articleTop 10% cited
Area-efficient linear regulator with ultra-fast load regulation
IEEE Journal of Solid-State Circuits · 2005 · Vol. 40(4) · pp. 933–940
P. Hazucha✉(Intel (United States))Tanay Karnik(Intel (United States))B. Bloechel(Intel (United States))C. Parsons(Intel (United States))D. Finan(Intel (United States))Shekhar Borkar(Intel (United States))
Abstract
We demonstrate a fully integrated linear regulator for multisupply voltage microprocessors implemented in a 90 nm CMOS technology. Ultra-fast single-stage load regulation achieves a 0.54-ns response time at 94% current efficiency. For a 1.2-V input voltage and 0.9-V output voltage the regulator enables a 90 mV/sub P-P/ output droop for a 100-mA load step with only a small on-chip decoupling capacitor of 0.6 nF. By using a PMOS pull-up transistor in the output stage we achieved a small regulator area of 0.008 mm/sup 2/ and a minimum dropout voltage of 0.2 V for 100 mA of output current. The area for the 0.6-nF MOS capacitor is 0.090 mm/sup 2/.
Analog and Mixed-Signal Circuit DesignAdvancements in Semiconductor Devices and Circuit DesignLow-power high-performance VLSI designLow-dropout regulatorDropout voltageVoltage droopRegulatorLinear regulatorVoltage regulatorCapacitorVoltageDecoupling capacitorCMOS
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References
A low-voltage, low quiescent current, low drop-out regulator
IEEE Journal of Solid-State Circuits · 1998 · 640 citations
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