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Remote Abb Robotics Jobs in Michigan (NOW HIRING)

Remote Abb Robotics information

What is a remote ABB Robotics engineer?

Remote ABB Robotics jobs involve working with ABB's industrial robots and automation systems from a remote location, rather than on-site at a manufacturing facility. These roles can include programming, configuring, troubleshooting, and providing technical support for ABB robots using specialized software and remote access tools. Common positions include remote robotics engineers, support specialists, and application programmers. Working remotely allows professionals to assist clients worldwide, collaborate with teams online, and maintain or optimize robotic systems without being physically present at the installation site.

What skills and qualifications are needed to thrive as a remote ABB Robotics engineer?

To thrive as a Remote ABB Robotics Engineer, you need a strong background in robotics engineering, programming (especially in RAPID), and experience with ABB industrial robots, typically supported by a degree in engineering or a related field. Familiarity with ABB RobotStudio, PLC systems, and relevant certifications such as ABB Certified Programmer are highly valued. Excellent problem-solving, communication, and self-management skills help you troubleshoot issues remotely and collaborate effectively with distributed teams. These skills ensure efficient robot operation, minimal downtime, and successful project delivery in remote or automated environments.

What are common challenges faced by remote ABB Robotics engineers and how can they be addressed?

Remote ABB Robotics engineers often encounter challenges such as troubleshooting complex automation systems without immediate onsite access and effectively collaborating with onsite teams across different time zones. Utilizing advanced remote diagnostic tools, clear documentation, and regular virtual meetings can help bridge communication gaps. Building strong relationships with onsite staff and staying updated on the latest ABB Robotics software platforms are also essential for success in this role.

What is the difference between Remote Abb Robotics vs Remote Robotics Technician?

AspectRemote Abb RoboticsRemote Robotics Technician
Required CredentialsTechnical certifications in ABB robotics, engineering backgroundTechnical certifications, hands-on experience with robotics systems
Work EnvironmentRemote support, troubleshooting, software programmingOn-site or remote maintenance, installation, and repair
Industry UsageManufacturing, automation, industrial roboticsManufacturing, automation, technical support roles

Remote Abb Robotics roles typically focus on software programming, system configuration, and remote troubleshooting of ABB robotic systems, often requiring specialized certifications. In contrast, Remote Robotics Technicians may perform hands-on maintenance, repairs, and installation, sometimes on-site. Both roles are vital in industrial automation but differ mainly in their work environment and specific responsibilities.

What are the most commonly searched types of Abb Robotics jobs in Michigan?

The most popular types of Abb Robotics jobs in Michigan are:

What cities in Michigan are hiring for Remote Abb Robotics jobs?

Cities in Michigan with the most Remote Abb Robotics job openings:

Senior Controls Engineer

International Automotive Components

Troy, MI • On-site, Remote

$91K - $121K/yr

Full-time

Posted 4 days ago


Job description

Position Summary

The Senior Controls Engineer is responsible for the design, development, implementation, and optimization of manufacturing control systems and automation solutions supporting automotive production operations. This role leads capital equipment projects from concept through launch, ensuring processes meet safety, quality, productivity, scrap, and labor objectives. The Senior Controls Engineer serves as a technical expert in PLC programming, robotics integration, process controls, and continuous improvement initiatives. This position also supports new product launches, equipment upgrades, troubleshooting, and plant automation strategies. This scope aligns with the existing IAC role description, which includes managing capital equipment processes, establishing controls, documenting processes, participating in PFMEA activities, and leading continuous improvement efforts.

Essential Responsibilities
  • Lead the design, programming, commissioning, and validation of automated manufacturing equipment and control systems.
  • Develop and modify PLC, HMI, servo, vision, and robotic control programs.
  • Support new program launches by ensuring all controls systems meet project timing, quality, and production requirements.
  • Establish process parameters, equipment controls, and monitoring systems to maintain product quality and operational performance.
  • Troubleshoot and resolve electrical, controls, automation, and process-related issues.
  • Collaborate with manufacturing, quality, maintenance, product engineering, and suppliers to improve equipment performance and process capability.
  • Lead root cause analysis and corrective actions for equipment downtime and quality concerns.
  • Develop and maintain controls documentation including:
    • Electrical schematics
    • Network architecture
    • PLC/HMI backups
    • Process control plans
    • Equipment standards
  • Participate in PFMEA and manufacturing feasibility reviews.
  • Support capital equipment sourcing, installation, validation, and startup activities.
  • Train maintenance and production personnel on equipment operation, troubleshooting, and preventive maintenance.
  • Drive continuous improvement initiatives focused on:
    • OEE improvement
    • Scrap reduction
    • Cycle-time reduction
    • Cost savings
    • Automation expansion
  • Ensure compliance with all safety, environmental, and customer requirements.
Education
  • Bachelor's Degree in Electrical Engineering, Controls Engineering, Mechatronics Engineering, or related technical field.
Experience
  • 7-10 years of controls engineering experience in a manufacturing environment.
  • Automotive Tier 1 supplier experience strongly preferred.
  • Experience supporting automated assembly, injection molding, foam, or interior trim manufacturing processes preferred.
Technical Skills
  • PLC Programming:
    • Allen-Bradley
    • Siemens
    • Rockwell
  • Programming remote IO using remote blocks:
    • Rockwell/Balluff
  • Industrial Robotics:
    • FANUC
    • ABB
  • Industrial Networks:
    • EtherNet/IP
    • Profibus/Serial
    • IO Link
  • Electrical controls design and troubleshooting
  • Safety systems and machine safeguarding
  • Dynamic Robotic Pathing
  • Cybersecurity for OT Environments
  • Knowledge in how to safety deploy/manage NAT VPN Setup for Tooling Machines
  • Allen-Bradley ControlLogix/CompactLogix, Siemens S7/TIA Portal, Beckhoff TwinCAT; structured programming, sequencing, interlocks, and fault recovery
  • AMRs/AGCs
  • Vidi Cognex Vision
  • Simulation and virtual commissioning: Digital twins, PLC simulation, robot simulation, and offline commissioning.
  • MES Traceability
  • Python, C#, C++, or JavaScript
  • SQL, REST APIs, MQTT, OPC UA, and historian connectivity
  • Euromap Data Transfer
  • Ignition
  • PowerBI
Competencies
  • Strong project management skills
  • Excellent analytical and troubleshooting abilities
  • Ability to lead cross-functional teams
  • Effective written and verbal communication
  • Customer-focused mindset
  • Continuous improvement orientation
  • Ability to manage multiple projects simultaneously
Physical Requirements
  • Ability to work in manufacturing and production environments.
  • Occasional lifting of up to 25 pounds.
  • Ability to travel to plants, suppliers, and customer locations as required.
Preferred Qualifications
  • Professional Engineer (PE) certification
  • Certified Automation Professional (CAP)
  • Experience with Industry 4.0 technologies, IIoT, and advanced manufacturing systems
  • Experience supporting global manufacturing launches
Key Performance Indicators (KPIs)
  • Equipment uptime/OEE
  • Launch timing performance
  • Scrap reduction
  • Process capability improvements
  • Safety performance
  • Automation project completion
  • Manufacturing cost reductions
Employment Type: FULL_TIME