DocumentCode
3362236
Title
An analog enhanced all digtial RF fractional-N PLL with self-calibrated capability
Author
Wang, Ping-Ying ; Zhan, Jing-Hong Conan ; Chang, Hsiang-Hui ; Hsieh, Bing-Yu
Author_Institution
MediaTek Inc., Hsinchu
fYear
2008
fDate
21-24 Sept. 2008
Firstpage
749
Lastpage
752
Abstract
In this paper, an analog enhanced all digital fractional-N PLL is proposed. An analog feed-forward circuits replace the time-to-digital converter used in conventional all digital PLL (ADPLLs) to provide a linear phase modulation path which is insensitive to quantization error and non-linearity of digital controlled oscillator (DCO). Its advantages include 1) Eliminating fractional spurs and noise induced by quantization error and the latency induced by the digital circuits in ADPLLs 2) Relaxing both digital controlled oscillator (DCO) and analog feed-forward circuit design requirements. 3) Providing a linear phase modulation path which can be self calibrated by using the digital loop filter. 4) Reducing loop filter area by using digital loop filter. The fractional spurs are 9 to 30 dB lower than the latest reported ADPLLs. At 3.6 GHz under fractional-N mode operation, the fractional spur is under -75 dBc, the phase noise is -115.6 dBc/Hz @400 KHz, -134.9 dBc/Hz @3 MHz. The performance satisfies GSM/GPRS/EDGE system requirements.
Keywords
digital filters; digital phase locked loops; feedforward; phase locked oscillators; phase modulation; phase noise; all digital RF fractional-N PLL; analog feed-forward circuits; digital circuits; digital controlled oscillator; digital loop filter; frequency 3 MHz; frequency 3.6 GHz; frequency 400 kHz; linear phase modulation; phase noise; time-to-digital converter; Digital control; Digital filters; Digital-controlled oscillators; Feedforward systems; Nonlinear filters; Phase locked loops; Phase modulation; Phase noise; Quantization; Radio frequency; ADPLL; Digital controlled Oscillator;
fLanguage
English
Publisher
ieee
Conference_Titel
Custom Integrated Circuits Conference, 2008. CICC 2008. IEEE
Conference_Location
San Jose, CA
Print_ISBN
978-1-4244-2018-6
Electronic_ISBN
978-1-4244-2019-3
Type
conf
DOI
10.1109/CICC.2008.4672195
Filename
4672195
Link To Document