Manufacturing Engineer I - (E1)
Applied Materials
- Location
- Austin,TX
- Work model
- On-Site
- Level
- Mid
- Salary
- $65.5k – $90k/yr
- H-1B history
- 125 approvals (FY2023)
- Posted
- Sep 4, 2026
About this role
Who We Are
Applied Materials is the global leader in materials science and engineering solutions that are at the foundation of virtually every new semiconductor chip and advanced display in the world. The equipment that we create and service is essential to advancing AI and accelerating the commercialization of next-generation semiconductor chips. Join us and push the boundaries of materials science and engineering in a company at the foundation of the electronics industry. The work we do together advances the world’s technology.
What We Offer
Salary: $65,500.00 - $90,000.00 Location: Austin,TX You’ll benefit from a supportive work culture that encourages you to learn, develop, and grow your career as you take on challenges and drive innovative solutions for our customers. We empower our team to push the boundaries of what is possible—while learning every day in a supportive leading global company. Visit our Careers website to learn more. At Applied Materials, we care about the health and wellbeing of our employees. We’re committed to providing programs and support that encourage personal and professional growth and care for you at work, at home, or wherever you may go. Learn more about our benefits . As a Manufacturing Engineer, you are responsible for developing and maintaining methods, operating sequences, and processes in the fabrication of parts, components, subassemblies, and final assemblies. You'll work closely with other engineering functions to coordinate the release of product improvements and new products, and you'll use engineering principles to estimate and reduce manufacturing costs, improve product quality, determine time standards, and make recommendations for tooling and process requirements. Your expertise in lean principles, automation, and continuous improvement will be instrumental in driving operational excellence and achieving higher levels of productivity and cost-effectiveness. You'll develop and use test procedures, evaluate test results, and assess work methods, procedures, and policies to identify root cause issues and solutions that ensure operational success. Applied Materials is the global leader in materials engineering solutions used to produce virtually every new chip and advanced display in the world. As a Manufacturing Engineer I, you will play a key role in supporting the manufacture, assembly, integration, and testing of highly complex semiconductor capital equipment. This position partners closely with Operations, Design Engineering, Supply Chain, Quality, and New Product Introduction (NPI) teams to develop robust manufacturing processes that improve product quality, drive operational excellence, and support business growth.
Key Responsibilities
Develop, implement, validate, and maintain manufacturing methods, process flows, assembly procedures, and operation sequences for the fabrication of parts, modules, subassemblies, and final systems. Support the transition of new products from Engineering to Manufacturing by partnering with Design Engineering, NPI, Quality, and Operations teams to ensure manufacturability, scalability, quality, and cost objectives are achieved. Drive engineering change implementation by reviewing, launching, approving, and executing Engineering Change Orders (ECOs), process changes, work instruction updates, and configuration management activities. Apply Design for Excellence (DFx) methodologies, including Design for Manufacturing (DFM), Design for Assembly (DFA), and Design for Cost (DFC), to improve productivity, quality, and overall manufacturing efficiency. Analyze manufacturing processes and workflows to identify opportunities for cycle time reduction, waste elimination, ergonomics improvements, and capacity enhancements using Lean Manufacturing and Continuous Improvement principles. Develop manufacturing documentation, including work instructions, process specifications, control plans, process maps, visual aids, and training