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A robust, scalable and proprietary architecture makes the product extremely customizable, based on mission specifics and the costumer’s needs. It is an ideal robot for coastal uses like survey, research, environmental monitoring, data collection in polluted environments, evaluation of plant installation status, organism and item mapping. Proteo is accessible and easy to use, can be transported and managed by just one person. It can work with or without supporting vessels and allows significant time savings on carried out activities. The powerful algorithms for stability control are easy to master even for a non-adept user, as well as the robot in its ROV version, since the user can count on a constant electronic support during the entire navigation. The Artificial Intelligence, especially for all those missions that require finding and recognizing a specific target, proves to be a definitely efficient tool to solve problems. With this equipment, the operator does not need to constantly monitor the mission, since the robotic unit (the A.I. inside the robot) is able to autonomously recognize and alert him, when it spots the target it has been trained to find.

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Taking a customer-centric approach to make innovative features to our products.

Proprietary mechanical platform planning

Ability to design and build platforms that can be integrated on any robot of ours, to make them cooperate and work autonomously in any environment.

Proprietary Software Platform planning

Ability to create custom software to manage robots and devices singularly and in swarming, making them cooperate in every environment (space, air, land, water).

Proprietary hardware platform planning

Ability to design and integrate platforms that support requested software and or sensors on any robot of ours, to make them cooperate and work autonomously in any environment.

Communication system (encrypted)

Hardware and software encription, to tailor safety at the highest standard.

On Board A.I.

All our devices are equipped with Artificial Intelligence, to execute missions autonomously, make calculations and elaborations onboard 24/7 and change profile missions in real time.

GPS positioning system (when surfacing)

To navigate using satellite images updated in real time.

Chat Bot (when surfacing)

A quick and easy to handle way to interact with Artificial Intelligence.

Frontal and ventral camera

Two image sensors allow multipurpose missions and simultaneous multi function elaborations.

Autonomous navigation

Artificial Intelligence enables our devices to position and move according to target and mission programs.

Capability of in swarming operation

Our robots actively communicate and arrange to manage missions like a swarm, in which everyone acts according to its peculiar technical characteristics.

Data Uplink and Downlink systems (wire-guided)

To have real time data stream and mission modification possibility during mission execution.

Acoustic modem

To transfer data underwater with phone like technologies.

Side Scan Sonar

A classic underwater sensor to monitor the environment at different scales.

Multi beam sonar image scanner

A powerful tool to provide complete data sets for image analysis.

Depth gauge

A pressure gauge that displays the equivalent depth in water, to have an accurate position evaluation.

Interconnection with IoT platform for status/maintenance analysis

To know and monitor a target status can help to prevent failures, safety issues and avoidable expenses.

LED illumination

Efficient and energy saving sturdy light method.

Proprietary mechanical platform planning

Ability to design and build platforms that can be integrated on any robot of ours, to make them cooperate and work autonomously in any environment.

Proprietary Software Platform planning

Ability to create custom software to manage robots and devices singularly and in swarming, making them cooperate in every environment (space, air, land, water).

Proprietary hardware platform planning

Ability to design and integrate platforms that support requested software and or sensors on any robot of ours, to make them cooperate and work autonomously in any environment.

Communication system (encrypted)

Hardware and software encription, to tailor safety at the highest standard.

Autonomous navigational system

Artificial Intelligence enables our devices to position and move according to target and mission programs.

On Board A.I.

All our devices are equipped with Artificial Intelligence, to execute missions autonomously, make calculations and elaborations onboard 24/7 and change profile missions in real time.

GPS positioning system (when surfacing)

To navigate using satellite images updated in real time.

Chat Bot (when surfacing)

A quick and easy to handle way to interact with Artificial Intelligence .

Frontal and ventral camera

Two image sensors allow multipurpose missions and simultaneous multi function elaborations.

Autonomous navigation

Artificial Intelligence enables our devices to position and move according to target and mission programs.

Capability of in swarming operation

Our robots actively communicate and arrange to manage missions like a swarm, in which everyone acts according to its peculiar technical characteristics.

Data Uplink and Downlink systems (wire-guided)

To have real time data stream and mission modification possibility during mission execution.

Acoustic modem

To transfer data underwater with phone like technologies.

Side Scan Sonar

A classic underwater sensor to monitor the environment at different scales.

Multi beam sonar image scanner

A powerful tool to provide complete data sets for image analysis.

Depth gauge

A pressure gauge that displays the equivalent depth in water, to have an accurate position evaluation.

Interconnection with IoT platform for status/maintenance analysis

To know and monitor a target status can help to prevent failures, safety issues and avoidable expenses.

LED illumination

Efficient and energy saving sturdy light method.

Pro-active collision avoidance

Robot and mission safety is a primary concern and obstacle avoidance is guaranteed.

Neural networks for image analysis

To analyse and detect any detail or process in image composition.

Neural networks for 3D reconstructions

For complex image handling and multipurpose uses.

Neural networks for anomaly recognition

Able to notice and elaborate image details, to identify humans respecting privacy policies.

Underwater recharge station

To avoid time and energy waste and skip re-positioning process in extended missions.

Robotic arm

For taking samples and interacting with underwater environment.

Multi-parametric sensor

To control many variables with one single sensor, reducing size and complexity.

Surface vessel/Support buoy

Collaborative robots to provide real time and continuous communication with underwater robots and execute supportive missions with onboard sensors or host underwater devices during navigation.

Positioning system with acoustic sensors

To take advantage of pressure waves for environmental studies.

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In depth

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Weight

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To reach the maximum depth

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Battery autonomy

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  • Security and monitoring
  • Building sites, Marine industries
  • Port infrastructure
  • Energy production plants
  • Oil and gas depot stations

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  • Geology and volcanology
  • Monitoring of pipelines
  • Inspection of ship hull surfaces
  • Oceanographic exploration
  • Civil and military applications

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  • Inspection of infrastructures
  • Emergency research
  • Monitoring of seas and lakes
  • Monitoring of sea fauna and flora
  • Environmental surveys

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Answer your questions, experience our cutting-edge solution, discuss any of your needs and to provide you with a quote that suits with your requirements.

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