Failure Analysis Engineer

Failure Analysis Engineer

Full-Time 40000 - 50000 £ / year (est.) No working from home possible
Nexperia

At a Glance

  • Tasks: Investigate MOSFET devices, identify failure mechanisms, and support continuous improvement.
  • Company: Nexperia Manchester, a leader in advanced Power MOSFET technologies.
  • Benefits: Competitive salary, bonus scheme, pension, 33 days leave, and professional development opportunities.
  • Other info: Inclusive culture with growth potential and commitment to sustainability.
  • Why this job: Join a dynamic team shaping the future of semiconductor reliability and performance.
  • Qualifications: Degree in Electrical Engineering or related field; strong analytical and communication skills.

The predicted salary is between 40000 - 50000 £ per year.

At Nexperia Manchester, we are strengthening our MOSFET R&D Quality Labs to support the development and manufacture of advanced Power MOSFET technologies. As a Failure Analysis Engineer, you will play a critical role at the interface of manufacturing, product engineering, customer quality and R&D, ensuring robust products, clear technical communication and science-based decision making. Your curiosity, analytical mindset and commitment to high-quality engineering will help shape the reliability and performance of high-volume semiconductor products used worldwide.

What you will do

  • You will perform detailed investigations on MOSFET devices at wafer and package level, applying a wide range of analytical techniques to identify failure mechanisms and support root-cause understanding.
  • You will act as a technical communication bridge across Quality, Manufacturing, R&D, Reliability, Applications and Customer Engineering teams, ensuring findings are clearly explained to both technical and non-technical audiences.
  • You will translate complex analytical results into structured, scientifically defensible reports, contribute to 8D and RCA activities, and support continuous improvement across design, process and application guidance.
  • You will also help develop lab capability, mentor junior colleagues and contribute to a collaborative, inclusive team culture.

Key responsibilities

  • Quality & stakeholder communication: You will communicate analytical techniques, failure mechanisms and conclusions clearly and confidently, supporting customer quality discussions, technical reviews, 8D activities and management updates across Quality, Manufacturing, R&D, Reliability, Applications and Customer Engineering teams.
  • Failure analysis & technical investigation: You will perform comprehensive analysis on MOSFET devices using electrical characterisation, optical microscopy, X-ray, LIT, SAM, SEM, EDX and FIB cross-sectioning. You will identify failure mechanisms such as EOS/ESD, process or material defects and application-driven stress, correlating results with process data, design information and reliability lifetests.
  • Scientific & technical communication: You will translate complex analytical findings into clear, structured and scientifically defensible reports, supported by high-quality visuals including images, graphs and schematics. You will present results in cross-functional forums using a respectful, collaborative communication style.
  • Continuous improvement & knowledge sharing: You will identify systemic quality risks and contribute to preventive actions across design, process and application guidance. You will support laboratory scope management, equipment upkeep and capability development, mentor junior team members and contribute to best-practice sharing and an inclusive team culture.

What you will need

Essential requirements:

  • Bachelors or Masters degree in Electrical Engineering, Materials Science, Physics, Microelectronics or related field
  • Curiosity, structured problem-solving mindset and strong attention to detail
  • Confidence working in cross-functional, multicultural environments
  • Experience or strong academic exposure to: Semiconductor devices (Power MOSFETs preferred), Failure analysis, reliability or product engineering, Device physics, semiconductor manufacturing processes and reliability mechanisms
  • Strong scientific writing and presentation skills
  • Ability to communicate technical concepts clearly and confidently

Beneficial skills:

  • Hands-on FA experience with power semiconductor devices
  • Familiarity with reliability stress standards and application-driven failure modes

Interview process

  • Stage 1: Recruiter Review
  • Stage 2: Technical Interview (FA methods, device physics, case studies)
  • Stage 3: Competency Interview

Your benefits will include

  • Excellent starting salary
  • Bonus scheme of up to 6%
  • Excellent contributory pension scheme of up to 9%
  • Recognition rewards scheme
  • EV salary sacrifices scheme
  • Income protection
  • 12 salary life assurance
  • 33 days of annual leave
  • Flexible benefits scheme
  • Enhanced parental leave
  • On-site medical centre
  • Enhanced sick pay
  • Subsidised canteen
  • Employee assistance programme
  • Retail and entertainment reductions
  • Sports and social clubs
  • Professional Development
  • Possibility for funded academic support up to PhD level, employee goal setting and development plans, huge growth potential both internally and globally within the business via both management and technical pathways.

