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Design Manufacturing Jobs in Georgia (NOW HIRING)

Mechanical Design Engineer

Savannah, GA · On-site

$70K - $95K/yr

The ideal candidate will have hands-on expertise in mechanical design, manufacturing processes, and automotive/trailer engineering. This role involves working on large-scale product development ...

As a Hendrick Technical Solutions Manufacturing Design Engineer , you will play a vital role in supporting the development and implementation of manufacturing solutions for advanced products and ...

Design and drawing review with emphasis on manufacturability and assembly efficiency * Lead manufacturability and Design for Assembly (DFA) studies * Develop and optimize tooling, fixtures, and work ...

Design and drawing review with emphasis on manufacturability and assembly efficiency * Lead manufacturability andDesign for Assembly (DFA)studies * Develop and optimize tooling, fixtures, and work ...

Manufacturing Engineer

Ellabell, GA · On-site

$65K - $90K/yr

Design manufacturing jigs for fabrication, welding, and machining. * Develop, document, and maintain manufacturing process plans, work instructions, and standard operating procedures (SOPs) for all ...

You will recommend platform architecture, guide large and complex programs, and work across Marketing, Industrial Design, Manufacturing, Quality, Supply Chain, and global supplier teams. The role ...

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Design Manufacturing information

See Georgia salary details

$38.4K

$72.7K

$114.8K

How much do design manufacturing jobs pay per year?

As of Sep 12, 2026, the average yearly pay for design manufacturing in Georgia is $72,742.00, according to ZipRecruiter salary data. Most workers in this role earn between $59,100.00 and $84,400.00 per year, depending on experience, location, and employer.

What is design manufacturing?

Design manufacturing is the process of transforming product concepts and designs into physical items through various manufacturing methods and technologies. It involves collaborating across disciplines to ensure that products are both aesthetically appealing and functional while being cost-effective to produce. Professionals in design manufacturing work on prototyping, testing, and optimizing designs for mass production, considering factors such as materials, manufacturability, and quality control. This field is essential in industries like automotive, electronics, and consumer goods, where innovation and efficiency are critical.

What are some common challenges faced by professionals in design manufacturing, and how can they be addressed?

Professionals in Design Manufacturing often encounter challenges such as bridging the gap between creative design concepts and practical manufacturing constraints, managing tight production timelines, and ensuring cost-effectiveness without compromising quality. Effective communication and collaboration with engineers, suppliers, and production teams are crucial for overcoming these hurdles. Staying up-to-date with the latest manufacturing technologies and adopting iterative prototyping approaches can also help address design feasibility issues and streamline the production process.

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

To thrive as a Design Manufacturing Engineer, you need a solid background in engineering principles, CAD design, and manufacturing processes, typically supported by a degree in mechanical or industrial engineering. Familiarity with CAD software (such as SolidWorks or AutoCAD), manufacturing resource planning (MRP) systems, and industry certifications like Six Sigma are common requirements. Strong problem-solving, communication, and project management skills help professionals excel in cross-functional teams and adapt to evolving production needs. These competencies are vital for ensuring efficient product development, cost-effective manufacturing, and high-quality outcomes in competitive industrial environments.

What is the difference between Design Manufacturing vs Product Development?

AspectDesign ManufacturingProduct Development
Primary FocusCreating detailed manufacturing plans and processes for product productionConceptualizing, designing, and developing new products
Required SkillsEngineering, manufacturing processes, CAD, quality controlDesign, innovation, market research, prototyping
Work EnvironmentFactories, production lines, engineering labsDesign studios, R&D labs, offices
Industry UsageManufacturing firms, industrial sectorsConsumer goods, tech, automotive sectors

While both roles involve product creation, Design Manufacturing focuses on translating designs into manufacturable products, ensuring efficient production processes. Product Development emphasizes creating new products from concept to prototype. Understanding these differences helps in choosing the right career path or job search focus.

What are popular job titles related to Design Manufacturing jobs in Georgia?

For Design Manufacturing jobs in Georgia, the most frequently searched job titles are:

What job categories do people searching Design Manufacturing jobs in Georgia look for?

The top searched job categories for Design Manufacturing jobs in Georgia are:

Infographic showing various Design Manufacturing job openings in Georgia as of September 2026, with employment types broken down into 1% Internship, 83% Full Time, 12% Part Time, 1% Temporary, and 3% Contract. Highlights an 80% Physical, 5% Hybrid, and 15% Remote job distribution, with an average salary of $72,742 per year, or $35 per hour.

Manufacturing Design Engineer - Remote

Atlanta, GA • Remote

$40 - $100/hr

Full-time

Posted 19 days ago


Job description

Manufacturing Design Engineer

Job Type: Contractor
Location: Remote

Job Overview

We are seeking experienced Manufacturing Design Engineers to contribute to an advanced mechanical design and manufacturing project. In this role, you will apply your engineering expertise to help improve next-generation AI systems through high-quality, real-world design input.

You will use FreeCAD or similar parametric CAD platforms to create, document, review, and validate production-ready mechanical components and assemblies. This opportunity is ideal for professionals with strong mechanical design, manufacturing, CAD validation, and technical documentation experience.

No prior AI experience is required—your engineering expertise and domain knowledge are what matter most.

Scope of Work
  1. Create and modify detailed parametric 3D CAD models of mechanical components and assemblies using FreeCAD or comparable CAD software.

  2. Develop comprehensive engineering drawings, including GD&T, dimensional requirements, and tolerance stack-ups, suitable for manufacturing handoff.

  3. Design components for manufacturing processes including CNC machining, sheet metal fabrication, plastics, and injection molding.

  4. Perform CAD validation and quality assurance reviews to verify model accuracy, design intent, and production readiness.

  5. Prepare clear technical documentation, design notes, and assembly instructions for use as high-quality reference materials.

  6. Review and incorporate feedback from technical reviewers to improve CAD models, drawings, and supporting documentation.

  7. Apply Design for Manufacturing (DFM) principles to ensure designs are practical, efficient, and manufacturable.

  8. Identify and resolve modeling, dimensional, assembly, and manufacturability issues before production handoff.

Required Skills
  • FreeCAD

  • Parametric CAD Modeling

  • Mechanical Design

  • 3D CAD Modeling

  • Assembly Design

  • Engineering Drawings

  • CAD Validation & Quality Assurance

  • Technical Documentation

  • Design for Manufacturing (DFM)

  • GD&T and tolerance analysis

  • Manufacturing design principles

Preferred Qualifications
  1. 2+ years of experience designing mechanical components for manufacturing environments.

  2. Strong proficiency in FreeCAD or similar parametric CAD software, including advanced modeling, assemblies, and drawing generation.

  3. Hands-on experience with manufacturing considerations for CNC machining, sheet metal, plastics, and injection molding.

  4. Strong understanding of GD&T, tolerance analysis, and DFM best practices.

  5. Demonstrated ability to create production-grade CAD models and validate designs against real-world manufacturability requirements.

  6. Experience interpreting engineering drawings, manufacturing specifications, and technical documentation.

  7. Strong attention to detail and ability to identify CAD and documentation inconsistencies.

  8. Excellent written and verbal communication skills for documenting technical decisions and collaborating with reviewers.

  9. Ability to work independently in a remote environment and meet project quality and delivery requirements