Title :
A Fully-Integrated Low-Dropout Regulator With Full-Spectrum Power Supply Rejection
Author :
Yan Lu ; Yipeng Wang ; Quan Pan ; Wing-Hung Ki ; Yue, C. Patrick
Author_Institution :
State Key Lab. of Analog & Mixed-Signal VLSI, Univ. of Macau, Macao, China
Abstract :
A fully-integrated low-dropout regulator (LDO) with fast transient response and full spectrum power supply rejection (PSR) is proposed to provide a clean supply for noise-sensitive building blocks in wideband communication systems. With the proposed point-of-load LDO, chip-level high-frequency glitches are well attenuated, consequently the system performance is improved. A tri-loop LDO architecture is proposed and verified in a 65 nm CMOS process. In comparison to other fully-integrated designs, the output pole is set to be the dominant pole, and the internal poles are pushed to higher frequencies with only 50 μA of total quiescent current. For a 1.2 V input voltage and 1 V output voltage, the measured undershoot and overshoot is only 43 mV and 82 mV, respectively, for load transient of 0 μA to 10 mA within edge times of 200 ps. It achieves a transient response time of 1.15 ns and the figure-of-merit (FOM) of 5.74 ps. PSR is measured to be better than -12 dB over the whole spectrum (DC to 20 GHz tested). The prototype chip measures 260×90 μm2, including 140 pF of stacked on-chip capacitors.
Keywords :
CMOS integrated circuits; operational amplifiers; power supply circuits; transient response; CMOS process; chip-level high-frequency glitches; current 0 muA to 10 mA; current 50 muA; fast transient response; full-spectrum power supply rejection; low-dropout regulator; point-of-load LDO; size 260 mum; size 65 nm; size 90 mum; stacked on-chip capacitors; time 1.15 ns; time 200 ps; time 5.74 ps; transient response time; voltage 1 V; voltage 1.2 V; voltage 43 mV; voltage 82 mV; wideband communication systems; Capacitance; Capacitors; Noise; Regulators; System-on-chip; Transient response; Voltage control; Amplifier; flipped voltage follower; low dropout regulator (LDO); power supply rejection (PSR);
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2014.2380644