English

The Metastable Behavior of a Schmitt-Trigger

Other Computer Science 2020-06-16 v1

Abstract

Schmitt-Trigger circuits are the method of choice for converting general signal shapes into clean, well-behaved digital ones. In this context these circuits are often used for metastability handling, as well. However, like any other positive feedback circuit, a Schmitt-Trigger can become metastable itself. Therefore, its own metastable behavior must be well understood; in particular the conditions that may cause its metastability. In this paper we will build on existing results from Marino to show that (a) a monotonic input signal can cause late transitions but never leads to a non-digital voltage at the Schmitt-Trigger output, and (b) a non-monotonic input can pin the Schmitt-Trigger output to a constant voltage at any desired (also non-digital) level for an arbitrary duration. In fact, the output can even be driven to any waveform within the dynamic limits of the system. We will base our analysis on a mathematical model of a Schmitt-Trigger's dynamic behavior and perform SPICE simulations to support our theory and confirm its validity for modern CMOS implementations. Furthermore, we will discuss several use cases of a Schmitt-Trigger in the light of our results.

Cite

@article{arxiv.2006.08319,
  title  = {The Metastable Behavior of a Schmitt-Trigger},
  author = {Andreas Steininger and Jürgen Maier and Robert Najvirt},
  journal= {arXiv preprint arXiv:2006.08319},
  year   = {2020}
}

Comments

8 pages, 12 figures, 2016 22nd IEEE International Symposium on Asynchronous Circuits and Systems (ASYNC)

R2 v1 2026-06-23T16:19:55.065Z