Phase noise optimization of CMOS VCO through harmonic tuning
Seonghan Ryu, Yujin Chung, Huijung Kim, Jinsung Choi, Bumman Kim
Abstract
Seonghan Ryu, Yujin Chung, Huijung Kim, Jinsung Choi, Bumman Kim
Abstract
An optimization technique for a low phase noise CMOS LC VCO is proposed. The combination of harmonic tuning and on-chip filtering improves both 1/f/sup 3/ and 1/f/sup 2/ phase noise more than 10 dB over a comparable reference VCO. A 2.7 V, 5.4 mA, 30% tuning range, 1 GHz voltage controlled oscillator (VCO) is designed with the technique and implemented in a 0.35 /spl mu/m CMOS process. The optimized 1 GHz CMOS differential VCO achieves -89 dBc/Hz, -116 dBc/Hz and -135 dBc/Hz at 10 kHz, 100 kHz, and 1 MHz offset frequencies from the carrier, respectively.
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An optimization technique for a low phase noise CMOS LC VCO is proposed. The combination of harmonic tuning and on-chip filtering improves both 1/f/sup 3/ and 1/f/sup 2/ phase noise more than 10 dB over a comparable reference VCO. A 2.7 V, 5.4 mA, 30% tuning range, 1 GHz voltage controlled oscillator (VCO) is designed with the technique and implemented in a 0.35 /spl mu/m CMOS process. The optimized 1 GHz CMOS differential VCO achieves -89 dBc/Hz, -116 dBc/Hz and -135 dBc/Hz at 10 kHz, 100 kHz, and 1 MHz offset frequencies from the carrier, respectively.
Key concepts: dBc, Voltage-controlled oscillator, Phase noise, CMOS, Offset (computer science), Materials science, Voltage, Electrical engineering