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Feasibility study and on-chip antenna for fully integrated μRFID tag at 60 GHz in 65 nm CMOS SOI

机译:在65 nm CMOS SOI中用于60 GHz的完全集成μRFID标签的可行性研究和片上天线

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This paper reports the feasibility study of a novel passive tag for μRFID applications in the worldwide available free 60-GHz band. The feasibility analysis indicates that a passive fully-integrated μRFID tag, with on-chip antenna, can be realized in 65-nm SOI CMOS technology at 60 GHz with an operating range of about 20 cm. The 65-nm SOI CMOS technology represents a good candidate due to its better performance in terms of low-losses, low-power consumption and lower leakage current if compared with standard bulk process. The proposed circuit does not require complex package or bonding, thanks to the on-chip antenna, and it does not need battery. The low-cost technology and low-weight and low-area occupation are important features of this μRFID, especially if produced in large scale for the mass-market. Since the design of integrated antennas in silicon technology is one of the main challenge, especially for this proposal, two 60-GHz antennas have been designed by means of 3D-EM simulator: a CPW double-slot antenna and a CPS dipole one. The simulation results show a gain of 4.44 dBi and 3.23 dBi for the proposed double slot and dipole on-chip antennas, respectively.
机译:本文报告了在全球可用的免费60 GHz频段中用于μRFID应用的新型无源标签的可行性研究。可行性分析表明,采用片上天线的无源完全集成μRFID标签可以在65 GHz SOI CMOS技术中以60 GHz的频率实现,工作范围约为20 cm。 65纳米SOI CMOS技术是一个很好的选择,因为与标准的批量工艺相比,它在低损耗,低功耗和更低的泄漏电流方面具有更好的性能。由于采用了片上天线,因此所建议的电路不需要复杂的封装或键合,并且不需要电池。低成本技术以及低重量和低面积的占用是该μRFID的重要特征,特别是如果为大众市场大规模生产时。由于硅技术中集成天线的设计是主要挑战之一,特别是对于此提案,因此已经通过3D-EM仿真器设计了两个60 GHz天线:CPW双缝天线和CPS偶极天线。仿真结果表明,建议的双缝隙和偶极片上天线的增益分别为4.44 dBi和3.23 dBi。

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