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Large-Scale Field-Programmable Analog Arrays for Analog Signal Processing

机译:用于模拟信号处理的大规模现场可编程模拟阵列

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Field-programmable analog arrays (FPAAs) provide a method for rapidly prototyping analog systems. Currently available commercial and academic FPAAs are typically based on operational amplifiers (or other similar analog primitives) with only a few computational elements per chip. While their specific architectures vary, their small sizes and often restrictive interconnect designs leave current FPAAs limited in functionality and flexibility. For FPAAs to enter the realm of large-scale reconfigurable devices such as modern field-programmable gate arrays (FPGAs), new technologies must be explored to provide area-efficient accurately programmable analog circuitry that can be easily integrated into a larger digital/mixed-signal system. Recent advances in the area of floating-gate transistors have led to a core technology that exhibits many of these qualities, and current research promises a digitally controllable analog technology that can be directly mated to commercial FPGAs. By leveraging these advances, a new generation of FPAAs is introduced in this paper that will dramatically advance the current state of the art in terms of size, functionality, and flexibility. FPAAs have been fabricated using floating-gate transistors as the sole programmable element, and the results of characterization and system-level experiments on the most recent FPAA are shown.
机译:现场可编程模拟阵列(FPAA)提供了一种用于快速制作模拟系统原型的方法。当前可用的商业和学术FPAA通常基于运算放大器(或其他类似的模拟基元),每个芯片只有几个计算元素。尽管它们的特定体系结构各不相同,但它们的小​​尺寸和经常受限的互连设计使当前的FPAA的功能和灵活性受到限制。为了使FPAA进入诸如现代现场可编程门阵列(FPGA)之类的大规模可重新配置设备的领域,必须探索新技术来提供面积有效的可编程可编程模拟电路,该电路可轻松集成到较大的数字/混合-信号系统。浮栅晶体管领域的最新进展已经导致了一种具有许多上述特性的核心技术,而目前的研究表明,一种可数字控制的模拟技术可以直接与商用FPGA配合使用。通过利用这些进步,本文介绍了新一代的FPAA,它将在尺寸,功能和灵活性方面大大提高当前的技术水平。已经使用浮栅晶体管作为唯一的可编程元件制造了FPAA,并显示了对最新FPAA的表征和系统级实验的结果。

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