Alternating pyrotechnic and optional delay layers create bright multicolor strobing visibility without batteries or electronic flare complexity.
An embedded fire-select multiplexer uses polling lines to expand legacy firing lines for up to 48 countermeasure payloads.
Segmented fuel particles in a pyrotechnic decoy mass create a realistic infrared signature to deceive modern seeker heads.
Alternating reactive foil layers ignite flare grains via exothermic reactions, eliminating toxic conventional materials and reducing fabrication hazards.
A boron and potassium ferricyanide flare composition delivers high infrared intensity.
A pyrotechnic ignitor uses a processor to delay voltage transmission from a storage component for precise break charge firing.
A flare apparatus expels a cup containing pyrotechnic compositions to generate visual and audible artifacts downrange.
A thermic lance uses a combustible plastic fuse ignited by electrical or friction means for safe remote activation.
A porous structure maintains higher gas pressure on the active mass surface, ensuring reliable burning at high altitudes despite low oxygen levels.
Articulated pulling member with film hinges collapses for compact storage, eliminating manual knotting and sealing the ignition device against moisture.
A portable light-emitting apparatus uses a near-field wireless communication unit to transmit and receive light emission modes for synchronized operation.
Solvent-free casting of perfluoropolyether flare compositions eliminates flammable solvent hazards and electrostatic discharge sensitivity during manufacturing.
A reusable fireworks launcher uses a high density polyethylene reinforcing sleeve to withstand internal pressure.
An electro-mechanical system replaces pneumatic fixtures to eliminate moisture freezing in cold weather while automating flare grain processing.
A trip flare integrates a flash bang charge via a flexible tether to produce intense light and noise for area deterrence.
A multi-part chemical reaction system generates light and heat simultaneously using oxalate esters and peroxides.
A torch flame holding body uses a catalyst to maintain stable combustion through catalytic gas burning.
Direct casting of PFPE flare compositions eliminates hazardous solvent drying steps while maintaining infrared emission performance.
Simultaneous compression of primer and main compositions eliminates weak paste interfaces, resolving cohesion reliability issues in pyrotechnic blocks.