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Marine Robotics Jobs in Texas (NOW HIRING)

Experience with underwater robotics or marine autonomy. * Familiarity with network protocols, edge computing, and embedded systems. * Knowledge of hardware interfaces such as CAN, serial, and ...

Experience with underwater robotics or marine autonomy. * Familiarity with network protocols, edge computing, and embedded systems. * Knowledge of hardware interfaces such as CAN, serial, and ...

... robotics, aerospace, defense, or other harsh‑environment hardware platforms. * Experience in one or more of the following areas: perception hardware, optomechanical systems, marine auxiliary ...

... Navy, Marine Corps) missions, along with other US federal agencies, all over the world. We are ... This role owns the full capture lifecycle for CONUS opportunities involving drones/UAS/UUV, robotic ...

... Navy, Marine Corps) missions, along with other US federal agencies, all over the world. We are ... This role owns the full capture lifecycle for CONUS opportunities involving drones/UAS/UUV, robotic ...

Safety Ambassador Lead

Buda, TX · On-site

$17.75 - $24.25/hr

... Marine Corps, Coast Guard) is highly relevant experience. * Familiarity with autonomous delivery, robotics, or advanced mobility systems is beneficial. * Ability to thrive in a short-term project ...

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... Marine Corps, Coast Guard) is highly relevant experience. * Familiarity with autonomous delivery, robotics, or advanced mobility systems is beneficial. * Ability to thrive in a short-term project ...

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Marine Robotics information

What is marine robotics?

Marine robotics refers to the design, development, and use of automated machines and vehicles that operate in marine environments, such as oceans, seas, and lakes. These robots can be remotely operated or autonomous and are used for tasks like underwater exploration, environmental monitoring, pipeline inspection, and search and rescue missions. Marine robotics technology includes underwater drones (ROVs and AUVs), robotic arms, and sensor-equipped platforms that help humans explore and work in challenging underwater conditions.

What are the key skills and qualifications needed to thrive in marine robotics?

To thrive in Marine Robotics, you need a strong background in mechanical, electrical, and software engineering, often supported by a relevant degree such as ocean engineering or robotics. Familiarity with CAD software, underwater sensors, control systems, and programming languages like C++ or Python, as well as certifications in ROV or AUV operations, are typically required. Strong problem-solving abilities, teamwork, and effective communication help professionals excel in challenging marine environments. These skills and qualifications are essential for designing, deploying, and maintaining reliable robotic systems in complex underwater conditions.

What are some common challenges faced by professionals working in marine robotics?

Professionals in marine robotics frequently encounter challenges such as harsh ocean environments, equipment reliability, and communication limitations underwater. These issues require adaptability and strong problem-solving skills, as solutions may involve designing robust hardware, implementing fail-safes, and utilizing specialized communication protocols. Collaboration with multidisciplinary teams—such as oceanographers, mechanical engineers, and software developers—is essential to develop innovative approaches to these challenges. Staying current with advances in sensor technology and underwater navigation also helps professionals remain effective in this dynamic field.

What is the difference between Marine Robotics vs Marine Engineering?

AspectMarine RoboticsMarine Engineering
Required CredentialsDegree in Robotics, Marine Technology, or related fields; certifications in robotics or remotely operated vehicles (ROVs)Degree in Marine Engineering, Naval Architecture, or Mechanical Engineering; professional engineering licenses
Work EnvironmentResearch labs, offshore ROV operations, autonomous vessel testingShipyards, offshore platforms, marine design offices
Industry UsageDeveloping autonomous underwater vehicles, remotely operated systemsDesign, construction, and maintenance of ships and marine structures

Marine Robotics focuses on designing and operating autonomous and remotely operated underwater systems, often involving advanced robotics and AI. Marine Engineering involves the design, construction, and maintenance of ships and marine structures. While both roles work in the marine industry, Marine Robotics emphasizes automation and robotics technology, whereas Marine Engineering centers on traditional ship and marine system engineering.

What job categories do people searching Marine Robotics jobs in Texas look for?

The top searched job categories for Marine Robotics jobs in Texas are:

What cities in Texas are hiring for Marine Robotics jobs?

