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Synchronized Floating Current Mirror for Maximum LED Utilization in Multiple-String Linear LED Drivers

机译:同步浮动电流镜,用于多串线性LED驱动器中的最大LED利用

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High-voltage linear drivers for multiple-string LEDs have been widely used in general lighting due to their low cost, simplicity, low electromagnetic interference (EMI), and high reliability. However, in conventional multiple-string LED drivers, the LED strings are turned on and off sequentially depending on the magnitude of input voltage (V_(IN)) in order to achieve high power factor (PF) and low total harmonic distortion (THD) [1-3]. The turn-on duty cycles of each string in a four-string LED driver are roughly 80, 60, 40 and 20% respectively, given that V_(LEDs) are identical. Due to its low duty cycle operation, the total brightness is reduced and the brightness of each LED string becomes uneven. This problem becomes more noticeable in long bar-type or surface-type lamps when a triac dimmer is applied. This low utilization of LEDs is a major drawback of multi-string LED drivers. One approach to increase turn-on duty cycle uses diodes and capacitors in each LED string to sustain voltage when V_(IN) is not enough [4]. The problem is that it requires large capacitors due to long turn-off time. Another method is to change the parallel/serial connection of LED strings to match the total voltage drop of LEDs to V_(IN) [5]. Due to its high voltage operation, it is very challenging to make an appropriate, low-cost, and simple solution for all V_(IN) ranges. In order to overcome these problems, a floating current mirror (FCM) IC fabricated in an 85V 0.18μm BCDMOS process is presented. As long as V_(IN) is higher than the minimum required LED voltage, FCM enables to turn on all LED strings for all V_(IN) ranges not by using large capacitors, but by modifying only the functional aspects of LED connections. In addition, this approach also prevents EMI problems by keeping an appropriate di/dt during commutation.
机译:由于其低成本,简单,低电磁干扰(EMI)和高可靠性,多弦LED的高压线性驱动器已广泛使用。然而,在传统的多串LED驱动器中,LED串根据输入电压(V_(in))的幅度顺序打开和关闭,以便实现高功率因数(PF)和低总谐波失真(THD) [1-3]。对于V_(LED)是相同的,四弦LED驱动器中每个串的每个串的导通占空比分别为80,60,40和20%。由于其低占空比操作,总亮度降低,每个LED串的亮度变得不均匀。当应用三端双向可控硅调光器时,该问题变得更加明显或长条型灯。 LED的这种低利用率是多弦LED驱动器的主要缺点。增加开启占空比的一种方法在每个LED串中使用二极管和电容器在V_(IN)不够时维持电压[4]。问题是,由于长关闭时间,它需要大电容器。另一种方法是改变LED串的并联/串行连接,以将LED的总电压降与V_(IN)[5]匹配。由于其高电压操作,为所有V_(in)范围进行适当,低成本和简单的解决方案是非常具有挑战性的。为了克服这些问题,提出了一种在85V0.18μm的BCDMOS工艺中制造的浮动电流镜(FCM)IC。只要V_(in)高于最小所需的LED电压,FCM就可以打开所有V_(IN)范围的所有LED串,而不是使用大电容器,而是通过仅修改LED连接的功能方面。此外,这种方法还通过在换向期间保持适当的DI / DT来防止EMI问题。

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