A fully integrated switched-capacitor DC–DC converter with hybrid output regulation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Surfaces, Coatings and Films,Hardware and Architecture,Signal Processing
Link
http://link.springer.com/article/10.1007/s10470-017-1080-6/fulltext.html
Reference15 articles.
1. Pascal, Y., & Pillonnet, G. (2015). Efficiency comparison of inductor-, capacitor-, and resonant-based converters fully integrated in CMOS technology. IEEE Journal on Emerging and Selected Topics in Circuits and Systems, 5(3), 421–429.
2. Schaef, C., Reese, B., Sullivan, C.-R., & Stauth, J.-T. (2015). Design aspects of multi-phase interleaved resonant switched-capacitor converters with mm-scale air-core inductors. In 2015 IEEE 16th workshop on control and modeling for power electronics (COMPEL), Sep 2015.
3. Torres, J., El-Nozahi, M., Amer, A., Gopalraju, S., Abdullah, R., Entesari, Kamran, et al. (2014). Low drop-out voltage regulators: Capacitor-less architecture comparison. IEEE Circuits and Systems Magazine, 14(2), 6–26.
4. Hong, S.-W., & Cho, G.-H. (2016). High-gain wide-bandwidth capacitor-less low-dropout regulator (LDO) for mobile application utilizing frequency response of multiple feedback loops. IEEE Transactions on Circuits and Systems-I: Regular Papers, 63(1), 46–57.
5. Wibben, J., & Harjani, R. (2008). A high-efficiency DC–DC converter using 2 nH integrated inductors. IEEE Journal of Solid-State Circuits, 43(4), 844–854.
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1. An All-Digital Low-Noise Switching DC–DC Buck Converter Based on a Multi-sampling Frequency Delta-Sigma Modulation with Enhanced Light-Load Efficiency;Arabian Journal for Science and Engineering;2019-05-31
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