Autonomous Control
Overview:
Autonomous control is at the core of modern robotic systems, enabling them to perform complex tasks without human intervention. Our AI-powered flight and drive controllers use advanced algorithms and real-time data processing to navigate terrain, avoid obstacles, and complete missions across both land and air.
Details:
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Precision control with IMU, GPS, and visual odometry.
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AI-based path planning and dynamic re-routing.
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Adaptable behavior for varied environments (urban, rural, off-road).
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Integrated sensor fusion for stable flight and smooth ground travel.
Telemetry & Video Streaming
Overview:
Stay connected to your mission in real time with robust telemetry and high-definition video streaming. Our system uses long-range radio modules to deliver live feeds and critical status data from remote environments.
Details:
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Real-time HD video from onboard cameras.
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Low-latency telemetry via encrypted radio links.
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Dual-channel streaming for control and monitoring.
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Supports bandwidth optimization for remote deployments.
Modular Hardware Ecosystem
Overview:
Our hardware is built with flexibility in mind. From power modules to advanced sensors, each component is designed to plug-and-play, enabling you to build, expand, or upgrade without compatibility issues.
Details:
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Swappable modules for camera, compute, and communications.
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Supports multiple architectures (ARM, x86, RISC-V).
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Unified connectors and standardized protocols.
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Industrial-grade design for rugged use cases.
PX4 + ROS2 Compatibility
Overview:
Build smarter missions using our seamless integration with PX4 and ROS2. This compatibility ensures scalable autonomy and interoperability across your fleet and existing robotics ecosystem.
Details:
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Full support for MAVLink and DDS.
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ROS2 nodes for perception, localization, and control.
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Modular SDK for custom behaviors and mission scripting.
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Compatible with Gazebo, RViz, and other ROS tools.
Fail-Safe Safety Stack
Overview:
Safety is non-negotiable. Our fail-safe stack offers real-time monitoring, redundancy systems, and intelligent recovery to keep missions secure—even when unexpected issues arise.
Details:
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Redundant power and communication channels.
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Built-in watchdogs and health checks.
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Automatic mission abort and return-to-home (RTH) logic.
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Logging and diagnostic data for post-mission analysis.
Map-Based Mission Execution
Overview:
Design, simulate, and deploy missions with intuitive map-based planning tools. Visualize terrain, add geofences, and run missions with precision using rich, interactive maps.
Details:
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High-resolution maps with terrain, elevation, and satellite layers.
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Obstacle overlays using LiDAR or stereo vision.
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Waypoint automation and mission simulation.
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Web-based interface for easy planning and live monitoring.