Find Jobs
Find Jobs Near You – Available Work in Your Location
Skip to job details
T
Tesla
Process Engineer, Battery Module
Career Insights for Process Engineer (General)
See where this job fits in the broader career landscape. Knowing your career path helps you see what's possible from here.
Scorecard
Based on Nevada data
Review key factors to help you decide if this role fits your goals. How is this calculated?
What they do
A Process Engineer solves problems related to the manufacturing and use of products, including chemicals, fuel, food, and clothing. Designs new products, improves existing ones, or develops new processes for better use of existing materials. May specialize in a chemical engineering process, such as making plastics, or in an industry such as health care.
$112,767 / year median in Nevada
+13% projected growth
Job Description
A Process Engineer will implement, develop, and optimize production methodologies in the manufacturing operations of Tesla. This engineer will be responsible for optimizing product flow though the factory though process optimization that may include tool /fixture selection, line layouts, ergonomic study, material presentation, and other relevant factors. They will interface with Design, Test, and Quality Engineering to solve problems, improve manufacturability, and implement continual improvement. They will sustain products with cost reduction and yield improvements. In addition, the Process Engineer will work with quality to compile and evaluate data to determine appropriate limits and variables for process or material specifications. Develop expertise in manufacturing processes. Understand process capabilities through critical data analysis and in depth understanding of the product. Develop and modify line layouts, including material flow, waste reduction, and ergonomics, utilizing Lean Manufacturing best practices Analyze and optimize production processes to ensure safety while maximizing Overall Equipment Effectiveness (OEE) in cost effective means while driving to achieve world-class quality levels. Champion continuous improvement projects (CIP) to maximize yield, capacity, and capability Responsible for diagnosing issues found during the part manufacturing process and drive corrective action back to source, resulting in root cause identification and elimination. Utilize structured problem-solving techniques such as DMAIC, Ishikawa, Five Why (5W) and Eight Disciplines (8D) Develop robust and clear data collection, visualization, and analysis tools. Enable data driven operational and financial decisions through predictive insights into tool and process performance, including integration of factory data systems and use of software such as MySQL, Python, R, JMP, Minitab, Tableau and Ignition Perform supporting activities for engineering and manufacturing including 5S and Lean manufacturing activities, material handling improvements, production line configuration, and safety procedures Monitor and reduce process variation using techniques such as Statistical Process Control (SPC) and Measurement Systems Analysis (MSA). Monitor and audit manufacturing processes to ensure product specifications and standards are achieved. Participate in the development and maintenance of FMEAs and Control Plans. Analyze, develop, process, and implement Engineering Change Orders Create and maintain Manufacturing Instructions, routings, and associated processes. Manage activities for process sustaining technicians to support day to day coverage of production line, including developing and documenting appropriate rework procedures Support 24 by 7 production operations Degree in Mechanical Engineering, Chemical Engineering, Industrial Engineering or equivalent relevant experience Knowledge of Statistical Process Control and its application 4+ years in a high volume, highly automated manufacturing facility developing and improving processes Experience developing and improving Process. Have a demonstrated track record of Overall Equipment Effectiveness improvement activities Strong problem-solving skills and an aptitude for learning systems quickly. Able to use structured problem-solving techniques such as DMAIC, Ishikawa, Five Why (5W) or Eight Disciplines (8D). Able to resolve high level performance issues into addressable actions Experience in the use of a broad variety of test, control and data acquisition equipment and software Strong ability to work and communicate effectively with team and peers within a manufacturing and engineering organization.