Engineering - Reliability Engineer

Indotronix International CorporationOrlando, FL
Onsite

About The Position

Join a dynamic engineering team as a Reliability Engineer, driving robust product performance and lifecycle validation. You will be central to advancing reliability practices through detailed FMECA, accelerated aging evaluations, and meaningful cross-functional collaboration. This position offers hands-on exposure to innovative test methods and the opportunity to directly impact product quality and customer trust.

Requirements

  • Bachelor’s degree in Electrical/Electronic, Mechanical, Aerospace Engineering, or related field
  • 1-3 years of hands-on reliability engineering experience
  • Demonstrated expertise in FMECA and accelerated aging/thermal cycling tests
  • Proficiency in reliability standards such as MIL STD 1629A, IEC 60812
  • Strong knowledge of failure physics, degradation mechanisms, and material performance
  • Ability to develop and interpret test plans using ASTM, IEC, or MIL methods
  • Excellent technical writing and oral communication skills
  • Proven skills in root cause analysis, risk assessment, and data-driven insights
  • Effective multitasking and documentation management abilities

Nice To Haves

  • Model-Based Engineering tool familiarity (e.g., Cameo)
  • Experience with reliability/statistical software (ReliaSoft, Weibull++, ANSYS Reliability, Minitab, R, Python)
  • Practical hands-on hardware test and troubleshooting experience
  • Analytical problem solving and innovative thinking
  • Experience managing subcontractors in reliability engineering

Responsibilities

  • Conduct component-level Failure Modes, Effects, and Criticality Analyses (FMECA) in accordance with MIL STD 1629A and internal standards
  • Identify, assess, and document failure modes, causes, and impacts on system reliability
  • Assign criticality rankings and develop mitigation strategies to address identified risks
  • Update FMECA documentation throughout product development, capturing and applying lessons learned
  • Define objectives and acceleration factors for accelerated lifecycle and thermal cycling testing using advanced reliability models (e.g., Arrhenius, Coffin Manson)
  • Develop, coordinate, and oversee test plans, ensuring efficient execution with internal laboratories
  • Collaborate closely with design engineers, materials scientists, program managers, and test teams
  • Interpret test results and translate data into actionable reliability improvements
  • Maintain documentation control while managing multiple test programs and analyses

Benefits

  • Competitive compensation and comprehensive benefits
  • Career advancement opportunities into senior reliability and engineering leadership roles
  • Collaborative, supportive team environment
  • Exposure to advanced test methodologies and cross-disciplinary innovation
  • Access to continuing education and professional development resources
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