A 1.23W/mm2 83.7%-Efficiency 400MHz 6-Phase Fully Integrated Buck Converter in 28nm CMOS with On-Chip Capacitor Dynamic Re-Allocation for Inter-Inductor Current Balancing and Fast DVS of 75mV/ns
Author:
Affiliation:
1. KAIST,Daejeon,Korea
2. Samsung Electronics,Hwaseong,Korea
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9731529/9731102/09731726.pdf?arnumber=9731726
Reference6 articles.
1. 17.4 Peak-Current-Controlled Ganged Integrated High-Frequency Buck Voltage Regulators in 22nm CMOS for Robust Cross-Tile Current Sharing
2. A Two-Phase Three-Level Buck Converter With Cross-Connected Flying Capacitors for Inductor Current Balancing
3. 8.4 Fully Integrated Buck Converter with 78% Efficiency at 365mW Output Power Enabled by Switched-Inductor Capacitor Topology and Inductor Current Reduction Technique
4. 17.3 A 1.25GHz Fully Integrated DC-DC Converter Using Electromagnetically Coupled Class-D LC Oscillators
5. A 100 MHz 82.4% Efficiency Package-Bondwire Based Four-Phase Fully-Integrated Buck Converter With Flying Capacitor for Area Reduction
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1. A Fully Integrated Multi-Phase Voltage Regulator With Flying-Capacitor-Based Inter-Inductor Current Self-Balancing Scheme and Charge-Recycling Gate Driver;IEEE Journal of Solid-State Circuits;2024-08
2. Differentiation-Triggered TVC and Quasi- Zero-Delay Phase Shedding for Joint Transient Enhancement of a Multiphase Voltage Regulator;IEEE Transactions on Power Electronics;2024-03
3. A 1.5-GHz Fully Integrated DC–DC Converter Based on Electromagnetically Coupled Class-D LC Oscillators and Resonant LC Flying Impedance Achieving 4.1-W/mm2 Peak Power Density and 77% Peak Efficiency;IEEE Solid-State Circuits Letters;2024
4. An Overview of Fully On-Chip Inductors;Radioengineering;2023-04
5. Design and Integration of Beyond-10MHz High Switching Frequency DC-DC Converter;IEICE Transactions on Electronics;2022-10-01
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