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The design of an LLC resonant converter may be a time-consuming process as it takes several iterations to be performed to get the final tank values. The conventional way to design is using First Harmonic Approximation (FHA) method where the input is approximated as a sinusoidal source at resonant frequency. Using this assumption, the transfer function is calculated for the simplified model and the resonant gain curves are being plotted to calculate the initial tank values. On obtaining the initial value, the iterations must be performed on model/test-bench to further tune the tank values which takes a lot of time and effort to reach the final design. Hence, to save the time, what if the resonant gain curves are plotted on a real time design/model to avoid any approximations and the final design values can be obtained in a single step. But the challenge here is to plot the good resonant gain curves which requires around 4000 iterations. This can be easily done with the Python API feature of our new generation tool – SIMBA with speed and accuracy