数字系统的范围随着系统可重编程性的增加而增加

S. Wunnava, A. Rodreguiez
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引用次数: 0

摘要

当今的数字系统设计主要是由软件驱动的。在一个典型的系统生命周期中,总是会有修订、升级和设计修改。按照惯例,必须将系统送回供应商进行升级,或者必须购买新系统。然而,在系统可重新编程性(ISR)的范围内,从远程位置重新编程系统硬件是可能的。升级后的设计代码可以使用系统内可编程接口(ISR)模块远程发送到需要升级的单元。这种能力将大大提高在线系统的修改,并减少系统改进所涉及的成本和交货时间。在本文中,作者讨论了ISR模块的体系结构,并给出了基于ISR的数字系统设计的案例研究。本文还探讨了ISR系统的能力和开发真正模块化和可扩展的数字系统设计的潜力,如通用串行和并行接口系统,微控制器等。什么可能是需要转换并口成串行,反之亦然?最快的解决办法是用更少的电线达到更远的距离。作者选择这种动态转换来介绍复杂可编程逻辑器件(cpld)和现场可编程门阵列(fpga)的功能,它们是可编程数字系统设计的现代器件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scope of digital systems increase with in system reprogrammability
Present day digital system designs are getting to be predominantly software driven. In a typical system life, there will always be revisions, upgrades, and design modifications. Conventionally, the systems have to be sent back to the vendors for upgrading, or new systems have to be bought. However, with the scope of in system reprogrammability (ISR), it is possible to reprogram the system hardware from a remote location. The upgraded design code can be remotely sent to the units to be upgraded using the in system re-programmable interface (ISR) modules. Such a capability will greatly enhance the modification of the systems on line and also cut down the costs and lead times involved in system enhancements. In this article, the authors discuss the architecture of the ISR modules and present the case studies of the ISR based digital system designs. The article also explores the ISR system capabilities and the potential of developing truly modular and expandable digital system designs such as universal serial and parallel interface systems, microcontrollers etc. What could be the need of converting a parallel port into serial and vice versa? The fast answer would be to reach longer distance with less wires. The authors have chosen this dynamic conversion to introduce the capabilities of the complex programmable logic devices (CPLDs), and the field programmable gate arrays (FPGAs), which are the modern devices for programmable digital system designs.
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