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Soft-core eFPGA for Smart Power applications

机译:适用于智能电源应用的软核eFPGA

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Nowadays Smart Power technologies are demanding smarter devices to give the opportunity of end-user customizations to reach best-in-class efficiency in applications such as sensing and power conversions. Reconfigurable devices - in the form of embedded FPGA (eFPGA) - can represent an effective solution to address such demand. Differently from CMOS world, where reconfigurable technologies have been widely proposed in the last two decades to couple flexibility and NRE costs reduction, eFPGAs targeting Smart Power applications is a new challenge that we can face today thanks to recent improvement of the digital capabilities of such technologies. In this paper we explore the implementation of a soft-core eFPGA tailored for Smart Power applications targeting STMicroelectronics BCD9s 0.11 μm technology. Area-optimized and speed-optimized implementations prove the existence of a significant design space, both in terms of area (~15%) and speed (~50%) variation. A set of benchmarking applications representative of different smart power fields (sigma-delta modulation, power management and motion control) have been mapped on a 16 CLBs eFPGA; the performance are discussed showing the potential added-value provided by reconfigurability.
机译:如今,智能电源技术要求更智能的设备,以提供最终用户自定义的机会,以在传感和电源转换等应用中达到一流的效率。可重新配置的设备(以嵌入式FPGA(eFPGA)的形式)可以代表一种解决此类需求的有效解决方案。与CMOS世界不同,在过去的20年中,人们广泛提出了可重新配置的技术来结合灵活性和降低NRE成本,而针对Smart Power应用的eFPGA是我们今天面临的新挑战,这是由于此类技术的数字功能最近得到了改进。在本文中,我们探索了针对智能功率应用而量身定制的软核eFPGA的实现,该器件针对意法半导体BCD9s 0.11μm技术。面积优化和速度优化的实现方式在面积(约15%)和速度(约50%)方面都证明了存在很大的设计空间。一组代表不同智能电源领域(sigma-delta调制,电源管理和运动控制)的基准测试应用程序已映射到16个CLB eFPGA上。讨论了性能,显示了可重构性提供的潜在增值。

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