"All programmable FPGA, providing hardware efficiency to software programmers"

I. Bolsens
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引用次数: 0

Abstract

Smart Systems create new challenges for semiconductor components that need to provide, at one hand, the ease of software programmability and, on the other hand, the capability of hardware efficiency. This dichotomy is driven by, on the one hand, the need for a software stack that supports flexibility, scalability, fast development cycles and, on the other hand, the need for hardware optimization to support performance, efficiency and cost. In this talk, we will discuss the technical trends in major market segments such as datacenters, 5G wireless infrastructure and software defined networking and the resulting requirements for semiconductor platforms, both from hardware and software perspective. To provide an answer to these challenges, it will be demonstrated on how FPGA technology is evolving from a programmable hardware solution catering to ASIC refugees towards an All Programmable architecture empowering system and software engineers.
全可编程FPGA,为软件程序员提供硬件效率
智能系统为半导体组件带来了新的挑战,一方面需要提供软件可编程性的易用性,另一方面需要提供硬件效率的能力。这种二分法的驱动因素一方面是对支持灵活性、可伸缩性、快速开发周期的软件栈的需求,另一方面是对支持性能、效率和成本的硬件优化的需求。在本次演讲中,我们将从硬件和软件的角度讨论数据中心、5G无线基础设施和软件定义网络等主要细分市场的技术趋势以及由此产生的对半导体平台的要求。为了提供这些挑战的答案,它将展示FPGA技术如何从可编程硬件解决方案发展到面向ASIC难民的全可编程架构,为系统和软件工程师提供支持。
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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