A Power-Efficient Source-Follower Based Tunable Pseudo-RC Low-Pass Filter for Wearable Biomedical Applications
Author:
Affiliation:
1. Westlake University,CenBRAIN Neurotech, School of Engineering,Hangzhou,Zhejiang,China,310024
2. Fudan University,Shanghai,China,200433
Funder
Westlake University
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9948537/9948538/09948655.pdf?arnumber=9948655
Reference39 articles.
1. Low-Voltage OTA–C Filter With an Area- and Power-Efficient OTA for Biosignal Sensor Applications
2. A Nanopower Biopotential Lowpass Filter Using Subthreshold Current-Reuse Biquads With Bulk Effect Self-Neutralization
3. High-cmrr low-noise fully integrated front-end for eeg acquisition systems;chebli;Electronics,2019
4. Low-cutoff frequency reduction in neural amplifiers: Analysis and implementation in cmos 65 nm;hashemi noshahr;Frontiers in Neuroscience,2021
5. A 71% efficient energy harvesting and power management unit for sub-μW power biomedical applications
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