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Dfm Engineer Jobs in Texas (NOW HIRING)

Manage engineering change processes (ECNs/ECRs) and apply Design for Manufacturability (DFM) principles * Lead and support continuous improvement, Lean initiatives, and CI projects * Evaluate and ...

Senior Manufacturing Engineer - Assembly

Austin, TX · On-site

$90K - $123K/yr

DFM/DFA & Risk Mitigation: Lead Design for Manufacturability (DFM) and Assembly (DFA) reviews with ... Tooling & Fixture Engineering: Design, procure, and validate custom assembly fixtures, jigs, and ...

Electrical Engineer

Mineral Wells, TX · On-site

$75K - $95K/yr

This is an onsite role in Mineral Wells, Texas and reports to the Engineering Manager for Moog's Military Aircraft Group and requires an understanding of Design for Manufacturing (DFM), Design for ...

Electrical Engineer

Mineral Wells, TX · On-site

$75K - $95K/yr

This is an onsite role in Mineral Wells, Texas and reports to the Engineering Manager for Moog's Military Aircraft Group and requires an understanding of Design for Manufacturing (DFM), Design for ...

This is an onsite role in Mineral Wells, Texas and reports to the Engineering Manager for Moog's Military Aircraft Group and requires an understanding of Design for Manufacturing (DFM), Design for ...

Controls Engineer

Austin, TX · On-site

$81K - $105K/yr

DFM & Manufacturing Support: Serve as the specifying engineer for Design for Manufacturing (DFM) initiatives, supporting lean and efficient manufacturing practices in a fast-paced AGILE development ...

Manufacturing Engineer

Austin, TX · On-site

$72K - $93K/yr

We are engineers, operators, and creatives solving some of the most complex, interdisciplinary ... Provide DFM (design for manufacturability) input to improve processes and yield outcomes * Create ...

This is an onsite role in Mineral Wells, Texas and reports to the Engineering Manager for Moog's Military Aircraft Group and requires an understanding of Design for Manufacturing (DFM), Design for ...

Showing results 41-60

Dfm Engineer information

What is a DFM engineer?

A DFM (Design for Manufacturability) Engineer ensures that product designs are optimized for efficient and cost-effective manufacturing. They collaborate with design, engineering, and production teams to identify potential manufacturing issues early in the design process. Their goal is to improve product quality, reduce manufacturing costs, and enhance production efficiency by implementing best practices and industry standards.

What are some common challenges a DFM engineer faces during the product development process?

A Dfm Engineer often encounters challenges such as balancing innovative design features with manufacturability constraints, managing tight deadlines, and adapting designs to the capabilities and limitations of various manufacturing methods. Collaboration with designers, engineers, and production teams is frequent, requiring clear communication and negotiation to ensure all requirements are met. It's also common to troubleshoot unexpected manufacturing issues and implement cost-saving initiatives without impacting quality. Overcoming these challenges requires technical expertise, flexibility, and a proactive approach to problem-solving, making the role both dynamic and highly impactful in the production lifecycle.

What are the key skills and qualifications needed to thrive in the DFM engineer position, and why are they important?

To thrive as a Dfm Engineer, you need a solid background in manufacturing processes, design principles, and problem-solving, typically supported by a degree in mechanical, electrical, or manufacturing engineering. Familiarity with CAD software, DFM/A analysis tools, and knowledge of industry standards like IPC or Six Sigma certifications are highly valuable. Strong communication, teamwork, and project management skills help you effectively bridge the gap between design and manufacturing teams. These abilities are crucial for optimizing product designs, reducing costs, and ensuring manufacturability without compromising on quality.

Are design engineers well paid?

Design engineers typically earn competitive salaries that vary based on experience, industry, and location. They often have specialized skills in CAD software and engineering principles, which can lead to higher compensation levels compared to entry-level roles.

How to become a Dfm engineer?

A DFM (Design for Manufacturing) engineer typically needs a bachelor's degree in mechanical, industrial, or manufacturing engineering. Gaining experience with CAD software, manufacturing processes, and quality control is essential, along with strong problem-solving skills and knowledge of production methods. Certifications like Six Sigma or Lean Manufacturing can enhance job prospects.

What are the most commonly searched types of Dfm Engineer jobs in Texas?

The most popular types of Dfm Engineer jobs in Texas are:

Infographic showing various Dfm Engineer job openings in Texas as of August 2026, with employment types broken down into 90% Full Time, 6% Part Time, and 4% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution.

