Mission
Runtime planning
Estimate battery fit against equipment load, mission duration and reserve assumptions.
Planning Tools
Public planning tools frame the questions integrators need to answer: runtime, pulse loads, charging, pack rotation, weight and lifecycle cost.
Route proof
Capability architecture
Mission
Estimate battery fit against equipment load, mission duration and reserve assumptions.
Power
Check pulse load requirements against datasheet limits of 150 A for <=120 s and 225 A for <=60 s.
Lifecycle
Compare replacement cycles, weight reduction and operational implications against legacy batteries.
Planning Tools
Indicative planning tools for runtime, pulse load, charging, fleet weight and lifecycle conversations.
Available energy
5,120 Wh
Estimated runtime
6.0 h
Fleet batteries
240
Potential weight saving
9,840 kg
Use these indicative outputs to brief the defence team. Controlled engineering models, data sheets and formal reports are available through verified access. Runtime and energy outputs use a 2,560 Wh super6T/e planning value from the 25.6 V, 100 Ah typical at 1C, 25 C datasheet specification. Weight saving uses the 24 kg super6T/e weight against the entered legacy battery weight.
Procurement Readiness Signals
Continue learning about Australian defence energy solutions
Full datasheet-backed super6T/e specifications
Frame a super6T/e fit review for your vehicle platform
Discuss your results with our defence energy systems engineers
Request controlled documents to support formal review
Procurement Confidence
Indicative public planning tools
Contact pathway for validated engineering models
Contact path for detailed engineering review
Mission, fleet and lifecycle planning inputs