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Mechatronics Engineering Jobs in Michigan (NOW HIRING)

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Mechatronics Engineering information

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$51.9K

$78.9K

$133.8K

How much do mechatronics engineering jobs pay per year?

As of Aug 24, 2026, the average yearly pay for mechatronics engineering in Michigan is $78,889.00, according to ZipRecruiter salary data. Most workers in this role earn between $59,700.00 and $91,500.00 per year, depending on experience, location, and employer.

What is mechatronics engineering?

Mechatronics engineering is an interdisciplinary field that combines mechanical engineering, electrical engineering, computer science, and control systems to design and create smart machines and systems. Mechatronics engineers work on products such as robots, automated manufacturing equipment, and intelligent consumer devices. Their work involves integrating hardware and software to improve system functionality and efficiency. This field is crucial for developing innovative automation solutions in industries like automotive, aerospace, and manufacturing.

What does a mechatronics engineer do?

Mechatronics Engineers often collaborate with mechanical, electrical, and software engineers to design, develop, and optimize smart systems such as robotics, automated manufacturing equipment, or precision instrumentation. Daily responsibilities may include integrating sensors and actuators, programming microcontrollers, troubleshooting electromechanical systems, and participating in design reviews. Working in a multidisciplinary environment requires strong communication skills and adaptability, as you'll frequently coordinate with team members from various engineering backgrounds to ensure seamless system integration and project success.

What are the key skills and qualifications needed to thrive as a mechatronics engineer?

To thrive as a Mechatronics Engineer, you need a solid background in mechanical, electrical, and software engineering, typically supported by a relevant bachelor’s degree. Familiarity with CAD software, PLC programming, robotics systems, and industry-standard simulation tools is essential, along with certifications like Certified Mechatronics Engineer (CMfgE) being advantageous. Strong problem-solving skills, teamwork, and effective communication help distinguish professionals in this multidisciplinary field. These skills are crucial for designing, integrating, and maintaining complex automated systems that drive innovation and efficiency in modern industries.

What is the difference between Mechatronics Engineering vs Electrical Engineering?

AspectMechatronics EngineeringElectrical Engineering
Required CredentialsBachelor's in Mechatronics or related fieldBachelor's in Electrical Engineering
Work EnvironmentDesigning and integrating mechanical, electronic, and software systemsDesigning electrical circuits, power systems, and electronic devices
Industry UsageRobotics, automation, manufacturingPower generation, electronics, telecommunications

Mechatronics Engineering focuses on integrating mechanical, electronic, and software systems to develop intelligent products like robots and automation systems. Electrical Engineering primarily deals with electrical circuits, power systems, and electronic devices. While both fields share foundational knowledge and sometimes overlap, Mechatronics emphasizes system integration and interdisciplinary skills, whereas Electrical Engineering concentrates on electrical components and systems.

Do mechatronics engineers make a lot of money?

Mechatronics engineers typically earn competitive salaries that vary by industry, experience, and location. Entry-level positions often start around the national average for engineering roles, with experienced professionals earning higher wages, especially those with specialized skills in robotics, automation, or control systems.

Is mechatronics engineering a good career option?

Mechatronics engineering is a multidisciplinary field combining mechanical, electrical, and computer engineering, with job opportunities in automation, robotics, and manufacturing industries. It offers a strong job outlook due to increasing automation and technological integration, and requires skills in programming, systems design, and troubleshooting. The profession often involves working with CAD software, control systems, and embedded systems, and may require relevant certifications or degrees.

What are the most commonly searched types of Mechatronics Engineering jobs in Michigan?

The most popular types of Mechatronics Engineering jobs in Michigan are:

Infographic showing various Mechatronics Engineering job openings in Michigan as of August 2026, with employment types broken down into 84% Full Time, 13% Part Time, 2% Contract, and 1% Nights. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $78,889 per year, or $37.9 per hour.

Mechatronics Engineer - Product Development

Ann Arbor, MI • On-site

J.B. Poindexter & Co.
Motor Vehicle Manufacturing • 1 - 5K employees

$90 - $140/hr

Other

Re-posted 14 days ago


Job description

Mechatronics Engineer - Product Development Job Description

Posted Monday, July 6, 2026 at 5:00 AM

Company & Position Overview:

JB Poindexter & Co (JBPCO) is a privately held, diversified manufacturing company forecasting $2.75B in annual revenue and 9,000 team members in 2026. JBPCO prides itself on providing best-in-class commercial automotive and industrial vehicles. The nine operating subsidiaries, covering approximately 70 locations, are engaged in the production of commercial truck bodies, step-vans, utility trucks, ambulances, electric and alternative fuel vehicles, pickup truck bed enclosures, and expandable foam plastic packaging. For more information about our industry leading brands and products, visit JBPoindexter.com or connect on LinkedIn.

We are the Corporate Engineering and Product Development organization within JB Poindexter & Co., supporting nine business units across the company’s portfolio of commercial vehicle and upfit solutions spanning Class 1–7 vehicles. This team leads the development and launch of innovative products and technologies across a diverse set of applications and end markets.

We operate in a highly dynamic, project-based environment, managing programs ranging from rapid development cycles (weeks) to complex, multi-year product launches, while partnering closely with business units, customers, and suppliers to bring fresh solutions to market.

We are seeking a hands-on Mechatronics Engineer with 5+ years of experience to join our Corporate Engineering and Product Development team. This role is intended for an engineer with a strong mechanical foundation who can also work across electrical systems, harness design, control systems, and software-adjacent development.

