Design of Fractional-N Frequency Synthesizer with Delta-Sigma Modulator for Wireless Mobile Communications
Byung-Ha Park
Abstract
Byung-Ha Park
Abstract
This paper describes a 1 GHz, low-phase-noise CMOS fractional-N frequency synthesizer with an integrated LC VCO. The proposed frequency synthesizer, which uses a high-order delta-sigma modulator to suppress the fractional spurious tones at all multiples of the fractional frequency resolution offset, has 64 programmable frequency channels with frequency resolution of . The measured phase noise is as low as -110 dBc/Hz at a 200 KHz offset frequency from a carrier frequency of 980 MHz. The reference sideband spurs are -73.5 dBc. The prototype is implemented in a CMOS process with triple metal layers. The active chip area is about and the prototype consumes 43 mW, including the VCO buffer power consumption, from a 3.3 V supply voltage.
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This paper describes a 1 GHz, low-phase-noise CMOS fractional-N frequency synthesizer with an integrated LC VCO. The proposed frequency synthesizer, which uses a high-order delta-sigma modulator to suppress the fractional spurious tones at all multiples of the fractional frequency resolution offset, has 64 programmable frequency channels with frequency resolution of . The measured phase noise is as low as -110 dBc/Hz at a 200 KHz offset frequency from a carrier frequency of 980 MHz. The reference sideband spurs are -73.5 dBc. The prototype is implemented in a CMOS process with triple metal layers. The active chip area is about and the prototype consumes 43 mW, including the VCO buffer power consumption, from a 3.3 V supply voltage.
Key concepts: Frequency synthesizer, dBc, Phase noise, Voltage-controlled oscillator, CMOS, Delta-sigma modulation, Frequency offset, Electrical engineering