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  4. A Fully Integrated 0.48 THz FMCW Radar Transceiver MMIC in a SiGe-Technology
 
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2022
Conference Paper
Title

A Fully Integrated 0.48 THz FMCW Radar Transceiver MMIC in a SiGe-Technology

Abstract
Radar systems are gaining in popularity and spreading into more and more applications due to their robust measurement method. While single-chip solutions have been published in the last decade in the upper millimetre-wave range, solutions are still very limited in the lower THz range. In this paper, a 0.48 THz FMCW-radar transceiver MMIC in a 130 nm silicon-germanium (SiGe) technology is presented. The MMIC consists of one Tx and Rx channel, respectively. The components for frequency synthesis and on-chip patch antennas are fully integrated into the MMIC. The achievable tuning range of the MMIC is 0.448 - 0.491 THz with a peak on-chip output power of about -9.4 dBm. The MMIC was designed and manufactured with the IHP SG13G3 technoloay,
Author(s)
Starke, David
Wittemeier, Jonathan
Vogelsang, Florian
Sievert, Benedikt
Erni, Daniel
Rennings, Andreas
Rücker, Holger
Pohl, Nils  
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Mainwork
17th European Microwave Integrated Circuits Conference 2022  
Project(s)
Mobile Material-Charakterisierung und -Ortung durch Elektromagnetische Abtastung  
Funder
Deutsche Forschungsgemeinschaft -DFG-, Bonn  
Conference
European Microwave Integrated Circuits Conference 2022  
European Microwave Week 2022  
Open Access
DOI
10.23919/EuMIC54520.2022.9923443
Language
English
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Keyword(s)
  • FMCW radar

  • frequency doubler (x2)

  • fully-integrated

  • HBT

  • IHP

  • on-chip patch antenna

  • power amplifier (PA)

  • SG13G3

  • silicon-germanium (SiGe) BiCMOS

  • static frequency divider

  • subharmonic mixer (SHM)

  • THz

  • Transceiver (TRX)

  • VCO

  • wideband

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