Ok then... I'll get started with the PCB's design (using the SMT schottky that I mentioned) and then I'll come back with more news... Thanks for your help!It's just the coil. If you make the inductance higher the pulse will last longer. Same I think with higher current.
Well, I did change the pot's value to 10K as you suggested, but if I use 27K for the feedback resistor then current through the coil becomes too jagged... just change its actual 330K and see for yourself.Yes, If you leave the pot at 100k the resistor will need to be 270 or 333k. I'm just nit picking now.
The diode is a good one. very low Vf.
Edit:
I'm a slow typer. Our posts are crossing.
Tie the top of the pot to +12 instead of PWM and set it for about 0.15.Well, I did change the pot's value to 10K as you suggested, but if I use 27K for the feedback resistor then current through the coil becomes too jagged... just change its actual 330K and see for yourself.
I disagree... you're tired... whereas I'm exhausted...Tie the top of the pot to +12 instead of PWM and set it for about 0.15.
I think we are both tired.
Looks good. I added a diode to turn off the pwm at the end and hooked it up to the +12.Ron,
I'm thinking about using a DPDT relay switch to bypass the valve's original driver to the driver we've designed. This is because I want to make 100% extra sure that our driver's signals NEVER get mixed with the original computer's signals. Is there a way of doing this with mosfets and making it foolproof? That is, is there a solid state component that could act as a break-before-make switch for this application, and that if it ever fails it would NEVER short circuit both signals?
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