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research article

A 2.4-GHz low power polar transmitter for wireless body area network applications

Kopta, Vladimir  
•
Le Roux, Erwan
•
Pengg, Franz
Show more
2014
Analog Integrated Circuits And Signal Processing

A 2.4 GHz low power polar transmitter is proposed in this paper. A dynamic biasing circuit, controlled by a digital envelope signal, is used as a direct digital-to-RF envelope converter. It effectively linearizes the input-output characteristic of the overdriven cascode class-C power amplifier used as the output stage, by dynamically adjusting the bias voltage of the cascode transistor. An equivalent baseband model of the transmitter is presented and used to optimize system parameters and give initial assessment of the achievable performance in terms of efficiency and linearity. Based on these simulations, parameters for transistor-level implementation of the bias circuit are derived. The transmitter is designed in a 65 nm CMOS technology. The post layout simulations indicate that the transmitter successfully meets the requirements of the IEEE 802.15.6 standard for wireless body area networks. The simulated amplifier consumes 4.75 mA from a 1.2 V supply while delivering 1.45 dBm of output power with a peak efficiency of 24 %. The entire transmitter, including the PLL, consumes 7.5 mA.

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Type
research article
DOI
10.1007/s10470-014-0423-9
Web of Science ID

WOS:000345842200012

Author(s)
Kopta, Vladimir  
Le Roux, Erwan
Pengg, Franz
Enz, Christian  
Date Issued

2014

Publisher

Springer Verlag

Published in
Analog Integrated Circuits And Signal Processing
Volume

81

Issue

3

Start page

657

End page

666

Subjects

WBAN

•

Polar amplifier

•

Low power

•

Dynamic biasing

•

Baseband model

Note

National Licences

Editorial or Peer reviewed

REVIEWED

Written at

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February 20, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/111511
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