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Sr. Systems Design Engineer; Semiconductor​/Capital Equipment

Job in Milpitas, Santa Clara County, California, 95035, USA
Listing for: KLA
Full Time position
Listed on 2025-11-26
Job specializations:
  • Engineering
    Systems Engineer, Electronics Engineer, Electrical Engineering
Salary/Wage Range or Industry Benchmark: 125000 - 150000 USD Yearly USD 125000.00 150000.00 YEAR
Job Description & How to Apply Below
Position: Sr. Systems Design Engineer (Semiconductor/Capital Equipment)

Company Overview

KLA is a global leader in diversified electronics for the semiconductor manufacturing ecosystem. Virtually every electronic device in the world is produced using our technologies. No laptop, smartphone, wearable device, voice‑controlled gadget, flexible screen, VR device or smart car would have made it into your hands without us. KLA invents systems and solutions for the manufacturing of wafers and reticles, integrated circuits, packaging, printed circuit boards and flat panel displays.

The innovative ideas and devices that are advancing humanity all begin with inspiration, research and development. KLA focuses more than average on innovation and we invest 15% of sales back into R&D. Our expert teams of physicists, engineers, data scientists and problem‑solvers work together with the world’s leading technology providers to accelerate the delivery of tomorrow’s electronic devices. Life here is exciting and our teams thrive on tackling really hard problems.

There is never a dull moment with us.

Group/Division

With over 40 years of semiconductor process control experience, chip makers around the globe rely on KLA to ensure that their fabs ramp next‑generation devices to volume production quickly and cost‑effectively. Enabling the movement towards advanced chip design, KLA's Global Products Group (GPG), which is responsible for creating all of KLA’s metrology and inspection products, is looking for the best and the brightest research scientist, software engineers, application development engineers, and senior product technology process engineers.

The Broadband Plasma Division (BBP) provides market‑leading patterned wafer optical inspection systems for leading‑edge IC manufacturing. Logic, foundry, and memory customers depend on BBP products to detect yield‑critical defects for process debug and excursion monitoring at advanced process nodes. BBP flagship products include the 29xx and 39xx series which leverage Broadband Plasma technology to capture a wide range of defects with ultimate sensitivity at the optical inspection speeds needed for inline defect monitoring.

Job Description /

Preferred Qualifications

The selected Product Development Engineer will work within the Broadband Plasma products. This role will involve requirements analysis, system design and testing of complex inspection systems using expertise from multiple technical disciplines. The selected candidate will:

  • Work with marketing and engineering to define system architecture and develop requirements for system and subsystems.
  • Analyze and break down the subsystem requirements, specs and justifications for specs.
  • Model and budget the system and subsystem performance.
  • Work with functional groups to define and review designs.
  • Create and execute test plans and perform analysis to validate system performance; troubleshoot system and subsystem issues and work with various subsystem teams to find and implement solutions.
  • Be the system owner to lead the integration, development for features and subsystems, MFG and customer escalations to troubleshoot and drive the issues to closure. Communicate and align with management, stakeholders and customers on status and propose plans for decision‑making.
  • Support internal and external customers in implementing processes to build and use the tool effectively and optimize tool performance.
  • Occasional travel will be required.
Qualifications
  • Must have a strong background in engineering or the physical science and demonstrated analysis and problem‑solving skills.
  • Must have a good understanding of Optical, Electromechanical and Software systems and their interactions in the context of complex industrial equipment.
  • Strong understanding the imaging system working principles and the performance impact due to aberrations.
  • Must be able to run large scale data analysis including text, images, log files to provide useful insights.
  • Should be familiar with scientific and statistical analysis tools and SW tools such as Matlab, JMP, and Lab View.
  • Should be familiar with scripting languages, such as Python.
  • Strong skills in system and subsystem calibration, diagnostic and troubleshooting skills in optics,…
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