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Remote Fmea Jobs (NOW HIRING)

FMEA, SPC, process capability, and metrology * Building endtoend fabrication process flows from tool and design specifications * Proven ability to work effectively with remote fabs and crosssite ...

Electrical Engineer

$70K - $117K/yr

General information Requisition # R68547 Locations USA-Remote Work Posting Date 06/10/2026 Security ... Collaborating with stakeholders to develop Failure Modes and Effects Analyses (FMEA) and Periodic ...

Electrical Engineer

$70K - $117K/yr

General information Requisition # R68014 Locations USA-Remote Work Posting Date 05/26/2026 Security ... Collaborating with stakeholders to develop Failure Modes and Effects Analyses (FMEA) and Periodic ...

Senior Nuclear Facility Engineer

Alameda, CA · On-site +1

$118K - $162K/yr

Participate in hazard and failure analyses (HAZOP, FMEA, FTA) and incorporate safety insights into ... the role. #LI-remote About our Benefits We know that we have some of the most talented and ...

Remote / Hybrid (Global Projects) Company: MaxAccelerate Department: AI & Intelligent Asset ... FMEA Builder * Embedded WatsonX LLM & ML capabilities * Reliability and maintenance AI workflows

Fire Protection Engineer

$140K - $165K/yr

Hybrid/Remote Preferred to be at Dudek office, remote is acceptable Compensation: $140,000-$165,000 ... Conduct analyses including HMA, FMEA, heat flux assessments, and CFD modeling. * Ensure all designs ...

Associate Product Manager

Ferndale, WA · On-site +1

$117K - $146K/yr

Fully remote position, home office * Employment Type: Full-time * Employment Status: Exempt ... Exposure to predictive maintenance concepts (RCM, FMEA) or operator workflows. * Familiarity with ...

Fully remote position, home office * Employment Type: Full-time * Employment Status: Exempt ... Exposure to predictive maintenance concepts (RCM, FMEA) or operator workflows. * Familiarity with ...

Fire Protection Engineer

$140K - $165K/yr

Multi-state Work Environment: Hybrid/Remote Preferred to be at Dudek office, remote is ... Conduct analyses including HMA, FMEA, heat flux assessments, and CFD modeling. * Ensure all designs ...

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Remote Fmea information

What is the difference between Remote Fmea vs Remote Failure Mode and Effects Analysis Specialist?

AspectRemote FmeaRemote Failure Mode and Effects Analysis Specialist
CredentialsISO 13485, Six Sigma, or similar certifications often preferredSame certifications, with additional industry-specific training
Work EnvironmentRemote, primarily computer-based, collaborative toolsRemote, focused on analysis, documentation, and cross-team communication
Industry UsageManufacturing, automotive, healthcare, aerospaceManufacturing, healthcare, electronics, automotive
Job FocusPerforming FMEA tasks, risk assessment, documentationAnalyzing failure modes, developing mitigation strategies, reporting

Both roles involve risk analysis and require similar certifications, but the Remote Fmea role emphasizes performing FMEA tasks, while the Remote Failure Mode and Effects Analysis Specialist focuses on detailed analysis and strategy development. They are often used interchangeably but may differ slightly in scope and responsibilities depending on the employer.

What are the key skills and qualifications needed to thrive as a Remote FMEA (Failure Mode and Effects Analysis) Specialist, and why are they important?

To thrive as a Remote FMEA Specialist, you need a solid background in engineering or quality management, experience with risk assessment methodologies, and often a relevant technical degree. Familiarity with FMEA software tools (such as APIS IQ-RM or PTC Windchill), statistical analysis, and ISO standards is typically required. Strong analytical thinking, attention to detail, and clear communication are essential soft skills for collaborating with cross-functional teams remotely. These skills ensure accurate risk identification and mitigation, directly contributing to product reliability and safety.

What is a Remote FMEA?

A Remote FMEA (Failure Mode and Effects Analysis) is a systematic process used to identify and evaluate potential failures in a product or process, conducted by a team working remotely rather than in person. The goal is to assess the risks associated with each failure mode, prioritize them based on their impact, and develop actions to mitigate or prevent them. Remote FMEA utilizes collaboration tools such as video conferencing, shared documents, and specialized software to facilitate team discussions and documentation. This approach allows organizations to maintain quality and safety standards even when team members are not co-located.

