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Integration Engineer Jobs in Michigan (NOW HIRING)

The engineer will play an important role in identifying design and integration problems before they become production or field issues.Key ResponsibilitiesVehicle Integration & Hands-On TestingPlan ...

Position Summary Optimal EV is seeking a Vehicle Integration & Validation Engineer to support the development, integration, testing, and validation of complete electric vehicle platforms. This role ...

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Title: Senior Software Integration Engineer Location: Sterling Heights, MI - ONSITE Pay Range: $55.00 - 62.95 hourly Duration: Temp to Hire 8am-5pm Schedule: 9/80 This is for a military/ defense ...

Position Summary Optimal EV is seeking a Vehicle Integration & Validation Engineer to support the development, integration, testing, and validation of complete electric vehicle platforms. This role ...

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Integration Engineer information

See Michigan salary details

$38.8K

$108.3K

$151.2K

How much do integration engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for integration engineer in Michigan is $108,317.00, according to ZipRecruiter salary data. Most workers in this role earn between $90,600.00 and $122,000.00 per year, depending on experience, location, and employer.

What is an integration engineer?

Integration Engineers are IT professionals who specialize in connecting different software systems, applications, or technologies to ensure they work together seamlessly. Their responsibilities often include designing integration solutions, troubleshooting issues, and maintaining data flow between systems. They collaborate with development, operations, and business teams to implement and optimize integrations, ensuring that the organization's technology ecosystem runs efficiently. Integration Engineers often work with APIs, middleware, and various programming languages to achieve these goals.

What are the key skills and qualifications needed to thrive as an integration engineer?

To thrive as an Integration Engineer, you need a solid background in computer science, experience with system integration, and proficiency in programming languages such as Java, Python, or C#. Familiarity with integration platforms (like MuleSoft, Dell Boomi, or Apache Camel), APIs, and relevant certifications is often required. Excellent problem-solving abilities, strong communication, and adaptability are vital soft skills in this role. These competencies ensure seamless connection of systems, effective troubleshooting, and smooth collaboration with cross-functional teams.

What are some common challenges integration engineers face when connecting disparate systems, and how are they typically addressed?

Integration Engineers often encounter challenges such as data format incompatibility, varying communication protocols, and legacy system limitations when connecting different software or hardware systems. To address these, they use middleware solutions, develop custom adapters, and leverage standardized APIs or integration platforms to ensure seamless data flow. Regular collaboration with software developers, IT staff, and business stakeholders is essential to understand system requirements and troubleshoot integration issues efficiently.

What is the difference between Integration Engineer vs Software Developer?

AspectIntegration EngineerSoftware Developer
CredentialsBachelor's in Computer Science or related field; certifications like Cisco, AWS may helpBachelor's in Computer Science or related field; coding certifications optional
Work EnvironmentCollaborates with IT, network teams, and clients to implement integrationsWorks primarily on coding, designing, and testing software applications
Industry UsageCommon in tech, healthcare, finance for system integrationsWidespread across all software development sectors
Search & Comparison IntentOften compared for technical skills and project scopeCompared for coding skills and software design expertise

The main difference is that Integration Engineers focus on connecting and configuring systems and software to work together seamlessly, often involving network and hardware components. Software Developers primarily design, code, and test software applications. Both roles require technical skills, but Integration Engineers emphasize system integration and interoperability, while Software Developers focus on creating software solutions.

How much do integration engineers make?

Integration engineers in general earn a median salary of around $80,000 to $120,000 annually, depending on experience, certifications, and the industry. In metropolitan areas, salaries tend to be higher due to cost of living and demand for technical skills such as API development, system integration, and cloud platforms.
More about Integration Engineer jobs

What are the most commonly searched types of Integration Engineer jobs in Michigan?

The most popular types of Integration Engineer jobs in Michigan are:

What cities in Michigan are hiring for Integration Engineer jobs?

Cities in Michigan with the most Integration Engineer job openings:

Infographic showing various Integration Engineer job openings in Michigan as of September 2026, with employment types broken down into 1% Internship, 89% Full Time, 5% Part Time, 1% Temporary, 3% Contract, and 1% Nights. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $108,317 per year, or $52.1 per hour.

Automation Integration Engineer

Novi, MI • On-site

Our Next Energy
Industrial Machinery Manufacturing • 51 - 200 employees

Full-time

Posted 15 days ago


Job description

This role serves as a critical link between manufacturing engineering, controls, equipment suppliers, operations, maintenance, quality, and IT/OT teams to ensure automated equipment is successfully integrated into ONE's manufacturing environment and achieves required safety, quality, throughput, reliability, and operational performance.
The Automation Integration Engineer will provide hands-on technical leadership during equipment installation, commissioning, launch, and production ramp. The ideal candidate combines strong controls and automation expertise with practical manufacturing experience and is comfortable troubleshooting complex equipment directly on the production floor.
ESSENTIAL DUTIES AND RESPONSIBILITIES:
Automation & Controls Integration
  • Integrate automated manufacturing equipment, controls, robotics, sensors, vision systems, and supporting technologies into ONE manufacturing operations

  • Develop, modify, troubleshoot, and optimize PLC and HMI applications

  • Support integration of PLCs, industrial networks, robots, drives, safety systems, vision systems, and manufacturing equipment

  • Establish and validate communication between machines, production systems, manufacturing execution systems (MES), databases, and other plant-level systems as applicable

  • Develop and maintain equipment communication standards and interface requirements

  • Review electrical controls architecture, schematics, control panels, I/O configurations, network architecture, and equipment documentation

