Efficient Low-Power Microwave Readout Circuit in 180 nm CMOS for Wearable Electronics
Author:
Affiliation:
1. School of Engineering, University of British Columbia,Kelowna,Canada
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx8/10590068/10590007/10590194.pdf?arnumber=10590194
Reference13 articles.
1. Exposure to PM10, NO2, and O3 and impacts on human health
2. Wearable Nano-Based Gas Sensors for Environmental Monitoring and Encountered Challenges in Optimization
3. Graphene oxide/polyaniline-based microwave split-ring resonator: A versatile platform towards ammonia sensing
4. Exploring PEDOT:PSS interaction with hazardous gas molecules in microwave regime using organic microwave resonators
5. Sensitivity enhancement in planar microwave active-resonator using metal organic framework for CO2 detection
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