This paper proposes a real-time thermal monitoring method using embedded integrated\nsensor interfaces dedicated to industrial integrated system applications. Industrial sensor interfaces\nare complex systems that involve analog and mixed signals, where several parameters can influence\ntheir performance. These include the presence of heat sources near sensitive integrated circuits, and\nvarious heat transfer phenomena need to be considered. This creates a need for real-time thermal\nmonitoring and management. Indeed, the control of transient temperature gradients or temperature\ndifferential variations as well as the prediction of possible induced thermal shocks and stress at early\ndesign phases of advanced integrated circuits and systems are essential. This paper addresses the\ngrowing requirements of microelectronics applications in several areas that experience fast variations\nin high-power density and thermal gradient differences caused by the implementation of different\nsystems on the same chip, such as the new-generation 5G circuits.
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