  • Ensure automation solutions comply with ONE engineering standards and applicable industry requirements

Equipment Launch & Commissioning
  • Participate in equipment design reviews and provide automation and controls input throughout the equipment development lifecycle

  • Support Factory Acceptance Testing (FAT), Site Acceptance Testing (SAT), installation, commissioning, and production validation

  • Work directly with machine builders and system integrators to resolve controls, programming, communication, and equipment performance issues

  • Lead or support equipment debug during installation and production ramp

  • Verify equipment meets defined cycle time, uptime, quality, safety, and process capability requirements before final acceptance

  • Identify integration risks early and develop mitigation plans before equipment reaches the production floor

  • Support equipment handoff from Advanced Manufacturing Engineering to Operations and Maintenance

Robotics & Advanced Automation
  • Integrate and troubleshoot industrial robotic systems used for material handling, assembly, dispensing, inspection, welding, and other automated processes

  • Support programming and optimization of robotic applications

  • Integrate machine vision, barcode/RFID, traceability, sensors, servo systems, drives, and automated material handling equipment

  • Support implementation of collaborative robotics and other advanced manufacturing technologies where appropriate

  • Evaluate new automation technologies that can improve safety, quality, productivity, flexibility, or manufacturing cost

Troubleshooting & Production Support
  • Provide advanced technical support for automation and controls issues affecting production

  • Troubleshoot PLC logic, industrial networks, robotics, sensors, servo systems, drives, safety circuits, machine vision, and electrical controls

  • Lead structured root cause analysis for recurring automation-related downtime

  • Implement permanent corrective actions rather than relying on temporary equipment fixes

  • Analyze equipment downtime and performance data to identify opportunities for improvement

  • Partner with Maintenance and Operations to improve Mean Time Between Failure (MTBF) and Mean Time to Repair (MTTR)

  • Provide escalation support for complex equipment failures

Manufacturing Systems Integration
  • Support integration between production equipment and MES, SCADA, historian, traceability, and manufacturing data systems

  • Ensure equipment generates accurate and reliable production, quality, process, and traceability data

  • Partner with IT/OT and cybersecurity resources to ensure industrial networks and connected equipment meet ONE requirements

  • Support standardized communication protocols and data structures across manufacturing equipment

  • Participate in Industry 4.0 and smart manufacturing initiatives

Equipment Standards & Documentation
  • Develop and maintain ONE automation and controls standards

  • Review supplier equipment designs for compliance with ONE specifications

  • Maintain PLC programs, HMI applications, robot programs, electrical drawings, network documentation, backups, and revision history

  • Develop troubleshooting guides and technical documentation for Maintenance and Operations

  • Support creation of spare-parts strategies for critical automation components

  • Ensure equipment changes follow appropriate change-control processes

Continuous Improvement
  • Identify opportunities to improve equipment cycle time, uptime, quality, ergonomics, and reliability

  • Use manufacturing and equipment data to identify chronic losses and improvement opportunities

  • Support automation upgrades and equipment modifications

  • Participate in Lean Manufacturing, continuous improvement, and structured problem-solving activities

  • Develop standardized solutions that can be replicated across equipment lines and ONE facilities

Cross-Functional Collaboration
  • Partner closely with Advanced Manufacturing Engineering, Manufacturing Engineering, Controls Engineering, Maintenance, Operations, Quality, IT/OT, EHS, and Supply Chain

  • Coordinate with external equipment manufacturers, automation integrators, and technology suppliers

  • Provide technical guidance and training to Maintenance technicians and production personnel

  • Communicate equipment risks, commissioning status, technical issues, and recovery plans to project and manufacturing leadership

QUALIFICATIONS:
Required
  • Bachelor's degree in Electrical Engineering, Controls Engineering, Automation Engineering, Mechatronics, Computer Engineering, or related technical discipline.

  • 3+ years of experience supporting automation, controls, equipment integration, or manufacturing engineering in a highly automated manufacturing environment

  • Hands-on experience with PLC programming and troubleshooting

  • Experience with industrial HMI systems

  • Experience integrating automated manufacturing equipment

  • Working knowledge of industrial communication networks and protocols

  • Experience troubleshooting electrical controls, sensors, drives, servo systems, and automated equipment

  • Ability to read and interpret electrical schematics, control drawings, P&IDs, and equipment documentation

  • Demonstrated ability to troubleshoot complex equipment issues systematically

  • Experience supporting equipment installation, commissioning, and production launch.

  • Ability to work effectively with machine builders and automation integrators

Preferred
  • Experience with Rockwell/Allen-Bradley ControlLogix and Studio 5000

  • Experience with Siemens PLC platforms

  • Experience with FANUC, ABB, KUKA, Yaskawa, or similar industrial robotics

  • Experience with Cognex, Keyence, or similar machine-vision systems

  • Experience with servo motion control and variable-frequency drives

  • Experience with EtherNet/IP, Profinet, OPC UA, Modbus TCP, or similar industrial communication protocols

  • Experience integrating manufacturing equipment with MES, SCADA, historians, or production databases

  • Experience with battery, automotive, EV, electronics, semiconductor, or other high-volume automated manufacturing

  • Experience with automated assembly, material handling, dispensing, welding, inspection, or end-of-line testing

  • Knowledge of industrial cybersecurity and OT network architecture

  • Familiarity with machine safety standards, risk assessments, and safety PLC systems

  • Experience working through new-product or manufacturing-equipment launches

Equal Opportunity Employer
This employer is required to notify all applicants of their rights pursuant to federal employment laws.
For further information, please review the Know Your Rights notice from the Department of Labor.