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MIDAS: Automated Approach to Design Microwave Integrated Inductors and Transformers on Silicon

机译:MIDAS:在硅上设计微波集成电感器和变压器的自动化方法

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摘要

The design of modern radiofrequency integrated circuits on silicon operating at microwave and millimeter-waves requires the integration of several spiral inductors and transformers that are not commonly available in the process design-kits of the technologies. In this work we present an auxiliary CAD tool for Microwave Inductor (and transformer) Design Automation on Silicon (MIDAS) that exploits commercial simulators and allows the implementation of an automatic design flow, including three-dimensional layout editing and electromagnetic simulations. In detail, MIDAS allows the designer to derive a preliminary sizing of the inductor (transformer) on the bases of the design entries (specifications). It draws the inductor (transformer) layers for the specific process design kit, including vias and underpasses, with or without patterned ground shield, and launches the electromagnetic simulations, achieving effective design automation with respect to the traditional design flow for RFICs. With the present software suite the complete design time is reduced significantly (typically 1 hour on a PC based on Intel® Pentium® Dual 1.80GHz CPU with 2-GB RAM). Afterwards both the device equivalent circuit and the layout are ready to be imported in the Cadence environment.
机译:在微波和毫米波下运行的硅上现代射频集成电路的设计需要集成几种螺旋电感器和变压器,而这些电感器和变压器在该技术的工艺设计工具包中是不常见的。在这项工作中,我们介绍了一种用于微波电感器(和变压器)的硅上自动化设计(MIDAS)的辅助CAD工具,该工具利用了商业仿真器并允许实现自动设计流程,包括三维布局编辑和电磁仿真。详细地说,MIDAS允许设计人员根据设计条目(规格)得出电感器(变压器)的初步尺寸。它为特定的工艺设计套件绘制了电感器(变压器)层,包括通孔和地下通道(带有或不带有图案化的接地屏蔽),并启动了电磁仿真,实现了针对RFIC的传统设计流程的有效设计自动化。使用当前的软件套件,可以大大缩短整个设计时间(在基于Intel®Pentium®Dual 1.80GHz CPU和2GB RAM的PC上通常减少1小时)。之后,设备等效电路和布局都可以在Cadence环境中导入。

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