
We are seeking a Staff Reliability Engineer to lead system-level reliability and availability modeling for Bloom Energy’s solid oxide fuel cell (SOFC) distributed power generation systems. This role focuses on building reliability block diagram (RBD) models, Markov/state-transition models, and Monte Carlo simulations to translate field and test data into actionable insights that improve uptime, service strategy, and product design decisions.
Key Responsibilities
Own and maintain system-level reliability/availability models for SOFC products, subsystems, and service architectures (redundancy, bypass, standby system, maintenance strategies, operating profiles).
• Develop and validate RBD models using ReliaSoft BlockSim; establish modeling standards, libraries, and peer-review practices.
• Build Markov/state-transition models and run Monte Carlo simulations to quantify availability, MTBF/MTTR, and uncertainty/sensitivity.
• Lead data-to-model parameterization from field, test, and supplier inputs (failure/repair distributions, censoring, restoration factors, common-cause assumptions) and calibrate to fleet performance.
• Deliver trade studies and recommendations to influence design and service decisions; communicate results clearly to crossfunctional stakeholders.
• Mentor engineers/analysts on reliability modeling methods and support global execution across India and the U.S.
Required Qualifications
• Bachelor’s or Master’s degree in Reliability, Mechanical, Electrical, Systems, Industrial Engineering (or related).
• 4-6 years of experience in reliability engineering, including ownership of system-level reliability/availability modeling for complex, repairable systems.
• Proficiency in RBD and availability modeling, including hands-on expertise with ReliaSoft BlockSim.
• Strong experience with Markov/state-transition modeling and Monte Carlo analysis. Strong statistical foundation for reliability data interpretation (failure/repair distributions, censored data, uncertainty communication).
• Strong interpersonal and communication skills to collaborate with product engineering, service, operations, and reliability stakeholders across time zones.
Preferred Skills
• Experience with fuel cells, power generation, or high-temperature electro-thermal systems.
• Experience using FRACAS/warranty/field data to calibrate models and validate projections against fleet performance. Reliability data analysis experience (e.g., Weibull, Crow-AMSAA) and ability to automate analysis using Python/MATLAB (version control preferred).
Why You’ll Love This Role
• High impact: your models directly influence design choices, service strategy, and customer uptime for future and deployed fleets.
End-to-end ownership: build the system view by connecting architecture, field performance, and maintainability into decision ready insights.
• Deep technical scope: apply RBD/BlockSim, Markov/state-transition modeling, and Monte Carlo simulation to complex, repairable systems.

Bloom Energy empowers businesses and communities to responsibly take charge of their energy. The company’s leading solid-oxide platform for distributed generation of electricity and hydrogen is changing the future of energy. Fortune 100 companies around the world turn to Bloom Energy as a trusted partner to deliver lower carbon energy today and a net-zero future. Some of the largest companies in the world trust Bloom Energy to provide their businesses with clean, reliable and resilient energy. Bloom’s customers include global leaders in manufacturing, data centers, healthcare, retail, higher education, utilities, and other industries.
The Bloom Energy Server is a distributed electric power solution built for the digital age and capable of delivering highly reliable, uninterrupted, 24x7 constant power that is also clean and sustainable. Bloom’s unique on-site power generation systems are among the most efficient on the planet, providing significantly reduced operating costs and producing dramatically lower greenhouse gas emissions. By generating power where it is consumed, Bloom Energy offers increased electrical reliability and improved energy security, providing a clear path to energy independence.
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