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Electrical Motor Design Engineer Jobs in Ohio (NOW HIRING)

The ideal candidate will have a strong background in mechanical or electrical engineering, experience in motor design and a passion for advancing electric motor technology. About Our Company ...

The ideal candidate will have a strong background in mechanical or electrical engineering, experience in motor design and a passion for advancing electric motor technology. About Our Company ...

$65K - $109K/yr

Support the design and layout of motor control centers (MCCs), switchboards, and panelboards for ... Engineering Analysis: Perform load checks, short-circuit inputs, and basic electrical calculations ...

$65K - $109K/yr

Support the design and layout of motor control centers (MCCs), switchboards, and panelboards for ... Engineering Analysis: Perform load checks, short-circuit inputs, and basic electrical calculations ...

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Electrical Motor Design Engineer information

See Ohio salary details

$49K

$96.1K

$140.7K

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

As of Aug 2, 2026, the average yearly pay for electrical motor design engineer in Ohio is $96,089.00, according to ZipRecruiter salary data. Most workers in this role earn between $78,400.00 and $109,800.00 per year, depending on experience, location, and employer.

What does an Electrical Motor Design Engineer do?

An Electrical Motor Design Engineer is responsible for designing, analyzing, and optimizing electric motors for various applications, such as automotive, industrial, and consumer electronics. They work with electromagnetic theory, materials science, and thermal management to improve motor efficiency, performance, and reliability. Their role includes creating detailed designs, simulations, and prototypes, collaborating with cross-functional teams, and ensuring compliance with industry standards. Additionally, they may support manufacturing and testing processes to refine motor designs and troubleshoot performance issues.

What are the key skills and qualifications needed to thrive in the Electrical Motor Design Engineer position, and why are they important?

To thrive as an Electrical Motor Design Engineer, you need a deep understanding of electromagnetics, mechanical design, and materials science, typically backed by a bachelor's or master's degree in electrical or mechanical engineering. Familiarity with simulation software such as ANSYS, Maxwell, or MATLAB, as well as CAD tools like SolidWorks or AutoCAD, is often necessary, and certifications like Professional Engineer (PE) can be advantageous. Strong problem-solving abilities, teamwork, and effective communication skills are essential soft skills to excel in cross-functional engineering environments. These competencies are crucial for creating efficient, innovative motor designs that meet performance requirements and industry standards.

What are some common challenges faced by Electrical Motor Design Engineers in their daily work?

Electrical Motor Design Engineers often encounter challenges such as optimizing motor performance while balancing cost, manufacturability, and space constraints. They need to troubleshoot complex electromagnetic or thermal issues, and adapt designs to evolving technical requirements or client specifications. Collaboration with manufacturing, testing, and quality assurance teams is frequent, requiring clear communication to ensure designs are feasible and reliable. Successfully navigating these challenges is key to delivering high-quality, innovative motor solutions that align with project goals and timelines.

What job categories do people searching Electrical Motor Design Engineer jobs in Ohio look for? The top searched job categories for Electrical Motor Design Engineer jobs in Ohio are:
What cities in Ohio are hiring for Electrical Motor Design Engineer jobs? Cities in Ohio with the most Electrical Motor Design Engineer job openings:
Infographic showing various Electrical Motor Design Engineer job openings in Ohio as of July 2026, with employment types broken down into 3% Internship, 91% Full Time, and 6% Contract. Highlights an 100% In-person job distribution, with an average salary of $96,089 per year, or $46.2 per hour.

Design Engineer

ElectroCraft, Inc.

