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An energy-efficient transceiver architecture for short range wireless sensor applications

机译:适用于短距离无线传感器应用的节能收发器架构

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A low-power, energy-efficient and configurable transceiver architecture is introduced. It is implemented on a single chip intended for use in short range radios based on WPAN (IEEE802.15.4) at 2.4 GHz. The circuitry employed in the dual conversion receiver with the tunable LNA is re-used in the dual loop frequency synthesizer to form a constant envelope modulator and function as the transmitter; techniques are presented for tuning the center frequency and bandwidth of the LNA, as well as generating the required local oscillator frequencies using injection locking mechanism. The transceiver is fabricated in a 0.18-mum standard CMOS process. The receiver achieves -83-dBm sensitivity and -25 dBm 1-dB compression point. The transmitter outputs -7-dBm QPSK signal, while carrier phase noise is better than -108-dBc/Hz at 5-MHz offset. Active mode power consumption is 11-mW and 14-mW in receive and transmit modes, respectively, on a 1.6-V supply.
机译:介绍了一种低功耗,节能和可配置的收发器架构。它在旨在用于基于2.4 GHz WPAN(IEEE802.15.4)的短距离无线电中的单个芯片上实现。具有可调LNA的双转换接收器中使用的电路在双环路频率合成器中重复使用,以形成恒定的包络调制器并用作发送器;提出了用于调整LNA的中心频率和带宽以及使用注入锁定机制生成所需的本地振荡器频率的多种技术。该收发器采用0.18微米标准CMOS工艺制造。接收器达到-83 dBm的灵敏度和-25 dBm的1 dB压缩点。发射器输出-7 dBm QPSK信号,而载波相位噪声在5 MHz偏移时优于-108 dBc / Hz。在1.6V电源下,接收和发送模式下的活动模式功耗分别为11mW和14mW。

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