A 0.0078mm2 3.4mW Wideband Positive-feedback-Based Noise-Cancelling LNA in 28nm CMOS Exploiting $\boldsymbol{G}_{\mathrm{m}}$ Boosting
Author:
Affiliation:
1. Nanyang Technological University,Singapore,Singapore
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9731529/9731102/09731719.pdf?arnumber=9731719
Reference5 articles.
1. A 0.02–4.5-GHz LN(T)A in 28-nm CMOS for 5G Exploiting Noise Reduction and Current Reuse
2. A 0.061-mm² 1–11-GHz Noise-Canceling Low-Noise Amplifier Employing Active Feedforward With Simultaneous Current and Noise Reduction
3. A Wideband Noise-Canceling CMOS LNA With Enhanced Linearity by Using Complementary nMOS and pMOS Configurations
4. A Wideband CMOS Low Noise Amplifier Employing Noise and IM2 Distortion Cancellation for a Digital TV Tuner
5. Wide-Band CMOS Low-Noise Amplifier Exploiting Thermal Noise Canceling
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1. A 0.6 V, 1.74 mW, 2.9 dB NF Inductorless Wideband LNA in 28-nm CMOS Exploiting Noise Cancellation and Current Reuse;IEEE Transactions on Circuits and Systems I: Regular Papers;2024-08
2. A Narrowband RF Front End in 22-nm FD-SOI Featuring a Programmable Low-Noise Amplifier with a Configurable Noise-Power Trade-Off;2024 IEEE International Symposium on Circuits and Systems (ISCAS);2024-05-19
3. A 52–73-GHz LNA With Tri-Coupled Transformer for G m Boosting and Enhanced Noise Canceling;IEEE Journal of Solid-State Circuits;2024-03
4. A Low-Noise Amplifier with Bandwidth Extension and Noise Cancellation for 5G Receivers;2023 5th Iranian International Conference on Microelectronics (IICM);2023-10-25
5. A 110–170 GHz Wideband LNA Design Using the InP Technology for Terahertz Communication Applications;Micromachines;2023-10-10
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