Title :
A very low power area efficient CMOS only bandgap reference
Author :
Galeano, Edgar Mauricio Camacho ; Olmos, Alfredo ; Boas, Andre Luis Vilas
Author_Institution :
Wernher von Braun Res. Inst., Campinas, Brazil
fDate :
Aug. 30 2012-Sept. 2 2012
Abstract :
The design of a novel all-MOS low-power bandgap reference in an open loop topology is described. A forward biased p-n junction with complementary to absolute temperature coefficient (CTAT) is combined with a cascade of Self-Cascode MOSFET (SCM) structures providing a proportional to absolute temperature (PTAT) voltage to create the bandgap voltage reference. Using the Advanced Compact MOSFET (ACM) model the design of the cascade of SCMs is fairly straightforward. The design methodology is based on the concept of inversion level using current as the main variable. At room temperature, the nominal output reference voltage is 1.32V, and the total current consumption is 65nA (20nA for the current generator and 45nA for the bandgap reference itself). The circuit has been integrated in a 0.18μm standard CMOS process, and occupies an area of 0.01mm2. Power supply sensitivity is +/-0.7% from 1.55V (minimum operation voltage) to 3.3V After trimming, temperature compensation is attained with a total bandgap voltage variation of 0.6% from -40°C to 125°C, equivalent to 36ppm/°C.
Keywords :
CMOS integrated circuits; MOSFET; low-power electronics; ACM model; CTAT; PTAT voltage; SCM structures; advanced compact MOSFET model; all-MOS low-power bandgap reference; bandgap voltage reference; complementary to absolute temperature coefficient; current 65 nA; forward biased p-n junction; inversion level concept; proportional to absolute temperature voltage; self-cascode MOSFET structures; size 0.18 mum; standard CMOS process; temperature -40 degC to 125 degC; temperature 293 K to 298 K; temperature compensation; very low-power area efficient CMOS only bandgap reference; voltage 1.32 V; voltage 1.55 V to 3.3 V; Electrocardiography; Electromyography; Erbium; Frequency modulation; High definition video; Low power/low voltage analog circuits; current references; voltage;
Conference_Titel :
Integrated Circuits and Systems Design (SBCCI), 2012 25th Symposium on
Conference_Location :
Brasilia
Print_ISBN :
978-1-4673-2606-3
DOI :
10.1109/SBCCI.2012.6344437