DIRAC AND SAFETY

Built to exceed safety standards

Energy storage is a different technology than it was ten years ago. Even as grid-scale deployment grew roughly tenfold since 2018, incident rates fell by 98 percent. The incidents that make the news almost all trace back to older facilities: indoor buildings, first-generation chemistry, codes written before the industry knew what it knows now. Dirac is built to today's standard instead. The table below lays the two approaches side by side across eight areas of safety design, so you can judge the difference yourself.

Two approaches, side by side

Facility design

DIRAC (AYPA'S APPROACH)

Outdoor design, with each battery enclosure physically separated from the next

OLDER FACILITY DESIGNS

Batteries enclosed inside a single closed building

Thermal cooling system

DIRAC (AYPA'S APPROACH)

Liquid cooling, the current industry standard for keeping cells at a safe temperature

OLDER FACILITY DESIGNS

Air conditioning only, which struggles to control heat at the cell level

Battery chemistry

DIRAC (AYPA'S APPROACH)

Lithium iron phosphate (LFP), the safer chemistry the industry has standardized on for new projects

OLDER FACILITY DESIGNS

Older lithium chemistries that catch fire more easily

Product safety

DIRAC (AYPA'S APPROACH)

Proven, off-the-shelf battery units from established manufacturers

OLDER FACILITY DESIGNS

Custom or one-off designs with little field history

Monitoring

DIRAC (AYPA'S APPROACH)

Monitored around the clock, with sensors that catch heat buildup before it becomes a problem

OLDER FACILITY DESIGNS

Suppression that only responds after a fire has already started

Safety code compliance

DIRAC (AYPA'S APPROACH)

Meets or exceeds California Senate Bill 283 and the current UL 9540 and NFPA 855 fire and safety codes

OLDER FACILITY DESIGNS

Built to older codes, before the current safety rules existed

Fire authority engagement

DIRAC (AYPA'S APPROACH)

Local fire district consulted before permitting even begins

OLDER FACILITY DESIGNS

Routine fire code review, late in the process

Operating record

DIRAC (AYPA'S APPROACH)

A real track record: Cald facility, more than a year of operation with no fire incident

OLDER FACILITY DESIGNS

Safety claimed on paper, with no comparable record of safe operation to point to

A closer look at the design

LITHIUM IRON PHOSPHATE: A SAFER CHEMISTRY

Dirac uses lithium iron phosphate (LFP). Compared with older lithium-ion chemistries, LFP stays more stable at high temperatures, meaning it is far less likely to overheat and catch fire. This quality, called thermal stability, is the main reason most new utility-scale storage projects in California now use LFP. The chemistry was chosen for safety, long life, and predictability.

AN OUTDOOR DESIGN BUILT FOR FIRST RESPONDERS

The storage enclosures are spaced apart from one another on a fenced outdoor site more than 1,100 feet from the nearest residential neighborhoods, and first responders have direct access from every approach. If a single unit ever overheats (a thermal event), the design keeps it contained to that one enclosure. The site is built so the local fire department can do its job effectively, because of the facility's design, not despite it.

BUILT TO TODAY'S CODES AND STANDARDS

  • UL 9540 and UL 9540A: testing and certification for energy storage systems
  • NFPA 855: fire safety and installation standards for stationary energy storage
  • UL 1973 and UL 1741SB: battery and inverter safety performance

Designed with the fire district, proven in the field

Dirac is being designed hand in hand with the Chino Valley Independent Fire Protection District from the earliest engineering stages: fire authority at the table before the first permit, not after. That early consultation also satisfies California Senate Bill 283.

Prepared for the unexpected, by design

Strong prevention comes first, but Dirac's design assumes the question everyone asks: what if something does go wrong? The answer is engineered in layers:

  • Around-the-clock monitoring with sensors designed to catch heat buildup early, so issues are addressed long before they escalate
  • Physical separation between battery enclosures, engineered so an issue in one unit stays in that unit
  • Ongoing safety and response trainings with the Chino Valley Independent Fire Protection District, before and during operations
  • A site-specific emergency response plan developed with the fire district, which has reviewed the project's design

Aypa's Cald storage facility in Los Angeles has operated for more than a year with a clean safety record, built by the same team, to the same standards, with the same equipment planned for Dirac.

No combustion to produce power. No daily diesel traffic. Independent review.

An energy storage facility has one of the smallest air-quality footprints of any industrial use that could be built on this parcel. Dirac burns no fuel to produce power; the only combustion equipment on site is a pair of emergency backup generators, the same kind hospitals and schools keep. There is no daily diesel truck traffic, and the site is essentially unstaffed.

Real-world operating data and extensive modeling point to the same result: in every incident scenario studied, air quality outside the project perimeter stays within safe levels.

INDEPENDENT REVIEW

A full health risk assessment and air dispersion modeling study are part of the project's environmental review, conducted by independent firms credentialed in California regulatory practice.

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