MesmerFlux Condenser Pack S
Variations
| Type | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| MesmerFlux Condenser Pack S | Tech I | small | 53 HP | 13 HP | 1.5 % | |||||
| StrikeSnipe Ultra S | Tech II | small | 49 HP | 41 HP | 1.8 % | 25 % |
Market
Basic
- Mass:
- 0 kg
- Packaged volume:
- 0.0025 m3
- Portion size:
- 500
Tech Level: - 1
Capacity: - 0 m3
Volume: - 0.0025 m3
Mass: - 0 kg
radius: - 1 m
Cargo
Capacity: - 0 m3
Ammunition
EM damage: - 53 HP
Explosive damage: - 0 HP
Kinetic damage: - 13 HP
Thermal damage: - 0 HP
Charge size: - small
Range bonus: - 1.5 %
Capacitor Need Bonus: - 0 %
Capacitor
Capacitor Need Bonus: - 0 %
Produced from
- Blueprint manufacturing:
- MesmerFlux Condenser Pack S Blueprint
Engineering Rig
- Source rigs (manufacturing):
Reprocessing
- Portion size:
- 500
| Output | Quantity |
|---|---|
| Tritanium | 20 |
| Pyerite | 10 |
| Electromagnetic Metaprismatic Sheeting | 1 |
| Ultraconducting Ablative Nanocable | 6 |
Industry
- Not used in any blueprints
- Adam4Eve Material Influence
Other
mainColor: - 16764120
Type Info
- Type ID:
- 54770
- Base price:
- 1.00k ISK
- Graphic ID:
- 24582
- Group ID:
- Condenser Pack
- Icon ID:
- 24471
- Market group ID:
- Small
- Meta group ID:
- Tech I
- Published:
- true
- Radius:
- 1 m
- Volume:
- 0.0025 m3
Description
The project to adapt Arcing Vorton Projectors into ship-based weapons required the development of a high-capacity energy source for the new weapons. Ship capacitors are powerful but the immense bursts of energy required to fire Vorton Projectors called for the development of one-shot Condenser Packs capable of retaining ultra-high charges and rapidly discharging them at need. In a novel and elegant solution to the problem of cabling burnout in the projectors, the material of the Condenser Packs is designed to be rendered down into a pool of nanites the ablative nanocabling of the weapons can draw on.
Upwell's brand of MesmerFlux Condenser Packs are designed to deliver a pulse of power tuned to develop arcs dealing primarily EM damage at long ranges.