Systems Engineer

Applied MaterialsGloucester, MA
$120,000 - $165,000Onsite

About The Position

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.

Requirements

  • BS or MS (preferred) in Mechanical Engineering, or Electrical Engineering
  • Experience in semiconductor capital equipment design and development ideally in ion implantation or other similar materials modifications processes.

Nice To Haves

  • Experience in semiconductor capital equipment design and development ideally in ion implantation or other similar materials modifications processes.

Responsibilities

  • Systems engineering design and analysis of semiconductor process equipment comprised of a wide range of technologies: robotic wafer handling, electrostatic chucks, vacuum systems, control systems, cryogenic systems, high temperature systems, thin film deposition, and test/analysis equipment.
  • Independently, develops and implements concepts for a range of significantly complex product issues to enable world class performance.
  • Technically lead and/or execute engineering projects and spearhead research and development of new technologies, as appropriate.
  • Interface with internal and external customers regarding significantly complex engineering issues to address customer’s High Value Problems (HVP) that bring differentiation and value to Applied’s products.
  • Design intricate parts and assemblies of advanced engineering materials (metals, polymers, and ceramics) for a wide range of operating conditions including in vacuum and over a wide temperature range.
  • Design of atmospheric and vacuum test equipment using advanced sensors and controls for R&D including characterizing new product developments
  • Able to interpret data from analytical instruments and metrology such as SEM, TEM, EDX, SIMS, TXRF, Particle counter, digital microscope, etc. as part of investigating material behaviors
  • Guiding and interpreting analysis of heat transfer, stress, and resonance

Benefits

  • Comprehensive benefits package
  • Participation in a bonus program
  • Stock award program
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