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Semiconductor Reliability Physics Jobs (NOW HIRING)

Use reliability physics of failure models and reliability statistics to assess risk levels to the ... MS in Reliability Engineering or related field * 10+ years of experience in semiconductor, package ...

Use reliability physics of failure models and reliability statistics to assess risk levels to the ... MS in Reliability Engineering or related field * 10+ years of experience in semiconductor, package ...

Use reliability physics of failure models and reliability statistics to assess risk levels to the ... MS in Reliability Engineering or related field * 10+ years of experience in semiconductor, package ...

Lead deep understanding of degradation physics specific to III-V (InP) compound semiconductor ... Correlate reliability behavior to material properties, epitaxial growth conditions, device design ...

Lead deep understanding of degradation physics specific to IIIV (InP) compound semiconductor ... Correlate reliability behavior to material properties, epitaxial growth conditions, device design ...

Development Reliability Staff Engineer

Scottsdale, AZ · On-site

$103K - $129K/yr

onsemi is seeking a Reliability Staff Engineer to join our team in Scottsdale, Arizona. You will be ... of physics of failure, particularly electro-thermo-mechanical mechanisms in semiconductor devices ...

Senior Reliability Engineer

San Jose, CA · On-site

$95K - $144K/yr

Only candidates with prior working experience as reliability engineer in the semiconductor field ... Candidates with advanced college degree in Physics and Applied Physics may be considered based on ...

Bachelor's degree in Electronics Engineering, Mechanical Design, Physics, Materials, or a related ... semiconductor reliability tests and failure modes; and 5 years of experience with Project ...

Reliability Engineer

Milpitas, CA · On-site

$65 - $70/hr

Failure physics, mechanical/electrical engineering, materials science * Accelerated testing ... Preference for those with E-beam/semiconductor capital equipment experience. * Experience with: * E ...

Development Reliability Staff Engineer

Scottsdale, AZ · On-site

$103K - $129K/yr

onsemi is seeking a Reliability Staff Engineer to join our team in Scottsdale, Arizona. You will be ... physics of failure, particularly electrothermomechanical mechanisms in semiconductor devices and ...

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Semiconductor Reliability Physics information

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$62K

$117.5K

$168.5K

How much do semiconductor reliability physics jobs pay per year?

As of Jun 6, 2026, the average yearly pay for semiconductor reliability physics in the United States is $117,488.00, according to ZipRecruiter salary data. Most workers in this role earn between $94,500.00 and $140,000.00 per year, depending on experience, location, and employer.

What are some typical challenges Semiconductor Reliability Physics professionals face when working with new device technologies?

Professionals in Semiconductor Reliability Physics frequently encounter challenges when evaluating the reliability of emerging device technologies, such as advanced nodes or novel materials. These challenges include understanding unfamiliar failure mechanisms, developing new test methodologies, and ensuring that accelerated stress tests accurately predict long-term device behavior. Collaboration with process engineers, design teams, and test engineers is essential to address these issues and implement effective reliability solutions. Staying current with industry standards and continuously adapting to technological advancements are also key aspects of the role.

What is Semiconductor Reliability Physics?

Semiconductor Reliability Physics is a specialized field that studies the physical mechanisms and processes affecting the longevity, stability, and failure rates of semiconductor devices. Professionals in this area analyze how factors such as temperature, electrical stress, and material imperfections impact device performance over time. Their work is crucial for improving the durability and dependability of integrated circuits and other semiconductor components used in electronics. They often collaborate with design, manufacturing, and quality assurance teams to ensure products meet industry reliability standards.

What is the difference between Semiconductor Reliability Physics vs Semiconductor Device Engineer?

AspectSemiconductor Reliability PhysicsSemiconductor Device Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Physics, or Materials Science; certifications in reliability testingBachelor's or Master's in Electrical Engineering or related field; experience with device design
Work EnvironmentResearch labs, quality assurance, failure analysisDesign labs, R&D, manufacturing facilities
Employer & Industry UsageSemiconductor manufacturers, research institutionsSemiconductor companies, integrated circuit design firms
Common Search & Comparison IntentUnderstanding reliability testing and physics of failureDesigning and optimizing semiconductor devices

Semiconductor Reliability Physics focuses on understanding and improving the longevity and failure mechanisms of semiconductor components through physics-based analysis. In contrast, Semiconductor Device Engineers design and develop semiconductor devices, ensuring performance and manufacturability. Both roles often collaborate but serve different aspects of the semiconductor development process.

What are the key skills and qualifications needed to thrive as a Semiconductor Reliability Physics Engineer, and why are they important?

To thrive in Semiconductor Reliability Physics, you need a strong background in materials science, solid-state physics, and semiconductor device engineering, typically supported by a relevant advanced degree. Familiarity with reliability testing equipment, semiconductor characterization tools, and statistical analysis software is commonly required. Analytical thinking, problem-solving, and effective communication are crucial soft skills for diagnosing failures and collaborating with cross-functional teams. These skills ensure reliable device performance, support innovation, and help mitigate costly failures in semiconductor manufacturing.
Infographic showing various Semiconductor Reliability Physics job openings in the United States as of May 2026, with employment types broken down into 76% Full Time, and 24% Part Time. Highlights an 90% Physical, 2% Hybrid, and 8% Remote job distribution, with an average salary of $117,488 per year, or $56.5 per hour.
Principal Reliability/FA Engineer

Principal Reliability/FA Engineer

Skyworks

Newbury Park, CA

$108K - $136K/yr

Full-time

Medical, Retirement, PTO

Posted 9 days ago


Job description

If you are looking for a challenging and exciting career in the world of technology, then look no further. Skyworks is an innovator of high-performance analog semiconductors whose solutions are powering the wireless networking revolution. Through our broad technology expertise and one of the most extensive product portfolios in the industry, we are Connecting Everyone and Everything, All the Time.

