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Design Considerations of a Sub-50 Mu-W Receiver Front-end for Implantable Devices in MedRadio Band

机译:MedRadio频段中低于50 Mu-W的可植入设备接收器前端的设计注意事项

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Emerging health-monitor applications, such as information transmission through multi-channel neural implants, image and video communication from inside the body etc., calls for ultra-low active power (<;50μW) high data-rate, energy-scalable, highly energy-efficient (pJ/bit) radios. Previous literature has strongly focused on low average power duty-cycled radios or low-power but low-date radios. In this paper, we investigate power performance trade-off of each front-end component in a conventional radio including active matching, down-conversion and RF/IF amplification and prioritize them based on highest performance/energy metric. The analysis reveals 50Ω active matching and RF gain is prohibitive for 50μW power-budget. A mixer-first architecture with an N-path mixer and a self-biased inverter based baseband LNA, designed in TSMC 65nm technology show that sub 50μW performance can be achieved up to 10Mbps (<;5pJ/b) with OOK modulation.
机译:新兴的健康监控器应用,例如通过多通道神经植入物进行信息传输,从人体内部进行图像和视频通信等,要求超低有功功率(<;50μW),高数据速率,可扩展能源,高度节能(pJ / bit)无线电。先前的文献将重点放在低平均功率占空比无线电或低功率但低日期无线电上。在本文中,我们研究了常规无线电中每个前端组件的功率性能折衷,包括有源匹配,下变频和RF / IF放大,并根据最高性能/能量度量对它们进行优先级排序。分析表明,50Ω的有源匹配和RF增益对于50μW的功率预算而言是过高的。台积电65纳米技术设计的具有N路径混频器和基于自偏置反相器的基带LNA的混频器优先架构显示,通过OOK调制,可以实现低于50μW的性能,最高可达到10Mbps(<; 5pJ / b)。

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