Growth Engine ① 196-hour autonomous AM operation
Building an End-to-End AI autonomous AM platform and a distributed manufacturing ecosystem (AM-as-a-Service) across design–build–post-processing–inspection–delivery.
Learn more →A proven automotive precision-manufacturer localizing core AI data-center thermal components with metal additive manufacturing.
We extend 20 years of IATF 16949 precision volume-manufacturing DNA into three growth engines — an AI autonomous AM ecosystem platform, AI data-center thermal management built on metal AM (AAM), and AR optical film — evolving from an automotive supplier into a global deep-tech company.
A proven mass-production foundation
Building an End-to-End AI autonomous AM platform and a distributed manufacturing ecosystem (AM-as-a-Service) across design–build–post-processing–inspection–delivery.
Learn more →Free-form metal AM design enables high-efficiency cooling heat exchangers, localizing core AI data-center liquid-cooling parts.
Learn more →A national-R&D local-dimming variable-transmittance film for AR/VR — extending our volume process and equipment into next-generation displays.
Learn more →An AM operating system that unifies design, build, post-processing, inspection and delivery into one digital operating system, aiming for up to 196 hours of unmanned autonomous operation. Three layers — autonomous build (Front-end), AI post-processing automation (Back-end) and integrated operations software — connect the End-to-End value chain and extend it into a distributed manufacturing ecosystem (AM-as-a-Service).
A cartridge-based in-line build and de-powdering process aimed at up to 196 hours of lights-out operation, raising machine utilization and production stability together.
De-bedding, support removal, precision machining and 3D inspection linked into a single AI-based automation, removing post-processing bottlenecks and manual dependence while standardizing quality.
AM-dedicated operations software (MES·QMS) that threads order–design–build–post-processing–inspection–delivery into one digital thread, running a distributed manufacturing supply chain as one.
The phased development path that validates and completes the core autonomous-build, AI-quality and unmanned-operation technologies, step by step.
Establish the large-format PBF build process window, design melt-pool and in-process monitoring sensor systems, and build an Energy-Map (optical) based real-time AI quality-monitoring prototype.
Optimize large-build printing under simultaneous Quad (4-channel) multi-laser control, automate depowdering and post-processing for volume production, and build AI defect classification/prediction models with a process–quality database.
Integrate and autonomously control an unmanned continuous line threading design–build–post-processing–inspection, run real-time defect inspection and full Micro-CT non-destructive quality verification, and secure long-duration unmanned continuous-operation reliability.
Complete the 196-hour unmanned autonomous operation proof and volume-production yield validation, establish standard process and quality-certification frameworks, and expand into a symbiotic root-enterprise AM-as-a-Service ecosystem and global supply chain.
Built on the 196-hour autonomous AM operating system, we offer root-industry partners nationwide a new AM business they can adopt with software and process standards alone — no large capital investment. Existing 5-axis machining, casting and mold capabilities convert into advanced AM post-processing, growing together through a distributed manufacturing network — a symbiotic model.
Nationwide partners with long-proven manufacturing capability — 5-axis precision machining, casting, molds, heat treatment.
Connected to the 196-hour autonomous system and operations SW — AM conversion with software and process standards alone, no large capex.
Enter advanced-part post-processing as a new business via a distributed manufacturing network — customers and partners grow together.
PBF (Powder Bed Fusion) is the core process of metal additive manufacturing. The global AM market is projected to grow from about $21.8B in 2024 to about $115B in 2034 — over 18% CAGR — a fast-expanding opportunity for an autonomous AM operating platform.
Source: global AM market estimate (industry outlook).
Soaring rack power makes liquid cooling mandatory — and the localization gap in core heat-exchange parts is the opportunity.
$48B (2025) → $271B (2035), 18.2% CAGR. Unit: USD billion ($B). Source: industry market forecasts.
We develop and run the The Metal 200/300/500 printers and post-processing automation (CY-CNC, DP400) ourselves, internalizing the full cycle — design, printing, post-processing, inspection. That means direct control of cost, lead time and quality, with no equipment dependency.
Starting with data-center cooling, we expand into EV motors (copper hairpins), aerospace, medical implants, defense and precision molds — diversifying away from single-market dependence and creating upside optionality.
Our goal is repeatable volume-grade quality, not one-off prototypes. We transplant our IATF 16949 production culture into AM and add AI-based in-process inspection — a fundamental differentiation from prototype shops.
We validate core metals such as SUS316L and pure copper in-house and support new-material development, while expanding an AM and heat-exchange design patent portfolio to build defensible technology assets.
Start from the most validated part supply, then differentiated products, then global markets — expanding step by step.
Develop metal-AM integrated heat exchangers and supply validation loops/CDUs to secure first references.
Expand to leak-free, negative-pressure differentiated products for domestic and global customers.
Building on validated products and technology, expand to overseas customers and markets — entering global data-center and mobility markets.
Full-cycle localization — design, inspection, post-processing, validation and materials.
The Metal series (affiliate CY Metal) for cost and lead-time control.
20 years of automotive volume-production DNA — an IATF 16949 quality system delivering 6M+ parts/year under 100 ppm, applied directly to AM mass production.
Turns leaks into suction by design — eliminating the data center's biggest risk.
4 registered patents → 13+ target; pursuing ASME, PED, UL international certifications.
As lead institution of a MOTIE/KEIT display-innovation national R&D program, we developed a local-dimming, variable-transmittance film cell for AR/VR devices — extending our in-house volume-production process and equipment capability into next-generation display components as a second growth axis.
In bright environments, ambient light washes out the virtual image and degrades AR visibility (ambient contrast ratio). Our local-dimming approach selectively dims only the image area while keeping overall see-through transparency.
A Guest-Host liquid-crystal design delivers large-area, fast-response, low-voltage and uniform (LCD-class) operation versus electrochromic, with Haze-Free clarity and curved AR-lens lamination.
We developed the volume process and equipment ourselves — R2P imprint process and machines, LC coating, and local-dimming ITO wiring film. The core advantage is process technology built for mass production, not prototyping.
For details on our business and collaboration, please contact our headquarters.
This page contains forward-looking statements about business and markets and is not an offer to invest. Market figures are estimates based on public industry data; actual results may differ.