I understand that the voltage levels shouldn't drop much below ground, but I prefer to stick with HP's choice to provide about -0.6V headroom there. I also don't want to play games with CMOS thresholds, etc., so I want to use switches that properly allow a split supply. I'm also not going to get stressed out about jitter right now.
I am willing to make a version using 4053's (or others) if that turns out to be necessary or beneficial. But unless help with testing is available, I'll probably start with the ADG's or any better one with a split supply.
These resistors are available in-stock with 0.2ppm TCR: 50k, 20k, 10k.
This is available in stock with 2ppm: 24k.
This is available in stock with 5ppm: 6k.
The remainder are available with 10ppm: 80k, 37.5, 16.7, 4.14.
Of course, we are discussing buying custom-ordered 80k's with 0.2ppm.
Except for the 0.2 ppm resistors, these are mostly inexpensive enough that you might as well use the best ones available. The real question is whether any of the others also need custom levels of ppm's. So is 5ppm for the 6k and 10 for the 4.14 good enough? Would you care to review them resistor by resistor and comment explicitly on any that need more attention?
Yes, a few of the footprints need to be changed to use cheap versions of the 80's and 50k, which I will definitely do to start with, but that is less than 5 minutes of work to change.
Unfortunately, I will probably have to redo the layout yet again, because I may need to go to the next size up still for the 80's and 50's. (It seems that higher resistances need larger areas to meet all specs, or else with the foil ones there just isn't enough range in a smaller package.)
If so, I probably won't be able to fit any switches inside the PGA area. Instead, I'll try to fit all the resistors inside the PGA area, and all switches outside. The problem is that the only room is to the right, and just a little to the left, with a cut-out needed to avoid an annoyingly-placed test point. (Then I started fantasizing that maybe all the resistors should be on their own tiny "hybrid" daughter-card. Hmm, maybe not.)
It's funny: When I look at the red and blue top and bottom metal in KiCad, what my brain incorrectly "sees" is polysilicon and metal1 in a CMOS circuit. And I keep using the (wrong) hot-keys from the CAD software I used 20 years ago. It drives me nuts!