The paper presents a Bandgap Voltage Reference (BGR) implemented in TSMC 0.25μm BCD technology for an automotive application. To withstand a car’s battery large voltage variations, from 5 V to 40 V, the circuit features an embedded pseudo-regulator providing a stable bias current for the bandgap core. High-voltage (HV) MOS count has been kept low thus allowing the design of a compact BGR with an area of 0.118 mm2. The BGR has been designed to operate in automotive extended temperature range (-40°C to 150°C) and it provides a stable voltage of 1.21 V, which is also used as reference for a cascade 3.7 V linear regulator. Measurements carried on fabricated IC samples prove the effectiveness of the BGR design in terms of supported input voltage variations and operating temperature range, temperature drift, line regulation and PSRR performance

Bandgap Voltage Reference IC for HV Automotive Applications with Pseudo-regulated Bias and Service Regulator

SAPONARA, SERGIO;FANUCCI, LUCA;
2013-01-01

Abstract

The paper presents a Bandgap Voltage Reference (BGR) implemented in TSMC 0.25μm BCD technology for an automotive application. To withstand a car’s battery large voltage variations, from 5 V to 40 V, the circuit features an embedded pseudo-regulator providing a stable bias current for the bandgap core. High-voltage (HV) MOS count has been kept low thus allowing the design of a compact BGR with an area of 0.118 mm2. The BGR has been designed to operate in automotive extended temperature range (-40°C to 150°C) and it provides a stable voltage of 1.21 V, which is also used as reference for a cascade 3.7 V linear regulator. Measurements carried on fabricated IC samples prove the effectiveness of the BGR design in terms of supported input voltage variations and operating temperature range, temperature drift, line regulation and PSRR performance
2013
Saponara, Sergio; Fanucci, Luca; Baldetti, T; Pardi, E.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/191330
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