Built for Critical Power Infrastructure

Long-Cycle LFP Batteries for Data Centers, Telecom & BESS

MPI Energy provides long-cycle lithium iron phosphate battery systems and advanced lead-acid batteries for data centers, UPS backup, telecom networks, BESS projects, and OEM power applications, with engineering support from design through deployment.

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16,000+ Cabinents Installed
2,900+ Systems Installed
~5 Gigawatts Installed
616+ MWh MWh Installed
WHO WE ARE

What Does MPI Energy Do?

With over 10 years of operations, experience, and proven worldwide deployments, we help customers meet growing demands.

Our comprehensive portfolio spans high-rate VRLA and LFP batteries for UPS and critical power, NEBS-certified reserve power for outside plant telecom, and flexible LFP energy storage systems for C&I, microgrids, renewables, and utility-scale projects.

From turnkey, fully integrated systems to configurable rack-based solutions, MPI Narada supports installations of any size. Backed by localized engineering, responsive support, best-in-class warranties, and proven field performance, we help customers accelerate deployment, reduce risk, and optimize total cost of ownership.

Why Critical Power Teams Choose MPI Energy

Smaller Footprint

Compact configurations for space constrained power environments

Safer Chemistry

LPF Chemistry for thermal stability and long cycle performance

Flexible Deployment

Rack, cabinet, skid, and container options for any application

Engineering Support

Technical guidance from system design through commissioning and lifecycle planning

Who We Serve

Solutions That Power Critical Infrastructure

LFP Replacing VRLA in UPS Applications

AI GPU facilities now require 30–150 kW/rack — vs. 5–10 kW in traditional compute. Long-cycle LFP means fewer mid-decade replacement windows during a critical infrastructure build.

UPS Backup AI Rack Power Long-Cycle LFP UL 1973
Explore Data Center Solutions

LFP Replacing VRLA in UPS Applications

AI GPU facilities now require 30–150 kW/rack — vs. 5–10 kW in traditional compute. Long-cycle LFP means fewer mid-decade replacement windows during a critical infrastructure build.

UPS Backup AI Rack Power Long-Cycle LFP UL 1973
AI & Datacenters

LFP Replacing VRLA in UPS Applications

AI GPU facilities now require 30–150 kW/rack — vs. 5–10 kW in traditional compute. Long-cycle LFP means fewer mid-decade replacement windows during a critical infrastructure build.

UPS Backup AI Rack Power Long-Cycle LFP UL 1973
Explore BESS Solutions

LFP Replacing VRLA in UPS Applications

AI GPU facilities now require 30–150 kW/rack — vs. 5–10 kW in traditional compute. Long-cycle LFP means fewer mid-decade replacement windows during a critical infrastructure build.

UPS Backup AI Rack Power Long-Cycle LFP UL 1973
Explore Data Center Solutions

Service

AI GPU facilities now require 30–150 kW/rack — vs. 5–10 kW in traditional compute. Long-cycle LFP means fewer mid-decade replacement windows during a critical infrastructure build.

UPS Backup AI Rack Power Long-Cycle LFP UL 1973
Explore Data Center Solutions
The Cycle Life Argument

What Long-Cycle LFP Means for Your Infrastructure

Most VRLA installations require full replacement every 3–5 years. At long-cycle LFP (rating pending client confirmation), a single LFP installation outlasts two or three VRLA replacement cycles.

Liquid Cooling Built into the Cell

Air-cooled LFP still requires external thermal management in dense environments. Integrated liquid cooling removes the hotspot problem at the cell level, not the rack level.
Cooling is part of the cell architecture — not a system add-on. Relevant for AI facilities where rack density exceeds 30 kW/rack.

Engineering Support in North America

Engineering contacts are in the US. Response time commitments are in writing in every service agreement — not in marketing copy.
Narada manufacturing (SH:600884) + US-based applications engineering = cell quality with reachable support.

Long-Cycle Rated Life

Rated per IEC 62619 at 80% DoD, 25°C. A single LFP installation eliminates 4–6 VRLA replacement events over a 20-year infrastructure horizon.

ChemistryCycles20-yr Replacements
VRLA (AGM)300–6005–7×
LFP (MPI Energy)Long-Cycle¹0–1×


¹ Per IEC 62619 at stated DoD and temperature. Contact engineering for derating.

Expertise & Services

From Design to Deployment to End-of-Life

Discuss Your Project

01 — Custom Design

Application-Specific Configuration

Cell chemistry, voltage, and form factor selected for your application — not a catalogue pick. Sizing models provided before any commitment.

02 — Deployment

On-Site Commissioning & Integration

US-based engineers on-site for commissioning. Integration with existing UPS, SCADA, and BMS platforms. Go-live documentation provided as standard.

03 — Maintenance

Scheduled Service & Warranty

Capacity testing, firmware updates, and periodic inspection under a 5-year warranty. Response commitments in writing — not in marketing copy.

04 — End-of-Life

Responsible Recycling

LFP cell recovery and material recycling through certified partners. Decommissioning handled end-to-end — no logistics burden on your operations team.

Deployed Outcomes

Reference Deployments

Deployment Imagery
Case Study (Sample)

[SAMPLE] Tier III Data Center — Eastern US, 2024

[SAMPLE — placeholder case study, not a real deployment.] 4.2 MWh LFP capacity. 8-minute runtime at full GPU rack load. 12 UPS systems replaced. Zero unplanned downtime events in 18 months of operation.

4.2 MWh
Read deployment details

[SAMPLE] C&I Behind-the-Meter — Southwest US, 2023

[SAMPLE — placeholder case study, not a real deployment.] 1.8 MWh LFP BESS, 800kW inverter. 2,100 cycles completed at 80% DoD. Capacity retention above 92%.

Read deployment details
Where to Find Us

Events & Trade Shows

Ready to Specify the Right Battery System?

Bring us your voltage, runtime, footprint, load profile, safety requirements, and project timeline. MPI Energy will help evaluate the right LFP or advanced lead-acid battery system for your critical power or energy storage application.