1

Failure Analysis Engineer Jobs in Connecticut (NOW HIRING)

... failure analysis, destructive and non-destructive testing, procedures, auditing of heat treating ... Bachelors in Metallurgy or Metallurgical Engineering (Masters preferred). * 5-10 years of ...

... failure analysis, destructive and non-destructive testing, procedures, auditing of heat treating ... Bachelors in Metallurgy or Metallurgical Engineering (Masters preferred). * 5-10 years of ...

The Production Engineer 2 is responsible for developing, optimizing, and sustaining manufacturing ... Evaluate and disposition parts with quality issues, validate supplier failure analysis reports, and ...

The Test Engineer is responsible for developing and maintaining equipment used to test the ... Demonstrated capabilities in failure analysis and troubleshooting electronic circuits. * Experience ...

New

The Test Engineer is responsible for developing and maintaining equipment used to test the ... Demonstrated capabilities in failure analysis and troubleshooting electronic circuits. * Experience ...

New

Performs Root Cause/Failure Analysis of products during manufacturing of product for safety ... REQUIREMENTS: * BS in Engineering - Metallurgical/Materials highly preferred, Mechanical preferred ...

Principal Site Reliability Engineer

Hartford, CT · On-site

$57.50 - $76.50/hr

... failure analysis. DevSecOps, Release Engineering & Automation (Skill 2) Design and operate end-to-end CI/CD pipelines using Harness/GitHub Actions/Azure DevOps/GitLab CI/CD Jenkins etc Implement ...

Showing results 41-60

Failure Analysis Engineer information

See Connecticut salary details

$43.3K

$88.6K

$128.9K

How much do failure analysis engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for failure analysis engineer in Connecticut is $88,640.00, according to ZipRecruiter salary data. Most workers in this role earn between $66,600.00 and $112,300.00 per year, depending on experience, location, and employer.

How much does a failure analysis engineer make?

Failure analysis engineers typically earn a median annual salary between $70,000 and $100,000, depending on experience, education, and location. Entry-level positions may start lower, while experienced engineers with specialized skills or certifications can earn higher salaries, especially in industries like aerospace, electronics, or manufacturing.

What is the difference between Failure Analysis Engineer vs Materials Engineer?

AspectFailure Analysis EngineerMaterials Engineer
Required CredentialsBachelor's or Master's in Engineering, certifications like ASQ CQE or FAIBachelor's or Master's in Materials Science or Engineering, similar certifications
Work EnvironmentLaboratories, manufacturing plants, quality assurance settingsResearch labs, manufacturing facilities, product development
Industry UsageAutomotive, electronics, aerospace, manufacturingMaterials development, testing, quality control across industries

Failure Analysis Engineers focus on diagnosing product failures to improve quality, often working in labs and manufacturing settings. Materials Engineers develop and test materials used in products, ensuring durability and performance. While both roles require similar credentials and work environments, Failure Analysis Engineers specialize in failure diagnostics, whereas Materials Engineers focus on material development and testing.

What does a failure analysis engineer do?

Failure analysis engineers check and identify problems associated with business processes. These errors primarily take place in electrical systems. Failure analysis engineers determine the cause of equipment failure and decide on an action plan to avoid similar issues in the future. Daily responsibilities include conducting tests on electrical systems to determine usability and life cycle, performing preventative maintenance, and conducting emergency maintenance on electrical components. Qualifications typically include a master’s degree in mechanical or electrical engineering, but most employers also provide on-the-job training.

What are some common challenges faced by failure analysis engineers, and how can they be addressed?

Failure Analysis Engineers often encounter challenges such as limited access to failed components, incomplete failure histories, and tight deadlines for root cause identification. Overcoming these challenges requires strong attention to detail, effective communication with cross-functional teams, and creative problem-solving skills. Building a robust process for data collection and collaborating closely with manufacturing, design, and quality teams can help ensure thorough investigations and more accurate recommendations for corrective actions.

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

To thrive as a Failure Analysis Engineer, you need a solid background in materials science, electrical or mechanical engineering, and experience with analytical and diagnostic techniques, typically supported by a relevant engineering degree. Familiarity with laboratory tools such as scanning electron microscopes (SEM), X-ray analysis systems, and failure analysis software is common, and certifications like Six Sigma can be beneficial. Strong problem-solving skills, attention to detail, and effective communication are crucial soft skills for clearly documenting findings and collaborating with cross-functional teams. These skills and qualities are essential to accurately identify root causes of failures, drive product improvements, and minimize costly defects in manufacturing processes.

What does a failure analysis engineer do?

A Failure Analysis Engineer investigates the causes of failures in products, components, or systems to determine why they did not perform as expected. They use various analytical techniques such as microscopy, spectroscopy, and stress testing to identify defects or issues. Their work helps manufacturers improve product reliability, prevent future failures, and enhance overall quality. These engineers often collaborate closely with design, manufacturing, and quality assurance teams to implement corrective actions based on their findings.
What are popular job titles related to Failure Analysis Engineer jobs in Connecticut? For Failure Analysis Engineer jobs in Connecticut, the most frequently searched job titles are:
What are popular job titles related to Failure Analysis Engineer jobs in CT? For Failure Analysis Engineer jobs in CT, the most frequently searched job titles are:
Infographic showing various Failure Analysis Engineer job openings in Connecticut as of August 2026, with employment types broken down into 91% Full Time, and 9% Contract. Highlights an 96% In-person, and 4% Remote job distribution, with an average salary of $88,640 per year, or $42.6 per hour.

