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Robotic Engineering Jobs in Wisconsin (NOW HIRING)

Industrial Engineer

Delavan, WI · On-site

$62K - $84K/yr

... robot logic and motion profile optimization. • Control Systems: Develop robust PLC programs (utilizing both Digital and Analog I/O) and intuitive HMI interfaces. • Electrical Engineering: Create ...

Robot Tech

Mauston, WI · On-site

$20 - $30/hr

This position is responsible for supporting robotic paint systems, troubleshooting automation ... Exposure to Engineering, Maintenance, and Manufacturing Operations * Team-Oriented Environment

Robot Tech

Mauston, WI · On-site

$20 - $30/hr

This position is responsible for supporting robotic paint systems, troubleshooting automation ... Exposure to Engineering, Maintenance, and Manufacturing Operations * Team-Oriented Environment

Robotic Welder I

Marinette, WI · On-site

$27.33 - $32.18/hr

Independently operate Robotic Welding Equipment. * Successfully utilize fixtures as required to ... We offer a wide range of capabilities in fabricating stock, custom & engineered-to-order vessel ...

Independently operate Robotic Welding Equipment. * Successfully utilize fixtures as required to ... We offer a wide range of capabilities in fabricating stock, custom & engineered-to-order vessel ...

Robotic Welder I

Marinette, WI · On-site

$27.33 - $32.18/hr

Independently operate Robotic Welding Equipment. * Successfully utilize fixtures as required to ... We offer a wide range of capabilities in fabricating stock, custom & engineered-to-order vessel ...

Robotic Welder I

Marinette, WI · On-site

$27.33 - $32.18/hr

Independently operate Robotic Welding Equipment. * Successfully utilize fixtures as required to ... We offer a wide range of capabilities in fabricating stock, custom & engineered-to-order vessel ...

Robotic Welder I

Marinette, WI · On-site

$27.33 - $32.18/hr

Independently operate Robotic Welding Equipment. * Successfully utilize fixtures as required to ... We offer a wide range of capabilities in fabricating stock, custom & engineered-to-order vessel ...

Robotics, programming & coding instructor/teaching experience (1 - 5 years minimum) required. Education Requirements: Bachelor's degree (preferred but not required) Essential Job Responsibilities:

Robotics, programming & coding instructor/teaching experience (1 - 5 years minimum) required. Education Requirements: Bachelor's degree (preferred but not required) Essential Job Responsibilities:

Robotics, programming & coding instructor/teaching experience (1 - 5 years minimum) required. Education Requirements: Bachelor's degree (preferred but not required) Essential Job Responsibilities:

Robotics, programming & coding instructor/teaching experience (1 - 5 years minimum) required. Education Requirements: Bachelor's degree (preferred but not required) Essential Job Responsibilities:

$30 - $50/hr

Robotics, programming & coding instructor/teaching experience (1 - 5 years minimum) required. Education Requirements: Bachelor's degree (preferred but not required) Essential Job Responsibilities:

Robotics, programming & coding instructor/teaching experience (1 - 5 years minimum) required. Education Requirements: Bachelor's degree (preferred but not required) Essential Job Responsibilities:

$30 - $50/hr

Robotics, programming & coding instructor/teaching experience (1 - 5 years minimum) required. Education Requirements: Bachelor's degree (preferred but not required) Essential Job Responsibilities:

Showing results 21-40

Robotic Engineering information

See Wisconsin salary details

$15

$28

$45

How much do robotic engineering jobs pay per hour?

As of Aug 9, 2026, the average hourly pay for robotic engineering in Wisconsin is $28.51, according to ZipRecruiter salary data. Most workers in this role earn between $22.31 and $33.22 per hour, depending on experience, location, and employer.

What is robotic engineering?

Robotic engineering is a branch of engineering that involves the design, construction, operation, and maintenance of robots. It combines principles from mechanical engineering, electrical engineering, computer science, and control systems to create machines that can perform tasks autonomously or with human guidance. Robotic engineers work on developing robots for various industries, including manufacturing, healthcare, space exploration, and more. The field is rapidly evolving as technology advances, offering exciting opportunities for innovation and problem-solving.

What is the difference between Robotic Engineering vs Mechanical Engineering?

