AIRCLAB
Robotics & AI Engineering

BuildingIntelligentRoboticsfortheRealWorld

AIRCLAB develops intelligent Robot Control technologies, AI-powered robotics platforms, embedded systems, cloud infrastructure and remote interaction technologies.

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0Core Technologies
0Research Areas
0Infrastructure Systems
0Software Platforms
Core Technologies

Every discipline, one engineering stack

Robotics
Artificial Intelligence
Robot Control
Embedded Systems
Computer Vision
Cloud Infrastructure
Automation
Rapid Prototyping
About AIRCLAB

Engineering Tomorrow. Today.

AIRCLAB is an engineering-driven technology company focused on robotics, embedded systems, AI and cloud technologies. Our multidisciplinary workflow combines mechanical engineering, electronics and software into scalable robotics platforms.

We design technologies, not toys.

Current prototype platforms use 1:10–1:12 scale vehicles as engineering research platforms — a low-cost, safe and extremely fast environment for iterating on Robot Control, AI and embedded systems. They are not products.

Photo slotWorkshop / teamlab, 3D printers, electronics bench, or founder photo
Long-Term Vision
  • Warehouse robots
  • Inspection robots
  • Agricultural robots
  • Industrial robotics
  • Autonomous ground vehicles
  • Remote robotic systems
Technologies

A full-stack robotics engineering ecosystem

From silicon to cloud — AIRCLAB owns the entire technology stack behind every prototype.

Robot Control

Development of complete Robot Control technologies combining embedded electronics, cloud software, AI and real-time communication.

Artificial Intelligence

AI-assisted navigation, perception and intelligent decision support.

Embedded Systems

ESP32, Raspberry Pi and custom embedded electronics.

Computer Vision

Visual perception, environment understanding and autonomous navigation.

Cloud Infrastructure

Distributed backend services, APIs and streaming infrastructure.

Automation

Business automation platforms and intelligent software solutions.

Rapid Prototyping

Fast development through CAD, 3D printing and engineering iteration.

Research & Development

Innovation begins with experimentation

AIRCLAB continuously develops new robotics technologies through rapid prototyping, embedded software development and real-world testing.

Artificial IntelligenceComputer VisionEmbedded ElectronicsRaspberry PiESP32TeleoperationLow-latency Video StreamingCloud InfrastructureTelemetrySensor FusionAutonomous Navigation ResearchRobot ControlRapid PrototypingCAD3D PrintingArtificial IntelligenceComputer VisionEmbedded ElectronicsRaspberry PiESP32TeleoperationLow-latency Video StreamingCloud InfrastructureTelemetrySensor FusionAutonomous Navigation ResearchRobot ControlRapid PrototypingCAD3D Printing
Development Workflow

One engineering loop, continuously iterating

01Idea
02CAD Design
033D Printing
04Electronics
05Embedded Software
06Backend Development
07Integration
08Prototype Assembly
09Testing
10Data Collection
11AI Improvement
12Next Prototype
Prototype Platforms

Engineering testbeds, not toys

Prototype platforms are engineering testbeds used to validate AI algorithms, embedded hardware, Robot Control technologies and communication systems. They are research tools, not commercial products.

Hilux

Operational

Full remote-operation platform, built on a modified chassis with a complete onboard sensor stack. Fully teleoperable end-to-end today.

Status
Operational
Control
Full Remote
Sensors
IMU · ToF · Telemetry
Role
Flagship R&D
Photo slotHilux — gallery3-4 angles, neutral background
Video slotHilux — drivingshort remote-driving clip

ZD RX12

Scalable

1:12 scale research platform with a finalized hardware specification. Validated and ready to be replicated across the full fleet.

Scale
1:12
Status
Spec Finalized
Role
Fleet Baseline
Output
Ready to Scale
Photo slotZD RX12 — gallery3-4 angles, neutral background
Video slotZD RX12 — drivingshort remote-driving clip
6Onboarding Fleet
Fleet Status

First units, printed and ready

Six simple robots have already been 3D-printed and prepared for the airdrop and onboarding fleet — the first units new users will remotely drive on the track.

Photo slotOnboarding fleet — group shotall 6 units together
Video slotFirst remote driveone of the printed units driving the track
Photo slotTrack — wide shotfull-length view, ideally elevated / drone angle
Video slotTrack — a full laponboard or chase-cam footage of a car driving the track
Testing Facility

A dedicated indoor robotics testing ground

AIRCLAB operates a dedicated indoor engineering testing facility. The track is built and already drivable end-to-end under manual remote control. Environment theming and the indoor positioning system needed for AI navigation assistance are the next milestone.

  • Road network & intersections
  • Slopes & elevation changes
  • Multiple surface types
  • Long driving routes
  • AI markers
  • Telemetry testing environment
Infrastructure

Engineering infrastructure built in-house

High-Performance Servers
Development Workstations
Raspberry Pi Fleet
ESP32 Systems
Electronics Laboratory
3D Printing Lab
CAD Workstations
Networking Infrastructure
Software

Software that powers every layer of the stack

Backend PlatformsEmbedded FirmwareCloud InfrastructureAPIsStreaming SystemsCRMLINE AutomationRobot Control SoftwareTelemetry Platforms
Roadmap

Where the engineering is headed

Current
  • Hilux — fully operational
  • ZD RX12 — spec finalized, scalable
  • Testing track built (manual driving live)
  • Onboarding fleet — 6 units printed
Next
  • Indoor positioning system (UWB)
  • AI navigation assistance
  • Track environment & terrain design
  • Robotic arm manipulation research
Future
  • Industrial Robotics
  • Commercial Robot Control Systems
  • Cloud Robotics Platform
Contact

Let’s Build the Future Together

Whether you are an investor, manufacturer, technology partner or engineering organization, we welcome opportunities to collaborate.