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首页> 外文期刊>Journal of Low Power Electronics >A Configurable Architecture to Limit Inrush Current in Power-Gated Reconfigurable Devices
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A Configurable Architecture to Limit Inrush Current in Power-Gated Reconfigurable Devices

机译:可配置架构,可限制电源门控可重配置设备中的浪涌电流

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摘要

Power gating is an effective technique to reduce static power consumption in integrated circuits. One of the important challenges in power gating architectures is the wakeup current that results from activating blocks in the design after their idle periods end. This wakeup current, also known as inrush current, may cause malfunction of the design. Although solutions exist in power-gated application-specific integrated circuits (ASICs) for this problem, these solutions are fixed and not suitable for reconfigurable devices such as field-programmable gate arrays (FPGAs). In reconfigurable devices, an application is mapped to the device in the field, which means that there is not enough information about inrush current requirements when the chip is fabricated. In this paper we propose a configurable architecture that limits inrush current in power-gated reconfigurable architectures to a safe level. The proposed architecture is configurable to satisfy the inrush current requirements that different applications may experience during the activation phase of power-gated modules. We investigate the different tradeoffs associated with the proposed architecture. Our results show that the area and power overheads of the proposed inrush current limiting architecture are negligible.
机译:电源门控是减少集成电路中静态功耗的有效技术。电源门控架构中的重要挑战之一是唤醒电流,该唤醒电流是由于在空闲周期结束后激活设计中的模块而产生的。此唤醒电流(也称为浪涌电流)可能会导致设计故障。尽管针对此问题在电源门控专用集成电路(ASIC)中存在解决方案,但是这些解决方案是固定的,不适合于可重新配置的设备,例如现场可编程门阵列(FPGA)。在可重新配置的设备中,应用程序被映射到该设备的现场,这意味着在制造芯片时没有足够的有关浪涌电流需求的信息。在本文中,我们提出了一种可配置架构,该架构将电源门控可重配置架构中的浪涌电流限制在安全水平。所提出的体系结构可配置为满足不同应用在电源门控模块激活阶段可能遇到的浪涌电流要求。我们研究与建议的体系结构相关的不同权衡。我们的结果表明,提出的浪涌电流限制架构的面积和功率开销可以忽略不计。

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