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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Narrowband Multi-Channel 2.4 GHz MEMS-Based Transceiver
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A Narrowband Multi-Channel 2.4 GHz MEMS-Based Transceiver

机译:基于窄带多通道2.4 GHz MEMS的收发器

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This paper presents a new radio architecture targeting RF transceivers for WSN, WBAN, and biomedical applications. The high miniaturization required by such applications is achieved thanks to the combination of high-Q MEMS devices, such as RF BAW resonators and filters and low frequency silicon resonators, together with a low-power RF IC. This requires a dedicated radio architecture accounting for the advantages and limitations of the MEMS devices. The paper presents such an architecture together with the design of some ultra-low-power and MEMS-specific circuits. The new radio is validated by the demonstration of RX and TX functionalities. The synthesizer, based on a low phase noise BAW DCO and a variable IF LO obtained by fractional division from the RF carrier, achieves a phase noise of - 113 dBc/Hz at 3 MHz. It can intermittently be locked to a low frequency reference (e.g. 32 kHz XTAL or thermally compensated silicon resonator) to correct for the BAW aging and thermal drift thanks to an ADPLL where the lock state can be memorized for nearly immediate settling after returning from an idle period. A sensitivity of - 87 dBm is obtained in receive at 100 kbps for a global power consumption of 6 mA. The transmitter demonstrates a high data rate quasi-direct 1-point modulation capability with the generation of a -4 dBm, 1 Mbps, GFSK signal with an overall current of 20 mA.
机译:本文提出了一种针对WSN,WBAN和生物医学应用的RF收发器的新型无线电架构。通过将高Q MEMS器件(例如RF BAW谐振器和滤波器以及低频硅谐振器)与低功耗RF IC结合在一起,可以实现此类应用所需的高度小型化。这需要专用的无线电架构,以解决MEMS器件的优点和局限性。本文介绍了这种架构以及一些超低功耗和MEMS专用电路的设计。新无线电通过RX和TX功能的演示得到验证。该合成器基于低相位噪声BAW DCO和通过从RF载波进行小数分频获得的可变IF LO,在3 MHz时实现-113 dBc / Hz的相位噪声。它可以间歇地锁定到低频基准(例如32 kHz XTAL或热补偿硅谐振器)以校正BAW老化和热漂移,这要归功于ADPLL,其中可以存储锁定状态以在从空闲状态返回后几乎立即稳定下来。期。接收功率为100 kbps时,灵敏度为-87 dBm,全局功耗为6 mA。该发送器具有-4 dBm,1 Mbps GFSK信号的产生,并具有20 mA的总电流,具有很高的数据速率准直接1点调制能力。

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