At Skyworks, you will find a fast-paced environment with a strong focus on global collaboration, minimal layers of management, and the freedom to make meaningful contributions in a setting that encourages creative thinking. We are excited about the opportunity to work with you and glad you want to be part of a team of talented individuals who together are changing the way the world communicates.

Requisition ID: 77684 

Description

The Principal Reliability / Failure Analysis Engineer leads enterprise-level failure analysis across component, module, and system levels, serving as a technical authority shaping reliability strategy and execution. This role provides technical leadership, ensuring rigorous root cause identification and driving corrective actions that improve product reliability at scale. The engineer leads complex laboratory investigations, develops advanced FA methodologies, and guides design-for-reliability practices across multiple programs.

Responsibilities include analyzing and communicating results to isolate device- and system-level failures, defining test strategies and FA control procedures, and ensuring alignment with company, customer, and regulatory requirements. The role also requires development of advanced analytical tools and predictive approaches to identify risks early in product development, packaging, and manufacturing processes. Findings enable cross-functional decisions, guiding design, material, and process improvements to enhance long-term system reliability. This position also leads organization-wide corrective and preventive actions and mentors engineers, requiring exceptional technical depth, strategic thinking, and the ability to influence across teams to drive reliability excellence and continuous improvement.

Responsibilities

Lead comprehensive failure analysis investigations through data-driven approaches, troubleshooting electronic components including semiconductor devices, surface-mount components, printed circuit boards, and wire-bond and flip-chip modules. Design and execute parametric, RF, and system-level test strategies to enable accurate fault isolation and root cause determination, leveraging deep knowledge of digital CMOS and HBJT RF technologies. Develop and deploy advanced failure analysis techniques to address emerging challenges.

Provide technical leadership to design, quality, and test engineering teams, guiding design-for-reliability decisions. Mentor engineers and technicians to strengthen technical capability and promote best practices. Lead cross-functional initiatives to enhance product robustness and accelerate resolution of critical failures. Prepare and deliver high-impact technical reports and recommendations to senior management and customers, ensuring alignment with business objectives and reliability standards.

Required Experience and Skills

Bachelor’s degree in Electrical or Computer Engineering (or equivalent experience) with 12+ years of relevant experience, or a Master’s degree with 10+ years in failure analysis and reliability engineering; PhD preferred.

Deep expertise in digital CMOS, RF device fundamentals, and advanced circuit analysis, with a proven ability to lead complex investigations and develop innovative failure analysis methodologies.

Extensive hands-on experience with advanced FA tools, including CSAM, X-ray CT, IR/NIR microscopy, and wet and dry etching decapsulation techniques.

Strong proficiency in PCB and IC design tools, along with DC and RF parametric test equipment.

Broad technical knowledge spanning failure mechanisms, reliability physics, and materials science, complemented by solid statistical analysis and reliability modeling skills.

Excellent analytical, problem-solving, and communication abilities, with a demonstrated capacity to influence technical decisions and drive cross-functional collaboration at senior levels.

Proficiency in Microsoft Office applications, including Outlook, Word, Excel, and PowerPoint.

Desired Experience and Skills

Desirable qualifications include experience with advanced failure analysis tools such as SEM and FIB, along with familiarity in digital and RF test equipment and measurement techniques. A strong understanding of semiconductor fabrication processes—particularly silicon and GaAs technologies, including etching, photolithography, and dielectric processes—is highly valued, as is experience in mechanical polishing and sample preparation.

Knowledge of IC packaging technologies (e.g., wire bond, flip-chip, molding) is preferred, with exposure to advanced packaging and emerging materials considered a plus.

The ideal candidate demonstrates the ability to lead strategic initiatives, develop innovative analytical approaches, and influence design improvements through data-driven insights. This role requires strong technical leadership, proven mentorship, and the ability to effectively influence cross-functional teams. The candidate should be recognized as a subject matter expert, capable of independently solving complex, ambiguous problems while driving broad organizational impact. A positive attitude, adaptability, and strong collaboration skills are essential.

#LI-JR1

The typical base pay range for this role across the U.S. is currently USD $129,400 - $247,800 per year. Starting base pay will depend on relevant experience and skills, training and education, business needs, market demands, the ultimate job duties and requirements, and work location. Skyworks has different base pay ranges for different work locations in the U.S. Benefits include access to healthcare benefits (including a premium-free medical plan option), a 401(k) plan and company match, an employee stock purchase plan, paid time off (including vacation, sick/wellness, parental leave), among others. Employees are eligible to participate in an incentive plan, and certain roles are also eligible for additional awards, including recognition and stock. These incentives and awards are based on individual and/or company performance. 

Skyworks is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, age, sex, sexual orientation, gender identity, national origin, disability, protected veteran status, or any other characteristic protected by law. Skyworks strives to create an accessible workplace; if you need an accommodation due to a disability, please contact us at accommodations@skyworksinc.com.


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About Skyworks

Sourced by ZipRecruiter

We are empowering the wireless networking revolution, connecting people, places and things around the world. As the demand for ubiquitous, “always-on” connectivity increasingly expands, our innovative, high performance analog semiconductors are enabling breakthrough communication platforms from global industry leaders – changing the way we live, work, play and learn. Through our broad technology expertise and one of the most extensive product portfolios in the industry, we are Connecting Everyone and Everything, All the Time.

Industry

Construction

Company size

201 - 500 Employees

Headquarters location

Buffalo, NY, US