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In this video, we use the Zetec MIZ-27 to demonstrate how impedance, amplitude, and phase rotation each play a role in interpreting eddy current signals on the impedance plane. This hands-on demo breaks down what happens to the signal when: • Amplitude increases due to flaw severity or size • Phase rotation changes based on flaw depth or type (surface vs subsurface) • Impedance shifts as a function of material properties or probe interactions By visualizing real-time signals during data acquisition, this video helps reinforce core principles in phase/amplitude data analysis, essential for both manual inspection and automated signal evaluation systems. What You’ll See in This Video: • Operation of the Zetec MIZ-27 in classic impedance plane mode • Live demonstration of phase and amplitude changes with flaw types • Discussion on how to interpret signal shape, angle, and position • Key concepts in signal vector analysis for flaw characterization Whether you’re new to impedance plane interpretation or refreshing your knowledge, this video will help you understand how signal movement reflects real-world flaws and inspection variables. Learn More: Check out more eddy current tutorials and historical insights at eddycurrent.com Hashtags: #ZetecMIZ27 #EddyCurrentTesting #ImpedancePlane #Amplitude #PhaseRotation #SignalAnalysis #NDT #NonDestructiveTesting #ECT #FlawCharacterization