Corporate Social Responsibility & Sustainability

A global commitment to becoming carbon neutral by 2035, working with suppliers who embrace and comply with the Nexperia Supplier Code of Conduct, paid time off for every employee to support charitable work up to four times per year.

Diversity, Equity & Inclusion

Corporate members of Neurodiversity in Business and a Disability Confident Employer. Dedicated Employee Resource Groups for Neuroinclusion, the LGBTQ+ community, and Women in Nexperia, with a commitment to increase women in management positions to 30% by 2030.

Failure Analysis Engineer employer: Nexperia

Nexperia Manchester is an exceptional employer, offering a dynamic work environment where innovation meets collaboration. As a Failure Analysis Engineer, you will benefit from a comprehensive range of perks including a competitive salary, generous leave, and professional development opportunities, all while contributing to a culture that values diversity, equity, and inclusion. With a commitment to sustainability and employee growth, Nexperia provides a unique platform for meaningful contributions in the semiconductor industry.

Nexperia

Contact Details:

Nexperia Recruitment Team

StudySmarter Expert Advice🤫

We think this is how you could land Failure Analysis Engineer

Tip Number 1

Get to know the company inside out! Research Nexperia's values, recent projects, and their approach to innovation in MOSFET technologies. This will help you tailor your conversations during interviews and show that you're genuinely interested in being part of their team.

Tip Number 2

Practice your technical communication skills. Since you'll be bridging gaps between various teams, being able to explain complex concepts simply is key. Try explaining failure analysis techniques to a friend or family member who isn’t in the field – it’ll sharpen your skills!

Tip Number 3

Network like a pro! Connect with current employees on LinkedIn or attend industry events. Engaging with people already in the company can give you insider tips and might even lead to a referral, which can boost your chances of landing that interview.

Tip Number 4

Don’t forget to apply through our website! It’s the best way to ensure your application gets seen by the right people. Plus, it shows you’re proactive and serious about joining the Nexperia team.

We think you need these skills to ace Failure Analysis Engineer

Analytical Techniques
Failure Analysis
Root Cause Analysis (RCA)
Electrical Characterisation
Optical Microscopy
X-ray Analysis
Scanning Electron Microscopy (SEM)

Some tips for your application 🫡

Show Your Curiosity:As a Failure Analysis Engineer, your curiosity is key! Make sure to highlight your analytical mindset and problem-solving skills in your application. We want to see how you approach challenges and your passion for understanding complex issues.

Communicate Clearly:Since you'll be acting as a bridge between teams, it's crucial to demonstrate your ability to communicate technical concepts clearly. Use straightforward language in your application to show us that you can translate complex ideas into simple terms.

Highlight Relevant Experience:If you've got hands-on experience with semiconductor devices or failure analysis, shout about it! Tailor your application to showcase any relevant projects or academic work that aligns with the role. We love seeing practical examples of your skills.

Apply Through Our Website:We encourage you to apply directly through our website. It’s the best way to ensure your application gets to the right people. Plus, it shows us you're keen on joining our team at Nexperia Manchester!

How to prepare for a job interview at Nexperia

Know Your MOSFETs

Make sure you brush up on your knowledge of Power MOSFETs and their failure mechanisms. Be prepared to discuss specific analytical techniques you've used in the past, like electrical characterisation or SEM. This will show your technical expertise and genuine interest in the role.

Communicate Clearly

Since you'll be acting as a bridge between various teams, practice explaining complex concepts in simple terms. Think about how you would present your findings to both technical and non-technical audiences. Clear communication is key, so consider doing mock presentations with friends or colleagues.

Show Your Curiosity

Demonstrate your analytical mindset by discussing past experiences where your curiosity led to problem-solving. Prepare examples of how you've approached investigations or tackled challenges in previous roles or projects. This will highlight your commitment to high-quality engineering.

Prepare for Technical Questions

Expect to face technical questions during the interview, especially in the second stage. Review common failure analysis methods and device physics principles. Practising case studies can also help you articulate your thought process and decision-making skills effectively.