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首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >Recent Advances on Linear Low-Dropout Regulators
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Recent Advances on Linear Low-Dropout Regulators

机译:线性低压丢失调节器的最新进展

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摘要

This brief revises the recent design trends of linear low-dropout regulators. The design issues and advantages of analog LDOs (ALDO) are discussed. High-performance operation and high rejection to supply noise when delivering large current values is a major advantage of the ALDO, but transient response when transitioning from standby operation to full load is a major issue; the main limitation is the slow charging/discharging of the large gate's capacitor of the pass transistor. This issue is more critical when designing full-on chip ALDOs, where large load capacitors are not available. Digital LDOs (DLDO) employ digital controllers that drive the segmented pass transistor, in most of the cases operate in triode region. The digital nature of the DLDO scales with the technology, but its rejection to supply noise is limited. Mixed-mode LDOs take advantage of the properties of both ALDO and DLDOs. Transient is managed by the agile DLDO and steady state operation is mainly handled by the clock glitch free ALDO. In this brief, all three architectures are revisited.
机译:此简要修改了最近的线性低压丢失调节器的设计趋势。讨论了模拟LDOS(ALDO)的设计问题和优势。高性能运行和高拒绝供电噪音在提供大电流值时是Aldo的主要优势,但在从待机操作到满载时转换时的瞬态响应是一个主要问题;主要限制是通过晶体管的大型栅极电容器的缓慢充电/放电。在设计全面的芯片ALDOS时,此问题更为关键,其中没有大负载电容器。数字LDO(DLDO)采用驱动分段通行证晶体管的数字控制器,在大多数情况下在三极管区域中运行。 DLDO秤的数字性质与技术,但其拒绝供应噪音有限。混合模式LDOS利用ALDO和DLDOS的属性。瞬态由敏捷DLDO管理,稳态运行主要由时钟故障ALDO处理。在此简介中,所有三种架构都被重新审视。

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