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Saving power by mapping finite-state machines into embedded memory blocks in FPGAs

机译:通过将有限状态机器映射到FPGA中的嵌入式存储器块来节省电力

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Modern FPGAs contain on-chip synchronous embedded memory blocks (SEMBs), these memory blocks can be used to implement control units, when not used as on-chip memory. In this paper, we explore the mapping of finite state machines (FSMs) into the SEMBs for power and area minimization. We have shown the SEMB based implementation of the FSMs and compared it with conventional flip-flop (FF) based implementation. The proposed implementation of the FSMs consumes less power and has lower area and routing overhead than the FF based approach and it can be clocked at the maximum clock frequency supported by the SEMBs. Experimental results show that the SEMB based FSM consumes 4% to 26% less power than the conventional implementation. In addition it is observed that the power consumption can be further reduced by stopping the clock to the SEMBs during the idle states.
机译:现代FPGA包含片上同步嵌入式内存块(SEMBS),这些内存块可用于实现控制单元,当不用作片上存储器时。在本文中,我们探讨了有限状态机(FSMS)的映射到SEMBS中的功率和区域最小化。我们已经显示了FSMS的SEMB实现,并将其与基于传统的触发器(FF)的实现进行了比较。所提出的FSMS实施消耗较少的功率,并且比基于FF的方法具有更低的区域和路由开销,并且可以在SEMBS支持的最大时钟频率下时钟。实验结果表明,基于SEMB的FSM消耗比传统实施的功率低4%至26%。另外,观察到,通过在空闲状态期间通过将时钟停止时钟可以进一步降低功耗。

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