Uploaded September 2022 | Updated September 2026, 2 weeks ago
In this video, I use an alternative approach to deriving the relationship between Vin and Vout for both an integrator op amp circuit and a differentiator op amp circuit. This alternative approach involves analysing the circuit in the frequency domain and then using an inverse laplace transform to bring the equation back into the time domain. Don't worry though, the transforms are really easy and you don't even need to understand Laplace transforms to see them in action.
Original Differentiator Video: youtu.be/FxUcTWuqAWI
Original Integrator Video: youtu.be/sKWQdUXOVZ8
To see other common operational amplifier configurations check out:
https://www.electronx.ca/education/op...
To see more content related to electrical and electronic circuits, check out:
electronx.ca
In this video, I use an alternative approach to deriving the relationship between Vin and Vout for both an integrator op amp circuit and a differentiator op amp circuit. This alternative approach involves analysing the circuit in the frequency domain and then using an inverse laplace transform to bring the equation back into the time domain. Don't worry though, the transforms are really easy and you don't even need to understand Laplace transforms to see them in action.
Original Differentiator Video: youtu.be/FxUcTWuqAWI
Original Integrator Video: youtu.be/sKWQdUXOVZ8
To see other common operational amplifier configurations check out:
https://www.electronx.ca/education/op...
To see more content related to electrical and electronic circuits, check out:
electronx.ca










