Senior Reliability Engineer

Agility Robotics • $170K — $221K *
Manufacturing & Automotive
5 - 7 years of experience
Job Overview by Ladders

Qualifications

  • 5-8+ years of experience in reliability engineering for complex hardware systems
  • Experience in robotics, autonomous vehicles, aerospace, or high-reliability industries preferred
  • Strong understanding of mechatronic systems and their components
  • Familiarity with reliability engineering principles and methodologies
  • Proficiency in statistical reliability methods and life-prediction techniques
  • Ability to interpret mechanical drawings and electrical schematics
  • Bachelor's degree in Mechanical Engineering, Electrical Engineering, Mechatronics, or related field; advanced degrees are a plus

Responsibilities

  • Implement Design for Reliability (DfR) methodologies across mechatronic systems
  • Establish reliability targets and acceptance criteria for robotic components
  • Collaborate with design teams to assess reliability impacts of control algorithms
  • Design and execute multi-axis accelerated stress testing setups
  • Develop custom test rigs to simulate humanoid duty cycles
  • Lead Root Cause Analysis for mechatronic failures
  • Translate telemetry and test data into actionable design revisions

Benefits

  • 401(k) plan with 6% company match
  • Company stock options
  • 100% company-paid medical, dental, vision, and disability insurance
  • Flexible, unlimited PTO for exempt employees
  • Catered lunches and healthy snacks at select locations
  • Generous paid parental leave programs
  • Professional development and tuition reimbursement opportunities
Full Job Description
About the Role

Agility Robotics is at the forefront of humanoid robotics, redefining how robots interact with and navigate the human world. Our cutting-edge robots rely on advanced mechatronic systems-integrating precision actuators, high-performance motor controllers, multi-axis force/torque sensors, high-density PCBAs, cable harnesses, structural limbs, and dynamic end effectors-to execute complex tasks in demanding environments.

We are seeking a Senior Reliability Engineer with 5-8+ years of hands-on experience in mechatronics and electromechanical systems to join our team in the San Francisco Bay Area. In this hybrid role, you will be the core technical owner for the reliability of integrated humanoid drive systems and robotic actuation sub-assemblies. You will partner directly with mechatronics design, controls, embedded software, and manufacturing teams to drive reliability validation, lead multi-physics failure analyses, and build robust lifetime models for highly dynamic robotic hardware.
About the Work

Mechatronic Reliability Planning & DfR Integration
  • Implement Design for Reliability (DfR) methodologies (DFMEA, FTA, component derating) across complex mechatronic loops, including drive trains, harmonic gearboxes, BLDC motors, encoder feedback systems, and dynamic wire harnesses.
  • Establish reliability targets, duty-cycle profiles, and environmental/mechanical stress acceptance criteria for actuators, sensors, power electronics, and end effectors.
  • Collaborate with control systems and mechatronics design teams to evaluate the reliability impact of control algorithms, dynamic braking, overload torque conditions, and thermal throttling regimes.

Advanced Mechatronic Testing & Lifetime Validation
  • Design, build, and execute multi-axis accelerated stress testing setups, including HALT, HASS, dynamic load cycling, thermal shock, vibration, and ingress protection (IP) validation.
  • Develop custom dynamic test rigs to simulate real-world humanoid duty cycles (e.g., continuous walking, heavy payload lifting, impulse landing impacts, high-frequency oscillatory motion).
  • Apply statistical reliability tools (Weibull analysis, ALT/CALT models) and multi-physics degradation models (e.g., Coffin-Manson, Arrhenius, bearing/gear fatigue modeling) to predict drive system lifetime under dynamic field loads.

