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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >An Efficient Electromagnetic-Physics-Based Numerical Technique for Modeling and Optimization of High-Frequency Multifinger Transistors
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An Efficient Electromagnetic-Physics-Based Numerical Technique for Modeling and Optimization of High-Frequency Multifinger Transistors

机译:基于电磁物理的高效数值技术,用于高频多指晶体管的建模和优化

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摘要

We present a fast wavelet-based time-domain modeling technique to study the effect of electromagnetic (EM)-wave propagation on the performance of high-power and high-frequency multifinger transistors. The proposed approach solves the active device model that combines the transport physics, and Maxwell's equations on nonuniform self-adaptive grids, obtained by applying wavelet transforms followed by hard thresholding. This allows forming fine and coarse grids in the locations where variable solutions change rapidly and slowly, respectively. A CPU time reduction of 75% is achieved compared to a uniform-grid case, while maintaining the same degree of accuracy. After validation, the potential of the developed technique is demonstrated by EM-physical modeling of multifinger transistors. Different numerical examples are presented, showing that accurate modeling of high-frequency devices should incorporate the effect of EM-wave propagation and electron-wave interactions within and around the device. Moreover, high-frequency advantages of multifinger transistors over single-finger transistors are underlined through numerical examples. To our knowledge, this is the first time in the literature a fully numerical EM-physics-based simulator for accurate modeling of high-frequency multifinger transistors is introduced and implemented.
机译:我们提出一种基于小波的快速时域建模技术,以研究电磁(EM)波传播对大功率和高频多指晶体管性能的影响。所提出的方法解决了结合了传输物理学和非均匀自适应网格上麦克斯韦方程的主动装置模型,该模型通过应用小波变换然后进行硬阈值获得。这允许在可变解分别快速变化和缓慢变化的位置形成细网格和粗网格。与统一网格相比,CPU时间减少了75%,同时保持了相同的准确性。验证后,通过多指晶体管的EM物理建模证明了开发技术的潜力。给出了不同的数值示例,表明对高频设备的精确建模应考虑到设备内部和周围的EM波传播和电子波相互作用的影响。此外,通过数字示例强调了多指晶体管相对于单指晶体管的高频优势。据我们所知,这是文献中首次引入并实现基于数值的基于EM物理学的仿真器,用于对高频多指晶体管进行精确建模。

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