Senior Systems Engineer – Laser Integration & Applications (Advanced Substrates)

Applied MaterialsAustin, TX
$120,000 - $165,000Hybrid

About The Position

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. As a Systems Engineer, you’ll design, integrate, and optimize complex systems that drive the semiconductor industry forward. Your expertise in systems thinking and problem-solving is essential as you collaborate with cross-functional teams to develop advanced solutions to intricate processes and writing system specifications. You’ll be responsible for analyzing requirements, defining system architectures, conducting thorough testing, and ensuring seamless integration of subsystems. Additionally, you’ll identify and mitigate risks, confirming that our systems meet the highest quality standards and exceed customer expectations. Applied Materials is the leader in materials engineering solutions used to produce virtually every new chip and advanced display in the world. The Photonics Platform Business develops next‑generation Substrate‑level processing solutions for advanced materials and device architectures. We are seeking a Senior Systems Engineer – Laser Integration & Applications to lead the integration and optimization of laser‑based processes within capital manufacturing equipment. This role focuses on laser processing of transparent substrates. The successful candidate will be responsible for laser system integration, application understanding, and system‑level optimization to deliver high‑performance, production‑ready tools. This role does not involve the design or development of laser sources. Instead, it requires expertise in integrating commercial laser systems into complex equipment and optimizing overall system performance.

Requirements

  • Bachelor’s degree in Physics, Mechanical Engineering, Electrical Engineering, Materials Science, Photonics, or related field
  • 7+ years of experience in: Laser applications, Laser system integration, Automated precision manufacturing equipment
  • Hands‑on experience integrating commercial laser systems into automated equipment
  • Strong understanding of laser–material interaction for brittle or transparent materials
  • Proven ability to troubleshoot and optimize complex systems

Nice To Haves

  • Experience with advanced transparent substrates
  • Experience with laser‑based singulation methods (e.g., ablation, grooving, internal modification)
  • Automated capital equipment background (NPI, CIP, or HVM support)
  • Experience working with customers in production or field environments
  • Master's or PhD in a relevant technical discipline

Responsibilities

  • Integrate commercial laser sources (UV, visible, IR, short‑pulse) into automated processing tools
  • Collaborate with laser and optics vendors to define system requirements and ensure optimal performance
  • Architect laser subsystems including beam delivery, optics, motion coordination, and safety integration
  • Develop a deep understanding of laser to substrate material interactions.
  • Define and optimize process windows for: Substrate marking and serialization, Laser‑based separation and singulation
  • Tune parameters such as pulse energy, repetition rate, scan speed, and focus depth to achieve: High yield, Minimal damage, Consistent performance
  • Drive end‑to‑end system optimization across: Laser performance, Precision motion systems, Substrate handling and fixturing, Vision alignment and inspection
  • Identify and resolve system‑level issues affecting throughput, stability, and process quality
  • Act as the laser subject‑matter expert within a multidisciplinary engineering team
  • Partner with mechanical, electrical, controls, software, and process teams
  • Support integration, validation, and release of new tools and upgrades
  • Define and execute validation plans for laser processes and system performance
  • Support NPI, beta tools, and customer engagements
  • Lead root‑cause analysis and resolution of field issues related to laser processing

Benefits

  • Supportive work culture that encourages you to learn, develop, and grow your career
  • Comprehensive benefits package
  • Potential eligibility for other forms of compensation such as participation in a bonus and a stock award program
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