Manufacturing – Production Engineer (Mechatronics) – Linkou

Reposted One Month Ago
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Linkou, Jinshan District, New Taipei City, TWN
In-Office
Mid level
Hardware • Software • Semiconductor
The Role
Work on high-precision multi-axis motion platforms supporting mature product lines. Diagnose mechatronics issues, analyze servo dynamics and vibration, perform frequency response analysis, collaborate on servo tuning and structural fixes, drive stability and yield improvements, design experiments, maintain diagnostics and mentor junior engineers. Occasional weekend factory support.
Summary Generated by Built In
Introduction to the job

ASML’s Production Engineer Team in Linkou supports mature product lines—including PAS5500, YieldStar (YS), Reticle Handler (RH), and XT—through a cross-functional engineering organization of over 450 engineers across mechatronics, mechanical, electrical, software, and system integration.

Production Engineers combine the strengths of Development & Engineering (D&E), Manufacturing, and Customer Support to ensure stable factory output, rapid root-cause analysis, and structural improvements across mature system generations.

As a Production Engineer (Mechatronics), you will work on high‑precision, multi‑axis motion platforms involving wafer/reticle stages and handlers. The role focuses on servo dynamics, precision motion behavior, calibration/mapping, vibration/resonance analysis, mechanical‑control coupling, and system-level mechatronics troubleshooting.

This position is ideal for engineers with experience in motion control systems, servo tuning, precision automation, or high‑accuracy mechatronics equipment, who want to work on nanometer‑precision platforms in a global high‑tech environment. Engineers who enjoy analyzing motion behavior, improving system dynamics, and solving complex mechatronics interactions will find this role especially rewarding.

 

Role and responsibilities

Precision Mechatronics Troubleshooting

  • Diagnose mechatronics issues in PAS5500/YS/RH/XT modules, including precision stages, handlers, linear motors, voice‑coil actuators, encoders/interferometers, air bearings, and motion assemblies.

  • Analyze following error, overshoot, settling time, stick-slip, friction, backlash/compliance, thermal drift, vibration/resonance, and their effects on motion accuracy and system stability.

  • Perform frequency response / Bode / FFT / PSD analysis to identify system modes, structural dynamics, and control‑mechanical interactions.

 

Motion & Control Interaction Analysis

  • Interpret PVA (position/velocity/acceleration) profiles and distinguish mechanical contributions from control or electrical effects.

  • Collaborate with Software & Control / Electrical / Mechanical engineers on servo tuning (PID/Gain/Feedforward), notch filters, motion profiles, controller parameters, and sensor–actuator integration.

  • Validate hypotheses using controlled experiments; isolate root causes related to mounting stiffness, cable routing influence, mode coupling, encoder alignment, or structural disturbances.

 

3rd-Line Engineering & Structural Fixes

  • Define structured problem statements after 1st/2nd-line troubleshooting paths are exhausted.

  • Partner with D&E for in‑depth root cause analysis, proposing and validating structural solutions such as: 

    • improvements to mechanical interfaces

    • enhanced stiffness/damping

    • vibration isolation measures

    • calibration/mapping optimizations

    • motion tuning packages

  • Support ECN reviews, NPI introduction, and implementation of permanent fixes.

 

Production Support & Stability Improvements

  • Ensure factory stability for mechatronics modules through experiment design (DOE), data analysis, performance trending, and structural improvement implementation.

  • Drive cross-functional efforts to improve yield, robustness, MTBF, and reduce recurring escalations.

 

Documentation & Diagnostic Improvements

  • Maintain and enhance procedures for motion tuning, calibration, alignment, error-table diagnostics, and mechatronics troubleshooting.

  • Identify gaps in diagnostics and develop new measurement steps, test sequences, or motion evaluation methods.

  • Mentor junior engineers and strengthen mechatronics capability across the factory.

 

Required Qualifications

Education

Bachelor or Master’s degree in:

  • Mechatronics

  • Mechanical Engineering

  • Precision Engineering

  • Electrical / Control / Automation Engineering

  • Or related technical fields.

