disruptive interference, and these go a long way towards “hardening” a microprocessor
circuit against corruption. But they cannot eliminate the risk. The coincidence of a
sufficiently high-amplitude transient with a vulnerable point in the data transfer, both
in time and in the three dimensions of the pcb layout, is an entirely statistical affair. The
most cost-effective way to ensure the reliability of a microprocessor-based product is
to accept that the program will occasionally be corrupted, and to provide a means
whereby the program flow can be automatically recovered, preferably transparently to
the user. This is the function ...
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