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Python Mechanical Engineer Jobs in Salem, OR (NOW HIRING)

... mechanisms * Demonstrated record of delivering dry etch process solutions that improved yield ... Expertise in statistical analysis and DOE methodologies, using tools such as JMP, Python, or MATLAB ...

Software Engineer, Sr (Cloud/Mobile)

Newberg, OR · On-site

$140K - $175K/yr

Overview At A-dec, we are dedicated to shaping the future of dentistry by blending mechanical ... Software development experience using C/C++, Python, TypeScript, and other programming languages.

Software Engineer, Sr (Cloud/Mobile)

Newberg, OR · On-site

$140K - $175K/yr

Overview At A-dec, we are dedicated to shaping the future of dentistry by blending mechanical ... Software development experience using C/C++, Python, TypeScript, and other programming languages.

The Engineer takes initiative in solving complex problems and enthusiastically tackles challenges ... Basic mechanical aptitude * Python or other coding experience * Controls experience, especially PLC ...

Python Mechanical Engineer information

See Salem, OR salary details

$23.1K

$140.7K

$203.5K

How much do python mechanical engineer jobs pay per year?

As of Aug 4, 2026, the average yearly pay for python mechanical engineer in Salem, OR is $140,676.00, according to ZipRecruiter salary data. Most workers in this role earn between $111,100.00 and $165,300.00 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 does a Python mechanical engineer 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.

Are Python mechanical engineers in demand?

Python mechanical engineers are in demand as companies seek professionals who can integrate programming skills with mechanical design, automation, and data analysis. Proficiency in Python, along with knowledge of CAD tools and automation processes, enhances job prospects in industries such as manufacturing, robotics, and engineering research.
What job categories do people searching Python Mechanical Engineer jobs in Salem, OR look for? The top searched job categories for Python Mechanical Engineer jobs in Salem, OR are:
What cities near Salem, OR are hiring for Python Mechanical Engineer jobs? Cities near Salem, OR with the most Python Mechanical Engineer job openings:
Infographic showing various Python Mechanical Engineer job openings in Salem, OR as of July 2026, with employment types broken down into 89% Full Time, 9% Part Time, and 2% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $140,676 per year, or $67.6 per hour.

Module Development Engineer

INTEL

Lafayette, OR

$172K - $243K/yr

Full-time

Medical, Retirement, PTO

Re-posted 29 days ago


Intel rating

8.7

Company rating: 8.7 out of 10

Based on 147 frontline employees who took The Breakroom Quiz

20th of 156 rated electronics manufacturers


Job description

Job Description
  • Drives technology development and enablement for both high volume manufacturing and future technology, provides process integration and equipment solutions, and performs feasibility studies to meet desired device specifications
  • Leads design and development of technically sophisticated manufacturing processes and/or repair reverse engineering including material selection, parameter optimization, equipment metrology, and system design to enable new product designs and functional requirements
  • Performs pathfinding activities in support of process and hardware development enabling manufacturing of innovative device architectures, and develops roadmaps for technologies enabling future roadmap
  • Recommends and implements modifications for operating equipment to improve production efficiency, manufacturing techniques, and optimizing production output for existing products
  • Partners with key equipment and materials suppliers to develop and implement enabling elements of the technology
  • Performs process technology feasibility studies through theoretical simulations and/or practical engineering methods
  • Remains updated on relevant industrial process and material manufacturing technical trends and develops view of inherent future Intel process technology needs to push industry forward by partnering with vendor ecosystem to build cost sensitive roadmap

Qualifications

Minimum qualifications are required to be initially considered for this position. Preferred qualifications are in addition to the minimum requirements and are considered a plus factor in identifying top candidates. Requirements listed would be obtained through a combination of industry relevant job experience, internship experiences and or schoolwork/classes/research.

