Nexus NX1

Nexus NX1 is 1HMX whole-body human-machine interface for robotics, teleoperation and VR. It combines haptic gloves, locomotion hardware, full-body tracking and an SDK for robot training and remote-control workflows.

Facts

  • Company: 1HMX
  • Type: Component
  • Core: Robot compute
  • Function: Control
  • Audience: Robot OEMs
  • Status: Pre Order
  • Website: https://www.1hmx.com/nexus

About

About Nexus NX1

Nexus NX1 is a whole-body human-machine interface for robot teleoperation, training and virtual reality. The system combines haptic gloves, body tracking and locomotion hardware with an SDK that maps an operator's movement and input to a compatible robot.

1HMX offers NX1 through a pre-order programme. Robot compatibility, haptic feedback and achievable control fidelity depend on the configured hardware and software integration.

Specifications

  • System Components: HaptX Gloves G1, Freeaim Shoes, Virtuix Omni One, full-body tracking and Nexus SDK
  • Full Body Tracking: 36 DoF body tracking; 83 total tracked DoFs including hands
  • Sdk: C++ API, Unreal Engine plugin and Unity plugin
  • Availability: Pre-order
  • Haptic Actuators: 135 tactile actuators per HaptX glove
  • Hand Motion Capture: 36 DoF
  • Force Feedback N: 178 N force feedback, converted from 40 lbf

Market context

Whole-body teleoperation interface combining haptic gloves, locomotion, motion capture and SDK tooling.

  • Target environment: Humanoid teleoperation, robotics research, VR training, defense/security simulation and physical-AI data capture
  • Workflow context: Haptic teleoperation, skills transfer, remote manipulation, full-body motion capture and operator-in-the-loop control
  • Customer context: Robotics teams needing an operator interface for data capture or remote control rather than only a robot-side component.

View market context

Capabilities

whole-body haptic teleoperation system

  • Capability areas: Full-body motion capture, Haptic teleoperation
  • Workflows: Robot learning data
  • Operating environments: Humanoid teleoperation, robotics research, VR training, defense/security simulation and physical-AI data capture

View capabilities