A SiGe Highly Integrated FMCW Transmitter Module With a 59.5-70.5-GHz Single Sweep Cover

A fully integrated wide-bandwidth transmitter (TX) module intended for use in short-range frequency-modulated continuous-wave radar applications is proposed. By incorporating an on-chip fractional- {N} phase-locked loop based on the fundamental voltage-controlled oscillator, the TX is able to synth...

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Veröffentlicht in:IEEE transactions on microwave theory and techniques 2018-09, Vol.66 (9), p.4121-4133
Hauptverfasser: Milosavljevic, Ivan M., Krcum, Dusan P., Glavonjic, Dorde P., Jovanovic, Sinisa P., Mihajlovic, Veljko R., Tasovac, Darko M., Milovanovic, Vladimir M.
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Sprache:eng
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Zusammenfassung:A fully integrated wide-bandwidth transmitter (TX) module intended for use in short-range frequency-modulated continuous-wave radar applications is proposed. By incorporating an on-chip fractional- {N} phase-locked loop based on the fundamental voltage-controlled oscillator, the TX is able to synthesize highly programmable 11-GHz linear chirps around the 65-GHz central frequency, hence theoretically enabling sub-1.5-cm spatial resolutions. Implemented in a 0.13- \mu \text {m} BiCMOS process, the test-chip delivers more than +5 dBm of output power and achieves the measured root-mean-square ramp error (nonlinearity) of 340 kHz for a 60-GHz/ms modulation rate signal over the complete range of interest. The presented TX module dissipates 550mW and also includes an adequate on-board directional 4\times4 antenna array.
ISSN:0018-9480
1557-9670
DOI:10.1109/TMTT.2018.2842218