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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Coplanar transmission lines on thin substrates for high-speed low-loss propagation
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Coplanar transmission lines on thin substrates for high-speed low-loss propagation

机译:薄基板上的共面传输线,用于高速低损耗传输

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摘要

We investigate the attenuation and phase velocity characteristics of coplanar strip (CPS) transmission lines designed for high-speed, low-loss propagation at sub-THz frequencies. Photoconductor switches driven by femtosecond optical pulses were used to generate propagating picosecond electrical transients. External electrooptic sampling was used to measure the time-domain impulse-response characteristics with subpicosecond time resolution. The finite-difference transmission-line-matrix (FD-TLM) numerical method was used to model picosecond pulse propagation on identical transmission lines. The experiment and the numeric simulations have clarified nonquasistatic high-frequency effects and were shown to agree over a 500 GHz frequency range. Additionally, analytic quasi-static velocity and characteristic impedance formulas have been verified and their frequency range of validity established for the investigated CPS geometries. Radiation into the substrate is the dominant loss mechanism at frequencies above /spl sim/100 GHz for the CPS lines on thick substrates. CPS transmission line fabrication on thin substrates has been proposed as a method for reducing high-frequency loss and increasing the microwave propagation velocity. CPS transmission lines fabricated on 8-/spl mu/m-thick Si membranes have been studied and demonstrated to possess the desired high-speed, low-loss properties.
机译:我们研究了共平面带(CPS)传输线的衰减和相速度特性,该传输线设计用于在次THz频率下进行高速,低损耗的传输。飞秒光脉冲驱动的光电导开关用于产​​生传播的皮秒电瞬变。外部电光采样用于以亚皮秒时间分辨率测量时域冲激响应特性。使用有限差分传输线矩阵(FD-TLM)数值方法对皮秒脉冲在相同传输线上的传播进行建模。实验和数值模拟已经阐明了非准高频效应,并证明在500 GHz频率范围内是一致的。此外,已经验证了解析准静态速度和特征阻抗公式,并为研究的CPS几何建立了有效的频率范围。对于厚基板上的CPS线,在高于/ spl sim / 100 GHz的频率下,辐射到基板是主要的损耗机制。已经提出了在薄基板上制造CPS传输线的方法,以减少高频损耗并提高微波传播速度。已经研究并证明了在8 / splμm/ m厚Si膜上制造的CPS传输线具有所需的高速,低损耗特性。

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