A 0.9-nA Temperature-Independent 565-ppm/°C Self-Biased Current Reference in 22-nm FDSOI
Author:
Affiliation:
1. ICTEAM Institute, Université catholique de Louvain,Louvain-la-Neuve,Belgium
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9911257/9911222/09911369.pdf?arnumber=9911369
Reference15 articles.
1. 5.8 A 9.3 nW All-in-One Bandgap Voltage and Current Reference Circuit;ji;Proc IEEE Int Solid-State Circuits Conf,0
2. A 1.02 nW PMOS-Only, Trim-Free Current Reference with 282ppm/°C from ?40°C to 120°C and 1.6% within-wafer inaccuracy;dong;The 43rd IEEE European Solid State Circuits Conf,0
3. A 1-nA 4.5-nW 289-ppm/°C Current Reference Using Automatic Calibration
4. A CMOS 0.85-V 15.8-nW Current and Voltage Reference without Resistors
5. Wide Range, Process and Temperature Compensated Voltage Controlled Current Source
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1. Current Crafting: Mastering Low-Power Configuration Methods;2023 International Conference on Next Generation Electronics (NEleX);2023-12-14
2. A Resistor/Trimming-Less Self-Biased Current Reference Class with Area Down to $3,500\ \mu \mathrm{m}^{2}$, 42.8 pW Power and 10.4% Accuracy across Corner Wafers in 180 nm;2023 IEEE Asian Solid-State Circuits Conference (A-SSCC);2023-11-05
3. A 1.1-/0.9-nA Temperature-Independent 213-/565-ppm/°C Self-Biased CMOS-Only Current Reference in 65-nm Bulk and 22-nm FDSOI;IEEE Journal of Solid-State Circuits;2023-08
4. A 0.63 nW, 327 ppm/ °C Current Reference using Temperature Compensated CMOS Resistors;2023 IEEE International Symposium on Circuits and Systems (ISCAS);2023-05-21
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