Failure Analysis & Closed-Loop Improvement
  • Lead cross-functional Root Cause Analysis (RCA) for complex mechatronic failures across mechanical wear (gears, bearings), electrical degradation (FET switching, PCBA thermal fatigue), and signal/sensor degradation (encoder slip, harness flex failure).
  • Translate field telemetry, torque/temperature logs, and test bench failure data into actionable design revisions for next-generation humanoid architectures.
About You
Experience
  • Minimum of 5 to 8+ years of experience in reliability engineering for complex hardware systems
  • Strong preference for candidates with experience in robotics, autonomous vehicles, aerospace, or other high-reliability industries
Technical Expertise
  • Strong understanding of mechatronic systems integrating mechanical structures, electronics, actuators, sensors, and control hardware.
  • Demonstrated experience with reliability engineering principles including Design for Reliability, DFMEA/FMEA, accelerated-life testing, reliability demonstration, reliability growth, component derating, and physics-of-failure analysis.
  • Experience developing or executing environmental and durability tests such as vibration, thermal cycling, mechanical fatigue, humidity, HALT, or accelerated endurance testing.
  • Familiarity with statistical reliability methods including Weibull analysis, success-run testing, confidence bounds, and accelerated-life modeling.
  • Working knowledge of fatigue and life-prediction methods such as Coffin-Manson, stress-life, strain-life, Miner's rule, or equivalent approaches.
  • Understanding of common mechanical, electrical, and electromechanical failure mechanisms.
  • Ability to interpret mechanical drawings, electrical schematics, test data, material specifications, and supplier qualification reports.
Tools & Analysis Methods
  • Experience using reliability, statistical, simulation, and engineering analysis tools to support reliability assessments and decision-making.
  • Ability to analyze life data, accelerated-test results, failure distributions, and reliability-growth trends.
  • Experience applying physics-based simulation or analytical methods to evaluate mechanical, thermal, vibration, fatigue, or electronics reliability risks.
  • Proficiency with data-analysis and scripting environments used for engineering analysis is preferred.
  • Ability to learn and effectively use new reliability and engineering software tools as needed.
Skills
  • Strong analytical and structured problem-solving ability.
  • Ability to connect observed failures and test results to underlying physical failure mechanisms.
  • Ability to independently develop reliability analyses and validation approaches.
  • Strong written and verbal communication skills.
  • Ability to communicate reliability risk, uncertainty, and recommendations to both technical and non-technical stakeholders.
  • Effective collaboration across mechanical, electrical, systems, test, manufacturing, quality, and supplier organizations.
  • Ability to operate effectively in a fast-moving product-development environment where designs and requirements continue to mature.
Education
  • Bachelor's degree in Mechanical Engineering, Electrical Engineering, Mechatronics, Materials Science, Reliability Engineering, or a related technical field.
  • Master's degree or PhD is a plus.

Location
  • This is a hybrid position based out of Fremont, CA office.

The final salary offered to a successful candidate will be dependent on several factors that may include but are not limited to: job-related knowledge, skills, and experience. Agility Robotics is a multi-state employer and this salary range may not reflect positions who work in other locations. These ranges may be modified in the future.

Anticipated Base Salary Range

$170,000-$221,000 USD

In addition to base pay, our competitive total rewards package consists of the following for full-time employees:
  • 401(k) Plan: Includes a 6% company match.
  • Equity: Company stock options.
  • Insurance Coverage: 100% company-paid medical, dental, vision, and short/long-term disability insurance for employees.
  • Benefit Start Date: Eligible for benefits on your first day of employment.
  • Well-Being Support: Employee Assistance Program (EAP).
  • Time Off:
    • Exempt Employees: Flexible, unlimited PTO and 12 company holidays, including a winter shutdown.
    • Non-Exempt Employees: 10 vacation days, paid sick leave, and 12 company holidays, including a winter shutdown, annually.
  • On-Site Perks: Catered lunches four times a week and a variety of healthy snacks and refreshments at our Salem and Pittsburgh locations.
  • Parental Leave: Generous paid parental leave programs.
  • Work Environment: A culture that supports flexible work arrangements.
  • Growth Opportunities: Professional development and tuition reimbursement programs.
  • Relocation Assistance: Provided for eligible roles.
  • Annual Discretionary Bonus: Provided for eligible roles.

All of our roles are U.S.-based. Applicants must have current authorization to work in the United States.

About Agility Robotics

Agility Robotics is a robotics company that designs and builds bipedal robots for a variety of applications. The company's robots are designed to operate in human environments, and are capable of navigating stairs, uneven terrain, and other obstacles. Agility Robotics' robots are used in a variety of industries, including logistics, delivery, and inspection. The company was founded in 2015 and is based in Albany, Oregon.
Learn more about Agility Robotics
Size
50 employees
Industry
Founded
2015

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