AI Computing

Model training, simulation and digital-twin work run on the lab’s own machines, with large jobs bursting to rented capacity.

Illustration of a GPU workstation connected to network storage

Illustration, not a photograph of the lab. It stands for the class of machine the group runs and is still adding to, rather than any particular rack.

  • RTX 5090 nodes for day-to-day training and inference
  • RTX A-series professional workstations, including a dual-card machine built this year
  • NAS storage for multimodal datasets and digital-twin workflows, expanding alongside the compute
  • National AI Computing Center capacity rented for runs that outgrow the lab

GPU capacity grows with every new grant, so the exact inventory changes through the year.

Pocheon Center

KEONIX Labs, the lab’s KAIST faculty start-up, is fitting out a civil-military-government centre for drone education, manufacturing and production at Gyeonggi Daejin Techno Park (GDTP) in Pocheon, rooms 504–505. Construction and operation are planned for the second half of 2026.

155 Jajak-ro, Pocheon-si, Gyeonggi-do · 경기 포천시 자작로 155, 경기대진테크노파크 504–505호

Production line

Four 3D printers feed a rail system that moves parts to a six-axis robot and on to a CNC machine, so a drone airframe can be printed, assembled and finished on a single line.

Schematic of the planned drone production line

Lines of this kind are already running elsewhere. The short below, from DHR Engineering, shows automated 3D printing producing drone airframes at rate — the working pattern the Pocheon line is being built around.

Video: DHR Engineering, “Drone Manufacturing: Scaling Production and Cutting Costs with Automated 3D Printing”. Embedded from the original; not JDL or KEONIX footage.

Offices and Physical AI/Drone Education room

Architectural rendering of the Pocheon office
Research office
Architectural rendering of the Pocheon Physical AI and drone education room
Physical AI/Drone Education room

The images above are architectural renderings of the planned fit-out, not photographs of a finished space.

JDL @ KAIST — Daejeon, Korea

Digital Light Processing(DLP) Printer - Asiga
Digital Light Processing(DLP) Printer - Asiga
Digital Light Processing(DLP) Printer - Carima
Digital Light Processing(DLP) Printer - Carima
Digtal light Processing(DLP) Printer - UNIZ NBEE
Digtal light Processing(DLP) Printer - UNIZ NBEE
Fused Decomposition Method(FDM) Printer - Prusa DIY
Fused Decomposition Method(FDM) Printer - Prusa DIY
Fume Hood
Fume Hood
Clean Booth
Clean Booth
Ultrasonic processor
Ultrasonic processor
Viscometer
Viscometer
UV curing machine(cure M)
UV curing machine(cure M)
Multi-point magnetic stirrer
Multi-point magnetic stirrer
Hot plate & stirrer
Hot plate & stirrer
Filament Fabrication for 3D printing
Filament Fabrication for 3D printing
High Voltage Power Supply
High Voltage Power Supply
Ultrasonic cleaner
Ultrasonic cleaner
Digital glass oil bath
Digital glass oil bath
UV curing machine(Formcure) & Lamp
UV curing machine(Formcure) & Lamp
UV/VIS Spectrometer
UV/VIS Spectrometer
Confocal Laser scanning Microscopy
Confocal Laser scanning Microscopy
Universal Tensile Machine
Universal Tensile Machine

KPU — Siheung, Korea

Fuel cell and sensor manufacturing

Fabrication

6" Atomic Layer Deposition
6" Atomic Layer Deposition
Pulsed Laser Deposition
Pulsed Laser Deposition
Sputter
Sputter
E-Beam Evaporator
E-Beam Evaporator
Plasma Enhanced Chemical Vapor Deposition
Plasma Enhanced Chemical Vapor Deposition
No photo
Deep Reactive Ion Etcher
Double-side Aligner
Double-side Aligner
Yellow Room
Yellow Room

Analysis

X-Ray Diffraction
X-Ray Diffraction
Confocal Microscopy
Confocal Microscopy
Scanning Electron Microscopy
Scanning Electron Microscopy
Electrochemical Impedance Spectroscopy
Electrochemical Impedance Spectroscopy

NTU — Singapore

Singapore Centre for 3D Printing (SC3DP)

No photo
Two-photon Polymerization(2PP) Printer