Minimum Qualifications:

  • PhD in Chemical Engineering, Materials Science, Physics, Electrical Engineering, or a semiconductor related STEM field with 4+ years of relevant experience

OR

  • Master's degree in Chemical Engineering, Materials Science, Physics, Electrical Engineering, or a semiconductor related STEM field with 6+ years of relevant experience

OR

  • Bachelor's degree in Chemical Engineering, Materials Science, Physics, Electrical Engineering, or a semiconductor related STEM field with 9+ years of relevant experience
  • Relevant recent experience includes, but is not limited to:
    • Hands-on experience in dry etch semiconductor manufacturing, including ownership of complex process development and optimization in a foundry or high volume manufacturing environment
    • Strong command of plasma etch fundamentals, including plasma generation, plasma-surface interactions, selectivity, profile control, and defect mechanisms
    • Demonstrated record of delivering dry etch process solutions that improved yield, reliability, performance, or manufacturability for advanced technology nodes
    • Proven ability to lead technical problem solving across projects or sub modules, influencing peers and stakeholders without formal people management responsibility
    • Expertise in statistical analysis and DOE methodologies, using tools such as JMP, Python, or MATLAB to drive data based decisions
    • Experience working with and troubleshooting advanced semiconductor manufacturing equipment in a cleanroom environment

Preferred Qualifications:

  • 5+ years of direct experience developing and deploying dry etch processes for advanced logic or foundry technologies, including technology node transitions or major process changes
  • Experience with advanced dry etch technologies such as:
    • ICP / CCP plasma etch
      o High aspect ratio etch (HARC)
      o Atomic Layer Etch (ALE)
      o Radical and Vapor phase isotropic etching
      o Ash and surface treatments
      o EUV patterned layer etch integration
  • Demonstrated impact on cross module or integration level challenges, such as pattern fidelity, CD control, defectivity, variability reduction, or process window expansion
  • Strong understanding of advanced device architectures (e.g., FinFET, GAA, nanosheet) and their etch integration requirements
  • Experience with materials and device characterization techniques, including SEM, TEM, CD SEM, AFM, XPS, or electrical correlation
  • Ability to define technical approaches, de risk options, and guide less senior engineers through complex problem solving
  • Track record of effective collaboration with integration, lithography, device, yield, and equipment partner teams to deliver robust manufacturing solutions
  • Evidence of broader technical influence, such as internal technology disclosures, patents, publications, or recognized subject matter expertise within the organization

For information on Intel’s immigration sponsorship guidelines, please see Intel U.S. Immigration Sponsorship Information


Other Locations
US, AZ, Phoenix; US, CA, Santa Clara
Posting Statement
All qualified applicants will receive consideration for employment without regard to race, color, religion, religious creed, sex, national origin, ancestry, age, physical or mental disability, medical condition, genetic information, military and veteran status, marital status, pregnancy, gender, gender expression, gender identity, sexual orientation, or any other characteristic protected by local law, regulation, or ordinance.
Benefits
We offer a total compensation package that ranks among the best in the industry. It consists of competitive pay, stock, bonuses, as well as, benefit programs which include health, retirement, and vacation. Find more information about all of our Amazing Benefits here.
Annual Salary Range for jobs which could be performed in the US $172,200.00-$243,000.00
*Salary range dependent on a number of factors including location and experience
Working Model
This role will require an on-site presence.* Job posting details (such as work model, location or time type) are subject to change.

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About Intel

Sourced by ZipRecruiter

Intel strives to make every facet of semiconductor manufacturing state-of-the-art -- from semiconductor process development and manufacturing, through yield improvement to packaging, final test and optimization, and world class Supply Chain and facilities support. Employees in the Technology and Manufacturing Group are part of a worldwide network of design, development, manufacturing, and assembly/test facilities, all focused on utilizing the power of Moore's Law to bring smart, connected devices to every person on Earth

Industry

Manufacturing

Company size

10,000+ Employees

Headquarters location

Santa Clara, CA, US

Year founded

1968