Sr. Module Engineer, Hybrid Bonding
Applied Materials · San Francisco Bay Area
📍 Santa Clara,CA💰 $147,000via workdayFirst listed here 2026-09-18
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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:
$147,000.00 - $202,500.00
Location:
Santa Clara,CA
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 Process Engineer, you'll play a crucial role in designing and optimizing manufacturing processes for display and semiconductor manufacturing technologies. You will collect and analyze data, perform hardware characterization, and troubleshoot engineering issues. You'll also measure film properties, generate technical documentation, and engage with customers to resolve concerns. Process Engineers collaborate with vendors and suppliers, and become familiar with implementing new technologies and products. You will experiment, learn, and collaborate with some of the brightest minds in the semiconductor and display industries, partnering with our globally recognized R&D teams on state-of-the-art research and development projects.
Position Summary We are seeking a highly motivated Die-to-Wafer Hybrid Bonding Module Engineer to develop and scale next-generation hybrid bonding technologies for advanced semiconductor packaging applications including Memory , chiplets, AI accelerators, photonics, and heterogeneous integration platforms.
The successful candidate will lead process module development across die preparation, surface activation, die placement, hybrid bonding, post-bond characterization, yield improvement, and manufacturing scale-up. This role requires close collaboration with equipment development teams, process integration engineers, materials scientists, device architects, and external ecosystem partners.
The position is ideal for candidates passionate about enabling future high-bandwidth and energy-efficient computing systems through advanced interconnect technologies. Hybrid bonding technologies including copper-copper and dielectric-dielectric direct bonding are critical enablers for next-generation 3D integration and HBM stacking.
Key Responsibilities Hybrid Bonding Process Development Develop and optimize die-to-wafer (D2W) hybrid bonding processes for advanced packaging applications.
Establish process windows for: Surface preparation
Plasma activation
Die placement
Alignment and overlay control
Bonding temperature and pressure optimization
Post-bond annealing
Drive Cu-Cu and dielectric-dielectric interconnect formation with focus on electrical performance and reliability.
Process Integration Support integration of hybrid bonding into: Memory architectures
Chiplet-based systems
Silicon interposers
System-on-Wafer platforms
Co-packaged optics (CPO)
Collaborate with integration teams to resolve process interactions and yield excursions.
Yield and Defect Reduction Identify root causes of: Bond voids
Die shift
Overlay errors
Non-uniform bonding
Particle contamination
Utilize DOE methodologies and statistical process control to improve yield and process robustness.
Metrology and Characterization Drive bonding quality characterization using: CSAM
X-ray inspection
FIB/SEM
AFM
Optical metrology
Electrical test structures
Develop correlation between process parameters and package performance.
Equipment and Technology Development Work closely with equipment engineering teams on: Hybrid bonding systems
Die placement tools
Plasma activation modules
Surface preparation modules
Integrated process control solutions
Participate in evaluation and qualification of next-generation bonding platforms.
Reliability Engineering Define and execute reliability test plans: Thermal cycling
HTOL
Mechanical pull/shear testing
Moisture sensitivity evaluations
Drive failure analysis and corrective actions.
Technical Leadership Lead cross-functional projects from concept through technology transfer.
Publish technical results internally and externally.
Present development progress to engineering leadership and customers.
Mentor junior engineers and researchers.
Minimum Qualifications
Education M.S. in: Materials Science
Electrical Engineering
Mechanical Engineering
Chemical Engineering
Physics
Semiconductor Manufacturing
OR
Ph.D. in one of the above disciplines
Experience Minimum 5+ years of semiconductor process development experience after graduate degree.
Direct experience in at least one of the following: Hybrid bonding
Thermocompression bonding
Wafer bonding
Advanced packaging
HBM development
Cu interconnect technology
Chiplet integration
Technical Skills Strong understanding of: Cu-Cu interconnect formation
Surface chemistry and plasma activation
CMP and planarization
Defect engineering
Semiconductor process integration
Statistical process analysis
Experience with DOE and JMP/Minitab analysis tools.
Familiarity with metrology and failure analysis techniques.
Preferred Qualifications Ph.D. with 5+ years industry experience.
Ex
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