推动摩尔定律的边界,从FPGA过渡到全可编程平台

I. Bolsens
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引用次数: 2

摘要

自诞生以来,fpga在容量和架构上发生了重大变化。我们今天使用的设备被要求解决早期设备无法解决的混合信号、高速通信、信号处理和计算加速问题。该架构已向“全可编程”平台发展,将多种可编程技术融入复杂的互连基础设施中,如今,该基础设施跨越了一个封装中的多个芯片的边界。随着设备的功能和复杂性不断增长,新的设计工具和方法被提出。我们将讨论未来需要解决的技术挑战,以便继续推动集成的边界。
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Pushing the boundaries of Moore's Law to transition from FPGA to All Programmable Platform
Since their inception, FPGAs have changed significantly in their capacity and architecture. The devices we use today are called upon to solve problems in mixed-signal, high-speed communications, signal processing and compute acceleration that early devices could not address. The architecture has evolved towards an "All Programmable" platform that immerses multiple programmable technologies into a complex interconnect infrastructure that, today, spans the boundary of multiple dies in one package. As the devices continue to grow in capability and complexity, new design tools and methodologies are being proposed. We will discuss future technology challenges that need to be solved in order to continue pushing the boundary of integration.
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