Title :
A 2-GHz carrier leakage calibrated direct-conversion WCDMA transmitter in 0.13-μm CMOS
Author :
Brenna, Gabriel ; Tschopp, David ; Rogin, Juergen ; Kouchev, Ilian ; Huang, Qiuting
Author_Institution :
Integrated Syst. Lab., Swiss Fed. Inst. of Technol., Zurich, Switzerland
Abstract :
A highly integrated 2-GHz, 0.13-μm CMOS direct-conversion transmitter for wide-band code division multiple access (WCDMA) is described. Different circuit and calibration techniques are presented that successfully suppress the carrier leakage and enable the direct-upconversion architecture to meet all WCDMA specifications. The transmitter delivers +2.5 dBm output power while consuming only 45 mA from its nominal 1.5-V supply. The overall gain can be programmed in 1-dB steps over a 100-dB range with 0.4 dB accuracy. The transmitter achieves an OIP3 of +19.3 dBm, an error vector magnitude of 4.3%, and an adjacent channel leakage ratio of -38 dBc. The measured output noise of -146 dBm/Hz in the DCS Rx band and -149 dBm/Hz in the UMTS Rx band is sufficiently low to provide an option to increase the integration level even further by eliminating the external Tx interstage filter between the power amplifier and its driver.
Keywords :
3G mobile communication; CMOS integrated circuits; calibration; code division multiple access; radio receivers; radio transmitters; 0.13 m; 1.5 V; 2 GHz; 45 mA; RF-CMOS; UMTS; adjacent channel leakage; calibration techniques; carrier leakage; direct-conversion transmitter; direct-upconversion architecture; error vector magnitude; mobile communications; power amplifier; wideband code division multiple access; Calibration; Circuits; Distributed control; Multiaccess communication; Noise level; Noise measurement; Power generation; Power measurement; Transmitters; Wideband; Calibration; RF-CMOS; UMTS; WCDMA; carrier leakage; direct-conversion transmitter; mobile communications; wide-band code division multiple access;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2004.831794