J* E* C* N* U* N* S* ›› 2026, Vol. 2026 ›› Issue (2): 95-107.doi: 10.3969/j.issn.1000-5641.2026.02.009

• Power Management and Data Converters • Previous Articles     Next Articles

A wide-range high-efficiency peak-current-mode Buck DC-DC converter based on adaptive quadratic slope compensation

Xuyang LI, Xiaodi ZHOU, Yanwen WU, Songmao HAO, Chunqi SHI*()   

  1. Institute of Microelectronic Circuits and Systems, East China Normal University, Shanghai 200241, China
  • Received:2025-09-28 Accepted:2026-01-26 Online:2026-03-25 Published:2026-04-03
  • Contact: Chunqi SHI E-mail:cqshi@ee.ecnu.edu.cn

Abstract:

This paper presents a high-efficiency peak current-mode (PCM) Buck DC-DC converter utilizing adaptive quadratic slope compensation. The proposed design generates tailored adaptive slope voltages across wide ranges of input voltage, output voltage, load current, and switching frequency, resulting in excellent transient performance. Fabricated in a 55 nm BCD process, the chip occupies a compact core area of only 0.186 mm2. It supports an input voltage range of 3.7~5.0 V, an output voltage range of 1.5~3.5 V, a maximum load current of 1.00 A, and a switching frequency configurable from 1.0 MHz to 4.0 MHz. The converter achieves a peak efficiency of 96.0%, maintains efficiency above 93.0% at 1.00 A output current, and delivers over 90.0% efficiency across the load range from 0.03 A to 1.00 A. Post-layout simulation results confirm that the proposed compensation technique exhibits strong adaptability under varied application configurations.

Key words: adaptive slope compensation, high-efficiency, peak current mode, buck DC-DC converter

CLC Number: