8.10 A 5V-to-150V Input-Parallel Output-Series Hybrid DC-DC Boost Converter Achieving 76.4mW/mg Power Density and 80% Peak Efficiency
Shousheng Han, Zanfeng Fang, Zhiguo Tong, Xiaoming Wu, Hanjun Jiang, Tian‐Ling Ren, Yan Lü
- 发表年份
- 2024
- 引用次数
- 7
摘要
Ultrahigh voltage conversion ratio (VCR) DC-DC boost converters are essential for biomedical, optics, sensing and diagnostics applications. For realizing an ultrahigh VCR, the conventional boost converter would result in a large duty ratio D, a large inductor current $\mathrm{I}_{\mathrm{L}}$ and thus a significantly degradation on power efficiency, and its VCR is limited by the parasitic resistors. Figure 8.10.1 top shows the recently reported hybrid boost converters. The multilevel boost converter (MLBC) has a single inductor at the input, and has the feature of input-series-output-series. Therefore, multilevel boost converters considerably improve the VCR and reduce the device voltage stress with the flying capacitors. However, the MLBC topologies still suffer from the problems of low efficiency and low power density caused by the large $\mathrm{I}_{\mathrm{L}}$. Another topology with multipath boost converters (MPBC) has the feature of input-parallel-output-parallel. The MPBC can effectively reduce the $\mathrm{I}_{\mathrm{L}}$ of each branch by connecting parallel input inductors. But the output-parallel structure does not improve the VCR nor reduce the device voltage stress. To address the above issues, this work presents a hybrid input-parallel output-series high power density ultrahigh-VCR step-up DC-DC converter for electrostatic and piezoelectric actuators used for small-scale flyweight devices. This converter is very challenging due to the low $\mathrm{V}_{\text{IN}}(\lt5 \mathrm{~V})$, high $\mathrm{V}_{\text {OUT }}(\gt100 \mathrm{~V}$), high output power (>200mW) and high power density (volume $\lt10 \mathrm{~mm}^{3}$ and weight $\lt100 \mathrm{mg}$). We use both $\mathrm{mW} / \mathrm{mm}^{3}$ and $\mathrm{mW} / \mathrm{mg}$ for the power density units to emphasize the importance of the size and weight for flying robots.
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