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Analysing Degradation Effects in Charge-Redistribution SAR ADCs

机译:分析充电再分配的降解效应SAR ADC

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Aging-sensitive technology nodes that are resulting in performance degradations in their electronic system implementations require aging simulations in advance for a more dependable design. Simulating time-domain aging effects in these electronic systems, especially in complex analog and mixed-signal systems like analog-to-digital converters, are time consuming and is often impossible for larger designs. The current paper investigates the degradation effects in the performance parameters of a mixed-signal system, a charge-redistribution successive approximation register (SAR) ADC, by using a system-level approach. In this approach the whole system has been divided into its sub-building blocks and the degradation effects of each individual building block have been incorporated into its system-level models. Furthermore, these system-level models have been simulated in LabVIEW in order to investigate the aging effects in static and dynamic performance parameters of a charge-redistribution SAR ADC due to the degradation in its building blocks. The sensitivity of the different static and dynamic performance parameters of the modelled ADC show that the presented technique is efficient to provide information about the aging effects to mixed-signal system designers and that they can use it to produce a more dependable design.
机译:导致其电子系统实现中的性能降级的老化敏感技术节点需要提前进行老化模拟以获得更可靠的设计。模拟这些电子系统中的时域老化效果,特别是在模数转换器等复杂的模拟和混合信号系统中,耗时,并且通常不可于更大的设计。目前纸张通过使用系统级方法研究混合信号系统的性能参数,电荷再分布率近似寄存器(SAR)ADC的劣化效应。在这种方法中,整个系统已被分成其子构建块,并且每个单独的构建块的劣化效果已结合到其系统级模型中。此外,在LabVIEW中已经模拟了这些系统级模型,以便在其构建块中的降解导致的静态和动态性能参数中的静态和动态性能参数中的老化效应。模型ADC的不同静态和动态性能参数的敏感性表明,所提出的技术是有效的,可以提供关于混合信号系统设计者的老化效果的信息,并且它们可以使用它来产生更可靠的设计。

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