
Unmanned aerial vehicles (UAVs), commonly referred to as drones, are complex aerospace platforms integrating precise flight control systems, multi-axis propulsion and beyond-line-of-sight communication links. During high-frequency commutation and high-current drive of the electronic speed controllers (ESCs), extremely high induced surge transients and back-EMF events can occur, imposing significant voltage stress on power and signal circuits. Furthermore, GNSS navigation and high-definition image transmission antenna interfaces deployed outdoors are susceptible to electrostatic discharge (ESD) and lightning-induced transients, risking signal corruption or functional failure.
YINT Electronics’ drone protection solution applies multi-layer transient suppression and low insertion-loss signal protection. By integrating high-energy surge absorbers, ultra-fast transient voltage suppressors (TVS) and low-capacitance ESD protection elements at power, control and RF signal interfaces, this architecture effectively mitigates overvoltage stress, preserves the purity of navigation and data links, prevents unintended system resets, and ensures stable, uninterrupted performance throughout every take-off, landing and mission execution cycle.