Eclipse Robot

Eclipse Robot
Control System

The Eclipse Master Station is a portable, ergonomically designed control unit optimised for intuitive, real-time operation. Equipped with mesh networking capabilities, it enables reliable, secure communication across dynamic or large-scale environments, ensuring uninterrupted control even in complex or high-risk scenarios.

Tech Specs

Security: AES-256 encryption of all sensor data and robot control commands.
Data Streaming: Up to 1 GB/s data rate, 23 ms latency, 300m wireless, or 1 km with fiber optics tether.
Data Capture: Instantaneous data acquisition designed to capture and analyze inputs from sensors in real-time.
Network: Advanced mesh networking technology to ensure reliable, scalable, and self-healing connectivity.
Control Systems: XR integration with gesture-based commands and a 7-inch handheld copilot controller.
Accessibility: User-friendly interface that provides seamless integration into exiting protocols.

Immersive Teleoperation

Harness advanced "extended reality" control systems that allow remote operators to manage robotic systems with precision from a safe distance. These systems provide rich sensory feedback—visual, tactile, and auditory—ensuring intuitive operation. Infrared sensors seamlessly translate the operator's movements into precise robotic actions for enhanced efficiency

Eclipse Robot

Head Mounted Display

Display: LCD screen providing clear visuals for accurate task assessment.
Refresh Rate: 120Hz for smooth movements and quick operator response.
Field of View: 110° for wide situational awareness.
Tracking: Inside-out tracking for accurate positioning without external sensors.
Real-time Analysis: Seamless integration of real-time metrics, alerts, and environmental data.

Range & Network

Eclipse Multi-Utility Robot

Mesh Network Node

Eclipse Master Station

Robot

300m range between wireless devices

1km range between tethered devices

State-of-the-art mesh networking technology enables seamless and reliable data transfer between devices, even in challenging environments without a direct line of sight.
These robust, self-healing networks provide seamless data transfer between the robot and its operator, automatically adapting to disruptions to ensure smoooth operations.

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