What are some common challenges faced by remote FMEA (Failure Mode and Effects Analysis) specialists, and how can they be addressed?

Remote FMEA specialists often encounter challenges related to effective communication and collaboration, as FMEA typically requires cross-functional teamwork. Coordinating virtual meetings across different time zones and ensuring all voices are heard can be difficult. To address these challenges, it's helpful to use collaborative software tools, establish clear documentation protocols, and schedule regular check-ins with team members. Building strong relationships with stakeholders and maintaining open channels of communication can also help ensure a smooth FMEA process, even when working remotely.
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What cities are hiring for Remote Fmea jobs? Cities with the most Remote Fmea job openings:
What are the most commonly searched types of Fmea jobs? The most popular types of Fmea jobs are:
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Staff PIC Process Engineer

Staff PIC Process Engineer

Nokia

Sunnyvale, CA • On-site, Remote

Full-time

Posted 15 days ago


Nokia rating

8.6

Company rating: 8.6 out of 10

Based on 5 frontline employees who took The Breakroom Quiz

4th of 79 rated telecommunications companies


Job description

As a Staff PIC Process Development Engineer, you will be a senior individual contributor within Nokia's Optical Components organization, responsible for the development, optimization, and transfer of InP photonic integrated circuit (PIC) and laser fabrication processes for highvolume manufacturing.

This role requires deep technical expertise across epitaxial design, semiconductor processing, datadriven manufacturing analysis, and close collaboration with remote fabrication partners. You will play a key role in enabling nextgeneration optical component technologies that support Nokia's highcapacity optical networking platforms.

  • Ph.D. in Electrical Engineering, Physics, or a related field
  • Minimum 3 years of industry experience developing and manufacturing InP PIC or laser fabrication processes for highvolume applications
  • Demonstrated expertise in: 
    • Design of epitaxial layer structures
    • Process design and fabrication process development for InP devices or PICs
    • Photonic device data query and analysis in a manufacturing environment
    • Metal, semiconductor, and dielectric deposition and etching tools, chemistries, and methods
    • FMEA, SPC, process capability, and metrology
    • Building endtoend fabrication process flows from tool and design specifications
  • Proven ability to work effectively with remote fabs and crosssite teams

Preferred Qualifications

  • Experience supporting technology transfer to highvolume manufacturing
  • Familiarity with yield ramp, qualification, and reliability testing for photonic devices
  • Strong communication skills with the ability to translate complex technical issues across disciplines
  • Experience working in foundry or captive fab environments supporting compound semiconductor technologies

Process Development & Integration

  • Lead the design, development, and optimization of InP PIC and laser fabrication processes for highvolume manufacturing
  • Design and specify epitaxial layer structures in collaboration with device designers and epitaxy suppliers
  • Develop complete fabrication process flows based on design requirements, tool capabilities, and manufacturing constraints
  • Drive process integration, ensuring compatibility across metal, semiconductor, and dielectric modules

Manufacturing Data & Yield Excellence

  • Perform extensive data analysis of photonic device, wafer, and process data in a manufacturing environment
  • Apply SPC, process capability analysis (Cp/Cpk), and statistical methods to monitor and improve process performance
  • Lead or contribute to FMEA activities, root cause analysis, and corrective actions for yield and reliability issues
  • Define and utilize metrology strategies to ensure robust process control

Fab Execution & CrossFunctional Collaboration

  • Shepherd wafers successfully through the fab, coordinating closely with test, development, integration, and fabrication engineers
  • Act as a senior technical interface with external or remote fabrication facilities, ensuring alignment on process execution and priorities
  • Collaborate with device design, product engineering, and reliability teams to support technology readiness and product ramp

Technical Leadership & Impact

  • Provide technical leadership within the PIC process development domain
  • Contribute to continuous improvement of tools, methods, and best practices
  • Mentor junior engineers and support knowledge transfer across the broader team