A 3–14 GHz, Self-Body Biased Common-Gate UWB LNA for Wireless Applications in 90 nm CMOS

Author:

Singh Vikram12ORCID,Arya Sandeep Kumar3,Kumar Manoj2

Affiliation:

1. Department of Electronics and Communication Engineering, Guru Jambheshwar University of Science & Technology, Hisar, Haryana, India

2. Shri Mata Vaishno Devi University, Katra, Jammu & Kashmir, India

3. University School of Information, Communication & Technology, Guru Gobind Singh Indraprastha University, New Delhi, India

Abstract

Inspired from continuous growth in the field of low power and low noise wireless communication devices, a low noise amplifier (LNA) using self-body biased common-gate (CG) configuration is presented in this paper. The proposed LNA is designed for 3–14[Formula: see text]GHz ultra-wideband (UWB) frequency range using 90[Formula: see text]nm CMOS process. Common-gate configuration with self-body biasing has been used at the input stage to provide wideband input matching with low noise figure (NF) for the complete UWB frequency. An impedance matching network consisting of parallel to series RLC network has been used between common-gate and cascaded common source (CS) stages. Two stages of the CS configuration have been used for bandwidth enhancement and to increase the power gain (S[Formula: see text]) with acceptable NF. Buffer stage at the output has been used to achieve output reflection coefficient (S[Formula: see text]) less than [Formula: see text]10.8[Formula: see text]dB. The proposed LNA achieves an average S[Formula: see text] of 15.9[Formula: see text][Formula: see text][Formula: see text]0.7[Formula: see text]dB with a maximum of 16.7[Formula: see text]dB at 3.0[Formula: see text]GHz and NF of 1.68–2.7[Formula: see text]dB for 3.1–10.6[Formula: see text]GHz UWB frequency range. It provides input reflection coefficient (S[Formula: see text]) less than [Formula: see text]10.2[Formula: see text]dB, reverse isolation (S[Formula: see text]) less than [Formula: see text]75.8[Formula: see text]dB and a NF of 1.68–4.0[Formula: see text]dB throughout the proposed UWB frequency range. The proposed LNA provides input 1[Formula: see text]dB compression point (P1dB) of [Formula: see text]13[Formula: see text]dBm and input third-order intercept point (IIP3) of [Formula: see text]8[Formula: see text]dBm at 6[Formula: see text]GHz. It consumes 20.1[Formula: see text]mW of power from a 1.2[Formula: see text]V power supply.

Publisher

World Scientific Pub Co Pte Lt

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Electrical and Electronic Engineering,Hardware and Architecture

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1. A Multi-Band LNA Covering 17–38 GHz in 45 nm CMOS SOI;Electronics;2022-10-10

2. An Ultra-Wideband noise-reduction LNA With Variable Gain for Wireless Wake-up Receivers;2022 IEEE International Conference on Design & Test of Integrated Micro & Nano-Systems (DTS);2022-06-06

3. A Large Signal GaN HEMT Transistor Based on the Angelov Model Parameters Extraction Applied to Single Stage Low Noise Amplifier;Transactions on Electrical and Electronic Materials;2022-03-18

4. Active Inductor-Based Ultra-Wideband Low Noise Amplifier for Rejection of Wireless LAN Interference;Radioelectronics and Communications Systems;2021-01

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