Gallipolis, OH โ€ข On-site

Full-time

Re-posted 12 days ago


Job description

The Design Engineer will be responsible for designing, developing, and optimizing electric motors and components. This role involves collaborating with cross-functional teams to create innovative solutions that meet performance, efficiency, and reliability requirements. The ideal candidate will have a strong background in mechanical or electrical engineering, experience in motor design and a passion for advancing electric motor technology.
About Our Company
ElectroCraft, Inc. provides application-engineered specialty fractional-horsepower motor and motion control products. Under the hood, Electrocraft motion systems power critical components of some of the world's most innovative products in medical equipment, robotics, industrial automation, agriculture, and lab equipment. Some of our innovative products include DC motors, gear motors, linear actuators, and motor drives. With facilities and customers around the globe, ElectroCraft provides advanced precision solutions with the highest reliability and lowest total cost of ownership, which is why it is trusted by both the largest brands and the newest cutting-edge companies.
Key Responsibilities:
  • Design and Development: Create detailed designs for electric motor components and systems, including rotors, stators, windings, and housings, using CAD software (e.g., Autodesk Inventor, SolidWorks)
  • Simulation and Analysis: Perform finite element analysis (FEA) and thermal/electromagnetic simulations to optimize motor performance and ensure compliance with design specifications.
  • Prototyping and Testing: Develop prototypes and conduct testing to validate designs, troubleshoot issues, and improve performance metrics such as efficiency, torque, and durability.
  • Cross-Functional Collaboration: Work closely with manufacturing, quality assurance, and supply chain teams to ensure designs are manufacturable, cost-effective, meet industry standards, and ensure product specifications meet or exceed expectations.
  • Documentation: Prepare technical documentation, including design specifications, test reports, and bill of materials (BOM), to support product development and production processes.
  • Continuous Improvement: Identify opportunities to enhance motor designs for improved efficiency, reduced weight, and lower production costs.
  • Compliance: Ensure designs comply with relevant industry standards (e.g., UL, IEC, NEMA) and environmental regulations.
  • Project Management: Manage multiple design projects simultaneously, meeting deadlines and maintaining high-quality standards.

Basic and Social Skills, Leadership, and Business
  • Problem-solving & Critical Thinking: Capable of analyzing complex manufacturing and design challenges, diagnosing root causes, and developing effective solutions
  • Attention to Detail & Accuracy: Meticulous in interpreting and producing technical drawings, models, and documentation to ensure precision and consistency.
  • Excellent Communication (Verbal and Written): Comfortable articulating technical concepts clearly across cross-functional teams.
  • Team Collaboration & Interpersonal Skills: Works seamlessly with production, quality, R&D, supply chain, and management teams-building trust, rapport, and shared success.
  • Adaptability & Flexibility: Welcomes changing project requirements, evolving technologies, and dynamic manufacturing environments.
  • Strategic Review: Conducts design reviews, risk assessments, and ensures compliance with internal and regulatory standards throughout the design lifecycle.
  • Continuous Improvement & Lean Mindset: Implements process improvements, cost-saving strategies, and waste reduction initiatives to boost production efficiency and output.
  • Cost-Benefit & Value Engineering (VAVE): Conducts cost analysis, value assessments, and VAVE evaluations-balancing design trade-offs for optimal business impact.
  • Empathy & Patience: Provide thoughtful, respectful support to users with varying technical skill levels.
  • Professionalism: Represent the Design Engineer function with integrity, reliability, and confidentiality.
  • Build trust with others through own authenticity and follow-through on commitments.
  • Values and supports diversity in the workplace.
  • Ensures thorough familiarity with company policies and procedures. Appropriately applies policies and procedures in compliance with government laws. Policies and procedures include, but not limited to: ISO 9000 & 14000, government regulations (e.g. health, safety, quality and environmental), and functional policies.

Preferred Experience or Skills
  • Master's Degree
  • Minimum of 5 years of experience in design engineering, with at least 3 years focused on electric motor or rotating machinery design.
  • Experience with electric vehicle (EV), autonomous mobile robot (AMR) or automated guided vehicle (AGV) motor design
  • Knowledge of control systems and motor drive technologies.
  • Familiarity with Six Sigma or Lean manufacturing principles.
  • Proficiency in CAD software (e.g., Autodesk Inventor, SolidWorks, or equivalent).
  • Experience with FEA tools (e.g., ANSYS, Simcenter MotorSolve, JMAG, or equivalent) for structural, thermal, and electromagnetic analysis.
  • Knowledge of motor design principles, including electromagnetic theory, thermal management, and material selection.
  • Familiarity with manufacturing processes, such as casting, machining, and assembly.

Requirements
Education Requirements
  • Bachelor's degree in Mechanical Engineering, Electrical Engineering, or a related field.

Physical Requirements
  • Ability to stand or sit for prolonged periods of time.
  • Ability to occasionally climb, stoop, bend, kneel, crouch, reach, and twist.
  • Ability to lift and carry office equipment or equipment required for responsibilities (typically up to 25lbs).
  • Ability to work in climate controlled and non-controlled environments.