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MagCAD: Tool for the Design of 3-D Magnetic Circuits

机译:MagCAD:3D磁路设计工具

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The post-CMOS scenario poses many challenges to researchers. Innovative solutions must be found to further improve electronic circuits. Exploiting the potential offered by the third dimension is clearly one of the best possibilities available. However, due to the lack of a simple and straightforward methodology, it is difficult to analyze and compare beyond-CMOS technologies. We tackle this challenge by presenting a framework that enables the design of 3-D circuits based on field-coupled technologies. The tool is called MagCAD and is part of the ToPoliNano design suite, created to design and simulate circuits based on emerging technologies by applying a top–down methodology. Right now, MagCAD supports the two main implementations of nanomagnetic logic (NML), the in-plane NML, and the perpendicular NML (pNML). However, it is designed to be easily extended to other beyond-CMOS technologies. Researchers can design pNML circuits by using MagCAD, which embeds design rules, physical models, and technological parameters. The compact model and the physical properties of these cells are based on experimental results. After the design phase, a register-transfer-level model of the circuit is automatically extracted by MagCAD. The model is written in VHSIC Hardware Description Language and has been validated through experiments. The extracted model can be simulated with fast HDL-simulators; this makes it possible to verify the behavior and extract the performance of the designed circuit. With MagCAD, designers have the possibility to easily design, simulate, and compare 3-D NML circuits, exploring the advantages provided by the third dimension freely.
机译:后CMOS方案对研究人员提出了许多挑战。必须找到创新的解决方案来进一步改善电子电路。充分利用三维空间提供的潜力显然是可用的最佳可能性之一。但是,由于缺乏简单明了的方法,因此很难分析和比较非CMOS技术。我们通过提出一个框架来解决这一挑战,该框架使基于场耦合技术的3D电路设计成为可能。该工具称为MagCAD,是ToPoliNano设计套件的一部分,该套件是通过使用自上而下的方法来设计和仿真基于新兴技术的电路的工具。目前,MagCAD支持纳米磁逻辑(NML)的两种主要实现方式,即面内NML和垂直NML(pNML)。但是,它被设计为可以轻松扩展到其他超越CMOS的技术。研究人员可以使用MagCAD设计pNML电路,其中嵌入了设计规则,物理模型和技术参数。这些细胞的紧凑模型和物理性质是基于实验结果的。在设计阶段之后,MagCAD将自动提取电路的寄存器传输级模型。该模型使用VHSIC硬件描述语言编写,并已通过实验验证。提取的模型可以使用快速的HDL仿真器进行仿真。这样就可以验证行为并提取设计电路的性能。借助MagCAD,设计人员可以轻松设计,仿真和比较3-D NML电路,从而自由地探索三维提供的优势。

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