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Shifting the Frontiers of Analog and Mixed-Signal Electronics

机译:改变模拟和混合信号电子学的前沿

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摘要

Nowadays, analog and mixed-signal (AMS) IC designs, mainly found in the frontends of large ICs, are highly dedicated, complex, and costly. They form a bottleneck in the communication with the outside world, determine an upper bound in quality, yield, and flexibility for the IC, and require a significant part of the power dissipation. Operating very close to physical limits, serious boundaries are faced. This paper relates, from a high-level point of view, these boundaries to the Shannon channel capacity and shows how the AMS circuitry forms a matching link in transforming the external analog signals, optimized for the communication medium, to the optimal on-chip signal representation, the digital one, for the IC medium. The signals in the AMS part itself are consequently not optimally matched to the IC medium. To further shift the frontiers of AMS design, a matching-driven design approach is crucial for AMS. Four levels will be addressed: technology-driven, states-driven, redundancy-driven, and nature-driven design. This is done based on an analysis of the various classes of AMS signals and their specific properties, seen from the angle of redundancy. This generic, but abstract way of looking at the design process will be substantiated with many specific examples.
机译:如今,主要在大型IC的前端中发现的模拟和混合信号(AMS)IC设计高度专用,复杂且昂贵。它们构成了与外界通信的瓶颈,确定了IC的质量,良率和灵活性的上限,并且需要很大一部分功耗。在非常接近物理极限的情况下运行,面临着严峻的界限。从高级的角度来看,本文将这些边界与香农信道容量相关联,并说明了AMS电路如何在将针对通信介质优化的外部模拟信号转换为最佳片上信号时形成匹配链接。 IC媒体的数字表示形式。因此,AMS部件本身中的信号未与IC介质最佳匹配。为了进一步改变AMS设计的前沿,匹配驱动设计方法对于AMS至关重要。将解决四个级别:技术驱动,状态驱动,冗余驱动和自然驱动设计。这是基于对AMS信号的各种类别及其特定属性的分析(从冗余的角度来看)来完成的。这种看待设计过程的通用但抽象的方式将通过许多具体示例得到证实。

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