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NRY for Semiconductors

See what moves your chip yield, and design the next round of experiments from it

Knowledge GraphPowered ResearchOBJECTWAFEROBJECTLITHOGRAPHY MACHINEOBJECTSLURRY / CHEMICAL......Did certain equipmentlead to better yields?Wafers withchip yield > 80%All exhibiteddefect conc. < 0.1%What was therange?Is this a one-offoccurrence?...Thermal annealtime > 2h?...Any parameters significantlydifferent btw. the two?Raw materialbatch pH?...Productionchange?Are there batches withCoA out of scope?...YesNoYesNoYesNo

Compressing Research & Development Time

Ask the live model of the fab about any batch, tool or recipe and get the answer in seconds, so the next round of experiments starts from evidence.

Learn more about accelerating research and development in the semiconductor industry:

Every mirror the fab coats is its own run, with its own recipe and its own measurement. With every run on the same screen, its engineers stopped hunting for the data behind a result and started designing the next coating from it.

An EUV optics maker

NRY Partners · Field notes

EUV, soft X-ray and XUV optics, eastern Germany

In passivation the surface tells you what happened long before the device does. With every reactor run and every spectroscopy result side by side, the engineers see a recipe drifting before the next batch of facets tells them.

A III-V passivation company

NRY Partners · Field notes

III-V passivation, Finland

A tight market for chips and circuit boards still ripples through every industry that depends on them, from cars and aircraft to consumer goods.

Manufacturers fight for raw materials while adding capacity to meet demand. Supply disruptions, longer lead times and a shortage of specialists make each other worse.

The manufacturers that get production up to meet the market will be the ones the industry relies on.

A laptop showing a fab analytics dashboard with yield charts

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