Full-time

Posted 20 days ago


Job description

The Mechanical Engineer is responsible for the design, development, testing, and continuous
improvement of precision mechanical components, assemblies, and systems supporting optical, electro-
optical, and infrared products. This position collaborates closely with Engineering, Manufacturing, Quality,
Supply Chain, and Program Management to develop innovative products from concept through production
while ensuring designs meet performance, manufacturability, quality, cost, and schedule objectives.
The Mechanical Engineer supports New Product Introduction (NPI), production improvements, engineering
change management, and continuous improvement initiatives in a precision manufacturing environment

Responsibilities
Product Design & Development
• Design and develop precision mechanical components and assemblies for optical and electro-optical
systems using Creo Parametric and/or SolidWorks.
• Develop innovative engineering solutions from concept through production release.
• Perform mechanical design calculations, tolerance stack analyses, and engineering evaluations to
ensure product performance and reliability.
• Generate detailed engineering drawings utilizing GD&T in accordance with ASME Y14.5 standards.
• Create complete manufacturing documentation, assembly drawings, bills of materials (BOMs), and
engineering specifications.
• Support design reviews and present technical solutions to engineering leadership.


New Product Introduction (NPI)
• Lead or support New Product Introduction activities from prototype through production.
• Design and build functional prototypes utilizing 3D printing, machining, and rapid prototyping
techniques.
• Support prototype testing, evaluation, and design validation.
• Collaborate with Manufacturing Engineering during pilot builds and production transfer activities.
• Assist in process validation and production readiness reviews.
Manufacturing Support
• Design products utilizing Design for Manufacturability (DFM) and Design for Assembly (DFA)
principles.
• Develop tooling, fixtures, jigs, and assembly aids to improve manufacturing efficiency.
• Support production by resolving manufacturing issues and implementing corrective actions.
• Participate in root cause investigations for product or process issues and recommend permanent
corrective actions.
• Identify opportunities to improve product quality, manufacturability, throughput, and cost.
Engineering Documentation
• Prepare engineering change orders (ECOs), engineering change notices (ECNs), and revision
documentation.
• Maintain accurate product structures, bills of materials, and engineering data within the ERP/MRP
system.
• Ensure engineering documentation complies with company standards and configuration management
requirements.

Cross-Functional Collaboration
• Work closely with Manufacturing, Quality, Supply Chain, Program Management, and Purchasing
throughout the product lifecycle.
• Support supplier selection and technical evaluations for mechanical components.
• Provide technical guidance during supplier qualification and first article inspections.
• Assist Sales and Customer Support with technical inquiries when required.


Continuous Improvement
• Participate in Lean Manufacturing and continuous improvement initiatives.
• Analyze production and field performance data to improve product reliability.
• Support cost reduction initiatives through value engineering and component standardization.
• Participate in Design Failure Mode and Effects Analysis (DFMEA) and risk assessments.


Additional Responsibilities
• Conduct engineering research related to new technologies, materials, and manufacturing methods.
• Perform other duties as assigned.
Special Authority
• Recommend engineering design changes to improve quality, manufacturability, and performance.
• Stop production or testing activities when product quality or safety may be compromised.
• Approve engineering documentation within delegated authority.
• Provide technical guidance to technicians and cross-functional project teams.

• Experience in optics, photonics, infrared systems, aerospace, defense, or precision manufacturing.
• Experience with optical or electro-optical assemblies.
• Experience supporting New Product Introduction (NPI).
• Experience with Design for Manufacturability (DFM) and Design for Assembly (DFA).
• Experience performing tolerance stack analyses.
• Experience supporting machining, sheet metal, injection molding, and additive manufacturing
processes.
• Experience using ERP/MRP systems such as Infor VISUAL.
• Experience participating in Design Failure Mode and Effects Analysis (DFMEA).
• Experience with finite element analysis (FEA) or thermal analysis.
• Experience working in ISO 9001 and/or AS9100 environments.
• Must be a U.S. Person as defined by the International Traffic in Arms Regulations (ITAR) and
eligible to work on export-controlled programs.
Education
• Bachelor’s degree in Mechanical Engineering or closely related engineering discipline from an
accredited institution.
• Master’s degree preferred.
Experience
• Minimum of two (2) years of mechanical engineering experience in product development or
manufacturing.
• Experience supporting products from concept through production.
• Experience working within a manufacturing environment.
• Experience using Creo Parametric and/or SolidWorks.
• Experience developing engineering drawings utilizing GD&T.