Wireless detonators and a mobile app replace manual ignition, reducing injury risk while enabling customizable fireworks sequences.
Molded cord openings direct sparks to fuses for reliable multi-article ignition.
A firework holder uses magnetic sensors to detect Earth's field and control burst timing for precise sky image orientation.
An inverted holder tray with legs secures fireworks in shape-matched openings, preventing them from falling over during ignition.
Bottom-mounted contacts on the control module prevent accidental consumer ignition while allowing authorized setup of pre-wired pyrotechnic devices.
A firework rocket sleeve maintains wide openings at both ends to allow easy insertion of effect charges before forming the base and cap regions.
Wireless firing module replaces manual lighting with automated electronic ignition, preventing user proximity errors during private displays.
Spring-biased shaft rotates fins about a single axis, eliminating complex multi-axis mechanisms and reducing system weight.
A fast-burning pyrotechnical fuse separates rocket stabilizers from the motor support structure.
A fireworks aerial display shell uses dual lift charges at opposite ends to propel the casing upward regardless of orientation.
An electrically ignited combination firework replaces burning cords with sealed containers and plug connectors, eliminating misfires in rainy weather.
Segmented cylindrical casings resolve manufacturing complexity while producing symmetrical pyrotechnic displays.