Title :
A 0.1–6.0-GHz Dual-Path SDR Transmitter Supporting Intraband Carrier Aggregation in 65-nm CMOS
Author :
Yun Yin ; Baoyong Chi ; Zhigang Sun ; Xinwang Zhang ; Zhihua Wang
Author_Institution :
Inst. of Microelectron., Tsinghua Univ., Beijing, China
Abstract :
A 4.8-mm2 0.1-6.0-GHz dual-path software-defined radio transmitter supporting intraband carrier aggregation (CA) in 65-nm CMOS is presented. A simple approach is proposed to support intraband CA signals with only one I-Q baseband path. By utilizing the power-scalable and feedforward compensation techniques, the power of the wideband analog baseband is minimized. The transmitter consists of a high gain-range main path and a low-power subpath to cooperatively cover different standards over 0.1-6.0 GHz with more flexibility. The reconfigurable power amplifier (PA) driver achieves wideband frequency coverage with efficiency-enhanced on-chip transformers and improved switched-capacitor arrays. This transmitter achieves <;-50-dBc image rejection ratio and <;-40-dBc local oscillating signal leakage after the calibration. System verifications have demonstrated -31/- 51-dBc ACLR1/ACLR2 (adjacent channel leakage ratio) at 3-dBm output power for 2.3-GHz LTE20 in the main path and 1.7% error vector magnitude (EVM) at 1.5-dBm output for 1.8-GHz WCDMA in the subpath. Both paths enable SAW-less FDD operations with -153 or -156 dBc/Hz carrier-to-noise ratio at 200-MHz frequency offset. Finally, the dual CA signals with 55-MHz frequency spacing are verified, showing the EVM of 1.2% and 0.8%, respectively, and exhibiting the intraband CA capability.
Keywords :
CMOS analogue integrated circuits; Long Term Evolution; code division multiple access; driver circuits; feedforward; radio transmitters; radiofrequency integrated circuits; radiofrequency power amplifiers; reconfigurable architectures; software radio; switched capacitor networks; transformers; ACLR1-ACLR2; CMOS; EVM; I-Q baseband path; LTE20; Long Term Evolution; PA driver; SAW-less FDD operations; WCDMA; adjacent channel leakage ratio; carrier-to-noise ratio; dual-path SDR transmitter; dual-path software-defined radio transmitter; error vector magnitude; feedforward compensation techniques; frequency 0.1 GHz to 6.0 GHz; frequency 55 MHz; frequency spacing; image rejection ratio; intraband CA capability; intraband CA signals; intraband carrier aggregation; local oscillating signal leakage; low-power subpath; on-chip transformers; reconfigurable power amplifier; size 65 nm; switched-capacitor arrays; wideband analog baseband; Bandwidth; Baseband; Gain; Modulation; Noise; Radio transmitters; CMOS; Carrier aggregation (CA); SAW-less; dual path; reconfigurable; software-defined radio (SDR); transmitter; transmitter.;
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
DOI :
10.1109/TVLSI.2014.2330256