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Design and Implementation of a Standard Cell Based Programmable Logic Core

机译:基于标准单元的可编程逻辑核心的设计与实现

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As process geometries shrink, the Non-Recurring Engineering (NRE) cost is increasing; the ability to make post-fabrication changes to System-on-Chip (SoC) is becoming more and more attractive. This ability can be realized by embedding a PLC (Programmable Logic Core) into a SoC. However, the design of PLC is a complex and daunting process; there are many issues to be addressed such as architecture, performance and flexibility. Most of these issues are related to design methodology. In this paper, a novel design method based on standard cells is proposed. With this method, not only bi-directional routing resources in the PLC fabric can be maintained which largely saves the area, but the semi-custom design approach can be adopted which greatly enhances design efficiency. In order to verify this method, a proof-of-concept PLC prototype has been designed and fabricated. Meanwhile, relevant CAD Tools have also been presented. The experimental results prove this design methodology. This paper also discusses the performance and the area of PLC designed with this method.
机译:随着工艺几何形状缩小,非经常性工程(NRE)成本正在增加;将制造后的芯片(SoC)进行制造改变的能力变得越来越有吸引力。通过将PLC(可编程逻辑核心)嵌入SOC,可以实现这种能力。但是,PLC的设计是一个复杂和艰巨的过程;有许多问题要解决,例如架构,性能和灵活性。这些问题中的大多数与设计方法有关。本文提出了一种基于标准电池的新型设计方法。利用这种方法,不仅可以维持PLC结构中的双向路由资源,这在很大程度上节省了该区域,而是可以采用半定制设计方法,这大大提高了设计效率。为了验证这种方法,设计和制造了概念验证PLC原型。同时,还提出了相关的CAD工具。实验结果证明了这种设计方法。本文还讨论了使用此方法设计的PLC的性能和面积。

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