IIP2-Calibration-Free 5G NR Cellular Receiver Front-End With Mixer-Sharing Global N-Path Notch Filter Feedback Achieving+72 dBm IIP2

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초록

In this article, a new input-referred second-order intercept point (IIP2)-calibration-free receiver (RX) front-end employing mixer-sharing N-path notch filter feedback is proposed for 5G new radio (NR) cellular applications. An RX front-end architecture with a high-Q N-path RF filtering low-noise amplifier (LNA) enhances the overall IIP2 performance of the RX via the blocker filtering. However, the local oscillator (LO) chain burden increases with the number of switches in the N-path filter. The main down-conversion mixers are reused as part of switches for the N-path notch filter, reducing the LO chain burden and current consumption. The RX front-end comprises a balun-LNA, main down-conversion passive mixers driven by 25% duty-cycle LO signals, isolation resistors, and transimpedance amplifiers. Additional high-pass filters, up-conversion mixers, and reused down-conversion mixers form the global N -path notch filter feedback. Fabricated using a 65 nm CMOS process, the RX front-end was primarily characterized for the mid band of 5G NR sub-6 GHz cellular applications. It achieved a noise figure of 3.67 dB, a conversion gain of 44.7 dB, and an out-of-band input-referred third-order intercept point of 15.35 dBm. Additionally, an IIP2 of > 72 dBm was obtained without calibration. The RX front-end drew a 13.83 mA bias current from a 1 V nominal supply voltage, with a 0.45 mm 2 active die area.

키워드

Blocker-tolerantcellularfrequency division duplex (FDD)input-referred second-order intercept point (IIP2)IIP2-calibration-freemixer-sharing techniquenew radioN-path filternotch filterreceiverRF filtering LNAtransmitter leakage rejection5Gnew radionotch filterreceiverRF filtering LNAtransmitter leakage rejection5GLOW-NOISE AMPLIFIERCHANNEL-SELECTIONRFCALIBRATIONDC
제목
IIP2-Calibration-Free 5G NR Cellular Receiver Front-End With Mixer-Sharing Global N-Path Notch Filter Feedback Achieving+72 dBm IIP2
저자
Jo, SengjunKim, HyeonjunKwon, Kuduck
DOI
10.1109/TCSI.2024.3462538
발행일
2025-03
유형
Article
저널명
IEEE Transactions on Circuits and Systems I: Regular Papers
72
3
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1178 ~ 1190