Battery Energy Storage Frequently Asked Questions

Preserve the Core Asset.

Maintain the System.

Protect Performance.

How does OLOVO's sulfation-reversing Battery Management System (BMS) extend battery life?

OLOVO's proprietary sulfation-reversing BMS addresses a primary degradation mechanism in conventional lead-acid batteries. Continuous monitoring, battery balancing, controlled sulfation-reversing cycles, and predictive health tracking are designed to preserve rated capacity and support a minimum 5,000+ cycle architecture.

What performance and lifecycle specifications does OLOVO BESS provide?

OLOVO modular BESS is engineered for a minimum 5,000+ cycles, greater than 80% round-trip efficiency, 99%+ recyclability, no thermal runaway pathway, and no rare-earth dependency. The platform is designed around infrastructure-grade reliability, redundancy, resilience, and financeable lifecycle economics.

How does OLOVO manage battery degradation, capacity, and component replacement?

OLOVO's sulfation-reversing technology is designed to maintain rated discharge energy capacity without standard chemical degradation, while its service program monitors SoC/SoH, thermal stability, battery balancing, and system performance. Covered BESS components that fail or fall below applicable performance standards are repaired or replaced under the warranty, subject to its terms.

What warranty, uptime, and service-level protection does OLOVO provide?

OLOVO's current warranty provides 15 years of comprehensive service and performance coverage, including battery modules, BMS, PCS/inverters, environmental controls, wiring, parts, and labor, subject to the Maintenance & Monitoring Software Agreement. It guarantees 98% annual operational uptime, provides defined Priority 1–3 response metrics, and offers an additional five-year warranty option for Years 16–20.

How are OLOVO BESS systems monitored and maintained over their operating life?

OLOVO combines 24/7/365 remote diagnostics with scheduled preventive maintenance, predictive health tracking, SoC/SoH analysis, thermal monitoring, battery balancing, firmware validation, annual capacity testing, and five-year major component assessments. Service records and performance data provide a documented operating history for the asset.

Can OLOVO BESS support emergency power, disaster recovery, and critical infrastructure resilience?

Yes. OLOVO BESS is designed for critical-load protection, operational continuity, emergency preparedness, communications continuity, grid resilience, and dispatchable power across healthcare, municipalities, airports, telecommunications, utilities, industrial facilities, and other critical infrastructure.

Can OLOVO BESS be deployed internationally and in resource-constrained markets?

Yes. OLOVO's modular architecture leverages established domestic and international lead-acid manufacturing, supply, service, and recycling ecosystems without rare-earth dependency. This supports scalable deployment where grid capacity, specialized supply chains, or infrastructure resources are constrained.

How does OLOVO convert existing energy infrastructure into more dispatchable capacity?

OLOVO stores available generation and makes that energy dispatchable when and where infrastructure requires it. This can increase asset utilization, reduce curtailment, support peak demand, relieve constrained infrastructure, improve grid reliability, and defer certain infrastructure expansion—turning existing generation into more usable power.