AI-Automated Precision Optics Foundry

From Space
to Nano World,
Precision Beyond
the Horizon.

AsphoriX is an AI optics foundry. We combine AI closed-loop process control with robotic ultra-precision polishing to mass-produce medium- and large-aperture aspheric optics for space, defense, and semiconductor customers at high yield and short lead time.

Space OpticsDefense EO/IRSemiconductorNon-ITARPrecision at Scale
01 · About AsphoriX

Not a revolution in specs,
but a revolution in yield.

Medium- and large-aperture aspheric optics have long depended on the hands and judgment of master opticians. AsphoriX layers measurement-driven AI process control on top of thirty years of aspheric production know-how built through academia–institute collaboration, so the same optical surface can be reproduced faster and more consistently.

Technical lineage
1993–

Large-aperture aspheric fabrication know-how descending from the UCL / Zeeko lineage

Metrology
Heterogeneous

Wavefront error and surface roughness measured in a single cell

Target form accuracy
λ/20P-V

Surface roughness target Ra 1 nm · specifications agreed per material and geometry

Supply-chain principle
Non-ITAR

Global supply built on transaction-level export-control review

MISSION

Redefine optics manufacturing
by fusing AI and precision optics

Deliver mission-critical optics for space, defense, and semiconductors at high yield and short lead time, so the optical system stops being the bottleneck that dictates a mission's schedule and cost.

VISION 2030

The world's first standard for
an AI optics smart foundry

Standardize an automated line where metrology, machining, and AI correction form one loop, and become a trusted partner in the global space and defense optics supply chain.

CORE VALUES

Precision · Intelligence
Scalability · Openness

  • Space-grade surface accuracy at industrial lead times
  • Craft know-how captured as data and algorithms
  • A modular structure replicated from cell to line to factory
  • Open global collaboration that respects export controls
02 · Problem → Solution

Structural limits of aspheric optics,
solved at the process level.

Demanding aspheric optics have been made one piece at a time, project by project. Lead time, cost, yield, and sourcing are not craftsmanship problems but process-architecture problems. AsphoriX resolves them with a closed loop in which measurement data determines the next machining step.

Problem 01

Long lead times, high cost, low yield

A fragmented sequence of machining → unloading and transfer → measurement → expert judgment → re-machining. Months-long deliveries and repeated rework are the norm for demanding projects.

Solution 01

AI closed-loop control that minimizes iterations

Metrology results feed back in real time so the next machining strategy is generated autonomously. Our validation targets are a 70% reduction in lead time and first-pass yield above 95%.

Problem 02

Global sourcing constrained by ITAR and export controls

High-specification optics are controlled by item, technology, and end use, leaving global space and defense customers without a dependable alternative supplier.

Solution 02

Compliance-based supply with minimal ITAR dependence

Technical data is built from Korean and allied-nation technology plus proprietary algorithms, and every shipment is preceded by a transaction-level export-control review.

Problem 03

The limits of one-off, project-based production

Even identical specifications yield different results every time. Volume and repeat production cannot exist in a one-optician-per-part structure.

Solution 03

Intelligent multi-product volume production

Automated cells that combine a metrology-and-machining data lake with robotic handling are replicated at line and factory scale. We scale the system, not the headcount.

03 · Core Technology

AI closed-loop process control
linking machining, metrology, and correction

A measurement is not an inspection report; it is the input that determines the next machining condition. AsphoriX's proprietary software registers heterogeneous metrology data into a single coordinate frame, learns from the result, and updates the process recipe automatically. Measurement and machining repeat unattended until the target accuracy is reached.

CLOSED-LOOP PROCESS // ASX-CLPMEASURE → LEARN → CORRECT → REPEAT
INPUT · BLANK / SUBSTRATE OUTPUT · QUALIFIED OPTIC 01 · MACHINING Intelligent polishing 7-axis CNC · strategy execution 02 · METROLOGY Heterogeneous wavefront error · roughness 03 · AI CORRECTION Correction model metrology-driven computation 04 · RECIPE UPDATE Machining strategy process parameters · SPC forecast UNATTENDED MEASURE-AND-MACHINE ITERATION UNTIL TARGET ACCURACY — CLOSED-LOOP
TECH-01

Metrology data fusion

Proprietary software that registers and fuses data from heterogeneous instruments into one coordinate frame, turning nanometre-scale wavefront error and surface roughness into a single error map.

TECH-02

AI correction engine

Learns from metrology data and process history to compute the correction applied to the next machining pass. Built on our experimentally grounded machine-learning research on deterministic polishing metrics (Optics Express, 2026).

