A 24-GHz RF Transmitter in 65-nm CMOS for In-Cabin Radar Applications

Author:

Lee Suyeon,Jeon Yangji,Park Geonwoo,Myung Jinman,Lee Seungjik,Lee OckgooORCID,Moon Hyunwon,Nam IlkuORCID

Abstract

A 24-GHz direct-conversion transmitter is proposed for in-cabin radar applications. The proposed RF transmitter consists of an I/Q up-conversion mixer, an I/Q local (LO) oscillator generator, and a power amplifier. To improve the linearity of the I/Q up-conversion mixer, an inverter transconductor with third-order intermodulation (IM3) distortion cancellation is proposed. To improve the I/Q balancing performance of the I/Q LO generator, a poly-phase filter, including parasitic line inductance, is proposed. By employing a highly linear I/Q up-conversion mixer and a balanced I/Q LO generator, the 24-GHz direct-conversion transmitter achieves high linearity and I/Q balancing characteristics. It is fabricated in a 65-nm CMOS process and consumes 150 mW. It shows an OP1dB of 8.6 dBm, an LO leakage of −48 dBc, and an image rejection ratio of −49 dBc for the entire operating band from 24 GHz to 24.5 GHz.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

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1. Multibin Breathing Pattern Estimation by Radar Fusion for Enhanced Driver Monitoring;IEEE Transactions on Instrumentation and Measurement;2024

2. In-Vehicle Monitoring by Radar: A Review;IEEE Sensors Journal;2023-11-01

3. Machine Learning based In-Cabin Radar System for Passenger Monitoring System;2023 IEEE 97th Vehicular Technology Conference (VTC2023-Spring);2023-06

4. A Design-Aware Parasitic-Aware Simulation-Based Tool for the Design of RF Amplifiers;2023 5th International Conference on Smart Systems and Inventive Technology (ICSSIT);2023-01-23

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