Title :
Design and implementation of a low-voltage fast-switching mixed-signal-controlled frequency synthesizer
Author :
Chiueh, Tzi-Dar ; Yang, Jin-Bin ; Wu, Jen-Shi
Author_Institution :
Dept. of Electr. Eng., Nat. Taiwan Univ., Taipei, Taiwan
fDate :
10/1/2001 12:00:00 AM
Abstract :
A new frequency synthesizer based on combining the analog phase-locked loop (PLL) and the all digital PLL (ADPLL) is presented. The frequency synthesizer achieves high frequency resolution, broad frequency range, high switching speed, and low supply voltage. The oscillator is controlled by both the digital control word and the control voltage of the analog PLL. It is an array oscillator implemented by symmetric load differential inverting buffers which provide better rejection to supply noise and fabrication variance. Fractional-N divider and delay interpolation technique are employed to enhance the divider resolution without inducing jitter. A binary search algorithm is used to find the proper digital frequency control word, which can be saved for later use and greatly speed up the frequency switching process. Fabricated using a 0.6-μm SPTM CMOS process, the synthesizer achieves a frequency range of 54-154 MHz with a frequency error less than 1 ppm and a frequency switching time less than 10 μs. The chip consumes very little power and draws 47 mW from a 2-V supply voltage
Keywords :
CMOS integrated circuits; digital phase locked loops; digital-analogue conversion; frequency synthesizers; interpolation; low-power electronics; mixed analogue-digital integrated circuits; phase locked loops; phase locked oscillators; transceivers; 2 V; 47 mW; 54 to 154 MHz; SPTM CMOS process; analog PLL; array oscillator; binary search algorithm; broad frequency range; current-output DAC; delay interpolation; digital PLL; digital frequency control word; high frequency resolution; high switching speed; low supply voltage; low-voltage fast-switching synthesizer; mixed-signal control; mixed-signal-controlled frequency synthesizer; mixed-signal-controlled oscillator; symmetric load differential inverting buffers; Delay; Digital control; Digital-controlled oscillators; Fabrication; Frequency synthesizers; Interpolation; Low voltage; Phase locked loops; Voltage control; Voltage-controlled oscillators;
Journal_Title :
Circuits and Systems II: Analog and Digital Signal Processing, IEEE Transactions on