2022 IEEE 22nd Annual Wireless and Microwave Technology Conference (WAMICON) 2022
DOI: 10.1109/wamicon53991.2022.9786220
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Design and Development of a Low Phase Noise Multi-Output Millimeter-Wave Frequency Synthesizer with High Output Power

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Cited by 2 publications
(1 citation statement)
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“…The multi-output millimeter-wave low phase noise frequency synthesizer is designed and realized using a combination of fractional-N phase locked loop and direct frequency synthesis for the generation of tunable LO signals centered at 37.56 and 5.07 GHz. 23 Similarly, for 345 GHz receiver chain (DSB sub-harmonic RF mixer), the first stage LO frequency is at 169.295 GHz with 5.6 to 9.6 GHz passband, and the second stage LO frequency is at 7.6 GHz. Figure 3 shows the mapping of 13 corresponding image bands are processed through FFTS, providing 8 GHz instantaneous bandwidth at 1.6 MHz resolution (extendable to 0.8 or 0.4 MHz).…”
Section: Signal Profile In Receivermentioning
confidence: 99%
“…The multi-output millimeter-wave low phase noise frequency synthesizer is designed and realized using a combination of fractional-N phase locked loop and direct frequency synthesis for the generation of tunable LO signals centered at 37.56 and 5.07 GHz. 23 Similarly, for 345 GHz receiver chain (DSB sub-harmonic RF mixer), the first stage LO frequency is at 169.295 GHz with 5.6 to 9.6 GHz passband, and the second stage LO frequency is at 7.6 GHz. Figure 3 shows the mapping of 13 corresponding image bands are processed through FFTS, providing 8 GHz instantaneous bandwidth at 1.6 MHz resolution (extendable to 0.8 or 0.4 MHz).…”
Section: Signal Profile In Receivermentioning
confidence: 99%