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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Modeling, Design, and Verification for the Analog Front-End of a MEMS-Based Parallel Scanning-Probe Storage Device
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Modeling, Design, and Verification for the Analog Front-End of a MEMS-Based Parallel Scanning-Probe Storage Device

机译:基于MEMS的并行扫描探针存储设备的模拟前端的建模,设计和验证

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摘要

We present an integrated analog front-end (AFE) for the read-channel of a parallel scanning-probe storage device. The read/write element is based on an array of microfabricated silicon cantilevers equipped with heating elements to form nanometer-sized indentations in a polymer surface using integral atomic-force microscope (AFM) tips. An accurate cantilever model based on the combination of a thermal/electrical lumped-element model and a behavioral model of the electrostatic/mechanical part are introduced. The behavioral model of the electrostatic/mechanical part is automatically generated from a full finite-element model (FEM). The model is completely implemented in Verilog-A and was used to co-develop the integrated analog front-end circuitry together with the read/write cantilever. The cantilever model and the analog front-end were simulated together and the results were experimentally verified. The approach chosen is well suited for system-level simulation and verification/extraction in a design environment based on standard EDA tools.
机译:我们为并行扫描探针存储设备的读取通道提供了一个集成的模拟前端(AFE)。读/写元件基于配备有加热元件的微细硅悬臂梁阵列,使用集成原子力显微镜(AFM)尖端在聚合物表面形成纳米级的凹痕。介绍了一种基于热/电集总模型和静电/机械零件行为模型的精确悬臂模型。静电/机械零件的行为模型是根据完整的有限元模型(FEM)自动生成的。该模型完全在Verilog-A中实现,并用于与读/写悬臂一起共同开发集成的模拟前端电路。一起模拟了悬臂模型和模拟前端,并通过实验验证了结果。选择的方法非常适合在基于标准EDA工具的设计环境中进行系统级仿真和验证/提取。

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