Edge-deployed vision systems deliver accuracy in complex environments – no GPS or cloud required.
Hardware-agnostic software integrates seamlessly across drones and other camera-enabled devices.

Integrating advanced computer vision and artificial intelligence technology for today’s battlefield. Safeguarding democracy and freedom demands sophisticated tools that empower modern military forces. These groundbreaking innovations not only bolster safety in the heat of conflict but also pave the way for the seamless integration of robotics in high-stakes environments.
Our systems are actively deployed in real-world environments, gathering valuable insights and successful missions to users in the field. With real-time data collection and analysis, we continuously refine our solutions to ensure they meet the evolving demands of modern missions. This iterative process not only enhances the software's capabilities but also empowers your team to make informed decisions swiftly and confidently. By leveraging the latest advancements in technology, we strive to provide you with tools that are not only robust but also adaptable to the ever-changing landscapes of your operational needs.
Our system is engineered to function effectively in contested environments where GPS signals may be jammed, guaranteeing both operational resilience and dependability. It processes information and completes missions without the need for continuous radio control, making it particularly efficient in signal-jammed situations.
Robotto’s software suite isn’t married to one platform, meaning it can be applied to a multitude of platforms. Our experience with integration and tuning makes partnering with Robotto simple and streamlined. From UAVs of all sizes, ground stations and robots, the possibilities of our software are endless.
Get the software up an running on your drone in minutes not hours. Thanks to our automated activation process you’re able to activate licences on the go- making it easy to utilise our powerful features when and where you need them.
Technology evolves rapidly, and as innovative methods for countering UAVs emerge, our guidance systems do as well. Stay informed with the latest updates that reinforce your hardware, providing soldiers with the essential tools they need to safeguard democracy.
Robotto's software includes a core set of features that work across our turnkey software as well in bespoke software configurations. These set of eight core features gives operators the ability to focus on success missions even in the most stressful airspaces.
The stack was crafted to operate without reliance on traditional GPS navigation methods. Utilising vision-based guidance, the software continues along the set flight path, even without a connection to the controller.
Select and lock on to targets to activate autonomous vision-based guidance, automatically activating terminal guidance and cruise control.
Enable drones to operate independently of a control unit connection, allowing them to maintain flight while going radio silent. When cruise control is activated, drones can operate semi-autonomously and adjust their altitude, direction, and speed using vision-based guidance systems. Immune to all forms of jamming and spoofing.
Lock onto static or dynamic targets for surveillance or precision targeting missions. Our systems are built to alter flight paths to survey or navigate towards, adjusting autonomously for pitch and altitude requirements.
Selecting targets,even with Full HD, can be difficult. With Robotto’s software, users are able to re-select targets during activated terminal guidance missions, even when cruise control is activated, altering the hardware’s flight path for successful missions every time.
Often, mission success is dependent on a pilot’s ability to maintain control of the UAV throughout a mission. Drones equipped with Robotto’s defence software work with integrated mission safeguards such On Screen Display(OSD) with colour-based safety checks and operational quality of life enhancements. This prevents operators from user errors, and provides jamming& spoofing detection with counter actions, even during manual flight.
The Optical and Window Zoom system combines enhanced video quality with a 2X optical zoom to give operators a clear, Full HD view of targets and their surroundings from distances up to 2 KM. This allows users to confidently identify and select targets during autonomous flight, without being distracted by manual flight controls. By optimising the onboard digital camera for high-resolution video transmission, the system ensures that target selection is based on accuracy and mission needs—not just proximity or size—enabling safer, more effective operations.
The stack connects to both analog and digital video streams, enabling you to utilise the software in different enviornments and mission types.
Analog:
PAL and NTSC formats, typically used for low-latency, legacy systems.
Digital:
RTSP 720p streams, used for high-resolution ISR and remote operations.
Strike is a groundbreaking smart drone software, poised to transform aerial operations with its state-of-the-art features and formidable capabilities. Crafted to elevate precision, safety, and efficiency across a spectrum of applications—from military engagements to civilian endeavours—Strike embraces versatility. Its AI-powered autonomy encompasses ISR (Intelligence, Surveillance, and Reconnaissance), loitering munitions, counter-UAS (CUAS), and perimeter security, serving as a powerful ally in diverse defence scenarios.
Spectre is an advanced drone software known for its versatility and performance, enhancing efficiency, safety, and precision in various sectors, including defence and commercial. It utilises AI-driven autonomy for functions like ISR, loitering munitions, counter-UAS, and perimeter security. Its modular AI framework allows for quick adaptation to new mission profiles, ensuring scalability without technological limitations.
Contact us today to learn more about bespoke solutions tailored to your needs.
Strike was crafted to operate without reliance on traditional GPS navigation methods. Utilising vision-based navigation, the software continues along the set flight path, even without a connection to the controller.

Often, mission success is dependent on a pilot’s ability to maintain control of the UAV throughout a mission. Drones equipped with Robotto’s defence software work with integrated mission safeguards such On Screen Display (OSD) with colour-based safety checks and operational quality of life enhancements. This prevents operators from user errors, and provides jamming & spoofing detection with counter actions, even during manual flight.

With terminal navigation activated, the onboard computer takes command of navigation skilfully steering the system towards the target without the need for GPS. This sophisticated software automatically fine-tunes the hardware's pitch and altitude, making it a seamless and dynamic experience for loitering munition missions.

Selecting targets, even with Full HD, can be difficult. With Robotto’s software, users are able to reselect targets during activated terminal guidance missions, even when cruise control is activated, altering the hardware’s flight path for successful missions every time.

Enable drones to operate independently of a control unit connection, allowing them to maintain flight while going radio silent. When cruise control is activated, drones can operate semi-autonomously and adjust their altitude, direction, and speed using vision-based navigation systems. Immune to all forms of jamming and spoofing.

The Optical and Window Zoom system combines enhanced video quality with a 2X optical zoom to give operators a clear, Full HD view of targets and their surroundings from distances up to 2 KM. This allows users to confidently identify and select targets during autonomous flight, without being distracted by manual flight controls. By optimising the onboard digital camera for high-resolution video transmission, the system ensures that target selection is based on accuracy and mission needs—not just proximity or size—enabling safer, more effective operations.

Choose and monitor fixed targets during terminal activation missions or when cruise control is activated. This enables autonomous navigation in GNSS-areas, guiding the mission toward a chosen static destination.
Lock onto moving targets for terminal navigation or long-distance ISR missions. Automatically adjust altitude, pitch and speed based on the targets speed and location.
Artificial intelligence can elevate pilots’ capabilities with its sophisticated assistive target recognition. By keeping a human-in-the-loop approach, this feature not only supports pilots in the intricate target selection process but also dazzles with its ability to suggest potential targets identified through AI detection.

