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Associate Reliability Engineer Jobs in Wisconsin

Troubleshoot complex automation and controls issues to minimize downtime and improve reliability ... Associate degree with significant automation engineering experience may be considered.5+ years of ...

Senior Endpoint Engineer

La Crosse, WI · On-site

$75K - $112K/yr

Maintain and improve SCCM/MECM infrastructure health, performance, and reliability. * Maintain and ... Associate degree in Information Systems or a related field, or an equivalent combination of ...

Sr Infrastructure Engineer

Neenah, WI · On-site

$109K - $149K/yr

This is a hybrid role, with the associate required to be in the office 3 days per week ... Evaluate emerging technologies and recommend improvements that enhance reliability, sustainability ...

Provide leadership in Reliability Centered Maintenance best practices. * Ensure compliance with ... Associate Degree in an engineering discipline or equivalent work experience Other work details

Showing results 41-60

Associate Reliability Engineer information

What does an associate reliability engineer do?

An Associate Reliability Engineer is responsible for supporting the analysis, testing, and improvement of systems or products to ensure their reliability and performance over time. They often work with senior engineers to identify potential failure points, conduct reliability tests, and help implement solutions that increase product lifespan and reduce maintenance costs. Their role may involve data analysis, reporting, and collaboration with design, manufacturing, and quality assurance teams. This position is typically an entry-level engineering role that helps build foundational knowledge in reliability engineering principles.

What are the key skills and qualifications needed to thrive as an associate reliability engineer, and why are they important?

To thrive as an Associate Reliability Engineer, you need a solid background in engineering principles, data analysis, and problem-solving, typically supported by a degree in engineering or a related field. Familiarity with reliability analysis tools (such as Weibull analysis software), maintenance management systems, and reliability-centered maintenance (RCM) methodologies is common. Strong analytical thinking, attention to detail, and effective communication skills help you collaborate with cross-functional teams and translate technical findings. These skills and qualities are vital to minimize equipment failures, improve system performance, and ensure operational efficiency.

What are some typical challenges faced by an associate reliability engineer in their first year, and how can they overcome them?

In their first year, Associate Reliability Engineers often encounter challenges such as learning to analyze failure data, understanding complex systems, and effectively using reliability modeling tools. Adapting to fast-paced project timelines while ensuring accuracy in root cause analysis is also common. To overcome these, new engineers should actively seek mentorship, participate in cross-functional meetings, and take advantage of training on reliability software and methodologies. Building strong communication skills and collaborating closely with experienced engineers and technicians will also help accelerate their learning curve.

What is the difference between Associate Reliability Engineer vs Reliability Engineer?

AspectAssociate Reliability EngineerReliability Engineer
CredentialsBachelor's degree in engineering or related field; certifications like Six Sigma or Reliability Engineering certificationsBachelor's or master's degree; often holds certifications such as Certified Reliability Engineer (CRE)
Work EnvironmentEntry-level, supporting reliability projects, data analysis, and testing in manufacturing or industrial settingsMore advanced responsibilities, leading reliability programs, and implementing maintenance strategies
Employer & Industry UsageCommon in manufacturing, aerospace, and energy sectors as an entry-level roleUsed across similar industries for experienced professionals managing reliability initiatives

The main difference is that Associate Reliability Engineers are entry-level professionals supporting reliability tasks, while Reliability Engineers have more experience and take on leadership roles in reliability programs. Both roles require relevant technical credentials and are vital in maintaining equipment performance and safety.

What are the most commonly searched types of Reliability Engineer jobs in Wisconsin?

The most popular types of Reliability Engineer jobs in Wisconsin are:

What are popular job titles related to Associate Reliability Engineer jobs in Wisconsin?

For Associate Reliability Engineer jobs in Wisconsin, the most frequently searched job titles are:

What job categories do people searching Associate Reliability Engineer jobs in Wisconsin look for?

The top searched job categories for Associate Reliability Engineer jobs in Wisconsin are:

What cities in Wisconsin are hiring for Associate Reliability Engineer jobs?

Cities in Wisconsin with the most Associate Reliability Engineer job openings:

Infographic showing various Associate Reliability Engineer job openings in Wisconsin as of August 2026, with employment types broken down into 1% As Needed, 71% Full Time, 26% Part Time, 1% Temporary, and 1% Contract. Highlights an 95% Physical, 1% Hybrid, and 4% Remote job distribution.

Automation Engineer

Janesville, WI • On-site

NOVARES
10K+ employees

Other

Re-posted 21 days ago


Novares rating

4.7

Company rating: 4.7 out of 10

Based on 11 frontline employees who took The Breakroom Quiz


Job description

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We are seeking an Automation Engineer to design, support, optimize, and improve automated manufacturing systems in a fast-paced production environment. This position is responsible for developing and maintaining PLC, robotics, vision, and motion control systems while leading automation projects that improve safety, quality, productivity, and equipment reliability. The Automation Engineer will collaborate closely with operations, maintenance, quality, and manufacturing teams to implement innovative automation solutions and drive continuous improvement initiatives.

Key Responsibilities
  • Design, develop, program, and support automated manufacturing systems including PLCs, HMIs, robots, servo systems, and vision systems.
  • Lead automation projects from concept through implementation, startup, and validation.
  • Develop and modify PLC, robot, and HMI programs to improve equipment performance and manufacturing efficiency.
  • Troubleshoot complex automation and controls issues to minimize downtime and improve reliability.
  • Support new equipment installations, automation upgrades, and capital improvement projects.
  • Analyze production processes and identify opportunities for automation and process optimization.
  • Develop electrical control system architectures and review electrical schematics and machine designs.
  • Collaborate with maintenance, production, quality, and engineering teams to implement corrective and preventive actions.
  • Create and maintain engineering documentation including control narratives, electrical drawings, programming standards, and operating procedures.
  • Monitor equipment performance and utilize data analysis to drive continuous improvement initiatives.
  • Ensure compliance with safety standards, machine guarding requirements, and applicable industry regulations.
  • Provide technical leadership and mentoring to maintenance and technician personnel.
Qualifications
  • Bachelor's degree in Electrical Engineering, Automation Engineering, Mechatronics Engineering, Engineering Technology, or related field preferred.
  • Associate degree with significant automation engineering experience may be considered.5+ years of experience designing, programming, and supporting industrial automation systems in a manufacturing environment.
  • Strong PLC programming experience with Allen-Bradley RSLogix 500, Studio 5000, and FactoryTalk platforms.
  • Experience with industrial robotics including Fanuc, ABB, Wittmann, or similar systems.
  • Experience with HMI, SCADA, motion control, and vision inspection systems.Strong understanding of industrial networking including Ethernet/IP and related communication protocols.
  • Ability to read and develop electrical schematics, control system layouts, and technical documentation.
  • Project management and capital project experience preferred.
Preferred Experience
  • High-speed and high-volume manufacturing environments.
  • Safety PLCs and machine safety systems.
  • Servo motion control systems.
  • Vision-guided robotics.MES, IIoT, and Industry 4.0 technologies.
  • Lean Manufacturing and Continuous Improvement methodologies.
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