The ideal candidate is mechanically strong, comfortable designing parts and assemblies in SolidWorks, and experienced supporting real product development from concept through prototype, validation, and production release. This individual should also be capable of working with electrical components, wiring harnesses, sensors, actuators, control modules, and system-level integration.

While this role is primarily mechanical in nature, the engineer should be able to collaborate effectively with software and controls teams and preferably have working familiarity with C#, C++, and/or Python. This is not intended to be a pure software role, but the ability to understand, troubleshoot, and contribute to software-controlled mechanical or electrical systems is highly valuable.

This position is ideal for a broad, practical engineer who enjoys mechanical design, vehicle systems, prototyping, controls, electrical integration, and solving complex cross-functional engineering problems.

Essential Duties and Responsibilities:

  • Design and develop mechanical and mechatronic systems for commercial vehicle applications using SolidWorks, including structures, mechanisms, mounts, enclosures, automation features, and vehicle-integrated components.
  • Create 3D CAD models, engineering drawings, and technical documentation while applying GD&T, tolerance analysis, DFM/DFA, and sound engineering practices to deliver manufacturable and durable designs.
  • Integrate mechanical systems with electrical hardware including wiring harnesses, sensors, actuators, relays, motors, controllers, and ECUs, with consideration for packaging, routing, diagnostics, and serviceability.
  • Collaborate with electrical, controls, and software teams to support electro-mechanical system integration, control logic development, troubleshooting, and validation, including working familiarity with C#, C++, and/or Python.
  • Support hands-on prototype builds, vehicle installations, testing, validation, root-cause analysis, and production implementation activities, including DVP&R, DFMEA/PFMEA, and design reviews.
  • Perform engineering analysis and product evaluation using hand calculations and, where applicable, tools such as SolidWorks Simulation, ANSYS, or COMSOL.
  • Work closely with fabrication, manufacturing, suppliers, and business units to support product launches, continuous improvement, VAVE initiatives, and engineering problem solving across multiple programs.
  • Lead or support cross-functional engineering projects from concept through production release while mentoring junior engineers and contributing to engineering standards and best practices

Qualifications and Skills:

  • Bachelor’s degree in Mechanical Engineering, Mechatronics Engineering, Electrical Engineering, or a closely related engineering field.
  • 5+ years of engineering experience in mechanical design, product development, vehicle systems, automation, machinery, or mechatronic systems.
  • Strong mechanical design experience using SolidWorks.
  • Experience designing mechanical components, assemblies, brackets, enclosures, mounts, linkages, actuated systems, or vehicle-mounted products.
  • Working knowledge of electrical system integration, wiring harness routing, connectors, sensors, actuators, and control modules.
  • Practical understanding of control systems, system inputs/outputs, sensors, actuators, and feedback-based operation.Ability to support hands-on prototype builds, troubleshooting, validation, and manufacturing implementation.
  • Strong understanding of:
  • GD&T
  • Tolerance analysis
  • DFM/DFA
  • Product lifecycle
  • DFMEA/PFMEA
  • DVP&R
  • Ability to manage multiple projects simultaneously in a fast-paced environment.
  • Strong communication skills for working with customers, suppliers, manufacturing teams, and cross-functional engineering teams.
  • Ability to work independently while also contributing effectively to a team.

Preferred Qualifications:

  • Experience in commercial vehicles, automotive, specialty vehicles, upfit systems, truck bodies, or heavy-duty equipment.
  • Experience designing or supporting wiring harnesses for vehicle or industrial applications.
  • Familiarity with 12V/24V vehicle electrical systems, relays, fuses, switches, sensors, actuators, and control modules.
  • Familiarity with CAN, J1939, or vehicle networked systems.
  • Working knowledge of C#, C++, and/or Python.
  • Experience developing or supporting prototype control systems, test scripts, or automation tools.
  • Experience with SolidWorks routing, harness packaging, or electrical/mechanical packaging studies.
  • Experience with FEA tools such as COMSOL, SolidWorks Simulation, ANSYS, or similar.
  • Practical fabrication, machining, welding, 3D printing, or shop-floor experience.
  • Experience with automotive and commercial truck standards such as SAE, ISO, and FMVSS.
  • Experience supporting production launches, supplier development, and manufacturing process improvements.
  • Experience working in cross-functional product development teams with mechanical, electrical, software, and manufacturing stakeholders.

What We Are Looking For

We are looking for a mechanically strong engineer who can think beyond pure mechanical design and understand how mechanical systems interact with electrical hardware, controls, and software. The ideal candidate is practical, hands-on, and comfortable moving between CAD, the shop floor, prototype vehicles, supplier discussions, and engineering reviews.

This person should be able to design a mechanical system, understand how it will be wired, consider how it will be controlled, and help troubleshoot it when the full system is assembled. They do not need to be a dedicated software engineer, but they should be capable of communicating with software and controls teams and understanding how code, sensors, actuators, and mechanical hardware come together.

The right candidate is a broad, adaptable problem solver who enjoys varied project work, can lead technical efforts when needed, and can support multiple business units across a wide range of product development challenges.

J.B. Poindexter & Co., Inc. provides equal employment opportunities to all employees and applicants for employment and prohibits discrimination and harassment of any type without regard to race, color, religion, age, sex, national origin, disability status, genetics, protected veteran status, sexual orientation, gender identity or expression, or any other characteristic protected by federal, state or local laws.

This policy applies to all terms and conditions of employment, including recruiting, hiring, placement, promotion, termination, layoff, recall, transfer, leaves of absence, compensation, and training.

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