Résumé
This study investigates the susceptibility of Automatic Gain Control (AGC) circuits to pulsed electromagnetic interference, focusing on the resulting dazzle time, which characterizes the duration of AGC disruption. Through experimental analysis and modeling, we identify internal AGC mechanisms, such as the error integrator and response asymmetry, that influence recovery dynamics. These insights contribute to optimizing Directed Energy Weapon (DEW) strategies for maximizing disruption efficiency in electronic systems.