Segmented chambers isolate high pressure from the eject mechanism, resolving stability issues while enabling reliable firing.
A paintball loader uses a rotating rotor body and spring-loaded abutment to push projectiles through a central outlet.
Sliding shuttle tube uses differential pressure variation for high-speed continuous firing, replacing vibration-prone electronic solenoid valves.
A gas generator launcher replaces hazardous propellants with on-demand gas production and adjustable venting for safe, precise projectile delivery.
A segmented communication member decouples nozzle retraction from port duration, minimizing space loss while extending bullet supply time.
An integrated adjusting trigger assembly moves a latch within retaining troughs to modify the buttstock length of a toy gun.
A plastic bottle launcher uses a check valve to manage air pressure for controlled projectile release.
A magnetic clutch system decouples drive rotation to protect paintballs and motors during loader jams.
A wireless projectile loader system uses sensors to detect firing operations and transmit signals to a motor controller for automated operation.
A pneumatic arrow gun uses a positioning sleeve to guide the projectile shaft, ensuring stable flight orientation during launch.
A latching loader mechanism uses a spring-biased gate to block the feed neck and prevent paintball loss during handling.
A movable piston stop with a coil spring absorbs impact forces, reducing kinetic energy and improving durability without complicating the mechanism.
An electric motor drives a rack and pinion piston to compress air, eliminating heavy high-pressure gas cylinders and reducing device weight.
An inclined working portion pushes out a concealed panel to replace the gas cartridge without visible protrusions.
A spring-loaded pellet loading mechanism positions projectiles accurately within sports rifle barrels.
Removable fins pivot to block exit while allowing entry, resolving the trade-off between secure closure and quick access during gameplay.
A toy gun pressure diverter directs gas volume through outlet holes of varying cross-sectional areas to control flow distribution.
Rotating cylinder chamber arranges projectiles in a circular pattern to increase capacity and ensure uniform ejection force from high pressure air.
A piston rolling body rotates inside the cylinder to convert sliding contact into rolling motion.
A toy gun separates the firing pin from the moving action assembly to eliminate spring fatigue interruptions during continuous running fire mode.