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Remote Electrical Motor Design Engineer Jobs in Boston, MA

Circuit Design Engineer Clearance Level: Must have an Active Secret Clearance to be considered for ... This role is 100% remote - must be willing to travel up to 3 times a year. At Aquila Technology ...

Circuit Design Engineer Clearance Level: Must have an Active Secret Clearance to be considered for ... This role is 100% remote - must be willing to travel up to 3 times a year. At Aquila Technology ...

Staff RFIC Design Engineer

Chelmsford, MA · On-site +1

$144K - $187K/yr

Switch/LNA/RF IC Design Engineer, the design of GaAs/SOI/SiGe/CMOS based switch and LNA or RFIC ... Experience supporting remote engineering teams. * Be able to work independently, communicate well ...

ELECTRICAL ENGINEER IV

Tewksbury, MA · Remote

$97.33 - $115/hr

Electrical Engineer Location: Tewksbury, MA Type: Contract Compensation: $97.33 - $115.00 per hour ... Hybrid or Remote Hours: 40.0 Responsibilities * Assist with new design and development for various ...

ELECTRICAL ENGINEER IV

Tewksbury, MA · Remote

$97.33 - $115/hr

Electrical Engineer Location: Tewksbury, MA Type: Contract Compensation: $97.33 - $115.00 per hour ... Hybrid or Remote Hours: 40.0 Responsibilities * Assist with new design and development for various ...

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Remote Electrical Motor Design Engineer information

See Boston, MA salary details

$56K

$109.8K

$160.8K

How much do remote electrical motor design engineer jobs pay per year?

As of Sep 12, 2026, the average yearly pay for remote electrical motor design engineer in Boston, MA is $109,805.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,600.00 and $125,500.00 per year, depending on experience, location, and employer.

What does a remote electrical motor design engineer do?

A Remote Electrical Motor Design Engineer is responsible for designing, developing, and testing electric motors while working from a remote location. They use specialized software to create motor models, analyze performance, and ensure that designs meet technical specifications and industry standards. Their work often involves collaborating with teams, troubleshooting issues, and optimizing motor efficiency for various applications such as automotive, industrial, or consumer products. Additionally, they may provide technical documentation and support throughout the development process.

How does a remote electrical motor design engineer typically collaborate with cross-functional teams during the development process?

Remote Electrical Motor Design Engineers regularly work with multidisciplinary teams, including mechanical engineers, project managers, and manufacturing specialists. Collaboration often takes place through virtual meetings, shared design platforms, and project management tools to ensure everyone is aligned on project requirements and timelines. Engineers are expected to provide technical insights, review prototypes, and address feedback promptly, all while maintaining clear communication despite working remotely. This structure allows for efficient problem-solving and innovation, but it also requires strong organizational and interpersonal skills to manage remote interactions effectively.

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

To thrive as a Remote Electrical Motor Design Engineer, you need expertise in electromagnetics, mechanical design, and a relevant engineering degree, often supported by experience in motor design projects. Familiarity with CAD software, FEA tools, and simulation platforms like ANSYS or MATLAB, as well as knowledge of industry standards, is typical. Strong problem-solving skills, self-motivation, and effective remote communication make someone excel in this role. These skills ensure innovative, efficient motor solutions and successful collaboration with distributed teams in a dynamic engineering environment.

What is the difference between Remote Electrical Motor Design Engineer vs Remote Electrical Systems Engineer?

AspectRemote Electrical Motor Design EngineerRemote Electrical Systems Engineer
CredentialsBachelor's or Master's in Electrical Engineering, relevant certificationsBachelor's or Master's in Electrical Engineering, systems engineering certifications
Work EnvironmentDesign labs, CAD software, remote collaboration toolsSystems integration environments, simulation software, remote teams
Industry UsageMotor manufacturers, EV companies, roboticsPower systems, automation, large-scale electrical projects

The Remote Electrical Motor Design Engineer focuses on creating and optimizing electric motors, primarily working on component-level design. In contrast, the Remote Electrical Systems Engineer deals with entire electrical systems, including motor integration within larger systems. Both roles require electrical engineering expertise and often overlap in industries like automotive and manufacturing, but their scope and focus differ significantly.

What job categories do people searching Remote Electrical Motor Design Engineer jobs in Boston, MA look for?

The top searched job categories for Remote Electrical Motor Design Engineer jobs in Boston, MA are:

Infographic showing various Remote Electrical Motor Design Engineer job openings in Boston, MA as of September 2026, with employment types broken down into 75% Full Time, 15% Part Time, and 10% Contract. Highlights an 100% Remote job distribution, with an average salary of $109,805 per year, or $52.8 per hour.

Manufacturing Design Engineer - Remote

Boston, MA • 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