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Remote Manufacturing Engineering Jobs in Stockbridge, GA

Remote Job Overview We are seeking experienced Autodesk Fusion Experts to support an AI-focused ... You will apply your expertise in Fusion 360, CAM, CNC machining, and manufacturing workflows to ...

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We are seeking a Senior Professional Engineer (Structural or Mechanical) with 10+ years of heavy industrial Port, terminal and manufacturing plant infrastructure experience to lead design efforts ...

Field Application Engineer '27

Atlanta, GA · On-site +1

$53K - $80K/yr

... American manufacturing. This is a field-based position with most of your time on-site with ... Provide on-call, on-site and remote technical support, training, and troubleshooting * Travel ...

Support construction, commissioning, checkout, and startup activities through onsite and remote ... years of process engineering experience in industrial manufacturing, consulting, or EPC ...

Company Description CRB is a leading provider of sustainable engineering, architecture ... Coordinate with contractors, vendors, utilities, and equipment manufacturers to support design and ...

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Remote Manufacturing Engineering information

See Stockbridge, GA salary details

$40.5K

$73K

$102.3K

How much do remote manufacturing engineering jobs pay per year?

As of Sep 5, 2026, the average yearly pay for remote manufacturing engineering in Stockbridge, GA is $73,008.00, according to ZipRecruiter salary data. Most workers in this role earn between $62,300.00 and $80,200.00 per year, depending on experience, location, and employer.

What is a remote manufacturing engineer?

A Remote Manufacturing Engineering job involves designing, optimizing, and improving manufacturing processes while working remotely. Engineers in this role use digital tools, simulations, and virtual collaboration to support production, troubleshoot issues, and implement process improvements. They may work with teams across multiple locations to enhance efficiency, quality, and cost-effectiveness. Strong communication skills, proficiency in CAD and automation software, and familiarity with manufacturing best practices are essential. This role allows companies to leverage global talent while maintaining seamless production operations.

What are some common challenges faced by remote manufacturing engineers and how are they addressed?

Remote Manufacturing Engineers often face challenges related to collaborating with on-site teams, accessing real-time production data, and troubleshooting issues without being physically present. To overcome these obstacles, they utilize advanced collaboration tools, real-time monitoring software, and maintain regular virtual meetings with plant personnel. Many organizations also provide robust remote access to manufacturing systems and encourage video walkthroughs or live streams from the factory floor. By leveraging technology and proactive communication, remote engineers can stay closely connected with the manufacturing process and contribute effectively to operational improvements.

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

To thrive as a Remote Manufacturing Engineer, a solid background in engineering principles, process optimization, and quality control—often supported by a relevant degree—is essential. Proficiency with CAD software, manufacturing execution systems (MES), and familiarity with certifications such as Six Sigma or Lean Manufacturing are highly valued. Strong communication, self-motivation, and critical thinking skills help remote professionals coordinate effectively and solve complex problems from a distance. These competencies are crucial to successfully overseeing manufacturing processes, ensuring product quality, and driving efficiency while collaborating with on-site teams remotely.

Is there a demand for remote manufacturing engineers?

Remote manufacturing engineering roles are increasingly available as companies adopt digital tools and automation technologies. Demand is driven by the need for process optimization, CAD software proficiency, and cross-functional collaboration, making remote work feasible for qualified engineers with relevant skills.

Which remote manufacturing engineering jobs can be done remotely?

Remote manufacturing engineering jobs typically involve tasks such as design, process optimization, and project management that can be performed using CAD software, communication tools, and cloud-based platforms. Many roles require on-site visits for equipment inspection or installation but can be largely managed remotely with strong technical skills and digital collaboration tools.

What are popular job titles related to Remote Manufacturing Engineering jobs in Stockbridge, GA?

For Remote Manufacturing Engineering jobs in Stockbridge, GA, the most frequently searched job titles are:

What job categories do people searching Remote Manufacturing Engineering jobs in Stockbridge, GA look for?

The top searched job categories for Remote Manufacturing Engineering jobs in Stockbridge, GA are:

What cities near Stockbridge, GA are hiring for Remote Manufacturing Engineering jobs?

Cities near Stockbridge, GA with the most Remote Manufacturing Engineering job openings:

Infographic showing various Remote Manufacturing Engineering job openings in Stockbridge, GA as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% Remote job distribution, with an average salary of $73,008 per year, or $35.1 per hour.

CAE Engineer

Quantum World Technologies Inc

Atlanta, GA • Remote

Full-time

Re-posted 9 days ago


Job description

Job Title: CAE Engineer

Location: Remote

Hire Type: Full-time

Job Summary:

  • 5 to 10 years of experience in design of component/assembly for aero derivative engines ideally in the power generation or power services industries
  • Recreate digital representations of aeroderivative engine components utilizing available scans, existing hardware, and/or detailed 2-D drawings.
  • Develop solid NX 3-D models and corresponding component manufacturing drawings for each replicated part.
  • Must have experience in design of Power turbine components, Nozzles, Turbine blades, Shrouds, Disks, and case of power turbines.
  • Apply industry-standard tolerancing practices, leveraging both contractor’s in-house expertise and customer’s guidelines.
  • Perform Simulations: 
  • Conduct structural, thermal, dynamic, and other engineering analyses using CAE software to evaluate product characteristics. 
  • Model Development: 
    • Create and maintain finite element models of components and systems for simulation purposes
  • Validation: 
    • Validate simulation results by comparing them to physical testing and other data to ensure accuracy. 
  • Design Optimization: 
    • Collaborate with design and R&D teams to provide analytical support, identify design improvements, and optimize products for performance, cost, and manufacturability. 
  • Reporting: 
    • Prepare detailed technical reports documenting simulation findings, methodologies, and recommendations
  • Develop baseline stress models for rotating equipment—including disks, spools, and shafts— by leveraging aircraft engine component design and analysis expertise. These models will support the evaluation of component failure/distress investigations as well as making improvements to new make and developing repair modifications.

Requirement and Skills:

  • CAD: NX 2206, AutoCAD
  • Enovia, Teamcenter
  • Ansys, Abacus, Hypermesh
  • MS office: MS Excel , Word , PowerPoint , Microsoft Project
  • Project Management foundation, Project Management,
  • Documentation

Desire Characteristics:

  • Experienced with Excel, Outlook, Word, and PowerPoint
  • Experience working in an independent and highly matrixed environment, coordinating across multiple sites, functions, and time zones, with simultaneous projects. Takes initiative and quickly raises issues for help
  • Strong bias for action; mechanically minded; high energy. Demonstrated high organizational skills, enjoys structured, transactional, process-oriented work
  • Strong team player, excellent interpersonal skills; verbal, written communication skills, and presentation skills knowing when to use more technical detail and when to summarize; ability to work with fellow engineers as well as leaders at customer
  • Solid analytical competencies, ability to troubleshoot quickly and on-the-fly, especially at customer locations

Education:

  • Masters or Bachelor of Mechanical Engineering