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Planar bias-tee circuit using single coupled-line approach for 71–76 GHz photonic transmitters

机译:使用单耦合线方法的平面偏置三通电路,用于71–76 GHz光子发射器

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This paper presents a novel planar bias-tee (BT) circuit comprising a quarter-wave single coupled-line (SCL) section designed on 127 μm thick ROGERS RT/duroid 5880 laminate for E-band (71-76 GHz) wireless photonic transmitters. The BT circuit enables proper biasing for millimeter wave photodiodes (mm-wave PDs) through the RF-choke, and in addition, protects the hybrid integrated RF amplifier from being damaged by the DC voltage using the SCL DC-block. The planar RF-chock design is based upon two slotted split-ring resonators (SRRs) and is integrated in the DC bias line in order to prevent the leak of the RF signal into the voltage circuitry. Numerical results of the DC-block section show that in the entire 71-76 GHz band, the return loss (RL) is higher than 36 dB while the insertion loss (IL) is lower than 0.4 dB. The overall performance of the complete BT circuit (DC-block and RF-choke) has been calculated by the 3D full-wave electromagnetic field simulator based on the finite element method (RL > 20 dB, IL <; 0.6 dB and RF signal suppression in the DC bias line (IS) > 30 dB). A via hole fencing surrounds the BT circuit to reduce the RF propagation losses into the laminate and to ensure that the grounded coplanar waveguide (GCPW) supports only a quasi-static TEM mode.
机译:本文介绍了一种新颖的平面偏置T型(BT)电路,该电路包括四分之一波单耦合线(SCL)部分,该电路设计用于127μm厚的ROGERS RT / duroid 5880层压板,用于E波段(71-76 GHz)无线光子发射器。 BT电路可通过RF扼流圈对毫米波光电二极管(mm-wave PD)进行适当的偏置,此外,还可使用SCL DC模块保护混合集成RF放大器不受DC电压的损坏。平面RF塞设计基于两个开槽的裂环谐振器(SRR),并集成在DC偏置线中,以防止RF信号泄漏到电压电路中。直流阻塞部分的数值结果表明,在整个71-76 GHz频带中,回波损耗(RL)高于36 dB,而插入损耗(IL)低于0.4 dB。完整的BT电路(DC块和RF扼流圈)的整体性能已通过3D全波电磁场模拟器基于有限元方法(RL> 20 dB,IL <; 0.6 dB和RF信号抑制)进行了计算直流偏置线(IS)> 30 dB)。 BT电路周围有一个通孔围栅,以减少进入层压板的RF传播损耗,并确保接地的共面波导(GCPW)仅支持准静态TEM模式。

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