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Robotics Deployment Engineer Jobs in Midland, TX

UAS Field Technician - Drone Operations

Midland, TX · On-site

$20.25 - $27.75/hr

... robotics, including our very own market-leading industrial drone-in-a-box solution ... Our team is made up of software and hardware engineers, industry experts, and professionals who are ...

UAS Field Technician - Drone Operations

Midland, TX · On-site

$20.25 - $27.75/hr

... robotics, including our very own market-leading industrial drone-in-a-box solution ... Our team is made up of software and hardware engineers, industry experts, and professionals who are ...

... robotics, including its very own market-leading industrial drone-in-a-box solution ... Our team is made up of software and hardware engineers, industry experts, and professionals who are ...

... robotics, including its very own market-leading industrial drone-in-a-box solution ... Our team is made up of software and hardware engineers, industry experts, and professionals who are ...

Robotics Deployment Engineer information

See Midland, TX salary details

$34.9K

$107.6K

$166.9K

How much do robotics deployment engineer jobs pay per year?

As of Aug 24, 2026, the average yearly pay for robotics deployment engineer in Midland, TX is $107,565.00, according to ZipRecruiter salary data. Most workers in this role earn between $79,000.00 and $136,000.00 per year, depending on experience, location, and employer.

What is a robotics deployment engineer?

Robotics Deployment Engineers are professionals who specialize in installing, integrating, and configuring robotic systems in real-world settings. They work closely with clients to ensure robots are properly set up, tested, and optimized for specific operational needs. Their responsibilities often include troubleshooting hardware and software issues, providing on-site support, and training staff on using robotic equipment. These engineers play a critical role in making sure robotics technology transitions smoothly from the lab or factory to its intended application environment.

What are some typical challenges faced by robotics deployment engineers during on-site installations?

Robotics Deployment Engineers often encounter challenges such as adapting to varying facility layouts, integrating new robotic systems with existing infrastructure, and troubleshooting unexpected hardware or software issues during deployment. Communication and collaboration with local IT, operations, and maintenance teams are key to overcoming these obstacles, as each site may present unique requirements or constraints. Being flexible and solution-oriented is essential, as timelines can be tight and successful deployment often hinges on quickly resolving integration and performance concerns.

What are the key skills and qualifications needed to thrive as a robotics deployment engineer, and why are they important?

To thrive as a Robotics Deployment Engineer, you need a strong background in robotics, mechanical or electrical engineering, and experience with system integration, often supported by a relevant engineering degree. Familiarity with programming languages (such as Python or C++), robotics middleware (like ROS), and hands-on experience with automation hardware and control systems are typically essential. Problem-solving, adaptability, and excellent communication skills help you coordinate with cross-functional teams and address client needs effectively. These skills ensure successful on-site deployment, troubleshooting, and optimization of robotic systems in diverse environments.

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What cities near Midland, TX are hiring for Robotics Deployment Engineer jobs?

Cities near Midland, TX with the most Robotics Deployment Engineer job openings:

Infographic showing various Robotics Deployment Engineer job openings in Midland, TX as of August 2026, with employment types broken down into 92% Full Time, 2% Part Time, and 6% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $107,565 per year, or $51.7 per hour.

Engineering Development Program (EDP) - Automation Engineering - Micron Operations

AST SpaceMobile

Midland, TX • On-site

Full-time

Re-posted 3 days ago


Job description

Position Overview

The Engineering Development Program (EDP) is designed for exceptional recent graduates who want to become Industrial Engineers by learning about high volume space industry operations to support a rapid deployment of Low-Earth Orbit (LEO) satellite constellation.

Participants in this program will begin their careers working directly on the spacecraft production floor as Engineering Technicians supporting Micron Operations. In this role, participants will gain hands-on experience assembling, testing, and integrating flight components for the phased array of the satellite.

As participants demonstrate technical capability and leadership potential, they will progress through a structured development path:

Engineering Technician Associate Manufacturing Engineer Manufacturing Engineer or Flight Assurance Engineer or Industrial Engineer or Supervisor

This program provides a rare opportunity to develop engineers who understand spacecraft hardware from the ground up-combining hands-on spacecraft assembly experience, early leadership development, and a clear transition into an engineering role. Participants will gain direct experience building flight hardware, leading technical teams, and supporting spacecraft production at scale.

Key Responsibilities

Phase 1 - Engineering Technician

Participants begin the program working directly with spacecraft hardware supporting Micron Operations.

