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Fmea Engineer Jobs in Seattle, WA (NOW HIRING)

Systems Engineer 4

Everett, WA · On-site

$104.70 - $111.58/hr

Support safety analyses (SSA, FMEA/FMES) and compliance with applicable aerospace/defense ... Lead discussions across software and hardware engineering teams during design and testing phases.

Meta is seeking a Product Reliability Engineer to drive the quality, durability, and long-term ... Conduct failure mode and effects analysis (FMEA) and fault tree analysis (FTA) to proactively ...

Meta is seeking a Product Reliability Engineer to drive the quality, durability, and long-term ... Conduct failure mode and effects analysis (FMEA) and fault tree analysis (FTA) to proactively ...

Meta is seeking a Reliability Engineer to drive the quality, durability, and long-term reliability ... Conduct failure mode and effects analysis (FMEA) and fault tree analysis (FTA) to proactively ...

Meta is seeking a Reliability Engineer to drive the quality, durability, and long-term reliability ... Conduct failure mode and effects analysis (FMEA) and fault tree analysis (FTA) to proactively ...

Simplexity is a product development engineering firm that helps leading technology companies bring ... Establish risk-management strategies using defect tracking, root-cause analysis, FMEA, control ...

Reliability Engineer III

Seattle, WA · On-site

$121.02 - $169.43/hr

## Reliability Engineer IIIApplylocations: Greater Seattle Area: Space Coast, FL: Huntsville, AL ... Experience with FMEA, FTA, and reliability modeling tools* Familiarity with spacecraft development ...

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Fmea Engineer information

See Seattle, WA salary details

$44.4K

$115.8K

$156.5K

How much do fmea engineer jobs pay per year?

As of Sep 6, 2026, the average yearly pay for fmea engineer in Seattle, WA is $115,797.00, according to ZipRecruiter salary data. Most workers in this role earn between $95,600.00 and $132,600.00 per year, depending on experience, location, and employer.

What is an FMEA engineer?

An FMEA Engineer is a professional who specializes in conducting Failure Mode and Effects Analysis (FMEA) within manufacturing, engineering, or product design teams. Their main responsibility is to systematically evaluate processes or products to identify potential failure modes, assess their impact, and prioritize corrective actions to mitigate risks. FMEA Engineers work closely with cross-functional teams to improve reliability, safety, and quality standards by proactively addressing weaknesses before issues arise. Their work is crucial in industries such as automotive, aerospace, electronics, and healthcare, where product safety and reliability are critical.

How does an FMEA engineer typically collaborate with cross-functional teams during the risk assessment process?

As an FMEA Engineer, you will work closely with teams from design, manufacturing, quality, and sometimes suppliers to systematically identify and evaluate potential failure modes in products or processes. Effective collaboration is essential, as you’ll facilitate FMEA sessions, gather input from subject matter experts, and ensure that all relevant perspectives are considered. This teamwork helps to create robust mitigation strategies and action plans, making communication and coordination core parts of your daily responsibilities.

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

To thrive as an FMEA Engineer, you need a strong background in engineering principles, risk analysis, and quality management, often supported by a relevant engineering degree and experience in process improvement. Familiarity with technical tools like FMEA software (such as APIS IQ-FMEA or PTC Windchill), statistical analysis programs, and quality standards like ISO 9001 or IATF 16949 is typically required. Excellent attention to detail, analytical thinking, and strong communication skills help you collaborate effectively with cross-functional teams and present findings clearly. These skills and qualifications are essential for proactively identifying and mitigating risks, ensuring product reliability, and maintaining high quality standards in manufacturing or design processes.

What is the difference between Fmea Engineer vs Quality Engineer?

AspectFmea EngineerQuality Engineer
CertificationsISO 13485, Six Sigma, ASQ certificationsISO 9001, Six Sigma, ASQ certifications
Work EnvironmentManufacturing, automotive, aerospaceManufacturing, software, healthcare
Primary FocusFailure Mode and Effects Analysis (FMEA)Overall quality management and process improvement

Fmea Engineers specialize in conducting FMEA to identify potential failures and improve product reliability, often working closely with design and manufacturing teams. Quality Engineers have a broader role in overseeing quality systems, audits, and continuous improvement initiatives. While both roles require similar certifications and often operate within manufacturing industries, Fmea Engineers focus specifically on failure analysis, whereas Quality Engineers manage overall quality assurance processes.

What cities near Seattle, WA are hiring for Fmea Engineer jobs?

Cities near Seattle, WA with the most Fmea Engineer job openings:

Systems Engineer ( Design Control Remediation)

Anagha Techno Soft

Bothell, WA • On-site

Other

Posted 6 days ago


Job description

Job Title: Systems Engineer ( Design Control Remediation)
Description:
--Lead the remediation of design control records across a portfolio of released Class I and II medical devices, working onsite alongside the customer's systems engineering team. This is post-inspection remediation work.
--The requirements, risk and verification chain has gaps. You will find them, close them, and prove they are closed.
--This is not a documentation exercise.
--The engineering judgement is the job deciding how deep a fix has to go, and knowing when a record needs rebuilding rather than patching. You will own the technical standard for a small team, and you will be the person the customer escalates to.
Your role:
--Take ownership of assigned gap records across requirements, risk management and verification, and drive each one to a closed, approvable state.
--Make the remediation depth call on every record spot cleanup, targeted rework, or full reconstruction and defend that call to the customer's systems engineering manager.
--Repair and author requirements across the full product hierarchy, restoring upstream and downstream traceability that has been lost or never established.
--Remediate Usability FMEA and design FMEA at product, element and part level, linking every risk control back to the requirement that implements it.
--Assess and rebuild verification evidence where the existing record does not support the claim being made.
--Build and own a failure-type taxonomy: classify each gap to a pattern, author the fix once, and propagate it across the portfolio rather than solving the same problem repeatedly.
--Run a quality gate before anything reaches customer review. First-pass approval rate is the metric that protects the schedule.
--Package work for an offshore support team, define acceptance criteria, and review everything they return before it is submitted.
--Report weekly in one page: closed, in review, blocked, progress against plan. Same format every week.
You're the right fit if:
--You have medical device systems engineering, with at least 3 years in design control remediation, design assurance or post-inspection response.
--Defined and managed system requirements throughout the product development lifecycle, ensuring complete traceability from user needs to verification and validation.
--You have worked a live FDA 483 or warning letter remediation and can describe what you personally closed.
--You are fluent in ISO 14971, ISO 13485, and 21 CFR 820.30
--You can decompose requirements, author DFMEA and Usability FMEA, and design verification protocols without supervision.
--You have worked in a PLM and an ALM environment. Windchill, Codebeamer are the toolchain here; equivalents are acceptable with a short ramp.
--You hold a Bachelor's or Master's in biomedical, mechanical, electrical or systems engineering