A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system
In this paper a high resolution dual-loop 17.7-19.7 GHz frequency synthesizer is presented which is compatible with ITU-R (F.595-6) standards. The investigations of phase noise and spur frequency contents are discussed in detail. The simulated and measured phase noise and spur frequency contents are...
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my.um.eprints.36092017-11-23T03:15:24Z http://eprints.um.edu.my/3609/ A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system Moghavvemi, M. Ameri Mahabadi, H. Attaran, A. TK Electrical engineering. Electronics Nuclear engineering In this paper a high resolution dual-loop 17.7-19.7 GHz frequency synthesizer is presented which is compatible with ITU-R (F.595-6) standards. The investigations of phase noise and spur frequency contents are discussed in detail. The simulated and measured phase noise and spur frequency contents are similar to one another. Phase noise of -81 dBc/Hz in 17.7 GHz at 10 KHz offset frequency is measured by (HP8560) series Spectrum analyzer and it matches with predicted measurements. 2011 Article PeerReviewed application/pdf en http://eprints.um.edu.my/3609/1/freq.2011.005.pdf Moghavvemi, M. and Ameri Mahabadi, H. and Attaran, A. (2011) A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system. Frequenz, 65 (1-2). pp. 29-35. ISSN 0016-1136 |
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TK Electrical engineering. Electronics Nuclear engineering Moghavvemi, M. Ameri Mahabadi, H. Attaran, A. A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system |
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In this paper a high resolution dual-loop 17.7-19.7 GHz frequency synthesizer is presented which is compatible with ITU-R (F.595-6) standards. The investigations of phase noise and spur frequency contents are discussed in detail. The simulated and measured phase noise and spur frequency contents are similar to one another. Phase noise of -81 dBc/Hz in 17.7 GHz at 10 KHz offset frequency is measured by (HP8560) series Spectrum analyzer and it matches with predicted measurements. |
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Article |
author |
Moghavvemi, M. Ameri Mahabadi, H. Attaran, A. |
author_facet |
Moghavvemi, M. Ameri Mahabadi, H. Attaran, A. |
author_sort |
Moghavvemi, M. |
title |
A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system |
title_short |
A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system |
title_full |
A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system |
title_fullStr |
A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system |
title_full_unstemmed |
A compact analytical design of dual-loop 18 GHz frequency synthesizer to enhance signal reliability in digital millimeter radio link system |
title_sort |
compact analytical design of dual-loop 18 ghz frequency synthesizer to enhance signal reliability in digital millimeter radio link system |
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2011 |
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http://eprints.um.edu.my/3609/1/freq.2011.005.pdf http://eprints.um.edu.my/3609/ |
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1643687158437904384 |
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13.222552 |