TECH-03

Recipe automation · SPC

Process recipes and machining strategies are generated and updated automatically, while a statistical process control (SPC) model forecasts quality and minimizes variation. The more data accumulates, the harder the moat is to follow.

TECH-04

Intelligent automated line

Machining cells, metrology stations, the data lake, and robotic handling are integrated into one line. A scalable facility architecture that replicates a validated cell into lines and a factory.

Precision machiningZeeko (UK) precision-polishing platform · hardware partnership
Precision metrologyKRISS collaboration · in-house metrology software
AI correctionJoint development with the University of Arizona · proprietary algorithms
Process know-how · IPTechnology transfer from KASI · own filings planned
04 · Heritage

A technical heritage from the world's
leading space and giant telescope programs

AsphoriX did not begin with an equipment purchase. Thirty years of hands-on experience by our two founders in NASA space telescopes, extremely large ground-based telescopes, and Korean space payloads is embodied in our process data and know-how.

1993

Ph.D. on full-size active polishing of large-aperture aspheric optics

Sug-Whan Kim, University College London (UCL)

1994

Algorithm-based polishing technology that became Zeeko

Contributed to the Precessions core technology · robotic polisher development begins

1999 – 2002

NASA GALEX ultraviolet space telescope optical payload

With NASA JPL / Caltech · fabrication and assembly of the core optics

2002

Professor of Astronomy, Yonsei University

Pioneering large-aperture aspheric production research in Korea

2008

Ph.D. on experimental optical fabrication

Jeong-Yeol Han, University of Science and Technology (UST) · visiting researcher, College of Optical Sciences, University of Arizona

2011

Joins KASI · Center for Space Exploration Technology

Jeong-Yeol Han, full-cycle research on space telescopes and payload optics: design, fabrication, metrology, and alignment

2014 – 2025

NASA MSFC · NOIRLab collaboration, GMT contribution

Ultra-lightweight advanced-material optics · NASA Mirror Technology Days · production and metrology for the 25 m Giant Magellan Telescope

2025.07

AsphoriX business planning begins

Korea's academia–institute experts in aspheric fabrication, production, and alignment come together

2026.03.18

AsphoriX Co., Ltd. incorporated

Research-institute spin-off · launch of the AI optics foundry

REFERENCE 01 · SPACE

NASA GALEX ultraviolet space telescope

Participation in fabricating and assembling the core optics of the ultraviolet space telescope developed with NASA JPL / Caltech. The origin of our space-grade aspheric design and fabrication capability.

REFERENCE 02 · MATERIALS

Ultra-lightweight optics with NASA MSFC

Collaborative research on space-environment testing of ultra-lightweight and all-SiC optical surfaces with NASA Marshall Space Flight Center, home of the cryogenic testing of the James Webb Space Telescope mirror segments.

REFERENCE 03 · GROUND

25 m Giant Magellan Telescope (GMT)

Contributions to advancing the production process and metrology of extremely large aspheric mirrors. A reference for the next generation of telescopes, where segmented and advanced-material mirrors keep raising the bar for metrology and fabrication.

05 · Products & Markets

Demanding medium- and large-aperture
aspheric optics for space, defense, and semiconductors

Aspheric, off-axis, and freeform mirrors and optical elements directly determine the performance, cost, and schedule of observation and surveillance missions. AsphoriX focuses where specifications are high and quantities repeat.

MARKET 01

Space & satellite payloads

Optics for Earth-observation satellites, space telescopes, and LEO constellations.

  • Lightweight medium/large-aperture mirrors
  • Freeform and off-axis mirrors
  • Segmented mirrors (all-SiC and others)
  • Payload test optics
MARKET 02

Defense EO / IR

Seeker, fire-control, surveillance, and infrared search-and-track (IRST) optics.

  • Seeker front optics
  • High-performance aspheric domes
  • Fire-control and sighting modules
  • EO/IR payload mirrors
MARKET 03

Observation & precision optics

High-precision optics for ground telescopes and metrology or laser instruments.

  • Ground-based telescope optics
  • Mirrors for metrology and laser systems
  • Medium/large-aperture precision lens groups
  • Metrology and process-recipe services
MARKET 04 · EXPANSION

Semiconductor optics

An expansion area including aspheric mirrors for lithography and inspection.

