상세 보기
Capacitor-Free Event-Based Asynchronous Digital LDO Regulator with 99.99% Current Efficiency
- 송지훈;
- 김영훈;
- 곽호진;
- 이강윤
초록
This paper proposes a high-performance digital low-dropout regulator (DLDO) for wearable devices and IoT applications. The proposed DLDO circuit design provides fast stability and low power consumption using a PID controller and event-driven digital feedback control. The circuit utilizes a high-speed Flash-SAR ADC to feedback on the output, enabling real-time adjustment of the PID controller parameters to quickly adapt to external environmental changes and achieve a fast settling time. The proposed event-driven method minimizes circuit operation to reduce power consumption. Additionally, the limit-cycle oscillation typically occurring in the steady state is suppressed, thereby reducing output voltage ripple. The circuit is fabricated using a 55-nm CMOS process, with a chip area of 1800 x 1820 um². The proposed design supports an input voltage range of 0.5 – 1.2 V and an output voltage range of 0.4 – 1 V. It achieves a fast-settling time of 252 ns and a low current consumption of 1.7 μA at a 50MHz operating frequency. The peak current efficiency is 99.99%, with a maximum load current of 70 mA. The load regulation is 0.13 mV/mA, and the line regulation is 0.01 V/V.
키워드
- 제목
- Capacitor-Free Event-Based Asynchronous Digital LDO Regulator with 99.99% Current Efficiency
- 저자
- 송지훈; 김영훈; 곽호진; 이강윤
- 발행일
- 2025-04
- 유형
- Y
- 저널명
- IDEC Journal of Integrated Circuits and Systems
- 권
- 11
- 호
- 2
- 페이지
- 28 ~ 34