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Optimization design and simulation for a band-pass-filter with IPD technology for RF front-end application

机译:采用IPD技术的射频前端应用带通滤波器的优化设计和仿真

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摘要

A band-pass-filter (BPF) based on silicon substrate was designed and simulated. Different software was applied to design and simulate the character of the filter. A three-order filter was designed dedicating to range 2.4 GHz-2.5 GHz use. The ideal topology circuit was designed with passive inductors and capacitors. Moreover, the integrated passive devices (IPDs) were modeled and simulated with thin film process. To enhance the performance of the IPD, some typical factors were considered to optimize the physical model. The IC design tool and electromagnetic simulation software were used and compared to analysis the character of the filter, which demonstrated that the BPF can be applied to RF front-end system.
机译:设计并仿真了基于硅衬底的带通滤波器(BPF)。应用了不同的软件来设计和模拟滤波器的特性。设计了三阶滤波器,专用于2.4 GHz-2.5 GHz的范围。理想的拓扑电路设计有无源电感器和电容器。此外,利用薄膜工艺对集成无源器件(IPD)进行了建模和仿真。为了提高IPD的性能,考虑了一些典型因素来优化物理模型。通过使用IC设计工具和电磁仿真软件进行比较,分析了滤波器的特性,证明了BPF可以应用于射频前端系统。

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