AspectRobotic EngineeringMechanical Engineering
Required CredentialsBachelor's in Robotics, Mechanical, or Electrical Engineering; certifications in roboticsBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentDesign labs, manufacturing plants, research facilitiesManufacturing, design studios, research labs
Industry UsageRobotics companies, automation firms, tech startupsAutomotive, aerospace, manufacturing, energy
Common Search/ComparisonRobotic Engineering vs Mechanical Engineering

Robotic Engineering focuses on designing, developing, and maintaining robots and automation systems, often requiring specialized knowledge in robotics and programming. Mechanical Engineering covers a broader range of mechanical systems, including machinery, thermal systems, and structural components. While both fields share foundational engineering principles, Robotic Engineering emphasizes automation and control systems, making it more specialized for robotics applications.

What are the typical collaboration dynamics between robotic engineers and other teams during a project?

Robotic engineers frequently collaborate with multidisciplinary teams, including software developers, electrical engineers, and mechanical designers. During a project, they often participate in cross-functional meetings to ensure that hardware, software, and control systems are seamlessly integrated. Effective communication and problem-solving are essential, as robotic engineers may need to translate complex technical requirements between teams or troubleshoot issues that arise during development and testing. This collaborative environment fosters innovation and helps streamline the creation of advanced robotic solutions.

What are the key skills and qualifications needed to thrive as a robotic engineer, and why are they important?

To thrive as a Robotic Engineer, you need a solid background in mechanical engineering, electronics, computer science, and mathematics, often supported by a bachelor’s or master’s degree in robotics or a related field. Familiarity with programming languages (such as C++, Python, or ROS), CAD software, and robotics simulation tools is typically required, along with certifications in robotics or automation. Strong problem-solving skills, creativity, teamwork, and effective communication are essential soft skills that set top professionals apart. These competencies ensure the successful design, implementation, and maintenance of complex robotic systems in diverse industries.
What are popular job titles related to Robotic Engineering jobs in Wisconsin? For Robotic Engineering jobs in Wisconsin, the most frequently searched job titles are:
What cities in Wisconsin are hiring for Robotic Engineering jobs? Cities in Wisconsin with the most Robotic Engineering job openings:
Infographic showing various Robotic Engineering job openings in Wisconsin as of August 2026, with employment types broken down into 88% Full Time, 7% Part Time, 4% Contract, and 1% Nights. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution, with an average salary of $59,294 per year, or $28.5 per hour.

$62K - $84K/yr

Other

Posted 4 days ago


Job description

Job Title: - Industrial Engineer/Manufacturing Engineer

Location: Delavan, WI

Experience Level: 5-7 Years


 

Core Responsibilities:

•                     Strong background in mechanical engineering principles combined with elite-level programming and system analysis capabilities to bridge the gap between physical design and complex control logic.

•                     System Design & Analysis: Lead the mechanical design of custom automation cells and end-of-arm tooling (EOAT) using SolidWorks, ensuring adherence to ASME Y14.5 standards.

•                     Feasibility & Validation: Conduct rigorous Robot Reachability studies and Payload Analysis (accounting for joint torque, center of gravity, and moment of inertia) to validate system performance before physical execution.

•                     Safety & Compliance: Perform comprehensive Risk Assessments and Safety Analyses in accordance with ANSI/RIA R15.06 and ISO 10218. Integrate safety PLCs, light curtains, and fail-safe mechanisms to ensure a zero-harm environment.

•                     Robotics & Programming: Design and program complex robotic workcells. Act as the subject matter expert for high-level robot logic and motion profile optimization.

•                     Control Systems: Develop robust PLC programs (utilizing both Digital and Analog I/O) and intuitive HMI interfaces.

•                     Electrical Engineering: Create, interpret, and troubleshoot detailed electrical schematics and industrial prints.

•                     Vision Integration: Program and calibrate advanced Machine Vision systems for high-precision inspection, part location, and robotic guidance.

•                     Lean Manufacturing: Apply Lean principles (5S, Kaizen, Value Stream Mapping) to eliminate waste and maximize throughput in automated lines.

 

Required Qualifications:

•                     Education: Bachelor’s degree in mechanical engineering or a related engineering field.

•                     Certification: Successfully passed the FE (Fundamentals of Engineering) exam.

•                     Mechanical Expertise: Strong proficiency in SolidWorks 2020 and AutoCAD, with a solid understanding of GD&T (ASME Y14.5) principles.

•                     Experienced in Powertrain Fixture Design, with excellent problem-solving and analytical skills.

•                     Controls & Electrical: Advanced knowledge of PLC/HMI programming and electrical schematic design.

•                     Robotics & Vision: Expert-level experience in programming 6-axis robots (e.g., Fanuc, ABB, Kuka) and integrated vision platforms (e.g., Cognex, Keyence).

•                     Safety Standards: Demonstrated experience with ISO 13849 or ANSI B11.19 safety standards and risk assessment methodologies.