A reconfigurable Buck-Boost Cross-Coupled charge Pump

被引:0
|
作者
Keramida, Evi [1 ]
Souliotis, George [2 ]
Plessas, Fotis [1 ]
机构
[1] Univ Thessaly, Dept Elect & Comp Engn, Volos 38334, Greece
[2] Univ Peloponnese, Dept Elect & Comp Engn, Patras 26334, Greece
关键词
Charge Pump; Switched Capacitor Converter; Buck-Boost Converter; DC-DC converter; Step-up Step down; Multi Ratio Charge Pump; Efficiency; DC-DC CONVERTER; EFFICIENCY; CIRCUITS; DESIGN;
D O I
10.1016/j.aeue.2024.155454
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper presents a reconfigurable buck-boost Charge Pump (CP) based on the cross-coupled topology. The proposed CP is a switched capacitor (SC) converter merging different ratios and operation modes in one topology. The converter is able to step-up or step-down the input voltage at the output only by controlling the external connections of the circuit. By achieving various conversion ratios and operation modes, higher efficiency levels are performed maximizing the power that is delivered to the load. The reconfigurable buck-boost CP has been designed in 65 nm TSMC CMOS technology and covers an input voltage range from 1.6 V to 3.2 V and an output voltage range also from 1.6 V to 3.2 V in the boost mode and an input voltage range from 2.6 V to 3.6 V and an output voltage range from 1.4 to 1.8 V in the buck mode. In addition, efficiency estimation analysis is presented and proves how parasitic capacitances of flying capacitors affect the overall efficiency of a multi-ratio converter. The converter indicates peak efficiency equal to 77 % and delivers up to 4 mA load current.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] Operation and Comparison of a Novel Modular Asymmetric Buck-Boost DC-DC Converter for High-Power Applications
    Khan, Mohammad Saleh
    Jyoti
    Nag, Soumya Shubhra
    Das, Anandarup
    2023 IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION, APEC, 2023, : 1373 - 1378
  • [22] A non-isolated buck-boost converter based on SEPIC topology for renewable energy applications
    Kumar, Priyanshu
    Ajmeri, Moina
    COMPUTERS & ELECTRICAL ENGINEERING, 2025, 124
  • [23] Asymmetric Fault-Tolerant Control of 3-Phase Coupled Buck-Boost Converter
    Fu, Han
    Duan, Shanxu
    Bao, Junyang
    Jiang, Dong
    Fu, Hao
    Li, Qiqi
    ELECTRONICS, 2022, 11 (14)
  • [24] Transformerless Buck-Boost DC-DC Converter
    Magar, Aishwarya V.
    Kanade, Sanjay G.
    Kinge, Ashish P.
    2018 2ND IEEE GLOBAL CONFERENCE ON WIRELESS COMPUTING AND NETWORKING (GCWCN - 2018), VOL II, 2018, : 200 - 203
  • [25] Service Continuity of PV Synchronous Buck/Buck-Boost Converter with Energy Storage
    Siouane, Saima
    Jovanovic, Slavisa
    Poure, Philippe
    ENERGIES, 2018, 11 (06):
  • [26] CMOS cross-coupled charge pump with improved latch-up immunity
    Park, Su-Jin
    Kang, Yong-Gu
    Kim, Joung-Yeal
    Han, Tae Hee
    Jun, Young-Hyun
    Lee, Chilgee
    Kong, Bai-Sun
    IEICE ELECTRONICS EXPRESS, 2009, 6 (11): : 736 - 742
  • [27] An Efficient Buck/Buck-Boost Reconfigurable LED Driver Employing SIN2 Reference
    Cho, Kunhee
    Gharpurey, Ranjit
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2017, 52 (10) : 2758 - 2768
  • [28] CROSS-COUPLED CHARGE PUMP SYNTHESIS BASED ON FULL TRANSISTOR-LEVEL
    Marek, Jan
    Hospodka, Jiri
    Subrt, Ondrej
    ADVANCES IN ELECTRICAL AND ELECTRONIC ENGINEERING, 2019, 17 (03) : 285 - 293
  • [29] Soft-Switched Bidirectional Buck-Boost Converters
    Jang, Yungtaek
    Jovanovic, Milan M.
    2017 THIRTY SECOND ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC), 2017, : 287 - 293
  • [30] An Improved Wide Input Voltage Buck-Boost plus LLC Cascaded Converter
    Sun, Xiaofeng
    Qiu, Jiangfeng
    Li, Xiaohua
    Wang, Baocheng
    Wang, Lu
    Li, Xin
    2015 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2015, : 1473 - 1478