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A High Current Accuracy Boost White LED Driver Based on Offset Calibration Technique

机译:基于失调校准技术的高电流精度升压白光LED驱动器

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摘要

The current accuracy and power efficiency of a boost white light-emitting-diode (WLED) driver are usually design tradeoffs since the power efficiency is inversely proportional to the reference voltage, whereas the current accuracy is proportional to the reference voltage. Traditionally, a boost WLED driver with high current accuracy and high power efficiency demand a large chip area because mismatch decreases with increasing size. This paper proposes an offset calibration technique to improve both current accuracy and power efficiency while keeping the chip area relatively small. An overvoltage protection (OVP) circuit and an overcurrent protection (OCP) circuit prevent the proposed driver from being damaged due to WLED failure. The design is fabricated in a Taiwan Semiconductor Manufacturing Company 0.25-$muhbox{m}$ 60-V bipolar–CMOS–double-diffused-MOS process. The measurement results show that the current variation is less than 1% when the input voltage and the number of loaded WLEDs are varied in a wide range. The maximum power conversion efficiency is 86.7% at a 5-V input with four loaded WLEDs. The OVP is 58 V, and the OCP is 2 A.
机译:升压型白光发光二极管(WLED)驱动器的电流精度和功率效率通常是设计折衷,因为功率效率与参考电压成反比,而电流精度与参考电压成正比。传统上,具有高电流精度和高功率效率的升压WLED驱动器需要较大的芯片面积,因为失配会随着尺寸的增加而减小。本文提出了一种偏移校准技术,可在保持芯片面积相对较小的同时提高电流精度和电源效率。过压保护(OVP)电路和过流保护(OCP)电路可防止建议的驱动器由于WLED故障而损坏。该设计在台湾半导体制造公司的0.25- $ muhbox {m} $ 60-V双极CMOS双扩散MOS工艺中制造。测量结果表明,当输入电压和负载WLED的数量在很宽的范围内变化时,电流变化小于1%。在具有四个负载WLED的5V输入下,最大功率转换效率为86.7%。 OVP为58 V,OCP为2 A.

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