A shared compressed air reservoir feeds both ballast emergency inflation and weapon ejection, cutting submarine weight and space while preserving safe discharge control.
Removable payload module with common interface enables quick mission swapping on catamaran hulls, reducing fleet complexity and reconfiguration time.
An integrated hydraulic piston and pressure accumulator system ejects weapons quietly while maintaining pressure integrity.
Mechanical push chain replaces compressed air to reduce noise while ejecting non-self-propelled mines.
Dynamic buoyancy control enables submerged transport and automatic surfacing, eliminating detection risks from manual retrieval operations.
A spring-based damping module smooths force impulses during underwater body acceleration.
A projectile launch detector employs a sliding mast mechanism to resolve the contradiction between detection reliability and torpedo operational disruption.
A compressed water ejection device uses a piston rod blind hole to house the brake piston for controlled power transmission.
Double-action cylinder uses segmented gas and liquid chambers to eject underwater weapons.
A submarine weapon trough uses a pivoting retaining pawl to form-fit secure weapons against the retaining bracket.
Axially sliding screw with elastic return element absorbs violent ejection impact, protecting rotating shafts from damage during underwater projectile launch.
Vertical access opening enables quick insertion of removable munition chargers through a thin hull orifice, eliminating complex circular sliding paths.
Replacing pneumatic rammers, the system uses electromagnetic actuation to control ejection force and reduce manual operations.
Variable diaphragm fluidic retarders adapt geometry to resolve cavitation and excessive thrust in submarine launch systems.
An explosive gas generator propels a torpedo via an inflatable bag, eliminating compressed air maintenance and enabling back-propeller launches.
Compressed gas in a piston accumulator generates counterforce to slow braking pistons, eliminating impact noise and enabling rapid rearming.
Shared launch means move between tubes to eliminate manual handling risks and boost reloading rates.
Nested hydraulic cylinders resolve axial size constraints while gas-preloaded accumulators eliminate bubble generation during ejection.
Segmenting the rotary disc into independent spring and diaphragm valves resolves complexity and inspection difficulties in sequential buoy ejection.
Water impulse floods containment canisters to expel multiple small diameter vehicles, increasing launch capacity without adding launcher complexity.
Segmented open support structure guides submersible bodies through ejection tubes while allowing free water flow around the payload.
Interchangeable cassettes use peripheral fixing strips to maintain mechanical strength while enabling easy maintenance.
A land-based carrier system transports and deploys underwater vehicles using a boom and cage mechanism for controlled vertical lowering.