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This paper presents a DC analog testing technique based on a simple voltage comparison of the highest sensitivity-to-faults node, which is found by simulation. The technique is a structural, fault driven testing approach and can be applied to any analog circuit with very few extra added circuitry. A proof of concept has been implemented in a 65nm low-voltage transconductor, showing good fault coverage...
With continued scaling, reliability is emerging as a critical challenge for the designers of digital circuits. The challenge stems in part from the lack of computationally efficient techniques for analyzing and optimizing circuits for reliability. To address this problem, we propose an exact analysis method based on circuit transformations. Also, we propose a hybrid method that combines exact analysis...
We present a practical, systematical method for the evaluation of the soft error rate (SER) of microelectronic devices. Existing methodologies, practices and tools are integrated in a common approach while highlighting the need for specific data or tools. The showcased method is particularly adapted for evaluating the SER of very complex microelectronic devices by engineers confronted to increasingly...
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