Implementation of the Silicon Track Card (STC) as a system-on-a-programmable-chip (SOPC)

A. Lalam, R. Perry
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引用次数: 1

Abstract

The current paper details implementation of the Silicon Track Card (STC) card using a programmable logic device (PLD) for the DZERO (D0) upgrade currently underway at Fermi National Accelerator Laboratory (FNAL), Batavia, Illinois. This project is a collaboration between researchers from the Department of Electrical and Computer Engineering, Florida Agricultural and Mechanical University-Florida State University (FAMU-FSU) College of Engineering, researchers from High Energy Physics (HEP), Florida State University and High Energy Physics, Boston University (BU). The STC project is based on the specifications provided by the researchers at BU and a preliminary STC module designed using the Very High Speed Integrated Circuit (VHSIC) hardware description language (VHDL). The upgraded STC has a modified memory map and a new Level 3 (L3) buffer module. Traditionally discrete components of memory and processor cores were externally connected, while current implementation aims at configuring them into a single device, thus increasing general system performance by decreasing board area and time delays associated with transmission lines on the printed circuit board. The STC targets the Advanced Programmable Embedded MatriX (APEX) family of PLDs developed by Altera Corporation.
硅磁道卡(STC)作为可编程芯片上系统(SOPC)的实现
目前的论文详细介绍了硅轨道卡(STC)卡使用可编程逻辑器件(PLD)进行DZERO (D0)升级的实现,目前正在伊利诺伊州巴达维亚的费米国家加速器实验室(FNAL)进行。该项目由佛罗里达农业与机械大学-佛罗里达州立大学(FAMU-FSU)工程学院电气与计算机工程系、佛罗里达州立大学高能物理(HEP)和波士顿大学高能物理(BU)的研究人员合作完成。STC项目基于BU研究人员提供的规格和使用超高速集成电路(VHSIC)硬件描述语言(VHDL)设计的初步STC模块。升级后的STC具有修改的内存映射和新的3级(L3)缓冲模块。传统上,存储器和处理器核心的分立组件是外部连接的,而当前的实现旨在将它们配置为单个设备,从而通过减少电路板面积和与印刷电路板上传输线相关的时间延迟来提高总体系统性能。STC针对Altera公司开发的高级可编程嵌入式矩阵(APEX)系列pld。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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