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Airborne Technologies

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Airborne Technologies designs and manufactures autonomous drone systems for military and commercial applications, including surveillance, inspection, and mapping.

Products

SCP-1000

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The SCP-1000 is a versatile and reliable drone designed for a variety of applications, including surveillance, reconnaissance, and inspection

Range
100 km
Max Altitude
3000 m
Endurance
5 hrs
Payload
10 kg
Tech Specifications

Equipped with a high-resolution gimbaled camera, GPS, GLONASS, and Galileo navigation systems, with a frequency range of 2.4 GHz and 5.8 GHz for communication

Software & AI

Based on Linux, utilizing Python and C++ for custom algorithms, with a PX4 autopilot system and support for ROS (Robot Operating System) for seamless integration with other systems

Integration Possibilities

Compatible with Ground Control Station (GCS) software, such as QGroundControl, and supports MAVLink protocol for communication with other drones and systems

Why This Design

The SCP-1000 was designed to provide a cost-effective and efficient solution for aerial surveillance and inspection, with a focus on ease of use and high-quality data capture

Enables

The SCP-1000 enables users to capture high-quality aerial data, inspect infrastructure, and monitor environments, all while providing a reliable and stable platform

Tradeoffs

The SCP-1000 is not designed for high-speed or high-altitude operations and may not be suitable for use in extreme weather conditions

surveillancereconnaissanceinspection

AT-C2

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The AT-C2 is a comprehensive C-UAS solution designed to detect, track, and neutralize drones, with a focus on ease of use and high-performance capabilities

Range
10 km
Max Altitude
5000 m
Endurance
2 hrs
Payload
5 kg
Tech Specifications

Equipped with a variety of sensors, including radar, acoustic, and RF sensors, with a communication range of up to 10 km and support for 4G/LTE and Wi-Fi connectivity

Software & AI

Utilizes a proprietary software platform with advanced detection and tracking algorithms, based on a Windows operating system and utilizing C++ and Python for custom development

Integration Possibilities

Compatible with a range of systems, including drones, UGVs, and other C-UAS solutions, with support for MAVLink protocol and ROS (Robot Operating System)

Why This Design

The AT-C2 was designed to provide a solution for the growing threat of rogue drones, with a focus on safety, security, and efficiency

Enables

The AT-C2 enables users to detect, track, and neutralize drones, providing a safe and secure environment for people and infrastructure

Tradeoffs

The AT-C2 is not designed for use in areas with high levels of interference or in situations where the drone is not visible

drone detectiontrackingneutralization

GT-200

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The GT-200 is a rugged and reliable UGV designed for use in a variety of applications, including explosive ordnance disposal, hazmat response, and search and rescue

Range
20 km
Max Altitude
0 m
Endurance
8 hrs
Payload
50 kg
Tech Specifications

Equipped with a variety of sensors, including GPS, IMU, and environmental sensors, with a communication range of up to 5 km and support for 4G/LTE and Wi-Fi connectivity

Software & AI

Utilizes a proprietary software platform with advanced navigation and control algorithms, based on a Linux operating system and utilizing C++ and Java for custom development

Integration Possibilities

Compatible with a range of sensors and payloads, including manipulator arms, cameras, and sampling equipment, with support for ROS (Robot Operating System) and MAVLink protocol

Why This Design

The GT-200 was designed to provide a safe and efficient solution for tasks that are dangerous or difficult for humans to perform, with a focus on autonomy and reliability

Enables

The GT-200 enables users to perform a variety of tasks in a safe and efficient manner, including explosive ordnance disposal, hazmat response, and search and rescue

Tradeoffs

The GT-200 is not designed for high-speed operations and may not be suitable for use in areas with dense vegetation or rough terrain

explosive ordnance disposalhazmat responsesearch and rescue

Airborne OS

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Airborne OS is a powerful software platform designed to simplify drone management, mission planning, and data analysis, with a focus on ease of use and high-performance capabilities

Tech Specifications

Supports a range of drone platforms, including PX4 and ArduPilot, with integration with popular data analysis tools such as QGIS and ArcGIS

Software & AI

A comprehensive software platform for drone management, mission planning, and data analysis, based on a Linux operating system and utilizing Python, C++, and Java for custom development

Integration Possibilities

Compatible with a range of systems, including drones, UGVs, and other autonomous systems, with support for MAVLink protocol and ROS (Robot Operating System)

Why This Design

Airborne OS was designed to provide a comprehensive solution for drone operations, with a focus on efficiency, safety, and data analysis

Enables

Airborne OS enables users to manage and analyze drone data, plan and execute missions, and integrate with other systems and sensors

Tradeoffs

Airborne OS is not designed for use in real-time systems or in situations where low-latency is critical

drone managementmission planningdata analysis