Earlier quoted context omitted.
I currently work in developmental flight test. Any time we add a new piece of electronics to an aircraft (or replace an existing piece with a new version), be it a radio, a computer, or test instrumentation, we have to conduct an Electromagnetic Compatibility (EMC) Safety of Flight Test (SOFT) to make sure that the new equipment does not interfere in any way with avionics that are critical to safety of flight. Even i…
Could you explain to what degree incidents of unexpected interference result in dangerous failure modes? Is that sort of follow-up analysis done?
Usually dangerous interference comes through hard-wired connections: a device that feeds back frequencies into the power system, which then disrupts other devices; or a device that puts noise on an avionics bus, disrupting communications on that bus.
However, sometimes a device, even a device not designed to transmit, can create significant RF interference. For example, a device that has an internal power supply or transformer of some sort. If that power supply is not working right, it might generate an oscillating signal. Maybe even the device itself is tolerant of a certain amount of oscillation in its power and so is not affected by this. Then, there just happens to be a wire inside the device, connected to the power supply that's just the right length to act as an antenna at that frequency, and now you've got an RF transmitter on your aircraft that you didn't expect or want. There are bazzillions of wires in most medium-to-large modern aircraft, and some of them are bound to be the right length to act as an antenna and receive that signal, passing interference into who-knows-what.
That example may sound highly unlikely, but it does happen.