i did not think testing at 2k rpm was a good idea. Oil pressure is way higher than at idle... this would hide a bearing knock-instead of making the sound easier to hear as it would with lower oil pressure at idle.
also... with the other things running.. like a alternator, bearings in the belt.. you have to figure out which one is making the noise.
not impressed... other than fooling the regulators that this is a good idea. its not....
It seemed to be a stretch (putting it very nicely) that a "pico" test would uncover incipient bearing failure.
The pico test is a vibration assessment using an externally mounted transducer
For one, an externally mounted transducer is not accurate enough to gauge a journal bearing's health. What is needed is a proximitor probe that directly measures shaft motion. From this data orbital plots and spectral plots and other plots can be made that show if the bearings are in distress.
GM is in no position to attempt this as there is no realistic way to put a prox probe near the bearings.
The only way an external transducer can work is if GM had solid reference plots and traces to go off of.
So when something passes or fails on this it is still a judgement call of sorts.
Secondly, this pico assessment is a snap shot in time.
Bearing condition is a continuum. When a bearing is for sure failed then a pico test with external transducer can show this. The spectrum will have broad noise floor and multiples of 1x running speed spikes. For sure the pico test could get this part of the continuum accurately.
But early stage failure won't be accurately captured (per the above). And change over time can't be assessed as this is a one time look at the bearings.
So the folks that pass the pico test only passed a very crude and inadequate assessment of the bearings.