Ultra-Low-Power IoT 30nW 474mV 19 ppm/°C Voltage Reference and 2 nA 470 ppm/°C Current Reference
Author:
Affiliation:
1. Infineon Technologies Austria AG,Cooperative Research and Exploration Department,Graz,Austria
2. Institute for Microwave and Photonic Engineering, Graz University of Technology,Graz,Austria
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9937201/9937203/09937922.pdf?arnumber=9937922
Reference13 articles.
1. Design considerations of recent advanced low-voltage low-temperature-coefficient CMOS bandgap voltage reference
2. 5.8 A 9.3nW all-in-one bandgap voltage and current reference circuit
3. 18.7 A 0.7V, 2.35% 3σ-Accuracy Bandgap Reference in 12nm CMOS
4. A VGS/R induced reference circuit generating both temperature independent voltage and current sources
5. A 192-pW Voltage Reference Generating Bandgap–$V_{\text{th}}$ With Process and Temperature Dependence Compensation
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1. A 1.65‐nW 11.14‐ppm/°C self‐biased subthreshold CMOS voltage reference with temperature compensation circuit;International Journal of Circuit Theory and Applications;2024-05-09
2. Temperature-Compensated and Robust Bandgap Reference Voltage Circuit for High-Precision Sensors and Voltage Regulators;Advances in Science, Technology & Innovation;2024
3. An Ultra-Low Power CMOS Subthreshold Voltage Reference with Temperature Coefficient Compensation;Lecture Notes in Electrical Engineering;2024
4. A Self-Biased Subthreshold CMOS Voltage Reference with Temperature Compensation Circuit for IoT Self-Powered Sensor Applications;2023 IEEE Asia Pacific Conference on Circuits and Systems (APCCAS);2023-11-19
5. Ultra-Low-Power Sub-1 V 29 ppm/°C Voltage Reference and Shared-Resistive Current Reference;IEEE Transactions on Circuits and Systems I: Regular Papers;2023-03
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