Title :
A 0.3–1.4 GHz All-Digital Fractional-N PLL With Adaptive Loop Gain Controller
Author :
Kim, Deok-Soo ; Song, Heesoo ; Kim, Taeho ; Kim, Suhwan ; Jeong, Deog-Kyoon
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Seoul Nat. Univ., Seoul, South Korea
Abstract :
A 0.3-1.4 GHz all-digital phase locked loop (ADPLL) with an adaptive loop gain controller (ALGC), a 1/8-resolution fractional divider and a frequency search block is presented. The ALGC reduces the nonlinearity of the bang-bang phase-frequency detector (BBPFD), reducing output jitter. The fractional divider partially compensates for the large input phase error caused by fractional-N frequency synthesis. A fast frequency search unit using the false position method achieves frequency lock in 6 iterations that correspond to 192 reference clock cycles. A prototype ADPLL using a BBPFD with a dead-zone-free retimer, an ALGC, a fractional divider, and a digital logic implementation of a frequency search algorithm was fabricated in a 0.13-μm CMOS logic process. The core occupies 0.2 mm2 and consumes 16.5 mW with a 1.2-V supply at 1.35-GHz. Measured RMS and peak-to-peak jitter with activating the ALGC are 3.7 ps and 32 ps respectively.
Keywords :
CMOS logic circuits; UHF circuits; adaptive control; gain control; phase locked loops; search problems; ADPLL; ALGC; CMOS logic process; adaptive loop gain controller; all-digital fractional-N PLL; all-digital phase locked loop; bang-bang phase-frequency detector; fast frequency search unit; fractional divider; frequency 0.3 GHz to 1.4 GHz; frequency search algorithm; frequency search block; frequency synthesis; power 16.5 mW; reducing output jitter; size 0.13 mum; voltage 1.2 V; Clocks; Detectors; Inverters; Jitter; Phase frequency detector; Phase locked loops; Signal resolution; Adaptive gain control; all-digital phase locked loop (ADPLL); bang-bang phase and frequency detector (BBPFD); false position method; fractional divider; frequency search;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2010.2064050