Mattur energy system at an educational campus
Mattur Education

The energy infrastructure
learning environments depend on.

Schools and universities are increasingly designated as community shelter facilities during emergencies. Mattur delivers scalable energy systems engineered to keep campuses operational when the grid cannot.

Coming in 2027
The Challenge

The grid wasn't built for campus continuity.

America's grid infrastructure was designed for a different era — and the alternatives most campuses turn to weren't built for multi-day shelter operations either.

Outages are increasing.
Frequency and duration of grid outages rising, driven by weather, wildfires, and peak demand events.
Shelter-in-place obligations are growing.
Schools and universities are increasingly designated emergency facilities, requiring guaranteed power for extended periods.
Demand charges are rising.
Utilities charge for peak draw. Large campuses with cafeterias, HVAC, and athletic facilities are especially exposed.
Batteries and standby each leave a gap.
Storage covers hours, not the multi-day shelter-in-place scenarios campuses are now expected to support, and degrades under high-load cycling. Standby generators run fixed-speed regardless of load, with fuel logistics that stress during the regional emergencies campuses shelter the community through. Built for short outages — not for sustained community obligations.

What Mattur delivers

More than backup. A campus that stays operational.

Educational institutions carry community responsibility beyond the school day. Mattur is engineered for that reality, delivering continuity and daily energy value simultaneously.

Mattur peak demand management for campus facilities

Peak demand management

Mattur actively manages load across the campus to reduce peak draw exposure, a meaningful line item for large facilities with cafeterias, HVAC, and athletic infrastructure.

Mattur scalable power architecture for university campuses

Scalable power architecture

From a single school building to a multi-building university campus, Mattur scales. Supercapacitors, battery, and generator in a single engineered platform, not bolted-together components from separate manufacturers.

Mattur automatic failover for campus safety systems

Automatic failover

Safety systems, communications, and essential operations stay running with no manual intervention required. Staff focus on people, not equipment.

Mattur daily energy management for educational facilities

Infrastructure that earns its keep

Unlike a standby generator that sits idle, Mattur operates daily, managing energy costs while the continuity capability remains ready for when it's needed.

What the return looks like

The economics are campus-specific. The community obligation is universal.

Educational facilities evaluate energy infrastructure on a different basis than commercial buildings. The question is not just operating cost but whether the institution can fulfill its responsibility to students, staff, and the surrounding community during an emergency.

Mattur addresses both. The right conversation is about your campus specifically: your load profile, your shelter designation requirements, and where the architecture creates the most value. That conversation starts with your team and ours.

The energy infrastructure learning environments depend on. Let's build it.

Talk to our team about sizing, specification, and emergency preparedness requirements for your campus.