DeepBlue Technology
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles
  • Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles

Competitable open source customized scientific research, education, detection, underwater unmanned aerial vehicles

Multi-working modes, supporting underwater image transmission

Specification Selection:
Standard open-source underwater robot platform; 4 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 4 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot platform; 4 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 4 thrusters; No camera; No mechanical claws
Standard open-source underwater robot platform; 6 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 6 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot platform; 6 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 6 thrusters; No camera; No mechanical claws
Standard open-source underwater robot platform; 8 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 8 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot platform; 8 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 8 thrusters; No camera; No mechanical claws
Standard open-source underwater robot platform; 3 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 3 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot platform; 3 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot platform; 3 thrusters; No camera; No mechanical claws
Standard open-source underwater robot parts platform; 4 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 4 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot parts platform; 4 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 4 thrusters; No camera; No mechanical claws
Standard open-source underwater robot parts platform; 6 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 6 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot parts platform; 6 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 6 thrusters; No camera; No mechanical claws
Standard open-source underwater robot parts platform; 8 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 8 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot parts platform; 8 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 8 thrusters; No camera; No mechanical claws
Standard open-source underwater robot parts platform; 3 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 3 thrusters; Equipped with a camera; No mechanical claws
Standard open-source underwater robot parts platform; 3 thrusters; No camera; Equipped with mechanical claws
Standard open-source underwater robot parts platform; 3 thrusters; No camera; No mechanical claws
Entry level primary and secondary education funds; 4 thrusters; Equipped with a camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 4 thrusters; Equipped with a camera; No mechanical claws
Entry level primary and secondary education funds; 4 thrusters; No camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 4 thrusters; No camera; No mechanical claws
Entry level primary and secondary education funds; 6 thrusters; Equipped with a camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 6 thrusters; Equipped with a camera; No mechanical claws
Entry level primary and secondary education funds; 6 thrusters; No camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 6 thrusters; No camera; No mechanical claws
Entry level primary and secondary education funds; 8 thrusters; Equipped with a camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 8 thrusters; Equipped with a camera; No mechanical claws
Entry level primary and secondary education funds; 8 thrusters; No camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 8 thrusters; No camera; No mechanical claws
Entry level primary and secondary education funds; 3 thrusters; Equipped with a camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 3 thrusters; Equipped with a camera; No mechanical claws
Entry level primary and secondary education funds; 3 thrusters; No camera; Equipped with mechanical claws
Entry level primary and secondary education funds; 3 thrusters; No camera; No mechanical claws
Standard open source whole machine special offer; 4 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open source whole machine special offer; 4 thrusters; Equipped with a camera; No mechanical claws
Standard open source whole machine special offer; 4 thrusters; No camera; Equipped with mechanical claws
Standard open source whole machine special offer; 4 thrusters; No camera; No mechanical claws
Standard open source whole machine special offer; 6 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open source whole machine special offer; 6 thrusters; Equipped with a camera; No mechanical claws
Standard open source whole machine special offer; 6 thrusters; No camera; Equipped with mechanical claws
Standard open source whole machine special offer; 6 thrusters; No camera; No mechanical claws
Standard open source whole machine special offer; 8 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open source whole machine special offer; 8 thrusters; Equipped with a camera; No mechanical claws
Standard open source whole machine special offer; 8 thrusters; No camera; Equipped with mechanical claws
Standard open source whole machine special offer; 8 thrusters; No camera; No mechanical claws
Standard open source whole machine special offer; 3 thrusters; Equipped with a camera; Equipped with mechanical claws
Standard open source whole machine special offer; 3 thrusters; Equipped with a camera; No mechanical claws
Standard open source whole machine special offer; 3 thrusters; No camera; Equipped with mechanical claws
Standard open source whole machine special offer; 3 thrusters; No camera; No mechanical claws

USD 21-2785

output value: Monthly Output1000

contact shop

Usage scenarios

Research and Education-Integrated Underwater Robot

For scientific research/educational training scenarios

Provide a completely new solution

Good craftsmanship, good quality

Open source ground              

station software            

            Continuously updated

           development instances

                              All-around self

                             stabilizing motion

Diving depth                  

of 100 meters                  

                3 hours of ultra

                  long battery life

                        Modular quick

                         release design

Multi language                  

development environment                  

              Get started

               with code 0

                          Support secondary

                              development

Autonomous configuration of multi degree of freedom thruster

Support multi degree of freedom motion

     Left and right translation, floating up and diving down                                Forward and backward

                                    360 ° roll                                                                            Yaw rotation

Note: The six thruster and four thruster robot configurations have reduced degrees of freedom in thruster motion

Multi working mode

   Support underwater image feedback                                               Underwater grabbing                          Temperature measurementExpandable sensors (for personalized development)         Attitude measurement                        AI algorithm deployment 

Multi language development environment for different developers

0 basic operations, ready to use out of the box

     1) Support Mixi building block programming                          2) Support Arduino programming

            3) Support Python programming                                                                 4) Support C programming language

Open API interface

Encapsulate the underlying motion code, which has implemented basic closed-loop motion control

The robot communicates with the computer, and users only need to call the corresponding functions on the computer to achieve motion control, image feedback, and other functions.

Open MATLAB and Python code interfaces to seamlessly integrate high-level PC code

Continuously updated courses

The supporting courses are continuously updated, covering all aspects of robot construction, circuit design, 

software programming, and zero foundation, allowing for quick and easy operation

Product Application

The product can be used in various scenarios such as university research, aquaculture, underwater 

exploration and rescue, underwater entertainment, etc;

Configuration List

Handle: Yes        Robot arm: optional single axis robot arm         Lighting: Optional dual channel lighting

Parameter Information

Body parameters

450×230×550mm

Frame material

PP board (default black or white, other colors can be customized by contacting customer service)

Machine quality

About 7Kg

Main control cabin material

Acrylic

Communication line length

Standard configuration of 10 meters, customer service can be contacted to increase the length

Camera parameters

1080P

Communication method

485 communication+analog signal communication

Depth sensor

MS5837

IMU sensor

Six axis attitude sensor

Power supply method

Onboard 24V lithium battery power supply

Battery life

Up to 4 hours, the specific time depends on the working mode

Number of thrusters

4 thrusters/6 thrusters/8 thrusters are optional

Comprehensive quality inspection and full cycle technical support

1. Communication needs:

Customers place orders

           1.1. Waterproof and

            pressure holding test

              1.2. Waterproof and

              pressure holding test

5. Customer acceptance technical support

          4. Packaging and shipping

            3. Functional testing

Professional after-sales technical support.Escort your development journey.

Factory Direct

Core technology self-developed

The source manufacturer directly transfers profits to consumers

Delivery Diagram

Supplier Information

Company:eriksen

Email:deepblue@ttbridge.com

Tel:15617750813

Recommended products

Underwater robots for fish detection and shooting can be customized for underwater drones

It can achieve four degrees of freedom motion: forward and backward movement, ascending and descending, rolling, and yawing

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