Title :
A 265 V
Mains Interface Integrated in 0.35
m CMOS
Author :
Meyvaert, H. ; Smeets, P. ; Steyaert, M.
Author_Institution :
Katholieke Univ. Leuven, Leuven, Belgium
Abstract :
A fully integrated 265 VRMS input AC-DC interface is demonstrated in a 0.35-μm CMOS technology, requiring only one optional external low-voltage SMD capacitor for improved performance. The converter can directly interface the universal line voltage (50-60 Hz) and converts this into a regulated DC voltage of 3.3 V. High input voltage operation is made possible through separation of the mains input from the active circuits by custom layout high-voltage capable passive components in between. A compact model of an ideal AC-DC capacitive step-down converter is presented and the proposed circuit architecture is designed to mimic ideal operation and approach the maximum attainable power throughput accordingly. The prototype converter demonstrates a maximum output power of 12.7 μW on a die area of 6 mm2 and enables integrated circuits to be supplied straight from the ubiquitous mains voltage, hereby circumventing the need for traditional converters using expensive and bulky high-voltage discrete components.
Keywords :
AC-DC power convertors; CMOS integrated circuits; capacitors; AC-DC capacitive step-down converter; AC-DC interface; CMOS technology; circuit architecture; frequency 50 Hz to 60 Hz; high-voltage discrete component; low-voltage SMD capacitor; power 12.7 muW; size 0.35 micron; voltage 3.3 V; Active circuits; Capacitors; Metals; Power generation; Regulators; Throughput; Voltage control; AC–DC converter; Fully integrated converter; capacitive; step-down;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2013.2253214