DIGITAL TWIN

Build It In
Simulation First

Real-world mistakes cost money, time, and safety.

Decades of CAD into sim-ready files —

every part tree preserved, physics & joints injected.

Catch them virtually — before they're built into reality.

Decades of CAD into sim-ready files —

every part tree preserved, physics & joints injected.

OVERVIEW
OVERVIEW

Why TRINIX?

Why TRINIX?

A digital twin recreates factories and equipment in the virtual world so you can build, operate, and validate them before breaking ground. But experimenting on a real plant costs enormous time and money, high-risk floors are dangerous, and even a virtual build used to take months. TRINIX generates 3D CAD from images alone and injects the physics cutting that process from months to days.

A digital twin recreates factories and equipment in the virtual world so you can build, operate, and validate them before breaking ground. But experimenting on a real plant costs enormous time and money, high-risk floors are dangerous, and even a virtual build used to take months. TRINIX generates 3D CAD from images alone and injects the physics cutting that process from months to days.

01

Bring Your Own CAD

Just deploy your CAD.

Then we will make them SimReady.

A sentence of Text or an Image is enough to generate a 3D model.

02

Start From an Image

Takes too much time to draw one by one?

Takes too many words to describe? Then describe with an image.

A sentence of Text or an Image is enough to generate a 3D model.

PROCESS
PROCESS

How It Works

Step 01

Describe your factory with Text, Image, or CAD

TRINIX generated 3D model in CAD simply with prompt.

Step 02

Generate the space and equipment as 3D CAD

TRINIX generated 3D model in CAD simply with prompt.

Step 03

Inject physics to make it operable

TRINIX generated 3D model in CAD simply with prompt.

Step 04

Separate visual and collision mesh to ensure smooth simulation

TRINIX generated 3D model in CAD simply with prompt.

Step 05

Operate and validate in simulation

TRINIX generated 3D model in CAD simply with prompt.

Convert Your CAD without Loss

Convert Your CAD without Loss

01. Upload Your CAD

Bring in the CAD data you already own.

02. Describe What Matters

Tell us which details need to be preserved.

03. Part-Level Reconstruction

TRINIX analyzes the data and rebuilds the part composition.

04. Automatic Physics Injection

Physics and articulation data are inferred and injected automatically.

05. Collision Mesh Separation

Visual and collision mesh are separated for smooth simulation.

06. Simulation-Ready Export

Export into a simulation-ready file.

01. Upload Your CAD

Bring in the CAD data you already own.

02. Describe What Matters

Tell us which details need to be preserved.

03. Part-Level Reconstruction

TRINIX analyzes the data and rebuilds the part composition.

04. Automatic Physics Injection

Physics and articulation data are inferred and injected automatically.

05. Collision Mesh Separation

Visual and collision mesh are separated for smooth simulation.

06. Simulation-Ready Export

Export into a simulation-ready file.

Build, Operate, and Train
Before You Break Ground

Build, Operate, and Train
Before You Break Ground

Build the virtual factory in

3D CAD from Text or Image. Save your effort.

Auto-defined

articulation

Build the virtual factory in

3D CAD from Text or Image.

Save your effort.

Operate and validate in simulation

before youbuild in reality. Save your time and money.

Operate and validate in simulation

before youbuild in reality.

Save your time and money.

Train robots to allocate to

dangerous tasks. Save your people.

Train robots to allocate to

dangerous tasks. Save your people.

Beyond a Single Space,
the Entire Environment.

Beyond a Single Space,
the Entire Environment.

Go beyond buildings to entire outdoor environments and city scale maps. Ideal for training autonomous driving robots on realistic roads and spaces.

See More Demo
USE CASES
USE CASES

How TRINIX Is Used

  • Pre-validate a virtual

    production line

  • Simulate equipment layout

    and flow

  • Safety validation before

    deploying robots

  • Pre-validate a virtual

    production line

  • Simulate equipment layout

    and flow

  • Safety validation before

    deploying robots

OTHER SOLUTIONS
OTHER SOLUTIONS

Explore Other Solutions

black and white robot illustration

Physical AI

Generate high-fidelity simulation data for your robots to learn from.

close-up photography of black metal gears

Design Automation

Free yourself from stroke-by-stroke modeling. Automate the process instead.

black flat screen computer monitor

Asset Library

Browse a library of SimReady assets, ready to drop into your simulation.

CONTACT US
CONTACT US

Validate In Simulation
Before You Build

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[Our Locations]

Korea HQ

18F, Kins Tower, 8 Seongnam-daero 331beon-gil, Bundang-gu, Seongnam-si, Gyeonggi-do, Republic of Korea

R&D Center

Office 403, Global Biz Center, 43 Changeop-ro, Sujeong-gu, Seongnam-si, Gyeonggi-do, Republic of Korea

US Office

3003 N 1st St., San Jose, CA 95134, United States

ⓒ 2026 NDotLight Co., Ltd.

Korea HQ

18F, Kins Tower, 8

Seongnam-daero 331,

Bundang-gu,

Seongnam-si,

Gyeonggi-do,

Republic of Korea

R&D Center

Office 403,

Global Biz Center, 43 Changeop-ro,

Sujeong-gu,

Seongnam-si,

Gyeonggi-do,

Republic of Korea

US Office

3003 N 1st St.,

San Jose,

CA 95134,

United States

ⓒ 2026 NDotLight Co., Ltd.