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AMAT

Senior Systems Architect, Precision Stage V - (E5)

Santa Clara,CA

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hirly's read of this role

Seniority
Senior
Stated salary
$163,000 per year
Country
US
Work mode
On-site / unstated
First seen by hirly
2 Oct 2026

Derived automatically from the posting. Upload your resume above to see how the role scores against it.

the posting

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:

$163,000.00 - $224,000.00

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 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.

Role: Senior Precision Stage Architect V - (E5)

Location: Santa, Clara (Onsite)

Who We Are

Applied Materials is the 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 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 work beyond the cutting-edge, continuously pushing the boundaries of science and engineering to make possible the next generations of technology, join us to Make Possible a Better Future.

Senior Precision Stage Architect

Role Summary

Owns the end-to-end architecture of high-precision motion stages and their mechatronic subsystems, spanning mechanical structure, actuation, sensing, metrology, and motion control. Sets the technical direction for stage performance — translating positioning, dynamic, and throughput requirements into a coherent mechanical/control co-design — and serves as the senior technical authority guiding the multidisciplinary team that executes it.

Key Responsibilities

  • Completes definition and design of complex precision-stage mechanical components, modules, and mechatronic sub-systems, treating mechanics and controls as a co-designed system rather than separate disciplines.
  • Defines the control system architecture for precision stages — servo loop topology, loop partitioning, feedforward strategy, sensor/actuator selection, and the mechanical/control trade-offs that govern positioning accuracy, repeatability, and settling time.
  • Sets and drives the technical direction for stage controls: establishes the controls roadmap, error budgets, and quantitative performance targets (nanometer-class positioning, dynamic following error, settling time, throughput), and directs the engineers working against them.
  • Regarded as the technical expert in precision motion and stage control. Demonstrates in-depth expertise in own discipline (mechanics + motion control) and broad knowledge of adjacent disciplines (electrical, physics, algorithms, software) within the function.
  • Anticipates business and regulatory issues; recommends product, process, or service improvements.
  • Solves unique and complex problems with broad impact on the business; requires conceptual and innovative thinking to develop solutions across the mechanical–control boundary.
  • Impacts the direction and resource allocation for program, project, or services; works within general functional policies and industry guidelines.
  • Contributes to the system engineering specification both within precision stage/control expertise and broadening into other disciplines.
  • Develops dynamic models of stage mechanics (structural dynamics, resonances, mass/stiffness budgets) and integrates them with control design, including active vibration isolation, disturbance rejection, and damping strategies.
  • Specifies and integrates position feedback and metrology (laser interferometers, encoders, capacitive/optical sensors) together with real-time control hardware (motion controllers, FPGA/DSP, drives, amplifiers) and the full sensor-to-actuator signal chain.
  • Defines, tunes, and validates multi-axis servo loops, feedforward, and trajectory/motion profiles to meet positioning and dynamic performance under production conditions.
  • Ensures designs meet Market Requirement Specifications (MRS). Coordinates with project marketing and management to understand subsystem requirements.
  • Chairs architecture brainstorming meetings and drives the systems process to down-select to a final stage architecture, including the control system architecture and the mechanical/control partition.
  • Conducts detailed engineering analysis of subsystems — control-loop stability and bandwidth analysis, error budgeting, modal/structural dynamics, thermal and dynamic error sources — using deep design knowledge in field of expertise and broadening into other disciplines.
  • Assists in creating concepts for architectural design approaches. Evaluates competing architectures (mechanical and control) to recommend the best overall system solution.
  • Builds and qualifies prototypes of new stage designs, or procures entire subsystems from outsourced suppliers and tests for compliance with detailed specifications, including control performance qualification.
  • Identifies and troubleshoots difficult engineering problems — including servo instability, control-loop tuning, vibration, and dynamic error sources — as well as serviceability and manufacturability.
  • Partners with electrical, firmware, and software teams on real-time control implementation, sampling/latency budgets, and controller-to-drive integration.
  • Supports system integration during assembly and final test of new product designs.
  • Performs and coordinates tests per internal and industry-accepted reliability specifications; makes suitable design or operational changes as required.
  • Supports system engineering projects with a substantial mix of electrical, mechanical, physics, controls, algorithms, and software design, and understands the underlying system implications.
  • Provides remote and onsite support to field support personnel as required.
  • Technically leads and/or executes engineering projects, including development of key suppliers.
  • Drives successful completion of tool safety standards (SEMI S2/S8/S14, NFPA 79, F47, CE, EMI/EMC) working with 3rd-party evaluators.
  • Prepares summary reports for internal and external audiences; presents findings, data, and conclusions to technical experts.

Qualifications

  • BS in Mechanical Engineering, Electrical Engineering, Mechatronics, or Controls with 10–15+ years of experience. MS preferred.
  • Demonstrated knowledge of system engineering, control t
Original posting on AMAT's site ↗

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