{"type":"video","version":"1.0","html":"<iframe src=\"https://www.loom.com/embed/1b46d77e07894249828860203e230bfe\" frameborder=\"0\" width=\"1108\" height=\"831\" webkitallowfullscreen mozallowfullscreen allowfullscreen></iframe>","height":831,"width":1108,"provider_name":"Loom","provider_url":"https://www.loom.com","thumbnail_height":831,"thumbnail_width":1108,"thumbnail_url":"https://cdn.loom.com/sessions/thumbnails/1b46d77e07894249828860203e230bfe-4aa787fd462a0099.gif","duration":987.844,"title":"MODULE 2 - 4 - Creating Frequency Response Plots","description":"In this video, I walk you through the analysis of our experiments, focusing on the current injection of roughly 200 milliamps and how it affects the voltage magnitude response of the DUT across different frequencies. We explore the Bode and Nyquist plots to assess the signal quality and interpret the impedance characteristics, looking for healthy signal-to-noise ratios and the phase response. I emphasize the importance of saving all plots for further analysis, particularly for advanced techniques like Kramers chronic testing. Please ensure you save your plots and review the visualizations to prepare for our next steps."}