... modeling, and stress testing to predict and mitigate potential failures and drive high overall ... predictive maintenance schedules to maximize operational availability * Evaluate and select ...
... modeling, and stress testing to predict and mitigate potential failures and drive high overall ... predictive maintenance schedules to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
... modeling, and stress testing to predict and mitigate potential failures and drive high overall ... predictive maintenance schedules to maximize operational availability * Evaluate and select ...
... modeling, and stress testing to predict and mitigate potential failures and drive high overall ... predictive maintenance schedules to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to ... predictive maintenance strategies to maximize operational availability * Evaluate and select ...
Internship Predictive Modeling information
What is the difference between Internship Predictive Modeling vs Data Analyst?
| Aspect | Internship Predictive Modeling | Data Analyst |
|---|---|---|
| Required Credentials | Typically pursuing or recent graduate in data science, statistics, or related fields | Often holds a degree in statistics, mathematics, or related disciplines |
| Work Environment | Internship setting, often in tech, finance, or marketing companies | Full-time or part-time roles in various industries including finance, healthcare, and retail |
| Employer & Industry Usage | Used in companies focusing on developing predictive models and machine learning applications | Common in organizations analyzing data trends, reporting, and decision-making |
Internship Predictive Modeling focuses on developing and applying models to forecast outcomes, often as part of an internship program. Data Analysts interpret data, generate reports, and support business decisions. While both roles require analytical skills, predictive modeling emphasizes machine learning and statistical modeling, whereas data analysis centers on data interpretation and visualization.
Other
Posted 26 days ago
SpaceX rating
8.8
Based on 146 frontline employees who took The Breakroom Quiz
8th of 63 rated aerospace companies
Job description
MECHANICAL ENGINEER, SOLAR CELLS (STARLINK)
The Solar Cell team is revolutionizing power generation for space applications through advanced solar cell manufacturing. We're scaling production of high-efficiency solar cells to support sustainable energy solutions for Starlink constellations, launch vehicles, and beyond. As a Solar Cell Factory Mechanical Engineer, you will design, build, and optimize mechanical and automation systems for the production of solar cell manufacturing equipment and material movement mechanisms. This role requires a detail-oriented engineer passionate about safe electrical design, designing robust and efficient mechanical systems, and taking on total ownership of existing systems for optimization in addition to development of novel equipment, all while minimizing risks and maximizing efficiency in our cutting-edge solar cell factory.
RESPONSIBILITIES:
- Own electronics manufacturing subsystems and equipment from conceptual design through high-volume production and automation ramp
- Develop design criteria, collaborate on requirements, and drive system-level optimization
- Test and iterate on products by performing failure modes and effects analysis (FMEA), reliability modeling, and stress testing to predict and mitigate potential failures and drive high overall equipment effectiveness
- Design and develop the production lines that manufacture your product, including robot end effector design, process development, control system design, automation programming, and more
- Uptime Optimization: Monitor and track equipment uptime metrics using data analytics tools; identify bottlenecks, downtime causes, and implement preventive measures such as predictive maintenance schedules to maximize operational availability
- Evaluate and select equipment suppliers based on reliability, performance requirements and core business needs; oversee installation, commissioning, and ongoing performance of vendor-supplied process equipment to ensure target rate, yield and uptime is achieved
BASIC QUALIFICATIONS:
- Bachelor's degree in an engineering discipline
- Experience with CAD and FEA software packages
- 1+ years of professional experience with mechanical/electromechanical design, analysis, testing, and/or manufacturing (internship experience is applicable)
PREFERRED SKILLS AND EXPERIENCE:
- Master's degree in engineering or a related technical discipline
- 3+ years of professional experience in mechanical design and analysis
- 2+ years of hands-on project experience with complex mechanical systems, preferably as a team lead
- Proficient in 3D CAD (NX preferred)
- Solid understanding and application of GD&T, mechanical engineering fundamentals, structural analysis, and failure modes of complex mechanical systems
- Prior ownership of a complex component or assembly from initial design through high-volume production ramp
- Familiarity with manufacturing processes and how to design for manufacturability
- Exposure to some variety of production machinery, industrial sensors, and equipment (motion systems, dispense systems, temperature controllers, laser distance sensors, injection molders, die casters, etc.)
- Self-motivated with strong organizational, written, and oral communication skills
ADDITIONAL REQUIREMENTS:
- Ability to work long hours and weekends as necessary to support critical milestones
ITAR REQUIREMENTS:
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Learn more about the ITAR here.
SpaceX is an Equal Opportunity Employer; employment with SpaceX is governed on the basis of merit, competence and qualifications and will not be influenced in any manner by race, color, religion, gender, national origin/ethnicity, veteran status, disability status, age, sexual orientation, gender identity, marital status, mental or physical disability or any other legally protected status.
Applicants wishing to view a copy of SpaceX's Affirmative Action Plan for veterans and individuals with disabilities, or applicants requiring reasonable accommodation to the application/interview process should reach out to
About SpaceX
Sourced by ZipRecruiter
Industry
Accounting services
Company size
1,001 - 5,000 Employees
Headquarters location
Hawthorne, CA, US
Year founded
2002