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3D Robotics Jobs in Texas (NOW HIRING)

Mechanical Engineer - Robotics This role focuses on owning the mechanical design and engineering ... Generate comprehensive engineering documentation, including 3D CAD models, detailed 2D drawings in ...

Robotics Technician

New Braunfels, TX · On-site

$74K - $101K/yr

... 3d printing, etc.) o Electrical/motor controls (actuators, sensors, communication, HMI, PLC) - Able to read and write schematics o Familiar with Software concepts and interfaces (PLC and HMI) Debug ...

... robotic 3D printing construction equipment. You will perform advanced analyses, create detailed ... Proficiency with SolidWorks for 3D CAD modeling and mechanical design. * Strong experience in ...

... robotic 3D printing construction equipment. You will perform advanced analyses, create detailed ... Proficiency with SolidWorks for 3D CAD modeling and mechanical design. * Strong experience in ...

We design and integrate multi-axis robotic arms, perception systems including custom imaging hardware, optical coherence tomography tissue imaging, power electronics, and safety systems such as 3D ...

Familiarity with 3D localization or VLM-based object detection (e.g., perception/ segmentation ... Experience with robotics frameworks and middleware such as ROS/ROS 2 and IsaacSIM for modeling ...

Familiarity with 3D localization or VLM-based object detection (e.g., perception/ segmentation ... Experience with robotics frameworks and middleware such as ROS/ROS 2 and IsaacSIM for modeling ...

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3D Robotics information

See Texas salary details

$78.3K

$89.4K

$108.5K

How much do 3d robotics jobs pay per year?

As of Jul 26, 2026, the average yearly pay for 3d robotics in Texas is $89,438.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,800.00 and $95,000.00 per year, depending on experience, location, and employer.

What is the difference between 3D Robotics vs UAV Pilot?

Aspect3D RoboticsUAV Pilot
Required CertificationsPart 107 Remote Pilot Certificate, drone operation licensesPart 107 Remote Pilot Certificate, drone operation licenses
Work EnvironmentManufacturing, drone design, R&D, field testingField operations, aerial surveys, inspections
Industry UsageDrone manufacturing, technology developmentSurveying, agriculture, cinematography, inspections

Both 3D Robotics and UAV Pilot roles require similar certifications like the Part 107 Remote Pilot Certificate. While 3D Robotics focuses on drone design and manufacturing, UAV Pilots primarily operate drones in the field for various applications such as surveying or inspections. The roles often overlap in industry usage, but their core responsibilities differ: one develops drones, the other pilots them in real-world scenarios.

What are 3D Robotics?

3D Robotics refers to the design, development, and operation of robots that utilize three-dimensional movement and spatial awareness. These robots are often used in fields such as drone technology, automation, and manufacturing, where they can move in all three spatial axes (x, y, and z). Professionals in 3D robotics work on creating robots capable of tasks like aerial mapping, surveying, inspection, and automation. The field combines mechanical engineering, electronics, programming, and sometimes artificial intelligence to build innovative robotic systems.

What are some common challenges faced by professionals working in 3D robotics, and how can they be addressed?

Professionals in 3D robotics often encounter challenges such as integrating hardware and software components, ensuring precise calibration of sensors, and troubleshooting unexpected behaviors in robotic systems. Collaboration with multidisciplinary teams—including mechanical engineers, software developers, and designers—is essential to address these issues effectively. Staying current with industry advancements and adopting best practices for testing and validation can help overcome technical hurdles and contribute to successful project outcomes.

What are the key skills and qualifications needed to thrive as a 3D Robotics Engineer, and why are they important?

To thrive as a 3D Robotics Engineer, you generally need strong skills in mechanical and electrical engineering, programming, and robotics design, often supported by a degree in engineering or a related field. Familiarity with CAD software, robotics simulation tools, embedded systems, and possibly certifications in robotics or automation are essential. Critical thinking, problem-solving, and effective teamwork set standout professionals apart in this role. These skills are crucial for designing, building, and troubleshooting advanced robotic systems that function reliably in real-world applications.
What cities in Texas are hiring for 3D Robotics jobs? Cities in Texas with the most 3D Robotics job openings:
Infographic showing various 3D Robotics job openings in Texas as of July 2026, with employment types broken down into 69% Full Time, 23% Part Time, 4% Contract, and 4% Summer. Highlights an 96% In-person, and 4% Remote job distribution, with an average salary of $89,438 per year, or $43 per hour.
Robotics Research Engineer -Mechanical & Additive Manufacturing(3D Printing) (1831)

Robotics Research Engineer -Mechanical & Additive Manufacturing(3D Printing) (1831)

Aramco Services Company

Houston, TX • On-site

Full-time

Posted 29 days ago


Job description

OVERVIEW:
The Sensors and Robotics Team at Aramco's Houston Research Center creates disruptive technologies to advance discovery of resources, recovery from the subsurface, and operational efficiency. We're looking for a creative, hands-on problem solver who plays well with others, likes to tackle big challenges, and takes responsibility for delivering results. Our interests include developing sensors and robotic systems for automating our Upstream operations.
Duties & Responsibilities
  • Design, develop, and optimize mechanical components and assemblies for robotics, sensing systems, and oil & gas applications using additive manufacturing techniques and solidworks
  • Strong understanding of:
    • Additive manufacturing processes (FDM, SLA, SLS, PolyJet)
    • Design for additive manufacturing (DfAM) principles
    • Mechanical design tools (CAD, simulation software)
  • Operate, maintain, and troubleshoot 3D printing systems, including Formlabs (SLA/SLS), Stratasys (PolyJet/FDM), and Bambu Lab (FDM) platforms
  • Select appropriate materials (e.g., Nylon 12, photopolymers, engineering thermoplastics) and printing processes based on functional and environmental requirements
  • Develop and execute print strategies, including build orientation, support design, and post-processing workflows (curing, depowdering, finishing)
  • Conduct mechanical testing, dimensional inspection, and performance validation of printed parts
  • Collaborate with robotics and sensing teams to rapidly prototype and iterate designs
  • Maintain detailed documentation of print parameters, material usage, and test results
  • Ensure safe operation of all additive manufacturing equipment in accordance with internal policies and OEM guidelines
  • Identify and mitigate hazards associated with 3D printing, including:
    • Powder handling (e.g., Nylon 12 dust exposure)
    • Resin handling and post-processing chemicals
    • High-temperature components and moving mechanical systems
  • Utilize appropriate PPE (respirators, gloves, eye protection) and engineering controls (ventilation, enclosures)
  • Support development and enforcement of Standard Operating Procedures (SOPs) for all AM equipment
  • Conduct routine safety inspections and contribute to risk assessments for new processes and materials

MINIMUM REQUIREMENTS:
  • Bachelor of Science degree in an Engineering discipline from a recognized college or university.
  • Nine (9) years applicable experience, such that the incumbent is clearly recognized as an expert in the field.
  • Must be able to communicate and comprehend accurately, clearly and concisely in English at a level required to perform the job as outlined.
  • Must have a thorough knowledge of engineering practices including scientific and economic principles, calculation methods, design details, and codes, standards and specifications. Must possess good work habits, a strong work ethic, and be able to adhere to company work hours, policies, and standard business etiquette.

NO THIRD-PARTY CANDIDATES ACCEPTED