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Design of paper-substrate dipole antennas magnetically coupled to UHF RFID silicon chips

机译:磁耦合至UHF RFID硅芯片的纸质偶极天线设计

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This work investigates the design of a paper-substrate dipole antenna and its magnetic coupling to a UHF RFID chip. The magnetic coupling is realized by means of a heterogeneous transformer, the primary winding of which is implemented on the same paper-substrate of the antenna. The secondary winding, instead, is directly fabricated on the Si RFID chip, thus does not require for galvanic contacts between chip and antenna. The transformer insertion loss can be reduced to the device Maximum Available Gain (MAG) if a proper impedance termination of the primary (ZS,opt) and secondary (ZL,opt) windings is adopted. For the considered heterogeneous transformer the MAG is quite low and around −0.6 dB. Following this idea, a bow-tie dipole antenna is designed to meet ZS,opt at the operating frequency of 868 MHz. The antenna size is reduced by exploiting a meander line. As a result, the designed dipole features an overall length of about 40 mm. To the authors knowledge this is the first bow-tie antenna the design of which has been optimized for the magnetic RFID coupling concept.
机译:这项工作研究了纸基偶极天线的设计及其与UHF RFID芯片的磁耦合。磁耦合通过异构变压器实现,该变压器的一次绕组在天线的同一纸质基底上实现。相反,次级绕组直接在Si RFID芯片上制造,因此不需要芯片和天线之间的电流接触。如果原边(Z S,opt )和副边(Z L,opt )绕组被采用。对于所考虑的异构变压器,MAG非常低,约为-0.6 dB。按照这个想法,设计了一个领结偶极天线,以在868 MHz的工作频率下满足Z S,opt 。通过利用曲折线来减小天线尺寸。结果,设计的偶极子的总长度约为40毫米。据作者所知,这是首款蝶形天线,其设计已针对磁性RFID耦合概念进行了优化。

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