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Converter-Gating: A Power Efficient and Secure On-Chip Power Delivery System

机译:转换器选通:高效节能的片上功率传输系统

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摘要

Dynamic power management techniques and related voltage converter architectures are proposed to design a secure and efficient on-chip power delivery system. A new power management technique, converter-gating, that adaptively turns on and off individual stages of an interleaved switched-capacitor voltage converter based on the workload information to improve the voltage conversion efficiency is proposed. Converter-gating technique is further utilized as a countermeasure against side channel power analysis attacks by pseudo-randomly controlling the converter activity. A new method is proposed to improve the response time of the converter during transient load changes by adaptively configuring the conversion ratio of a switched capacitor voltage converter. The proposed converter is designed and verified using IBM 130 nm technology kit. The proposed system achieves 5% higher power conversion efficiency compared to conventional converters, improves the response time to transient load changes from 1.4 $mu{rm s}$ to 104 ns and reduces the correlation between the input current and load current.
机译:提出了动态电源管理技术和相关的电压转换器架构,以设计安全有效的片上功率传输系统。提出了一种新的电源管理技术,即转换器门控,它根据工作量信息自适应地打开和关闭交错式开关电容器电压转换器的各个级,以提高电压转换效率。通过伪随机控制转换器的活动,转换器选通技术还被用作对付边信道功率分析攻击的对策。提出了一种新方法,通过自适应地配置开关电容器电压转换器的转换比来改善瞬态负载变化期间转换器的响应时间。拟议的转换器是使用IBM 130 nm技术套件设计和验证的。与传统的转换器相比,所提出的系统实现了5%的更高的电源转换效率,将对瞬态负载变化的响应时间从1.4 µms缩短至104 ns,并降低了输入电流与负载电流之间的相关性。

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