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Power management of the autonomous error-tolerant cell

机译:自主腐蚀细胞的电源管理

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This article presents power management scheme for a new circuit concept - the Autonomous Error-Tolerant (AET) cell - the inner functionality, interconnectivity and reconfiguration of which have been presented earlier. In order to meet reliability and energy efficiency objectives, a special power management strategy and implementation of this strategy are proposed. The power management system consists of power switches, a charge pump for a high voltage generation (for EEPROM cells) and a power management unit (PMU) for regulating and monitoring. The first part of the power management strategy focuses on the functionality of the power management system: we explain the function of power switches and assign design rules for them, propose a solution for high voltage generation, and present the basic blocks and functionality of the PMU. The second part of the strategy concentrates on the power distribution: different power distribution network topologies are used in different regions of the cell. The important aspect when designing the distribution strategy is the effect of power supply noise on the cell performance. Finally, we present the results for power supply noise analysis based on the estimates for silicon area and power consumption in the digital core (DC) of the AET cell in 0.18 μm technology.
机译:本文提出了新电路概念的电源管理方案 - 自主差错(AET)单元 - 在前呈现的内部功能,互连和重新配置。为了满足可靠性和能效目标,提出了一种特殊的电力管理战略和实施该策略。电源管理系统由电源开关,用于高压发电(用于EEPROM电池)的电荷泵和用于调节和监控的电源管理单元(PMU)。电源管理策略的第一部分侧重于电源管理系统的功能:我们解释了电源开关的功能并为它们分配了设计规则,提出了一种用于高压发电的解决方案,并呈现PMU的基本块和功能。该策略的第二部分集中在配电:不同的配电网络拓扑中用于细胞的不同区域。设计分配策略时的重要方面是电源噪声对电池性能的影响。最后,我们基于0.18μm技术的AET单元的数字核心(DC)中的硅面积估计和功耗的基于硅面积和功耗的电源噪声分析结果。

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