Failure Analysis Engineer

HyperLight

$90K — $180K *
Manufacturing & Automotive
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • BS/MS/PhD in materials science, chemistry, applied physics, electrical engineering, or chemical engineering with relevant experience
  • 3+ years cleanroom and/or characterization experience (or 1-2 years for MS)
  • Independent cleanroom experience with at least three of various fabrication techniques
  • Proficient in SEM operations including EDS interpretative skills
  • Strong experimental design skills with controls and variables identification
  • Exceptional technical writing abilities for diverse audiences

Responsibilities

  • Own and manage FA cases from questioning through analysis to report writing
  • Plan and execute sequencing of non-destructive and destructive analyses
  • Conduct routine analyses using optical microscopy, SEM, EDS, and more
  • Perform surface and chemical characterization, and interpret results
  • Coordinate and manage outsourced analytical work with external labs
  • Support post-reliability failure analysis and collaborate with engineers
  • Prepare FA samples in cleanroom and conduct light fabrication processes

Benefits

  • Comprehensive health coverage (medical, vision, dental)
  • 401(k) retirement plans with matching
  • Paid parental leave
  • Life and disability insurance
  • Commuter benefits and subsidies
  • Opportunities for professional growth and mentorship
Full Job Description
Failure Analysis currently consists of a small and impactful team. You'll be trained directly by the FA lead and will grow into owning cases independently across the full workflow: intake, analysis planning, hands-on characterization, root cause determination, and reporting back to the Test, Platform, and Engineering teams.

FA at HyperLight is investigative work. Each measurement is one piece of evidence, and the job is to assemble those pieces into a defensible picture of what actually happened - while resisting the pull of the first plausible story.

What you'll do
  • Own FA cases end to end: define the question, plan the analysis, execute it, and write it up.
  • Sequence analyses correctly on irreplaceable samples; non-destructive before destructive and know when a cross-section is worth spending the only sample you have.
  • Run optical microscopy, SEM, and EDS day to day; FIB cross-sectioning and lift-out; AFM,
    profilometry, and ellipsometry as needed.
  • Perform surface and chemical characterization - XPS, Raman, FTIR - and interpret the data, not just acquire it.
  • Specify and manage outsourced analysis (e.g. TEM) with external labs.
  • Support post-reliability FA on stressed parts (HAST, damp heat, thermal cycling) and on customer returns, working with the Test and Reliability engineers.
  • Work in the cleanroom on FA sample preparation and on light fabrication for demo and
    process-feasibility devices: resist processing, photolithography, e-beam lithography, metallization, etching (wet, dry: ion milling and RIE).
  • Write clear, evidence-anchored reports that hold up under cross-functional scrutiny, and present findings to stakeholders including Platform and Foundry.
  • Maintain sample chain of custody, case records, and the FA findings database.

Requirements
  • Education and experience - one of:
    • BS in materials science and engineering, chemistry, applied physics, physics, electrical engineering, or chemical engineering, plus 3+ years hands-on cleanroom and/or
      characterization experience; or
    • MS in one of the above plus 1-2 years; or
    • PhD in one of the above (graduate research counts toward experience)
  • Independent cleanroom experience. You have been qualified on and worked unsupervised with at least three of: photolithography and resist processing, plasma/RIE etch, wet etch, thin-film deposition (PVD/CVD/ALD), e-beam lithography. This includes the habits that go with it - contamination and particle control, strict SOP adherence, and legible, complete logbooks.
  • Independent SEM operation, including imaging of insulating and PIC samples, plus EDS acquisition and interpretation.
  • Experimental rigor. Demonstrated ability to design an analysis with appropriate controls,
    identify confounding variables, and keep observation separate from inference.
  • Technical writing. You can produce a report that a non-specialist stakeholder can act on.
  • Comfortable working with acids, bases, and solvents, and willing to complete site-specific safety training, including hydrofluoric acid handling.

Preferred
  • FIB for cross-sectioning, lift-out, and TEM lamella preparation.
  • XPS data analysis - peak fitting, charge referencing/correction, chemical-state assignment. This is the hardest analytical skill on the list and weighs accordingly.
  • TEM, or experience scoping and managing outsourced TEM/analytical work.
  • Raman, FTIR, AFM, ellipsometry, profilometry.
  • E-beam lithography.
  • Working knowledge of semiconductor and photonic failure mechanisms: galvanic corrosion, delamination, cracking, electromigration, ESD.
  • Familiarity with JEDEC reliability methods (HAST, damp heat, thermal cycling).
  • Lithium niobate, integrated photonics, MEMS, or III-V process experience.
  • Statistical and spectral data analysis (JMP, Python).
  • Experience presenting technical findings to teams whose processes the findings implicate.

What we look for

Two qualities matter more here than any single tool on the list.

The first is curiosity that doesn't quit - the instinct to stop at the odd thing in the corner of
the image rather than move on because it wasn't what you were looking for. Most root causes we find started as an incidental observation someone chose not to ignore.

The second is calibration - being willing to say the evidence doesn't yet support a conclusion,
and to change your mind when a control comes back wrong. FA findings drive real changes to
production, so being confidently wrong is expensive.

Physical and work environment demands
  • Work is performed in cleanroom and laboratory environments requiring full gowning (coverall, hood, face mask, gloves, shoe covers, safety glasses), donned and removed multiple times per day.
  • Extended periods of standing and walking in the cleanroom, frequently 2 - 4 hours at a stretch, with limited flexibility to step away mid-process.
  • Manual dexterity and fine motor control are sufficient to handle wafers, chips, and sub-millimeter features with tweezers under a microscope.
  • Close visual acuity (correctable) for microscope and instrument work. Lithography bays operate under filtered yellow lighting.
  • Routine work with hazardous chemicals including acids, bases, and solvents using prescribed PPE. Site-specific safety training is required before working independently.
  • Certain characterization instruments generate strong magnetic fields; access to those tools may be restricted for individuals with pacemakers or other implanted medical devices.
  • Local travel between the HyperLight office/lab and shared user facilities at Harvard CNS and MIT.nano.
  • Occasional off-hours or weekend work when tool availability at shared facilities requires it.
  • Extended periods at a workstation for data analysis and report writing.

Benefits
  • Competitive market-based compensation (Salary range $90,000 - $180,000 per year)
  • Comprehensive health coverage, including medical, vision, and dental plans for individuals and families
  • 401(k) retirement plans with employee matching
  • Paid Parental Leave
  • Life and disability insurance
  • Commuter benefits and subsidies
  • Professional growth and mentorship opportunities


This role is in-person at HyperLight's office in Cambridge, MA. Authorization to work in the US is required.

Similar Jobs

More Manufacturing & Automotive Jobs

Find similar Failure Analysis Engineer jobs: