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Python Mechanical Engineer Jobs in Athens, GA (NOW HIRING)

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Python Mechanical Engineer information

See Athens, GA salary details

$22.2K

$135.2K

$195.5K

How much do python mechanical engineer jobs pay per year?

As of Jun 18, 2026, the average yearly pay for python mechanical engineer in Athens, GA is $135,154.00, according to ZipRecruiter salary data. Most workers in this role earn between $106,700.00 and $158,800.00 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 engineers make $500,000?

Senior engineers in specialized fields such as petroleum, aerospace, or software engineering with extensive experience and advanced skills can earn $500,000 or more annually. High compensation often involves leadership roles, bonuses, stock options, or working in high-demand industries with complex projects.

Is Python useful for mechanical engineers?

Python is a valuable tool for mechanical engineers, as it can be used for data analysis, automation, simulation, and scripting tasks. Learning Python can enhance efficiency in CAD, finite element analysis, and control systems, making it a beneficial skill in the field.

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.

Can I make 200k as a mechanical engineer?

Mechanical engineers can earn $200,000 or more annually, typically with extensive experience, advanced skills, or in specialized industries such as aerospace or energy. Achieving this salary often requires a combination of seniority, advanced degrees, professional certifications, and working in high-demand regions or companies. Entry-level salaries are generally lower, and reaching a $200,000 salary usually takes several years of experience and proven expertise.

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.

Are Python engineers in demand?

Python engineers are in high demand across various industries such as technology, finance, and data science due to Python's versatility and widespread use in automation, machine learning, and web development. Employers seek professionals with strong programming skills, experience with frameworks like Django or Flask, and knowledge of data analysis tools, making Python engineering a valuable and sought-after role in the job market.

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 job categories do people searching Python Mechanical Engineer jobs in Athens, GA look for? The top searched job categories for Python Mechanical Engineer jobs in Athens, GA are:
What cities near Athens, GA are hiring for Python Mechanical Engineer jobs? Cities near Athens, GA with the most Python Mechanical Engineer job openings:

Full-time

Posted 2 days ago


Job description

The Mechatronics Engineer is responsible for the design, development, integration, testing, and support of electromechanical, automated, and robotic systems used in new and existing products. This role works across disciplines, including mechanical, electrical, controls, and software, to deliver robust, production-ready solutions from concept through field deployment.
The engineer collaborates with cross-functional teams to define system requirements, develop designs, and validate performance through structured testing and commissioning activities. Responsibilities include designing mechanical systems, implementing control systems, integrating hardware and software components, and ensuring compliance with applicable standards and regulations. The position requires hands-on involvement in prototype builds, testing, troubleshooting, field support and continuous improvement initiatives to enhance product performance, reliability, and manufacturability. Additionally, the engineer provides ongoing technical support to production and field-service teams, resolving issues and driving corrective actions to ensure successful product operation in real-world environments.
Key Responsibilities
System Design & Development
  • Design and develop integrated electromechanical systems, including mechanical, electrical, controls, and software components
  • Define system architectures, select components, and ensure proper integration of sensors, actuators, controls, and embedded systems
  • Create mechanical design and drawings and system documentation to support development and manufacturing.
  • Ensure designs meet performance, reliability, safety, and regulatory requirements

Controls, Software & Integration
  • Develop, program, and debug control systems including robots, PLCs, and HMIs
  • Integrate industrial hardware platforms, networks, and communication protocols into complete systems
  • Configure and validate I/O devices, motion systems, and control logic for machine operation
  • Support system-level integration across mechanical, electrical, and software domains

Testing, Validation & Commissioning
  • Develop and execute test plans for prototypes, subsystems, and full systems to verify performance and compliance
  • Support prototype builds, system bring-up, and validation activities in lab and production environments
  • Participate in factory acceptance testing (FAT), field commissioning, and system startup
  • Document results, identify issues, and drive corrective actions to closure

Troubleshooting & Product Support
  • Diagnose and resolve issues in electromechanical systems during development, production, and field operation
  • Provide technical support to manufacturing, service, and customer teams
  • Perform root-cause analysis and implement corrective and preventive actions
  • Support ongoing product maintenance, upgrades, and sustaining engineering activities

Cross-Functional Collaboration & Continuous Improvement
  • Collaborate with mechanical, electrical, controls, software, manufacturing, and quality teams to deliver product solutions
  • Participate in design reviews, risk assessments (e.g., DFMEA), and project execution processes
  • Drive improvements in system performance, reliability, manufacturability, and cost
  • Contribute to engineering standards, best practices, and documentation processes

Required Qualifications
  • Bachelor's degree in Mechatronics, Electrical, Mechanical, or Robotics Engineering, or a closely related field from an ABET-accredited program
  • 5+ years of experience in design, development, and integration of electromechanical or automated systems in industrial environments
  • Experience with industrial control systems (B&R Industrial Automation, Rockwell/Allen-Bradley) including PLC programming, HMI development, and system integration
  • Proficiency in programming and software development including structured text and ladder logic. Professional experience with C/C++ and Python is a plus.
  • Hands-on experience in system testing, commissioning, and troubleshooting of automated equipment in production environments
  • Ability to read and interpret technical documentation, including electrical schematics, wiring diagrams, and mechanical drawings
  • Experience with CAD tools (Solidworks, AutoCAD or equivalent) for electrical or mechanical design documentation
  • Strong analytical, problem-solving, and root-cause analysis skills applied to complex electromechanical systems with the ability to work cross-functionally across engineering, manufacturing, and service team

Additional Requirements
  • Ability to work collaboratively and execute tasks autonomously with transparency and integrity, incorporating multiple sources of input and aligning with consensus direction.
  • Excellent English language communication (oral, written, and listening) and interpersonal skills.
  • Team-oriented; able to interact effectively with internal and external stakeholders.
  • Proficient in Microsoft Office (Word, Excel, and PowerPoint).
  • Strong research and analytical skills for investigating project-related issues and innovations.
  • Able to troubleshoot, solve problems and quickly recommend solutions.
  • Ability to lift and move up to 50 pounds
  • Able to travel 25% of the time.

The responsibilities are not to be considered exhaustive. Other responsibilities will be applied to the role as needed.
Equal Opportunity Employer
This employer is required to notify all applicants of their rights pursuant to federal employment laws.
For further information, please review the Know Your Rights notice from the Department of Labor.