SEBROVA
OUT OF CHARACTER INFORMATION
- Intent: To create ordnance based on depth charges.
- Image Source: Oliver Westgate, Artstation (x)
- Canon Link: Seismic Charge, Void-7, Cluster Bomb
- Permissions: N/A
- Primary Source: Depth Charge
- Manufacturer: Primo Victorian
- Affiliation: Primo Victorian | Closed-Market [Contract Thread Required]
- Model: VSC-MK77M3 "Sebrova"
- Modularity: No
- Production: Semi-Unique
- Material:
- Classification: Seismic Charge, Cluster Bomb
- Size: Large
- Weight: Heavy
- Explosive Type: Baradium + Collapsium
- Delivery Method: Self-Propelled
- Effective Range: Long Range
- Area Of Effect: Large
- Stopping Power: High
- Nanoparticle packed liquid baradium with collapsium gas within durasteel.
- Magnetized grenades, nanoparticle packed liquid baradium with pellets of collapsium gas.
- A supercharged electromagnetic disk at the front and back, separated by reinforced duraplast.
- A self-propelled rocket engine, separated by impervium (cut for fragmentation).
- Emergency detonator, contact fuzed detonation.
- Dead-motion triggers linked to the propulsion system with beryllium/detonite-thermite center.
- Mounted sensors/internal tracking and guidance systems.
- Field disruptor emitters/anti-ion case materials.
- Seismic: Works much like a seismic charge in capturing the sound after an explosion with destructive results.
- Secondary: Contains smaller magnetized grenades that create secondary explosions with the same effects as a seismic charge itself.
- Counters: Can be intercepted by other missiles/starfighters.
Developed by Ryssa Yvarro and a team of engineers at Primo Victoria, the Sebrova was designed to create a more destructive seismic charge. It combined what the team already knew of the devices with cluster bombs and the goal of propagating secondary explosions. To this end, they placed magnetized grenades within the device these grenades are surrounded with nanoparticle packed liquid baradium with collapsium gas.
At the center of this bomb is a dead-motion explosive, the dead-motion device is linked to the bomb's propulsion system and is a detonite impregnated thermite over capsules of beryllium. This triggers only when the propulsion has stopped and the primary explosives have not been detonated. This is a failsafe device to ensure the bomb does go off even when intercepted or stopped by enemy starfighters/anti-missile counters.
If the device does not detonate via electromagnetic disks, an emergency detonator will via contact fuze ensures that the device detonates upon impact with the target. The Sebrova is equipped with field disruptor emitters, guidance systems, internal tracking, and monitoring systems along with onboard sensor nodes to determine detonation. The onboard sensors are very simple devices that operate on an if/then process.
Materials like impervium, and reinforced duraplast are used to help keep the volatile mixes separated from one another and ensure that the detonation occurs on opponents and not friendlies. The Sebrova is propelled by a small rocket engine to move it across the void. The bomb can be countered/intercepted by typical anti-missile countermeasures, and does still run the risk of sympathetic detonation if improperly handled.
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