The one for the slow schmitt trigger oscillator changes the time the motor will run at a certain speed, i.e. the output of the LM258 should be constant.good to hear. by adjusting the pots what should be taking place? what should I be looking for?
there's a total of 3. the first I in 500k that sits in between pin 1 and 2 of the 40106 (replaces to 220k in the top left of the schematic)
the second is a 100k (replaces 100k) that sits between the positive input of the op amp and ground.
the third is a 20k (replaces 15k) that sits between the negative and the output of the op amp.
The offset will change the midpoint of the via pin 5 of the 555 adjustable freq range.thanks. what does changing the offset of the voltage at the output effect? and what about the 500k pot?
I have to go get a switch and a 10 nF capacitor so that I can turn the random on and off.
Great.so, I hooked the pseudo random portion up and got it hooked up to the scope. the output voltage has been jumping around from 3.11v to a max of 9.45v. the one thing that I adjusted that I would prefer to stay is the 500k pot. I have it turned all the way to max resistance because it slows down the the intervals at which each change happens. is it ok to leave it there?
which capacitor are you talking about?You can either leave it adjusted to 500k or increase the capacitor at the logic gate input.
I see, it's the timebase, it's set to 50us. Set it to a 1sec or more, the screen should then show the different levels of voltage on one screen.That was the picture, it was set on voltage, the wave that it displayed was very small. With my lack of knowledge on how to use this scope, what setting does it need to be on?
10uF at the input of the 40106.which capacitor are you talking about?
I figured it out, standby I am uploading pictures right now.Nice work. I can't see anything on the scope screenshot though. It says "waiting for trigger". Is this the right one? I would be interested in seeing the waveform.
I can definitely do that for you.Maybe you can later post a picture also with the 500k pot adjusted to a lower value, so that more jumps are visible on the screen and one gets a better idea of the randomness.. (but that's not really important, it's personal interest.)
everything that is NOT inverted is on the logic board (except the 1Meg pot)You do have a bypass capacitor on the ICs power supply pins, right?
It will also affect the frequency.With the random portion on do I need to have the 1 Meg pot? what will that change when the random portion is on?
yes there is one 100nF cap.With bypass cap I meant the 100nF near the LM258 on the random schematic.
I completely understand now.It will also affect the frequency.
For the simulation I just left it at 1M.
I see that if you wanted the random part to always act in the same way, the 1M pot value should be fixed when random is ON.
Example: You adjust random pots (gain/offset) to work the way you want, then switch to random OFF, then adjust the 1M to e.g. 750k and then switch back to random ON, it will not behave the same way.
If the 1M is the big potentiometer I've seen on the pictures, that shouldn't be a problem.
You calibrate the random part the way you need it (once) and everytime you turn random ON you adjust the pot back to 1M.
It could be done automatically but this will cost you more time (and a few more components)
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