@dc42 Thanks for the reply --
Current plan is to eliminate the latency factor by dumping Octoprint and using a command line based version -- with Klipper, no processing is done by the board, it is all done by the rPi, so this should not be an issue but I will test it anyway.
- Mechanics shouldn't be an issue -- I am using the brand new sets of the following:
https://www.seemecnc.com/products/290mm-ball-cup-arm-set-of-6pcs?_pos=4&_sid=198d4b9cb&_ss=r
https://www.seemecnc.com/products/injection-molded-cheapskate-carriage-set?_pos=14&_sid=198d4b9cb&_ss=r
I suppose that I am using 10 year old belts -- I will look into replacing them if they are cheap enough.
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Probing speed -- I was testing the probing speeds to find repeatability and I found the best test combo that I got was 30mm/s with a 15mm lift after each tap.
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I am doing all of this testing cold, but I have not yet run filament through this nozzle yet, so it is clean (a new e3d v6 hotend).
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I am using a glass bed.
I will report back after removing octoprint and trying to use a command line based controller.
@T3P3Tony
For the sensitivity, I switched it to 35 and have been trying to move slowly to avoid triggering -- it does not work well. I tried 45 and had better repeatability than the default 50, but I still wasn't getting good enough reproducibility (supposedly it is recommended to have 0.025mm or below for accurate bed leveling).
I am doing the initial testing in the center of the bed, but the skipping occurs the further away I get from the center. It calibrates in a mesh-like fashion, tapping ~50mm out in every direction. I have significantly more issues the further I get from the center of the bed. Skipping tends to occur as I get closer to the A tower rather than the B or C tower.
I did check the squareness of the towers to the heated bed PCB and it appears to be square. The glass plate is not as square, but I thought that was the point of a sensor like this -- account for the variances in the glass plate height.
I don't know -- maybe I am missing something extremely basic here.