
Here's an update:
I put the circuit in an acrylic box and all the wires go to plugs on the aluminum plate, so that it will be like plug'n'play
It looks messy with all the wires, but that's ok if everything works well. There are two plugs for each motor. One for timing and other for power. There are four switches so that I can switch each pair of coils on and off. This will allow me to adjust each phase of each motor separately to get the best timing and performance. There are also four red LEDs above the switches, each one indicates which pair of coils is currently running. Those red LEDs are great because with a 3k resistor at 12v they consume only 1mA each and still glow rather bright. The box has an acrylic cover with a hole cut in the middle right above the MOSFET's, this is intended for a cooling fan. So with a bit of luck, tomorrow both motors will run
If everything goes well, then all I will have left to do is find a good coupler to connect both axis together.
Thanks,
Jetijs

I don't know how I could make such a mistake. Also one of the rest six MOSFETs has and transil diode across the drain and source that is rated at 100V and not 400V as the rest. This makes the MOSFET oscillate in low frequency rather than turn it steady ON when the optoswitch triggers. I can easily chanfe the transil diode, but resoldering the inverted MOSFET driver will be hard if possible with the equipment I have. I guess that I will rather just disconnect the inverted driver from the rest of the circuit and solder another non-inverted driver somewhere else on the circuit board.
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