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Buck Converter with Optocoupler Based Switching

机译:基于光耦合器的开关的降压转换器

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This paper presents a new DC-DC buck converter with an optocoupler as a switching device. Conventional buck converters use a transformer for galvanic isolation for the PWM signal, which has a copper, hysteresis, and eddy current losses. In the proposed converter, isolation is achieved with the optocoupler, which prevents losses and has a much higher switching frequency. The proposed circuit consists of a complementary metal-oxide-semiconductor (CMOS)-based half-bridge circuits with anti-phase freewheeling diodes running in an optocoupler device rather than regular switching elements such as insulated gate bipolar transistor (IGBT) or metal oxide semiconductor field-effect transistors (MOSFET). The optocoupler is the latest technology, which is CMOS-based, with high current output and up to 250kHz frequency capability. Because of frequency and current capabilities, it is suitable to use in dc-dc converters. At the same time, the CMOS-based half-bridge circuit has the current blocking capability, and there is no need for a diode that is used at conventional circuits. Finally, the prototype of the proposed converter is tested to verify its efficiency in different applications such as renewable energy battery chargers and a commonly used 12V to 5V converter design. Efficiency calculations are done in comparison with three different conventional converters. As a result, an average 1.1% increase in efficiency is achieved.
机译:本文介绍了一种新的DC-DC降压转换器,具有光耦合器作为开关装置。传统的降压转换器使用变压器用于PWM信号的电流隔离,其具有铜,滞后和涡流损耗。在所提出的转换器中,使用光耦合器实现隔离,这可以防止损耗并具有更高的开关频率。所提出的电路包括互补的金属氧化物 - 半导体(CMOS)基于半桥电路,其具有在光耦装置中运行的抗相续流二极管,而不是诸如绝缘栅双极晶体管(IGBT)或金属氧化物半导体的规则开关元件场效应晶体管(MOSFET)。光耦合器是最新技术,该技术是基于CMOS的,具有高电流输出和高达250kHz的频率能力。由于频率和电流能力,它适用于DC-DC转换器。同时,基于CMOS的半桥电路具有电流阻塞能力,并且不需要在传统电路上使用的二极管。最后,测试了所提出的转换器的原型,以验证其在可再生能源电池充电器等不同应用中的效率,以及常用的12V至5V转换器设计。与三种不同的传统转换器相比进行效率计算。结果,实现了平均效率提高了1.1%。

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