Episode 18 ... replacing 1 opamp integrator with a 2 opamp version ...
The divider above kinda doesn't make sense ... obviously. And whatever the simulator produces - hardly applies to ..
OPA182 - doesn't work well either ... speed and frequency don't do well for a stable result, after a few iterations I switch to OPA205A
And here the divider comes as a major player for achieving a stable result:
Original, as from main schematic, 1K:100
So after some iterations I got 5K:511 (I have 300, 400, 511, 670, 820, and some 1K 10 ppm SMD so some variations can be done)
It works more or less, making around close to 4+ uV RMS noise ... and moving from 5K up or down .. makes the result worse .. even without moving much ... like 5K2 or 4K8 - result became worse.,
So kinda a 10:1 magic ratio .. and I need to stick to it.
Like 6K:511 - total disaster ..
( start with 10PLC, 20V range , shorted input)
https://imgtree.co/direct/qWoSJ0Sv.pngSimilarly, 4K:511
Then I move down: 4K, 3K, 2K with the same ratio .. where 4K, 3K give a bit worse result, 2K:200 - gives a very good result of 2.5 uV noise ..
1K:100 - therefore makes close to 4 uV noise ...
I have no clue of the reason for 10:1, even such result of going up or down by resistance ladder, but practically it is there ..
I have to involve Mechanical Mind (MM) for calculations, where it compares patterns, calculates noise per each 12-20 hour run, fragmentarily, like comparing specific time frame selections in a few runs and diagnosing which is better or worse ..
MM found out an interesting pattern that exists in measurements: 7 consecutive readings represent a wave up and down as average, and included it as part of the determination less - better, comparing 1, 3,5,10, 30 min fragments as less "wobbling" result etc...
So currently I do 500:50 which probably would be a bit better than 2K:200 .. ideally 2.1 uV , so P-P would be in 10 microvolt frame approximately , will see ..
it seems a second unit i need to review from that point of view , where no divider at all .... as well try ADA4077, instead opa205 , and maybe OPA187 ( regardless of elevated noise) ..