Cities in Texas with the most Marine Robotics job openings:

Infographic showing various Marine Robotics job openings in Texas as of August 2026, with employment types broken down into 96% Full Time, 3% Part Time, and 1% Contract. Highlights an 98% Physical, 1% Hybrid, and 1% Remote job distribution.

Electrical Engineer - Robotics & Autonomous Systems Associate

Fort Worth, TX • On-site

Full-time

Medical

Posted 8 days ago


Job description

About Fathom Robotics:

Fathom Robotics provides operations, maintenance, training, and applied engineering services for uncrewed maritime systems supporting U.S. Government and commercial defense programs. We have multiple active projects across a variety of government and commercial clients and are actively fielding systems in operational environments.

Role Overview:

Fathom Robotics is hiring an Electrical Engineer to own electrical subsystem design and PCB layout for our AUV and USV programs, full-time and in-person at our Fort Worth, TX facility. You will define subsystem architecture such as power distribution topology and sensor interfacing, turn it into a validated board, then carry that design through bring-up and field validation alongside the team that builds and fields it. Boards you design get built, tested, and put in the water within weeks, not years.

Location: Fort Worth, TX (in-person, on-site at our facility, with periodic field deployments)

Work Type: Full-Time, in-person

Program Conditions:

This is an in-person, on-site position at our Fort Worth, TX facility, with periodic field deployments to test and validate designs on the water. Field events involve boat operations and outdoor environments. Standard full-time schedule, with additional availability expected around design reviews and test milestones.

Responsibilities:

  • Subsystem design: define electrical architecture, including power distribution topology, sensor and communications interface strategy (ArduSub, ArduPilot, MAVLink), and connector and harness planning for marine environments
  • Subsystem design: select components and build bills of materials, balancing performance, cost, and availability
  • PCB layout: own schematic capture and board layout, translating subsystem architecture into a manufacturable design
  • PCB layout: design connector, harness, and cable assemblies for marine and field environments
  • Bring up and validate new hardware on the bench, including electrical test, debugging, and design iteration
  • Support hardware-in-the-loop testing with real sensors and flight/vehicle controllers
  • Support field deployments to validate designs under real operating conditions and troubleshoot issues in the field
  • Maintain design documentation, including schematics, BOMs, and test reports

Requirements

Required Qualifications:

  • Demonstrated hands-on PCB layout experience, including schematic capture and board layout in tools such as Altium, KiCad, or Eagle; the top-priority qualification for this role
  • Some subsystem-level electrical design experience, such as power architecture or sensor interfacing
  • Degree, or equivalent hands-on experience, in Electrical Engineering or a related field
  • Solid grounding in circuit design fundamentals: power electronics, signal integrity, and component selection
  • Hands-on electronics experience, including soldering, wiring, and bench troubleshooting
  • Familiarity with microcontroller platforms such as Arduino, STM32, or Teensy, and flight controller hardware such as Pixhawk
  • Familiarity with Embedded C/C++ or Python
  • Comfortable in a lab or shop environment through prototype build and test, and able and willing to travel to field events, including outdoors and on boats
  • Resourceful and proactive, able to problem-solve independently in a small company environment
  • US person status required (defense program context)
  • Must be able to pass a background check and be eligible to obtain a SECRET clearance

Preferred Qualifications:

  • Power electronics or battery management system design experience
  • EMI/EMC design and mitigation experience
  • Design experience with waterproof or marine-rated connectors and enclosures
  • ArduPilot, ArduSub, or MAVLink experience, on any vehicle type
  • IMU or GNSS sensor integration experience
  • CAD proficiency (SolidWorks or equivalent) to coordinate with mechanical packaging

Benefits

We offer a flexible ICHRA (Individual Coverage Health Reimbursement Arrangement) plan, giving employees the freedom to choose their own health coverage through an online shopping platform. Each employee receives a $750 stipend to put toward their plan, and the funds can also be used toward other eligible health expenses. This approach lets you tailor your coverage to fit your individual needs rather than a one-size-fits-all option.

Compensation: Competitive salary, commensurate with experience.