A Digital LDO Regulator With a Self-Clocking Burst Logic for Ultralow Power Applications

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초록

Conventional capless digital low-dropout (DLDO) regulators adopt either a high-speed clock or the burst mode at the expense of a larger quiescent current in order to overcome the degradation of the load transient response caused by the absence of an external capacitor, which causes high power consumption. In this paper, a capless DLDO regulator with a self-clocking burst logic for ultralow power applications is proposed. The self-generated clock in the burst mode of the proposed burst logic is activated temporally in order to achieve both faster load transient response and lower quiescent current. The proposed DLDO regulator is implemented in 14-nm FinFET CMOS technology. The quiescent current and figure-of-merit (FoM) of the proposed DLDO regulator are 0.69 mu A and 0.097 ps, respectively, with an active area of 0.0035 mm(2), excluding a 0.1-nF integrated output capacitor.

키워드

Burst mode; digital low-dropout (DLDO) regulator; low quiescent current; self-generated temporal clock; LOW-DROPOUT REGULATOR; VOLTAGE REGULATOR; FAST-TRANSIENT; MANAGEMENT; CMOS
제목
A Digital LDO Regulator With a Self-Clocking Burst Logic for Ultralow Power Applications
저자
Yun, Seong Jin; Lee, Jiseong; Im, Yun Chan; Kim, Yong Sin
DOI
10.1109/TVLSI.2019.2920910
발행일
2019-10
유형
Article
저널명
IEEE Transactions on Very Large Scale Integration (VLSI) Systems
권
27
호
10
페이지
2237 ~ 2245