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Capacitor in series circuit

Started by saturated, Today at 02:53:26 PM

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saturated

I was doing the diode clamping experiment and got in over my head so I removed the diode to make things simpler

This is what I had

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Vin and Vout are almost in phase

When I connect the signal generator to the input I clearly observe Vout swinging from positive to negative ad infinitum both on a scope and multimeter

In an attempt to observe each sequence individually I input positive DC to Vin

But get nothing for Vout

I know yeah capacitors block DC but trying to figure out how AC can influence Vout but not DC

 :grr
Consumed by negative voltage ⚡

saturated

I had hit a brick 🧱 wall with this and needed some ideas so I tried it without the resistor just an open circuit

When I input DC now it's reflected on the other side of the capacitor

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Essentially Vin now equals Vout

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That said I bet now if I close the circuit that one side of the capacitor will discharge and be at zero

So I'm guessing my frustration at not being able to see isolated iterations of each sequence of the AC input circuit is because when I simply add DC and hold it there the other side discharges
Whereas input AC it's changing before the other side can react


Consumed by negative voltage ⚡

saturated

I flipped the power supply leads and the capacitor terminals to obtain the coveted negative DC  :tu:

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I have to remind myself that this stuff is not gonna do what I want it to do

Anyhow moving forward now maybe I can try to figure out a combination capacitor and resistor combination that would take the longest to discharge

Or a combo where I can input DC on one side and see it on the other side then slowly dissapate  :dbtu:

Consumed by negative voltage ⚡

g1

Cap will not let DC through, it will let AC through.  That's not really how it works but that's how I think of it.  (technically it will not allow actual current flow of any type through it)
So with the cap in series with the gen output, and resistor to ground, no DC will get through the cap. (by 'ground' I mean circuit common)
Try reversing the R1 and C1 positions to see the cap charge and discharge.

saturated

Yes sir thanks I tried a 1.5M resistor and that took too long to bleed down

I replaced with a 10k and that worked pretty good I could see the voltage bleed down whenever it was turned on or I increased

After that I put the meter and probes away and stuck an LED between resistor and ground and I had a visual indicator

The power supply side reaches a steady state and holds constant

But if the DC is increased there is a period where the other side of the capacitor shows the increase and then bleeds off  xP
Consumed by negative voltage ⚡