ProLogium Begins Mass Production of 381 Wh/kg, 903 Wh/L Solid-State Cells

ProLogium Solid-state batteries
Image courtesy of ProLogium

On September 7, 2026, ProLogium Technology — the Taiwanese solid-state battery maker backed by Mercedes-Benz — announced mass production of a high-energy-density all-solid-state cell reaching 381 Wh/kg and 903 Wh/L, per the company’s official release. It’s the milestone rivals keep postponing: Toyota says 2028, and most Chinese and Korean giants say 2030.

The ProLogium solid-state battery’s two headline numbers — 381 watt-hours per kilogram and 903 watt-hours per litre — clear the bar carmakers say solid-state must reach to beat today’s lithium-ion cells on range without sacrificing cost.

ProLogium Solid-State Battery at 381 Wh/kg, 903 Wh/L: What “Mass Production” Means

“Mass production” is easily overstated. It means the cell has left the pilot line for a real, repeatable line — it says nothing about volume, yield or the buyer, none of which ProLogium has disclosed, and the density figures are its own, unverified. What is not in dispute is the factory: the company runs what it calls the world’s first solid-state gigafactory in Taoyuan, with a second plant underway in Dunkirk, France, where it broke ground.

Why a Taiwanese Startup Beat the Giants to Solid-State Battery Production

Toyota has pushed solid-state to 2028; CATL, Samsung SDI and LG Energy Solution point to 2030. ProLogium — founded in 2006 and a fraction of their size — claims the milestone first because it spent two decades on a ceramic “lithium ceramic” electrolyte, safer than rivals’ sulfide or polymer routes but long stuck on interface contact and cost. Putting a 381 Wh/kg, 903 Wh/L ceramic cell on a line means it has cracked both scaling and yield.

Mercedes-Benz: The Customer Behind ProLogium’s Solid-State Battery

Mercedes took a stake and signed a tech-cooperation deal in 2022 to co-develop cells for its 1,000-km-range EV goal. That disciplines the reading: a carmaker of Mercedes’ culture does not attach its name without automotive validation, and it will test every cell — so overstating would be self-defeating for ProLogium.

The Solid-State Battery Reality Check: Mass Production Is Not Mass Adoption

“In production” is not yet “in your car.” A 381 Wh/kg, 903 Wh/L cell must still survive cycles, fast charging, temperature extremes and the abuse tests lithium-ion spent a decade passing; ProLogium has not published volume, yield or qualification status. Still, the question has shifted from “who’s first to a working cell” to “who’s first to a million cells a year.”

381 Wh/kggravimetric density (stated)
903 Wh/Lvolumetric density (stated)
4th gensolid-state cell on the line
2 plantsTaoyuan + Dunkirk
Author’s Take. Suspect the superlatives, credit the milestone. ProLogium is too small to overstate to Mercedes — its investor and would-be customer — so “mass production” at 381 Wh/kg and 903 Wh/L is a real step. The open questions are volume, yield, cycle life and qualification. Watch whether Mercedes names a production programme, whether ProLogium publishes capacity instead of density, and whether Dunkirk breaks ground on schedule.

The Bottom Line. ProLogium, the Mercedes-backed Taiwanese solid-state specialist, says it has begun mass production of a 381 Wh/kg, 903 Wh/L fourth-generation cell — a milestone the giants scheduled for 2028 or later. Volume, yield and validation remain undisclosed, so this is not yet proof that solid-state is cheap or car-ready. But a Taiwan-and-France footprint with a German luxury investor testing its cells has moved solid-state from “first to a working cell” to “first to a million cells a year.”

Sources & Further Reading

Sourcing note: Published September 7, 2026 on ProLogium’s official website and cited here as the primary source; the 381 Wh/kg and 903 Wh/L figures and “mass production” framing are ProLogium’s own statements. Mercedes-Benz’s stake and 2022 cooperation are documented by PCMag. Volume, yield, cycle-life and automotive-qualification data are undisclosed as of publication, so “mass production” is treated as distinct from “mass adoption.” Analysis is original to EVsays.

SHENG HE
SHENG HE

Sheng He is the founding editor of EVsays. He launched the site as an electric-vehicle news desk and has since expanded its remit to the broader electrification transition — batteries, storage, charging, robotics and clean power.
He spent eight years in automotive sales at the dealership level, working with multiple major brands — experience that gave him a front-line read on what buyers actually ask, fear and choose. That ground-level perspective now anchors the site's coverage of cars, batteries and the wider electrification shift.
He writes original, source-backed reporting for an international readership, with a reporter's instinct for separating confirmed fact from rumor.

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