- Fully Integrated Internal LiFePO₄ Battery Architecture: Houses up to three hot-swappable LiFePO₄ battery modules directly inside the main 12.6-inch wide cabinet, requiring zero external battery cabinets or additional floor space.
- 50°C (122°F) High-Temperature Operating Capability: Rated for continuous operation in ambient temperatures up to 50°C without requiring supplemental cooling infrastructure.
- Long-Life Batteries & Hot-Swappable Module Scalability: Internal LiFePO₄ modules offer up to a 15-year service life (3,000–5,000 charge cycles) and scale runtime (up to 87 minutes depending on model and load) with toolless, live replacement.
- Integrated Maintenance Bypass Breaker & Full Switchgear: Built-in input, output, bypass, and maintenance-bypass breakers eliminate the need for external switchgear panels.
- Industrial-Grade Ruggedization & High Overload Capacity: Features conformal-coated circuit boards, self-cleaning smart de-dust fans, and high overload tolerances (110% for 60 min; 150% for 1 min).
- Dramatically Reduced Floor Space & Easy Installation: The slim 12.6-inch footprint and all-in-one enclosure eliminate bulky external battery racks, making it ideal for space-constrained electrical rooms, edge data centers, and industrial facilities.
- Drastically Lower Total Cost of Ownership (TCO): With up to 15 years of battery service life, it eliminates the recurring 3-to-5-year VRLA lead-acid replacement cycles and associated labor, drastically lowering lifecycle expenses.
- Reliable Performance in Harsh & Unconditioned Spaces: Robust thermal tolerance, conformal-coated PCBs, and self-cleaning fans allow deployment in hot, dusty, uncooled environments (such as industrial control rooms, telecom shelters, and mechanical spaces) without premature degradation.
- Zero-Downtime Maintenance: Hot-swappable battery modules and an integrated maintenance bypass breaker allow technicians to service or replace battery modules and the UPS without cutting power to downstream mission-critical equipment.
- Handles Heavy Startup Surges Without Tripping: High overload margins easily absorb inrush currents from motor starts, compressors, and inductive facility loads without dropping the load or nuisance-switching to utility bypass.






