1

Python Mechanical Engineer Jobs in Midland, TX (NOW HIRING)

You will work closely with systems, mechanical, and electrical engineering teams to ensure mission ... Data Analysis Software (e.g., MATLAB, Python - NumPy/SciPy), DAQ Control Software (e.g., LabVIEW ...

You will work closely with systems, mechanical, and electrical engineering teams to ensure mission ... Data Analysis Software (e.g., MATLAB, Python - NumPy/SciPy), DAQ Control Software (e.g., LabVIEW ...

You will work closely with systems, mechanical, and electrical engineering teams to ensure mission ... Data Analysis Software (e.g., MATLAB, Python - NumPy/SciPy), DAQ Control Software (e.g., LabVIEW ...

next page

Showing results 1-20

Python Mechanical Engineer information

See Midland, TX salary details

$22.6K

$137.4K

$198.8K

How much do python mechanical engineer jobs pay per year?

As of Jun 9, 2026, the average yearly pay for python mechanical engineer in Midland, TX is $137,422.00, according to ZipRecruiter salary data. Most workers in this role earn between $108,500.00 and $161,500.00 per year, depending on experience, location, and employer.

What is the difference between Python Mechanical Engineer vs Mechanical Design Engineer?

AspectPython Mechanical EngineerMechanical Design Engineer
Required SkillsPython programming, mechanical engineering fundamentalsMechanical design, CAD software, engineering principles
Work EnvironmentSoftware development teams, engineering labsDesign offices, manufacturing facilities
CertificationsOptional Python or software certifications, engineering licensesProfessional Engineer (PE), CAD certifications
Industry UsageAutomation, robotics, simulationProduct design, machinery, structural components

The main difference between a Python Mechanical Engineer and a Mechanical Design Engineer lies in their focus areas. Python Mechanical Engineers combine programming skills with mechanical engineering knowledge to develop automation and simulation tools, while Mechanical Design Engineers focus on creating physical product designs using CAD software. Both roles are essential in engineering projects but serve different functions within the industry.

What are the key skills and qualifications needed to thrive as a Python Mechanical Engineer, and why are they important?

To thrive as a Python Mechanical Engineer, you need a solid foundation in mechanical engineering principles, strong programming skills in Python, and typically a bachelor’s degree in mechanical engineering or a related field. Familiarity with simulation and modeling tools like ANSYS or SolidWorks, as well as experience with Python libraries such as NumPy and pandas, is highly beneficial. Problem-solving abilities, effective communication, and adaptability set candidates apart in this role. These skills are essential for efficiently designing, analyzing, and automating engineering processes, leading to innovative and optimized mechanical solutions.

How do Python Mechanical Engineers typically collaborate with cross-functional teams during product development?

Python Mechanical Engineers often work closely with electrical engineers, software developers, and product managers throughout the product development cycle. Their role involves integrating Python-based automation and simulation tools with mechanical design processes, which requires clear communication and coordination to ensure compatibility and efficiency. Regular meetings, collaborative project management platforms, and shared documentation are commonly used to align goals and resolve technical challenges. This cross-disciplinary teamwork not only enhances product quality but also provides valuable opportunities for professional growth and learning.

What does a Python Mechanical Engineer do?

A Python Mechanical Engineer is a professional who combines mechanical engineering expertise with proficiency in the Python programming language. They often use Python to automate simulations, analyze engineering data, create custom computational tools, and develop scripts for design optimization. Their work can involve tasks such as automating CAD processes, running finite element analysis, or integrating hardware and software systems. This combination of skills is increasingly valuable in industries that emphasize digital engineering and automation.
What are popular job titles related to Python Mechanical Engineer jobs in Midland, TX? For Python Mechanical Engineer jobs in Midland, TX, the most frequently searched job titles are:
What job categories do people searching Python Mechanical Engineer jobs in Midland, TX look for? The top searched job categories for Python Mechanical Engineer jobs in Midland, TX are:
What cities near Midland, TX are hiring for Python Mechanical Engineer jobs? Cities near Midland, TX with the most Python Mechanical Engineer job openings:
Infographic showing various Python Mechanical Engineer job openings in Midland, TX as of June 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $137,422 per year, or $66.1 per hour.
Manufacturing Engineer (NPI & Tooling)

Manufacturing Engineer (NPI & Tooling)

AST SpaceMobile

Midland, TX • On-site

$71K - $92K/yr

Full-time

Posted 19 days ago


Job description

AST SpaceMobile is building the first and only global cellular broadband network in space to operate directly with standard, unmodified mobile devices based on our extensive IP and patent portfolio and designed for both commercial and government applications. Our engineers and space scientists are on a mission to eliminate the connectivity gaps faced by today's five billion mobile subscribers and finally bring broadband to the billions who remain unconnected.

