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  4. A low power miniaturized 1.95mm2 fully integrated transceiver with fastPLL mode for IEEE 802.15.4/bluetooth smart and proprietary 2.4GHz applications
 

A low power miniaturized 1.95mm2 fully integrated transceiver with fastPLL mode for IEEE 802.15.4/bluetooth smart and proprietary 2.4GHz applications

URI
https://arbor.bfh.ch/handle/arbor/32038
Version
Published
Date Issued
2013
Author(s)
Pengg, Franz
Barras, David
Kucera, Martin  
Scolari, Nicola
Vouilloz, Alexandre
Type
Conference Paper
Language
English
Abstract
This paper presents an ultra-low power miniaturized single chip transceiver operating in the ISM band at 2.4GHz. Targeting low power and minimum die size, while excluding RF-options and minimizing the count of external components for low-cost, asks for appropriate architectural choices to obtain high performance. Fast PLL locking and immediate RX-TX turn-around minimize the consumption overhead at wake-up and turn-around. With a die size of only 1.95mm 2 in a 90nm standard digital CMOS technology, the receiver achieves a sensitivity of -94.5dBm (1Mbps, BER 10E-3) while consuming only 7.1mA and the transmitter consumes 9.2mA for 0dBm output power. The base-band is compliant with the IEEE 802.15.4 standard, the Bluetooth Smart standard (former Bluetooth low energy BLE) and can be configured for proprietary standards at 2.4GHz, with data-rates up to 3Mbps.
Subjects
TK Electrical engineering. Electronics Nuclear engineering
ISBN
978-1-4673-6059-3
Publisher DOI
10.1109/RFIC.2013.6569525
Organization
Institute for Human Centered Engineering (HUCE)  
BFH-Zentrum Technologien in Sport und Medizin  
Technik und Informatk  
BFH-Zentren  
Conference
2013 IEEE Radio Frequency Integrated Circuits Symposium (RFIC)
Publisher
IEEE
Submitter
KuceraM
Citation apa
Pengg, F., Barras, D., Kucera, M., Scolari, N., & Vouilloz, A. (2013). A low power miniaturized 1.95mm2 fully integrated transceiver with fastPLL mode for IEEE 802.15.4/bluetooth smart and proprietary 2.4GHz applications. 2013 IEEE Radio Frequency Integrated Circuits Symposium (RFIC). IEEE. https://arbor.bfh.ch/handle/arbor/32038
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