A damping layer filters high-frequency impact signals so projectile piezoelectric sensors can distinguish hard targets from soft objects and avoid false detonation.
An airflow-driven generator behind the fuze nose replaces hazardous batteries while preserving sensor field of regard and long-range power.
A solid-state sensor captures setback before power activation, enabling earlier fuze arming and safer electronic integration across munitions.
Mode-selectable ignition logic switches between simultaneous and delayed pulse firing while inhibiting later ignition after impact.
Air gap transformer transfers modulated current to guided missiles, eliminating wired connections while maintaining reliable power delivery.
A miniature inertial igniter converts firing acceleration into electrical charge via a piezoelectric element to trigger pyrotechnic materials.