the two current sharing capacitors to balance the four LED currents. Since each winding of the differential-mode transformer is connected in series with a current sharing capacitor, the leakage inductors of the differential-mode transformer can limit the current peak. Also, the dc magnetizing inductance current is zero. Thus, no extra demagnetizing circuit is required. Furthermore, only one LED string current is sensed and controlled. Finally, the operating principles, analyses and experimental results are offered to verify the effectiveness of the proposed four-channel LED driver.
机译:基于Boost转换器的电容式平衡LED驱动器具有简单的结构和高精度LED电流平衡。然而,当LED串的数量增加时,由于输出电压是总LED串电压的总和,输出电压也会增加。因此,占空比将增加以实现高输出电压的要求。在本文中,提出了一种改进的非隔离单开关四通道LED驱动器,具有自动电流平衡。尽管存在四个LED串,但输出电压仅是两个LED串的总和。因此,可以使用更多的LED串。在所提出的LED驱动器中,流过LED串1和LED串2的电流由一个电流共享电容器平衡,并且流过LED串3和LED串4的电流由其他电流共享电容平衡。由于LED的制造偏差和不同的迹线阻抗,LED串1和LED串2中的电流之和不等于LED串3和LED串4中的电流之和。因此,差动模式变压器连接在两个电流共享电容之间以平衡四个LED电流。由于差动模式变压器的每个绕组与电流共享电容串联连接,因此差动模式变压器的漏电电感器可以限制电流峰值。而且,直流磁化电感电流为零。因此,不需要额外的退磁电路。此外,感测并控制一个LED串电流。最后,提供了操作原理,分析和实验结果来验证所提出的四通道LED驱动器的有效性。

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