Liquid-cooled cell architecture from Narada — one of the world's largest LFP cell manufacturers — with engineering and post-installation support based in North America.
Two-way ATF split: sales-ready buyers → Talk to an Engineer; research-mode buyers → View Resources. Covers both entry intents without forcing a pricing commitment above the fold.
AI GPU facilities now require 30–150 kW/rack — vs. 5–10 kW in traditional compute. LFP at 10,000 cycles means no mid-decade replacement window during a critical infrastructure build.
Routing card pattern. The tab content area shows a split-card for the selected market. No CTA button in card body — the link-arrow is the interaction.
NEBS Level 3 qualified modules for tower, central office, and remote site applications. Drop-in replacement voltage ranges for existing VRLA infrastructure.
10,000-cycle LFP for grid-scale and C&I BESS projects. Demonstrated capacity retention above 92% at 2,100+ cycles in field deployments at 80% DoD.
Not a catalog supplier. Cell supply, BMS compatibility engineering, and integration documentation for UPS manufacturers, systems integrators, and OEM partners building products on LFP or VRLA.
36V to 800V system voltage range covers the full UPS market. LFP at 10,000 cycles eliminates the 3–5 year VRLA replacement interval — changing the TCO equation before opening a spec sheet.
Dark bordered grid on navy-dark bg — Netceed pattern. Each cell links to product hub filtered by category. No CTA buttons — grid items are the interaction.
Most VRLA installations require full replacement every 3–5 years. At 10,000 cycles rated to IEC 62619, a single LFP installation outlasts two or three VRLA replacement cycles.
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.
| Chemistry | Cycles | 20-yr Replacements |
|---|---|---|
| VRLA (AGM) | 300–600 | 5–7× |
| LFP (MPINarada) | 10,000¹ | 0–1× |
¹ Per IEC 62619 at stated DoD and temperature. Contact engineering for derating.
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 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.
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.
Use named client if approved. Anonymize with application-type + metrics if not. Never use generic "a major data center."
1.8 MWh LFP BESS, 800kW inverter. 2,100 cycles completed at 80% DoD. Capacity retention above 92%.
See full schedule
Trade shows · Webinars · Speaking
Event dates and booth numbers are placeholders — client to supply actual 2026 schedule from trade show bookings.
Most buyers we talk to have already looked at the cycle life figures and want to know how they hold up in their specific load profile. That's what the engineering conversation is for.
CTA placed AFTER 3+ scroll zones of technical content. NOT in the hero. Commercial buyers aren't ready at first contact.