Electromechanical Technician

IDP Projects And Services LLC

Canaan, CT

$25.50 - $32.25/hr

Full-time

PTO

Re-posted 9 days ago


Job description

Electromechanical Technician

Job Title: Electromechanical Technician
Department: Maintenance / Engineering
Reports To: Maintenance Supervisor / Plant Manager
Location: Connecticut/South Carolina
Availability for Travel: High, with potential international travel depending on projects

 Job Objective:

The Electromechanical Technician is responsible for performing preventive, corrective, and predictive maintenance on electromechanical equipment in production plants. This position requires a solid understanding of automated equipment, precision instrumentation, and industry-specific quality and safety regulations (GMP, FDA, ISO 22000). It also requires availability for international travel and advanced English proficiency to collaborate with global teams and participate in the implementation of new projects and technologies.

Principle functions.

  • Identification of defects and correction of the same.
  • Failure analysis using methodologies (5W, Ishikawa).
  • Assist with specific problems on production lines, perform diagnosis, problem-solving, and PM CARD reporting.
  • Preparation of Job Aids, PSG, work instructions.
  • Generation of Centerlines.
  • Provide support in generating action plans in conjunction with the PE.
  • Regulatory compliance and safety.

Responsibilities:

  • Electromechanical Equipment Maintenance:
    • Perform preventive and corrective maintenance on machinery and automated equipment used in pharmaceutical and food production, ensuring proper functionality.
    • Diagnose electromechanical failures in equipment such as motors, pumps, PLC control systems, sensors, and HVAC systems.
    • Use tools and measuring equipment to ensure that equipment meets safety and quality operational standards.
  • Equipment Installation and Configuration:
    • Participate in the installation, configuration, and commissioning of new equipment and production lines, ensuring alignment with quality and safety regulations.
    • Collaborate with project engineers to ensure proper installation and configuration of electrical and mechanical systems in the plants.
  • Process Optimization and Continuous Improvement:
    • Identify opportunities to improve operational efficiency and minimize downtime through operational data analysis and adjusting equipment parameters.
    • Implement continuous improvement solutions using failure analysis tools (Root Cause Analysis) and reliability-centered maintenance (RCM) methodologies.
  • Regulatory Compliance and Safety:
    • Ensure compliance with all applicable regulations and standards, such as GMP, FDA, ISO 9001, and food safety standards like ISO 22000 and HACCP.
    • Maintain detailed maintenance records and ensure all procedures comply with local and international regulatory standards.
  • Programming and Automation:
    • Program and adjust programmable logic controllers (PLCs) and automated systems, improving response times and ensuring precision in production processes.
    • Make adjustments to SCADA and HMI systems to ensure real-time equipment monitoring and control.
  • Documentation and Reporting:
    • Document all maintenance activities, repairs, and modifications to equipment, keeping updated electronic records and ensuring traceability.
    • Prepare technical reports for management and international teams in English, detailing equipment status and recommendations for improvements or additional repairs.
  • Training and International Collaboration:
    • Train operational and maintenance staff in the proper use and maintenance of equipment, ensuring understanding and application of safety and quality standards.
    • Collaborate with international teams on the implementation of new technological improvement projects or expansion of production lines.

Requirements:

  • Education:
    • Technician in Electromechanics, Mechatronics, Industrial Engineering, or related fields.
    • Certifications in industrial maintenance, PLC controllers, or automation systems (desirable).
  • Experience:
    • Minimum 3-5 years of experience in electromechanical maintenance in pharmaceutical and/or food industry plants.
    • Experience in handling automated equipment, production machinery, and control systems.
  • Technical Knowledge:
    • Solid knowledge of industrial electricity, mechanics, pneumatics, and hydraulics.
    • Skills in programming and troubleshooting PLCs (Allen Bradley, Siemens) and automatic control systems.
    • Familiarity with industry-specific safety and quality standards (GMP, HACCP, ISO 22000).
    • Proficient in using precision measurement tools and equipment (multimeters, oscilloscopes, pressure, and temperature sensors).
    • Compliance with internal and customer safety and quality regulations.
    • Ability to identify failure modes in equipment, propose improvements, solutions, and implement them.
  • Skills:
    • Excellent electromechanical troubleshooting and problem-solving skills.
    • Customer satisfaction with the quality of maintenance service. Response times for failures and electromechanical repairs.
    • Proactivity and decision-making.
    • Ability to work under pressure and respond to emergency situations in the plant.
    • Effective communication and interpersonal skills, especially for collaboration with multidisciplinary and international teams.
    • Teamwork with Production Engineers (PE) and plant team.
  • Other Requirements:
    • Ability to work in the USA without sponsorship (if applicable).
    • Availability for international travel (up to 30%-50% of the time).
    • Advanced English proficiency (oral and written).

o   Technical English Proficiency

Key Performance Indicators (KPIs):

  • Response times for electromechanical failures and repairs.
  • Reduction of downtime in production lines.
  • Compliance with safety and quality regulations in all maintenance interventions.
  • Accuracy in PLC programming and automated systems.
  • Internal and external client satisfaction with the maintenance service quality.

Key Competencies:

  • Results Orientation: Ability to quickly and efficiently solve technical problems.
  • Attention to Detail: Rigorously comply with industry-specific regulations.
  • Teamwork: Ability to collaborate with international teams on maintenance and continuous improvement projects.
  • Adaptability and Continuous Learning: Ability to swiftly adopt new technologies and regulations.

Benefits

·       13 vacation days per year.

·       11 days of Holiday´s.

·       Reimbursable Travel Expenses.

·       Per diem and Lodging.

Job Type: Full-time

Schedule:

  • Monday to Friday

Work Location: Multiple locations

Equal Employment Opportunity
IDP Projects & Services, LLC  is proud to be an equal opportunity employer. We celebrate diversity and are committed to an environment where all colleagues contribute for the benefit of our employees, our products, and our communities.