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

机译:用于生物遥测应用的1 V 5 mA多模IEEE 802.15.6 /蓝牙低功耗WBAN收发器

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This paper presents a 1 V multi-mode RF transceiver for wireless body area network (WBAN) applications. Operating in the 2.36 GHz Medical Body Area Networks (MBANs) and the 2.4 GHz Industrial, Scientific & Medical (ISM) frequency bands, the transceiver implements rotated differential-phase shift keying (DPSK) and Gaussian filtered frequency shift keying (GFSK) modulation 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 ${-}104/{-}96.5$ dBm receiver input sensitivity (for 10% packet error rate) at data rates of 121.4/971.4 kbps and ${-}94$ dBm for Bluetooth LE (for 0.1% bit error rate) at 1 Mbps. Transmit power up to ${+}3/{+}5$ dBm is achievable for IEEE 802.15.6 and Bluetooth LE respectively. The transceiver consumes 4.8 mA during IEEE 802.15.6 & Bluetooth LE receive, and 4.6 mA during Bluetooth LE transmit at ${-}10$ dBm output power, from a 1.0 V supply. For IEE802.15.6 transmission at ${-}10$ 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 $mu$m CMOS technology and occupies approximately 5.9 mm$^{2}$ .
机译:本文提出了一种用于无线人体局域网(WBAN)应用的1 V多模式RF收发器。该收发器在2.36 GHz医疗人体局域网(MBAN)和2.4 GHz工业,科学与医学(ISM)频段中运行,实现了旋转差分相移键控(DPSK)和高斯滤波频移键控(GFSK)调制,用于IEEE 802.15.6窄带(NB)和蓝牙低功耗(LE)PHY标准。还包括使用FSK调制的专有900 MHz ISM频段发射机。无线收发器工作于半双工模式,对于IEEE 802.15.6,在数据速率为121.4 / 971.4 kbps和$ {-时,达到$ {-} 104 / {-} 96.5 $ dBm接收机输入灵敏度(对于10%的包错误率)。 } 94%dBm用于1Mbps的蓝牙LE(对于0.1%的误码率)。分别针对IEEE 802.15.6和Bluetooth LE,发射功率最高可达$ {+} 3 / {+} 5 $ dBm。在收发器通过1.0 V电源以$ {-} 10 $ dBm输出功率供电时,收发器在IEEE 802.15.6和Bluetooth LE接收期间消耗4.8 mA,在Bluetooth LE发送期间消耗4.6 mA。对于在$ {-} 10 $ dBm输出功率下的IEE802.15.6传输,消耗5.9 mW,对于专有900 MHz传输,该功耗降至1.7 mW。该性能超过了最新的功耗,并代表了IEEE 802.15.6 NB PHY标准的第一个发布的收发器。它采用0.13微米CMOS技术制造,约占5.9毫米^ {2} $。

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