A BJT-based temperature sensor using two sub-OPAMPs Chopper ripple reduction technique with inaccuracy of ±0.25 °C (3σ) from −45 °C to 85 °C

Author:

Guo Qiansong,Ma Xia,Xiao Zhiming,Hu Yi,Feng Jingbin,Wang Meiyu,Hu Weibo

Publisher

Elsevier BV

Subject

General Engineering

Reference18 articles.

1. A 6800-μm2 resistor-based temperature sensor with ±0.35°C (3σ) inaccuracy in 180-nm CMOS;Angevare;IEEE J. Solid State Circ.,2019

2. A CMOS temperature sensor with a voltage-calibrated inaccuracy of ± 0.15°C (3σ) from -55°C to 125°C;Souri;IEEE J. Solid State Circ.,2013

3. A 5800-μm2 resistor-based temperature sensor with a one-point trimmed inaccuracy of ±1.2°C (3σ) from −50 °C to 105°C in 65-nm CMOS;Lee;IEEE Solid-State Circ. Lett.,2019

4. A 0.53pJ•K2 7000μm2 resistor-based temperature sensor with an inaccuracy of ±0.35°C (3σ) in 65nm CMOS;Choi,2018

5. A CMOS resistor-based temperature sensor with a 10fJ•K2 resolution FoM and 0.4°C (3σ) inaccuracy from −55°C to 125°C after a 1-point trim;Pan,2020

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