← 返回论文列表 📄 下载原文 PDF  ISSCC 2011 · 16.8
ISSCC 2011Session 16 · mm-WAVE DESIGN TECHNIQUESmm-Wave

A 1.5GHz-Modulation-Range 10ms-ModulationPeriod 180kHzrms-Frequency-Error 26MHz-Reference Mixed-Mode FMCW Synthesizer for mm-Wave Radar Application

📄 原文摘要

is one of the promising candidates for realizing a CMOS radar IC [1-3]. Range and velocity resolutions of the FMCW radar are determined by the bandwidth and period of triangular modulation [4]. A short-range measurement requires wide (several GHz) bandwidth, while a long-range measurement with high-velocity resolution requires moderate (hundreds of MHz) bandwidth and long (several ms) period. Furthermore, since frequency error in the FMCW signal deteriorates range and velocity accuracy, a highly linear frequency chirp signal is required. However FMCW radars reported so far [2,3] exhibit a period up to 1.5ms because a long period degrades the chirp linearity in a conventional analog PLL. In this work, an analog/digital mixed-mode 82GHz FMCW synthesizer with 1.5GHz bandwidth, a period from 1ms to 10ms and less than

👥 作者与机构

Hiroki Sakurai, Yuka Kobayashi, Toshiya Mitomo, Osamu Watanabe, Shoji Otaka

Toshiba, Kawasaki, Japan A frequency modulated continuous-wave (FMCW) radar using triangular modulation

分类:mm-Wave · 年份:ISSCC 2011