Responsibilities include:

  • Perform hands-on assembly and integration of flight components.
  • Support mechanical integration, alignment, and fastening of microns into the phased array.
  • Assist with bonding, adhesives, potting, and precision assembly processes in accordance with engineering procedures and workmanship standards.
  • Follow strict cleanroom protocols including ESD and FOD control when handling flight hardware.
  • Support quality inspections and verification activities to ensure hardware meets engineering specifications and workmanship standards.
  • Assist with troubleshooting assembly or test issues during operations.
  • Collaborate closely with engineers and senior technicians to execute assembly, test and integration tasks.

This phase focuses on developing a deep understanding of spacecraft hardware, integration processes, and flight hardware handling.

Phase 2 - Associate Manufacturing Engineer or Associate Automation Engineer

After demonstrating strong technical performance and leadership capability, participants transition into a supervisory role supporting Micron operations.

Responsibilities include:

  • Lead and provide technical guidance to teams performing assembly and integration of spacecraft hardware.
  • Coordinate daily production activities to ensure assembly milestones are achieved on schedule.
  • Ensure technicians follow engineering procedures, quality standards, and cleanroom protocols.
  • Train and mentor junior technicians in assembly, test and integration practices.
  • Support troubleshooting and resolution of assembly and integration challenges.
  • Collaborate with engineering and production leadership to improve processes and operational efficiency.
  • Ensure proper documentation and compliance with spacecraft manufacturing standards.
  • Identify, scope, and execute a technical process improvement project to standardize or improve efficiency.

This phase provides early leadership experience managing technical teams responsible for building flight spacecraft hardware.

Phase 3 - Manufacturing Engineer or Automation Engineer

Upon successful completion of the development program, participants transition into a Manufacturing Engineer role supporting spacecraft production and integration.

Responsibilities include:

  • Support engineering teams in developing and improving assembly and integration procedures.
  • Assist with troubleshooting hardware integration challenges during operations.
  • Analyze production processes and identify opportunities for efficiency improvements.
  • Support spacecraft integration campaigns and cross-functional engineering efforts.
  • Collaborate with design engineers to provide feedback from production operations to improve hardware designs.
  • Support development of tooling, fixtures, and build processes for spacecraft production.

Participants completing the program transition into engineering roles with a unique advantage-direct experience building and integrating operational spacecraft hardware.

Qualifications

Education

Bachelor's degree in one of the following fields:

  • Aerospace Engineering
  • Mechanical Engineering
  • Electrical Engineering
  • Manufacturing Engineering
  • Industrial Engineering
  • Physics or related technical discipline

Experience

  • Recent graduate or early-career engineer with strong academic performance
  • Hands-on engineering project experience through internships, research labs, or academic programs
  • Experience with mechanical assemblies, electronics, robotics, or hardware systems preferred
  • Demonstrated interest in spacecraft systems, aerospace manufacturing, or hardware engineering

Preferred Qualifications

  • Experience with mechanical assemblies, electromechanical systems, or wiring harnesses
  • Exposure to aerospace manufacturing, spacecraft systems, or cleanroom environments
  • Experience with bonding, adhesives, or precision assembly processes
  • Participation in engineering project teams, robotics competitions, or hardware-based research projects

Soft Skills

  • Strong curiosity and desire to understand how complex hardware systems are built
  • Demonstrated leadership potential and ability to guide technical teams
  • Strong problem-solving mindset and attention to detail
  • Excellent communication and collaboration skills
  • Ability to thrive in a fast-paced engineering and production environment

Technology Stack

Engineering & Manufacturing Tools

  • Precision mechanical assembly tools
  • Electrical harness installation equipment
  • Adhesive and bonding application systems

Software & Productivity Tools

  • Microsoft Office Suite
  • Engineering documentation systems

Physical Requirements

  • Ability to perform hands-on work with spacecraft hardware and mechanical assemblies
  • Ability to stand for extended periods during integration and assembly operations
  • Ability to work in cleanroom environments under strict ESD and FOD control protocols
  • Ability to lift and move equipment up to 25 pounds as required for spacecraft integration tasks
  • Position is based at the Midland, Texas facility and requires on-site collaboration with spacecraft production and engineering teams

This job description may not be inclusive to the duties and responsibilities listed. Additional tasks may be assigned to the employee from time to time or the scope of the job may change as needed by business demands.