U.S. robotic systems

Robotic platforms
built for deployment.

Kinatric builds adaptable quadruped robots for companies deploying robotics in the real world. Add your own sensors, compute, communications, and software — or work with us to create a complete robotic platform for your application.

PlatformD2 quadruped
ArchitectureOpen development platform
OriginDesigned + assembled in the U.S.

Built for the real world

One platform.
Many missions.

Quadrupeds can operate where fixed cameras, wheeled robots, and traditional automation cannot. Kinatric platforms carry the sensing, compute, and communications hardware needed for a wide range of commercial applications.

01 / 08

Security & Patrol

Autonomous or remotely operated inspection of campuses, industrial sites, parking facilities, construction areas, and other large properties.

02 / 08

Industrial Inspection

Carry thermal cameras, acoustic sensors, gas sensors, machine vision, LiDAR, and other payloads into areas requiring recurring inspection.

03 / 08

Utilities & Infrastructure

Inspect substations, power facilities, pipelines, telecommunications infrastructure, transportation assets, and distributed infrastructure.

04 / 08

Hazardous Environments

Enter locations where heat, chemicals, unstable conditions, contamination, or other hazards make human inspection undesirable.

05 / 08

Construction & Mining

Perform progress monitoring, site documentation, equipment inspection, mapping, and remote observation across changing terrain.

06 / 08

Warehousing & Logistics

Support perimeter inspection, remote monitoring, inventory sensing, and data collection in large logistics environments.

07 / 08

Research & Autonomy

A mobile platform for teams developing AI, perception, SLAM, navigation, autonomy, and embodied intelligence.

08 / 08

Public Safety

Provide remote sensing and situational awareness where sending a person first may carry unnecessary risk.

Kinatric D2 compact quadruped robot in a studio setting

Next generation platform

Meet D2

D2 is a compact, high-performance quadruped designed as the foundation for commercial robotic systems. Its onboard motion computer runs reinforcement-learning locomotion while customers add the compute, cameras, sensors, communications, and application software their deployment requires.

18 kgRobot weight
5 kgMax payload
4 m/sMax speed
48 VElectrical platform
12Actuators
1–2.5 hTypical runtime

Open development platform

Build your system on D2

The robot handles locomotion. You decide what intelligence and connectivity your application needs.

Base layer

Kinatric Motion System

  • Reinforcement-learning locomotion
  • 12-actuator control
  • Balance and recovery
  • Stair and terrain traversal
  • Obstacle avoidance
  • Fall recovery

Configurable layer

Customer Application Layer

  • Jetson, Raspberry Pi, or selected compute
  • Cameras, LiDAR, thermal imaging
  • Environmental and specialized sensors
  • Cellular, Wi-Fi, or private radio
  • Custom communications hardware
  • Customer autonomy and software

D2 separates reliable locomotion from application-specific intelligence, allowing companies to deploy the compute and sensing architecture that fits their requirements.

D2 modular integration architecture with compute, cameras, LiDAR, radio, and environmental sensors

Designed for fleets

From one prototype to hundreds of robots

Kinatric focuses on robotic platforms that can move beyond demonstrations and into real deployments. For customers planning significant fleet sizes, we can adapt the base platform, electronics, sensing, communications, charging, and mechanical design around the requirements of the application.

Fleet of compact quadruped robots in a U.S. assembly facility

U.S. robotics platform

Designed and assembled in the United States

Kinatric is a U.S. corporation developing robotic platforms for American and international commercial customers. The D2 line is designed and assembled in the United States with an emphasis on maintainability, deployment flexibility, and scalable production.

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What do you need a robot to do?

Tell us about the environment, payload, sensors, autonomy requirements, and number of robots you need.