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One Ecosystem.
One Technology Backbone.

Six programmes, an innovation centre and a national skills pipeline run on one stack — fab-grade hardware at the edge, simulation and AI in the middle, and a named human accountable at the end.

The Technology Stack

Seven Layers, From Silicon to Signature

Bottom is a real wafer in a learner’s hand. Top is a person who signs off what the system produced. Everything else sits between those two facts.

07

Governance & Trust

The layer with a person in it. Every lesson, assessment and safety instruction is signed off by a named engineer or educator before a learner sees it, and what we hold about a learner is minimised, disclosed and deletable on request.

Named reviewerSign-off logData minimisationPublished privacy policy
06

Interfaces

Where people meet the system: WOW Bot for questions, the AI Career Compass for direction, the Micro-Learning Studio for teachers, and partner dashboards for institutions and sponsors reporting on their cohorts.

WOW BotCareer CompassStudioPartner dashboards
05

Intelligence

Retrieval-grounded reasoning, task-scoped agents and an orchestration layer above them that routes work, retries what fails and escalates anything uncertain to a human instead of guessing.

RAGAgentsOrchestrationEscalation rules
04

Models & Analytics

The models that score, sort and predict rather than write: learner-progress scoring, career matching, process and yield simulation, and the analytics behind our published impact numbers.

Progress scoringCareer matchingYield & process modelsImpact analytics
03

Knowledge Base

One governed corpus underneath everything — curriculum, equipment documentation, cleanroom protocol, safety data sheets and the WA-01 to WA-08 taxonomy. Retrieval decides what the system is allowed to talk about, which is how a confident wrong answer never reaches a sixteen-year-old.

Curriculum corpusEquipment docsSafety protocolDomain taxonomy
02

Simulation & Immersion

Digital twins of fab processes, an eight-stage virtual fab, yield and green-fab simulators, AR and VR walkthroughs, and interactive exhibits. This is where a learner is allowed to break things.

Virtual FabDigital twinsAR / VRInteractive exhibits
01

Physical & Fab-Grade

The layer that makes the rest credible: real wafers, real process equipment, real metrology, a mobile cleanroom module and instrumented lab benches — carried to campuses on the Fab On Wheels bus.

Real wafers & toolsCleanroom moduleMetrology benchElectronics lab
Across the Ecosystem

What Runs Inside Each World

The same backbone, expressed differently in each programme.

Where the Building Happens

The WOWSemi Innovation Centre

A working floor, not a showroom. Research, prototyping, localisation and student ventures share one set of benches — which is the point, because that is how ideas actually cross between them.

Materials & Failure Analysis Bench

Instrumented workstations for materials characterisation, process measurement and failure analysis at a scale a college can actually host.

Electronics & PCB Lab

Design, fabricate, populate and debug boards — the fastest way for a student to go from an idea to something that switches on.

Robotics & Automation Cell

A working automation cell — controllers, actuators, vision and safety interlocks — so Industry 4.0 is something learners wire up rather than read about.

Modelling & AI Compute

Local compute for process simulation, yield analytics and model work, so datasets that should not leave the building do not have to.

Prototyping & Maker Floor

3D printing, machining, jigs and fixtures — the unglamorous half of turning a prototype into something that survives a demo.

Collaboration & Incubation

Bench space, mentoring and industry problem statements for Semipreneur teams, so a student venture starts with a real customer instead of a pitch deck.

Where AI Earns Its Place

Six Things It Changes
About Learning a Fab

Not “AI-powered” as a label. Six specific swaps, each of which changes what a learner ends up able to do.

One syllabusOne path per learner

Progress scoring watches where a learner actually struggles and re-sequences what comes next, so a slow start on vacuum theory does not become a permanent ceiling.

Read about a fabRun one, and break it

Simulation lets a learner destroy a virtual batch, blow a thermal budget and hunt the yield loss — consequences without cost, which is the only way most people learn process discipline.

Multiple-choice markingPractical assessment at scale

Assessment is scored against what the learner did in the simulator and on the bench, not only what they ticked, and the model does the first pass so a human reviewer sees the exceptions.

“What job can I get?”A matched, named role

The AI Career Compass maps what a learner enjoys and is good at onto specific fab, ATMP and facilities roles, with the domain codes and tracks that lead there.

One trainer, one classroomOne trainer, a district

Faculty tools turn a lesson plan into lab sheets, a manual into a micro-lesson and a topic into a quiz, so the scarce resource — an experienced trainer — spends time teaching, not formatting.

English, broadband, a laptopTheir language, their bandwidth

Content is built to work offline on the bus and on low-end devices, with multilingual delivery, because the learners furthest from a fab are also furthest from good connectivity.

The Loop

Ask → Retrieve → Reason → Act → Review

Every request runs the same five steps. The last one is a person.

AskA learner, teacher or partner asks something
RetrievePull only from the governed corpus
ReasonModels plan the steps, not the facts
ActDraft, score, simulate or route
ReviewA named human signs it off
Applied Research

Six Questions We Are Working On

Research here means something a partner plant, a polytechnic or a student venture can use within a year — not a paper nobody implements.

01

Yield & Defect Analytics

Machine learning on process and inspection data — the discipline every fab hires for, taught with real datasets rather than toy ones.

02

Sustainable Fab Operations

Energy, water and abatement modelling for Indian conditions, feeding the Green Fab City model and the WA-07 and WA-08 curriculum.

03

Low-Cost Lab Instrumentation

Building teaching-grade instruments at a price a polytechnic can afford. Every one that works becomes a Fab On Wheels station.

04

Equipment Localisation

Spares, subsystems and maintenance capability that India currently imports — mapped, prototyped and documented with partner MSMEs.

05

AI for Technical Education

What actually improves outcomes in a hands-on discipline, measured against cohorts rather than assumed.

06

Open Knowledge

Curriculum, safety material and datasets published where we can, so the work outlives any single cohort or programme.

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