Title :
A low power 100 MHz – 2.5 GHz digital-to-time conversion based transmitter for constant-envelope direct digital modulation
Author :
Stengel, Bob ; Talwalkar, Sumit ; Gradishar, Tom ; Cafaro, Gio
Author_Institution :
Motorola, Plantation, FL, USA
Abstract :
This paper reports a flexible direct digital modulation based low power transmitter in 90 nm CMOS that supports constant-envelope modulation using phase or frequency modulation for carrier frequencies from 100 MHz to 2.5 GHz. For rectangular filtered 8-PSK modulation from 1 K symbol/s to 20 M symbol/s the RMS phase error is less than 4 deg. Frequency modulation is measured via filtered frequency shift keying (FSK) schemes used in two common standard protocols, GSM and APCO-25. GSM phase error at 800-900 MHz as well as 1900 MHz is less than 1 deg RMS. APCO-25 FSK error is less than 2% across bands from VHF (~130 MHz) to UHF (~400 MHz) to 800 MHz. Measured adjacent channel power ratio (ACPR) are within specification. The synthesizer power drain is 130 mW with an active area of 0.7 mm2.
Keywords :
CMOS integrated circuits; UHF integrated circuits; cellular radio; frequency modulation; low-power electronics; phase shift keying; radio transmitters; CMOS integrated circuit; GSM phase error; PSK modulation; RMS phase error; adjacent channel power ratio; constant envelope; digital-to-time conversion; flexible direct digital modulation; frequency 100 MHz to 2.5 GHz; frequency modulation; frequency shift keying; low power transmitter; phase modulation; radio transmitter; size 90 nm; standard protocols; Digital modulation; Frequency measurement; Frequency modulation; Frequency shift keying; GSM; Measurement standards; Phase modulation; Protocols; Transmitters; UHF measurements; APCO-25; Digital Modulation; Frequency Modulation; GSM; Phase Modulation; SDR;
Conference_Titel :
Radio Frequency Integrated Circuits Symposium, 2009. RFIC 2009. IEEE
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-3377-3
Electronic_ISBN :
1529-2517
DOI :
10.1109/RFIC.2009.5135519