Who We Are
Applied Materials is a global leader in materials engineering solutions used to produce virtually every new chip and advanced display in the world. We design, build and service cutting-edge equipment that helps our customers manufacture display and semiconductor chips – the brains of devices we use every day. As the foundation of the global electronics industry, Applied enables the exciting technologies that literally connect our world – like AI and IoT. If you want to push the boundaries of materials science and engineering to create next generation technology, join us to deliver material innovation that changes the world.
What We Offer
Location:
Bangalore,INDYou’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 Mechanical Engineer, you’ll leverage your strong foundation in physics, mathematics, and materials science to process and resolve mechanical problems, design and implement custom mechanical tooling and associated processes, and enable the handling, assembly, and disassembly of parts, components, sub-assemblies, and final assemblies throughout the product life cycle. You'll be responsible for designing, developing, and modifying mechanical engineering layouts, schematics, and specifications. You will oversee manufacturing and installation processes, ensuring adherence to industry standards and regulations-- and you'll coordinate the procurement and assembly of mechanical components and equipment for design projects, identifying sources of critical parts and subsystems to resolve technical issues.
Position Summary
Lead the system-level mechanical architecture, design, integration, and validation of precision patterning semiconductor equipment. Translate process and product requirements into robust mechanical solutions that achieve sub-micron accuracy, thermal stability, process uniformity, reliability, and manufacturability. Own system performance across motion, thermal, structural, fluidic, substrate handling, and controls interfaces
Key ResponsibilitiesSystem Architecture & Engineering
- Define system architecture, requirements, interfaces, performance budgets, and verification strategies.
- Translate process and customer requirements into subsystem specifications and measurable performance targets.
- Drive system integration and ensure compliance with performance, throughput, reliability, safety, and cost objectives.
- Design and integrate precision motion systems, substrate handling modules, process assemblies, tooling, fixtures, and gas delivery systems.
- Develop solutions for positioning accuracy, alignment, flatness, vibration control, structural stiffness, and thermal stability.
- Design relevant jigs & fixtures to achieve the precision & system calibration procedures.
- Create and release engineering documentation, drawings, and specifications using NX and PLM tools.
- Perform thermal, structural, flow, tolerance stack-up, and FEA-based analyses to validate designs.
- Define system verification plans, acceptance criteria, and qualification methodologies.
- Lead characterization, troubleshooting, root-cause analysis, and corrective actions for system-level issues.
- Establish and monitor key performance metrics including accuracy, repeatability, overlay, uniformity, throughput, and uptime.
- Partner with Process, Controls, Electrical, Automation, Manufacturing, Quality, and Service teams throughout product development.
- Lead technical reviews, design trade-offs, and risk assessments.
- Collaborate with suppliers on critical precision components and subsystem development.
- Mentor engineers and provide technical leadership across the platform.
- Proven experience developing semiconductor, lithography, printing, metrology, inspection, or other high-precision capital equipment.
- Strong understanding of:
- Precision motion systems
- Error budgeting and alignment strategies
- Structural dynamics and vibration control
- Thermal stability and thermal management
- Requirements engineering, interface management, and system verification
- P&ID, Pneumatics & electrical schematics.
- SEMI standards & compliances
- Expertise in:
- Heat transfer and thermal management
- Structural mechanics
- Precision assemblies
- Gas flow and pneumatic systems
- Materials selection and manufacturing processes
- Proficiency in GD&T, tolerance analysis, ASME standards, FMEA/FMECA, and DFX methodologies.
- Working knowledge of structural, thermal, modal, vibration, and flow analysis.
- Ability to correlate simulation results with experimental data.
- Advanced proficiency in UG NX and Teamcenter.
- Atmospheric semiconductor patterning equipment.
- Inkjet printing, direct-write, lithography, plasma, deposition, or advanced packaging systems.
- Precision stage design, mechatronics, and closed-loop motion control.
- Semiconductor contamination control, cleanroom practices, and safety interlock architectures.
- Vacuum systems knowledge.
- Bachelor's degree in Mechanical Engineering (Master's preferred).
- 8–12+ years of experience in semiconductor or precision capital equipment development.
- Demonstrated success delivering system-level mechanical solutions from concept through production.
A highly accomplished system mechanical engineer with a proven track record in precision patterning equipment, capable of architecting and delivering integrated solutions across motion, thermal, structural, and fluidic domains while driving product performance, reliability, and manufacturability from concept to high-volume production.
Additional Information
Time Type:
Full timeEmployee Type:
Assignee / RegularTravel:
Yes, 10% of the TimeRelocation Eligible:
YesApplied Materials is an Equal Opportunity Employer. Qualified applicants will receive consideration for employment without regard to race, color, national origin, citizenship, ancestry, religion, creed, sex, sexual orientation, gender identity, age, disability, veteran or military status, or any other basis prohibited by law.
Skills Required
- Bachelor's degree in Mechanical Engineering
- Master's degree in Mechanical Engineering
- 8-12+ years experience in semiconductor or precision capital equipment development
- Proven experience developing semiconductor, lithography, printing, metrology, inspection, or other high-precision capital equipment
- Advanced proficiency in UG NX
- Advanced proficiency in Teamcenter / PLM tools
- Experience designing and integrating precision motion systems, substrate handling, tooling, fixtures, and gas delivery systems
- Expertise in heat transfer, thermal management, structural mechanics, and precision assemblies
- Working knowledge of structural, thermal, modal, vibration, and flow analysis (FEA) and ability to correlate simulation with experimental data
- Experience with error budgeting, alignment strategies, structural dynamics, vibration control, and thermal stability
- Proficiency in GD&T, tolerance analysis, ASME standards, FMEA/FMECA, and DFX methodologies
- Knowledge of P&ID, pneumatics and electrical schematics
- Familiarity with SEMI standards and compliance
- Demonstrated success delivering system-level mechanical solutions from concept through production
- Experience with atmospheric semiconductor patterning equipment, inkjet printing, direct-write, lithography, plasma, deposition, advanced packaging, precision stage design, mechatronics, closed-loop motion control, contamination control, and vacuum systems
Applied Materials Compensation & Benefits Highlights
The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about Applied Materials and has not been reviewed or approved by Applied Materials.
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Strong & Reliable Incentives — Annual and performance bonuses are often characterized as generous and predictable, with multiple programs (AIP/DBI/SIP) explicitly highlighted. Feedback suggests these incentives meaningfully augment base pay across many roles.
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Equity Value & Accessibility — Restricted Stock Units and an employee stock purchase plan are standard components of offers, and strong stock performance has made equity a notable upside. In some roles, RSUs and refreshers provide a meaningful boost to total compensation.
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Healthcare Strength — Comprehensive medical, dental, and vision coverage, alongside EAP support and on‑site/virtual health centers in key locations, are emphasized as part of a robust package. Benefits typically start on day one, and the breadth of coverage is highlighted as a core strength.
Applied Materials Insights
What We Do
Applied Materials is the leader in materials engineering solutions used to produce virtually every new chip and advanced display in the world. Our expertise in modifying materials at atomic levels and on an industrial scale enables customers to transform possibilities into reality. At Applied Materials, our innovations make possible a better future.







