Single-Stage Frequency Quadrupler With SBD and Four-Octave LPF at 335 GHz

This paper presents designs of a single-stage quadrupler at 340 GHz based on Schottky varactors with 7 mW maximum output power. The Schottky diode model is invented to improve the accuracy of design, which considers the behaviors of current-voltage (I/V), capacitance-voltage (C/V ), plasma resonance...

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Veröffentlicht in:IEEE transactions on terahertz science and technology 2017-07, Vol.7 (4), p.446-454
Hauptverfasser: Jun, Jiang, Bin, Lu, Li, Miao, Yue, He, Xiangyang, Shi, Yaoling, Tian, Hailong, Hao, Fengjun, Chen, Xianjin, Deng, Jian, Zhang
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Sprache:eng
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Zusammenfassung:This paper presents designs of a single-stage quadrupler at 340 GHz based on Schottky varactors with 7 mW maximum output power. The Schottky diode model is invented to improve the accuracy of design, which considers the behaviors of current-voltage (I/V), capacitance-voltage (C/V ), plasma resonance, self-heating effect, and skin effect of Schottky diodes under deep driven situation into consideration. Compact suspended microstrip resonators (CSMRs) are adopted as harmonic rejection structure with minimized length/width ratio and shorted idlers at both the second and third harmonics. The measurement results indicate that the CSMR low-pass filter has stopband bandwidth of more than four-octave, whose S12
ISSN:2156-342X
2156-3446
DOI:10.1109/TTHZ.2017.2709720