  • Lithography aspheric mirrors
  • Inspection-optics mirrors
  • High-flatness special surfaces
  • Special-material components
Initial product portfolio
Medium/large-aperture aspheric mirrorsFreeform · off-axis mirrorsAspheric optical domesIIR seeker front opticsFire-control · surveillance opticsPrecision lens groupsMetrology · process-recipe services
06 · Non-ITAR & Compliance

Minimal ITAR dependence,
transaction-level export-control compliance

The structural gap between ITAR-controlled U.S. suppliers and sanctioned suppliers is AsphoriX's opportunity. But "ITAR-free" never means "free to export anywhere." Export-control compliance by country, customer, and end use is the premise of our business.

01

Origin of technical data

Technical data is composed of Korean-owned and transferred technology, openly published models, and proprietary recipes, excluding dependence on U.S. ITAR technology.

02

Supply-chain classification

Country of origin is verified for equipment, materials, and software, with USML / ECCN and de minimis criteria reviewed in advance.

03

Data firewall

Access to customer drawings and defense requirements is segregated, and foreign-national access and the scope of technical-data sharing are controlled.

04

Export execution

Country, customer, and end-use screening precede every shipment; export licenses are obtained when required and export-control clauses are written into contracts.

07 · Approach

We grow by replicating
one validated cell.

AsphoriX does not scale by hiring. We validate a metrology-centred cell on customer parts, then replicate that same structure into lines and a factory. The unit of expansion is not skilled labour but the process itself, with its accumulated data.

STEP 01

Validate the cell

Machining and metrology are combined into a single cell, and repeatability against the target specification is confirmed on customer coupons. The metrology and machining data gathered here become the reference for every later stage.

STEP 02

Replicate the structure

The validated cell is replicated without design changes to form a line. Process recipes and quality history carry over intact, so adding capacity does not add quality variation.

STEP 03

Operate as a factory

Multiple lines run under one data system, with robotic handling and statistical process control linked in. The goal is repeat multi-product production sustained without manual intervention.

※ Detailed build-out plans, equipment configuration, certification schedules, and supply commitments are shared separately after a non-disclosure agreement (NDA).

08 · People

Korea's only academia–institute team
in aspheric optics production

Full-cycle space-optics systems experience and thirty years of aspheric production technology in one team. The people who understand world-class equipment best accumulate metrology-and-machining data and recipes to reproduce production quality.

Jeong-Yeol Han, CEO
CEO

Jeong-Yeol Han, Ph.D.

Head, Center for Space Exploration Technology, KASI · Professor, UST

A space-optics systems expert with full-cycle experience in the design, fabrication, metrology, alignment, and performance evaluation of medium/large-aperture, off-axis, aspheric, and freeform optics. Collaborations with NASA MSFC and NOIRLab, contributions to the GMT, and industry experience at Samsung Thales.

View profile →
CTO

Sug-Whan Kim, Ph.D.

Professor Emeritus, Yonsei University · Ph.D., UCL

Pioneer of large-aperture aspheric production technology in Korea. Earned his doctorate on active polishing of large aspheric optics and contributed to the Precessions technology that became Zeeko. NASA GALEX participant, Caltech visiting faculty, and NASA JPL non-resident scientist.

View profile →
See the full team and partner network →
09 · Partnership & IR

We are looking for
partners to build with.

AsphoriX pursues collaborations that begin with customer coupon validation and grow into long-term supply partnerships. Detailed technical materials and investor documents are provided after a non-disclosure agreement (NDA).

FOR CUSTOMERS

Customers · proof of concept

Coupon machining validation, prototype supply, and priority-capacity discussions for defense primes, satellite payload makers, space agencies, and precision or semiconductor equipment companies.

  • Optical coupon and prototype validation
  • Metrology and process-recipe services
  • Long-term agreement (LTA) discussions
FOR TECHNOLOGY PARTNERS

Technology · research collaboration

Joint development with universities, research institutes, and equipment makers in polishing-process control algorithms, precision metrology, advanced-material optics, and space-environment testing.

  • Process software and AI algorithm co-development
  • Metrology and test reference collaboration
  • Government R&D consortia
FOR INVESTORS

Investors · IR

Verifiable, milestone-based growth (R&D cell → pilot → Line 1) in a high-end space and defense optics market with substantial import-substitution potential.

  • Seed round in progress
  • IR deck and data room after NDA
  • Linked government R&D and guarantee programs
Request IR materials → Request a technical meeting →
10 · Contact

Let's build
mission-critical optics together.

We welcome inquiries about technical collaboration, products, investment, careers, and media. Sensitive technical materials are shared after an NDA is in place.

Head office
57 Eoeun-ro, Yuseong-gu, Daejeon 34140, Republic of KoreaDaedeok Innopolis
R&D Center
Rm 514, Seoul Startup Hub M+, 14 Magokjungang 8-ro, Gangseo-gu, Seoul 07801Republic of Korea