具有连续输出电流和低电压纹波的效率为95.2%的双路DC-DC升压变换器

Se-un Shin, Yeunhee Huh, Yong-Min Ju, Sung-Won Choi, Changsik Shin, Young-Jin Woo, Minseong Choi, Se-Hong Park, Young-Hoon Sohn, Min-Woo Ko, Youngsin Jo, Hyunki Han, Hyung-Min Lee, Sung-Wan Hong, W. Qu, G. Cho
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引用次数: 20

摘要

DC-DC升压变换器被广泛用于提高电源电压的各种应用,包括LED驱动、能量收集等[1-5]。传统升压变换器(CBC)如图27.5.1所示,其中开关S1和S2分别在φ1和φ2处交替接通和关断,建立电感电流(IL)并传递到输出端。由于输出输出电流(IS)不是连续的,在CBC中存在一些关键问题。因此,当φ1变长时,IL可能比负载电流(ILOAD)大得多。由于具有低寄生直流电阻(Rdcr)的大尺寸电感不适用于具有严格有限空间的移动应用,因此这种大IL会导致小尺寸电感的大Rdcr中的显着导通损耗。另一个问题是,φ2的不连续is在输出端会导致较大的电压纹波(AVOUT)。此外,由于IS的大di/dt加上GND路径的寄生电感,开关尖峰电压会在负载块上造成过电压应力。
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A 95.2% efficiency dual-path DC-DC step-up converter with continuous output current delivery and low voltage ripple
DC-DC boost converters are widely used to increase the supply voltage in various applications, including LED drivers, energy harvesting, etc. [1-5]. The conventional boost converter (CBC) is shown in Fig. 27.5.1, where the switches S1 and S2 are turned on and off alternately at φ1 and φ2, respectively, and the inductor current (IL) is built up and delivered to the output. There are some critical issues in CBC because the output delivery current (IS) is not continuous. As a result, the IL can be much larger than the load current (ILOAD) as φ1 becomes longer. Since a bulky-size inductor having a low parasitic DC resistance (Rdcr) is not usable for mobile applications with a strictly limited space, this large IL results in significant conduction loss in the large RDCR of a small-size inductor. Another issue is that the discontinuous IS in φ2 causes large voltage ripple (AVOUT) at the output. Moreover, switching spike voltages can cause over-voltage stress on the loading block due to large di/dt of IS combined with parasitic inductances of the GND path.
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