Title :
An all-digital ΔΣ envelope modulator for EER-based transmitters based on CMOS standard cell design
Author :
Kuo, Chien-Hung ; Liao, Shu-Li
Author_Institution :
Dept. Appl. Electron. Technol., Nat. Taiwan Normal Univ., Taipei, Taiwan
Abstract :
This paper presents an all-digital 4-bit delta-sigma (ΔΣ) modulator for envelope elimination and restoration (EER)-based polar transmitters. A fast feedback approach is devised by combining the digital truncator with path gains to reduce the propagation delay of feedback loops in modulators. The CMOS standard cell-based design could hence be utilized to implement the proposed modulator at a sampling frequency of 182 MHz. The noise transfer function of the presented ΔΣ modulator has been optimized to obtain a maximally flat noise band to easily meet the EDGE spectrum mask. Experiment results show the presented ΔΣ modulator has the noise power beneath -60 dB below the full-scale EDGE signal within ±20 MHz of the carrier frequency. The measured adjacent channel power ratios and alternate channel power ratio of the proposed modulator also give a 6 dB margin to the EDGE specification at 400 kHz and 600 kHz offsets.
Keywords :
CMOS integrated circuits; delta-sigma modulation; transfer functions; transmitters; CMOS standard cell design; EDGE spectrum mask; EER-based polar transmitter; all-digital ΔΣ envelope modulator; all-digital delta-sigma modulator; digital truncator; fast feedback approach; frequency 182 MHz; frequency 400 kHz; frequency 600 kHz; gain -60 dB; gain 6 dB; noise transfer function; word length 4 bit; Feedback loop; Floors; Frequency measurement; Frequency modulation; Noise; Transmitters;
Conference_Titel :
New Circuits and Systems Conference (NEWCAS), 2011 IEEE 9th International
Conference_Location :
Bordeaux
Print_ISBN :
978-1-61284-135-9
DOI :
10.1109/NEWCAS.2011.5981321