安全的硬件架构,设计和性能低降稳压器LDO,以保护电源移动应用

S. Krit, M. Benaddy, B. E. Habil, M. E. Ouali, O. E. Meslouhi
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引用次数: 2

摘要

本文提出了一种新型的低降差电压调节器(LDO),并重点介绍了LDO的拓扑结构及其在无线传感器网络(WSNs)硬件安全保护方面的优势,该集成电路因其体积小、成本低而被认为是低功耗片上系统应用(SOC)的理想解决方案。低功耗设计的进步使得无处不在的设备可以由低功耗能源供电,如环境能量或小尺寸电池。在许多供电良好的设备中,与功率有关的问题本质上与成本有关。然而,对于低功耗设备,功耗问题不仅是经济问题,而且在功能方面也变得非常重要。由于可用的能量通常非常少或不稳定,工程师管理能量的方式成为该领域的关键点。因此,本文的另一个重点是试图找到提高电源安全管理问题的方法。互补金属氧化物半导体(CMOS)以其高密度、低功耗和低制造成本的特点,已成为集成电路设计的主导技术。整个集成电路行业仍将继续受益于每一代新半导体制造工艺带来的几何尺寸缩小。因此,本文只针对低功耗泛在器件提出了几种CMOS模拟集成电路设计技术。本文回顾了LDO稳压器的基础知识,并讨论了最新一代LDO的技术进步,使其成为许多点负载功率要求的首选解决方案。本文还将介绍CMOS LDO稳压器的特点,并讨论其在便携式电子应用中的独特优势。这些新设备为新的移动应用程序的电源管理安全提供了真正的优势。讨论了这些LDO结构的CMOS实现的功率效率和一些实际问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Security of hardware architecture, design and performance of low drop-out voltage regulator LDO to protect power mobile applications
This paper present a new Low Drop-Out Voltage Regulator (LDO) and highlight the topologies and the advantages of the LDO for hardware security protection of Wireless Sensor Networks (WSNs), this integrated circuits are considered as an ideal solution in low power System on-chip applications (SOC) for their compact sizes and low cost. The advancement in low-power design makes it possible that ubiquitous device can be powered by low-power energy source such as ambient energy or small size batteries. In many well supplied devices the problem related to power is essentially related to cost. However for low-powered devices the problem of power is not only economics but also becomes very essential in terms of functionality. Due to the usual very small amount of energy or unstable energy available the way the engineer manages power becomes a key point in this area. Therefore, another focus of this dissertation is to try finding ways to improve the security of power management problems. Complementary metal oxide-semiconductor (CMOS) has become the predominant technology in integrated circuit design due to its high density, power savings and low manufacturing costs. The whole integrated circuit industry will still continue to benefit from the geometric downsizing that comes with every new generation of semiconductor manufacturing processes. Therefore, only several CMOS analog integrated circuit design techniques are proposed for low-powered ubiquitous device in this dissertation. This paper reviews the basics of LDO regulators and discusses the technology advances in the latest generation of LDOs that make them the preferred solution for many points of load power requirements. The paper will also introduce characteristics of CMOS LDO regulators and discuss their unique benefits in portable electronics applications. these new device offer a real advantages for the power management security of new applications mobile. Power efficiency and some practical issues for the CMOS implementation of these LDO structures are discussed.
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