Position Overview

The Manufacturing Engineer is responsible for developing, optimizing, and automating production processes that support high-reliability automotive and aerospace manufacturing. This role drives end-to-end process design, equipment implementation, and continuous improvement initiatives to enable safe, repeatable, and efficient production. The engineer partners cross-functionally with design, quality, and operations teams to support new product introduction (NPI), improve manufacturability, and scale production capacity in regulated, quality-critical environments.

Key Responsibilities

Process Development & Optimization

  • Develop, validate, and optimize manufacturing processes for new and existing products.
  • Create and maintain process documentation including work instructions, PFMEAs, control plans, process flow diagrams, and SOPs.
  • Perform time studies, capacity modeling, and line balancing to improve throughput and efficiency.
  • Identify and eliminate bottlenecks to ensure stable, repeatable production performance.

Lean Manufacturing & Continuous Improvement

  • Implement Lean methodologies including 5S, Kaizen, SMED, VSM, and structured root-cause problem solving.
  • Drive improvements in cycle time, takt time, yield, and overall process quality.
  • Support TPM initiatives and improve OEE metrics across production assets.
  • Lead continuous improvement projects focused on waste reduction and operational excellence.

Automation & Equipment Engineering

  • Specify, design, and implement automated equipment, robotics, vision systems, PLC-based controls, and automated test equipment (ATE).
  • Partner with external vendors for equipment sourcing, installation, commissioning, and validation.
  • Develop or support automation programming using PLCs, Python, LabVIEW, or similar tools.
  • Conduct equipment capability studies including Gage R&R, MSA, Cp/Cpk, and validation protocols.

Quality & Compliance

  • Ensure manufacturing processes comply with IATF 16949, AS9100, ISO 9001, and related standards.
  • Lead root cause investigations using 8D, fishbone, and 5-Why methodologies.
  • Partner with Quality Engineering to implement robust process controls and improve first-pass yield.
  • Maintain documentation and traceability in regulated production environments.

Cross-Functional Collaboration

  • Support new product introduction (NPI) activities from concept through production ramp.
  • Lead DFM/DFA reviews to ensure manufacturability and cost efficiency.
  • Coordinate with supply chain, production, and program teams to enable smooth launches and sustained operations.

Safety & Operational Excellence

  • Ensure all processes meet safety, ergonomic, and environmental standards.
  • Conduct risk assessments and support EHS initiatives.
  • Provide hands-on technical support to shop floor teams to resolve production issues.

Qualifications

Education

  • Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, Industrial Engineering, Aerospace Engineering, or a related technical field.

Experience

  • 10+ years of experience in automotive, aerospace, or other high-reliability manufacturing environments.
  • Demonstrated experience in process automation, robotics, equipment design, or automated test systems.
  • Strong background in Lean Manufacturing, Six Sigma tools, and continuous improvement.
  • Experience developing PFMEA, Control Plans, GD&T application, and DFM/DFA practices.
  • Hands-on experience with CAD tools (SolidWorks, CATIA, or similar).
  • Familiarity with regulated manufacturing quality systems and standards.

Preferred Qualifications

  • Six Sigma Green Belt or Black Belt certification.
  • PLC programming, robotics integration, or automation scripting experience.
  • Experience in aerospace satellite assembly, automotive electronics, or precision manufacturing.
  • Knowledge of ERP/MES systems and digital manufacturing platforms.
  • Background in reliability engineering or environmental qualification testing.

Soft Skills

  • Strong analytical and problem-solving capability.
  • Effective cross-functional collaboration and stakeholder communication.
  • Project management and prioritization skills in fast-paced production settings.
  • Hands-on, solution-oriented mindset with strong ownership.

Technology Stack

  • CAD: SolidWorks, CATIA, or similar
  • Controls/Automation: PLCs, robotics systems, vision systems
  • Programming/Scripting: Python, LabVIEW (or similar)
  • Manufacturing Systems: ERP/MES platforms
  • Quality/Analysis: MSA tools, Cp/Cpk, Lean/Six Sigma toolsets

Physical Requirements

  • Frequent presence on production floor and manufacturing lines.
  • Ability to work around automated equipment and testing systems.
  • Occasional lifting, standing, and extended time in an industrial environment.

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.

AST SpaceMobile is an Equal Opportunity, at will Employer; employment is governed on the basis of merit, competence and qualifications and will not be influenced in any manner by race, color, religion, gender, national origin/ethnicity, veteran status, disability status, age, sexual orientation, gender identity, marital status, mental or physical disability or any other legally protected status.