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JSSC 2013第1期RF & Wireless0.13μmTransceiver

A 1 V 5 mA Multimode IEEE 802.15.6/Bluetooth Low-Energy WBAN Transceiver for Biotelemetry Applications

本文介绍了一种1V多模RF收发器,适用于无线体域网,支持IEEE 802.15.6和蓝牙低功耗标准。
1.0V, 4.8mA接收, 4.6mA发射, 5.9mm²
无线体域网IEEE 802.15.6蓝牙低功耗多模收发器CMOS
支持IEEE 802.15.6窄带PHY标准
实现旋转差分相移键控和高斯滤波频移键控调制
专有900 MHz ISM频段发射器
Abstract
This paper presents a 1 V multi-mo de RF transceiver for wireless body area network (W BAN) applications. Operating in the 2.36 GHz Medical Body Area Networks (MBANs) and the 2.4 GHz Industrial, Scienti fic&M e d i c a l(ISM) frequency bands, the transceiver implements rotate d differential-phase shift keying (DPSK) and Gaussian filtered frequency shift keying (GFSK) mod- ulation for both IEEE 802.15.6 Narrow Band (NB) and Bluetooth Low-Energy (LE) PHY standards. Also included is a proprietary 900 MHz ISM band transmitter utilizing FSK modulation. The wireless transceiver operates half-duplex, and for IEEE 802.15.6 achieves dBm receiver input sensitivity (for 10% packet error rate) at data rates of 121.4/971.4 kbps and dBm for Bluetooth LE (for 0.1% bit error rate) at 1 Mbps. Transmit power up to dBm is achievable for IEEE 802.15.6 and Bluetooth LE respectively. The transceiver consumes 4.8 mA during IEEE 802.15.6 & Bl uetooth LE receive, and 4.6 mA during Bluetooth LE transmit at dBm output power, from a 1.0 V supply. For IEE802.15.6 transmission at dBm output power, 5.9 mW is consumed, dropping to 1.7 mW for proprietary 900 MHz transmission. This performance surpasses state-of-the-art power consumption and represents the first published transceiver for the IEEE 802.15.6 NB PHY standard. It is fabricated in a 0.13 m CMOS technology and occupies approximately 5.9 mm .