DocumentCode :
77714
Title :
Cell-Based Variable-Gain Amplifiers With Accurate dB-Linear Characteristic in 0.18 µm CMOS Technology
Author :
Hang Liu ; Xi Zhu ; Boon, Chirn Chye ; Xiaofeng He
Author_Institution :
Sch. of Electr. Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Volume :
50
Issue :
2
fYear :
2015
fDate :
Feb. 2015
Firstpage :
586
Lastpage :
596
Abstract :
A simple and robust “cell-based” method is presented for the design of variable-gain amplifiers (VGAs). The proposed unit cell utilizes a unique gain compensation method and achieves accurate dB-linear characteristic across a wide tuning range with low power consumption and wide bandwidth. Several such highly dB-linear unit cells can be cascaded to provide the required gain range for a VGA. To prove the concept, single-cell, 5-cell, 10-cell and 15-cell reconfigurable VGAs were fabricated in a standard 0.18 μm CMOS technology. The measurement results show that the 10-cell VGA achieves a gain range of 38.6 dB with less than 0.19 dB gain error. The 15-cell VGA can either be used as reconfigurable VGA for analog control voltage or tunable PGA for digital control stream, with the flexibility of scaling gain range, gain error/step and power consumption. For the VGA at highest gain setting, it consumes 1.12 mW and achieves a gain range of 56 dB, gain error less than 0.3 dB.
Keywords :
CMOS integrated circuits; amplifiers; digital control; low-power electronics; 15-cell VGA; accurate dB-linear characteristic; analog control voltage; cell-based variable-gain amplifiers; digital control stream; low power consumption; power 1.12 mW; reconfigurable VGA; robust cell based method; scaling gain range; simple cell based method; size 0.18 mum; standard CMOS technology; unique gain compensation; Bandwidth; CMOS integrated circuits; Electronics packaging; Gain; MOSFET; Power demand; Voltage control; CMOS variable gain amplifier; Cell based; dB-linear; gain compensation; low power; power scalable; programmable gain amplifier; reconfigurable;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2014.2368132
Filename :
6975257
Link To Document :
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