Technical Background (3–5 years in one or more)

  • Experience in motion control systems, servo dynamics, stage/handler mechanics, or precision automation equipment.

  • Hands-on experience with: 

    • motion tuning (PID/feedforward/filtering)

    • PVA analysis and motion diagnostics

    • encoder/sensor integration

    • calibration/mapping techniques

    • vibration or dynamic behavior troubleshooting

  • Experience with multi-axis mechatronics systems or high‑precision machinery.

 

Core Skills

  • Strong understanding of servo control, mechanical dynamics, and system behavior.

  • Ability to interpret Bode/FFT/PSD results and relate findings to structural or control interactions.

  • Proficiency in reading mechanical drawings and basic electrical/control schematics.

  • Strong analytical reasoning; ability to design experiments and validate root causes with data.

  • Effective communication skills for cross-domain troubleshooting and collaboration.

Preferred Qualifications
  • Experience with semiconductor equipment, precision motion systems, metrology platforms, robotics, or automated machinery.

  • Familiarity with real-time control systems (such as PLC-based control, embedded motion controllers, or EtherCAT environments).

  • Knowledge of calibration, error‑table analysis, compensation algorithms, or precision alignment.

  • Exposure to RCA methodologies (5 Why, Ishikawa, FMEA), ECN processes, and reliability improvement projects.

  • Ability to analyze motion/diagnostic data using MATLAB, Python, or similar tools.

Other Information

This role may require occasional weekend support to meet business and production needs. On average, such support is scheduled approximately once every two months and will involve working on either a Saturday or a Sunday (one day only, not both) at the Linkou Factory. Any weekend support requirements will be planned and communicated by the team in advance. Compensation will be provided in accordance with company policy.

Inclusion and diversity

ASML is an Equal Opportunity Employer that values and respects the importance of a diverse and inclusive workforce. It is the policy of the company to recruit, hire, train and promote persons in all job titles without regard to race, color, religion, sex, age, national origin, veteran status, disability, sexual orientation, or gender identity. We recognize that inclusion and diversity is a driving force in the success of our company.

Need to know more about applying for a job at ASML? Read our frequently asked questions.

Skills Required

  • Bachelor's or Master's degree in Mechatronics, Mechanical, Precision, Electrical/Control/Automation Engineering or related field
  • 3-5 years experience in motion control systems, servo dynamics, stage/handler mechanics, or precision automation equipment
  • Hands-on experience with motion tuning (PID/feedforward/filtering), PVA analysis, motion diagnostics, encoder/sensor integration, calibration/mapping techniques
  • Experience troubleshooting vibration or dynamic behavior in mechatronics or multi-axis systems
  • Ability to interpret Bode/FFT/PSD results and relate to structural or control interactions
  • Proficiency reading mechanical drawings and basic electrical/control schematics
  • Strong analytical reasoning; ability to design experiments (DOE) and validate root causes with data
  • Effective communication skills for cross-domain troubleshooting and collaboration
  • Availability for occasional weekend support (approximately once every two months)
  • Experience with multi-axis mechatronics systems or high-precision machinery
  • Experience with semiconductor equipment, precision motion systems, metrology platforms, robotics, or automated machinery
  • Familiarity with real-time control systems (PLC-based control, embedded motion controllers, EtherCAT)
  • Knowledge of calibration, error-table analysis, compensation algorithms, or precision alignment
  • Exposure to RCA methodologies (5 Why, Ishikawa, FMEA), ECN processes, and reliability improvement projects
  • Ability to analyze motion/diagnostic data using MATLAB, Python, or similar tools

ASML Compensation & Benefits Highlights

The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about ASML and has not been reviewed or approved by ASML.

  • Healthcare Strength — Health coverage is broad and employer‑funded to a significant degree, with multiple plan options plus mental health and wellness resources. Complementary offerings like onsite/virtual care, HSA contributions, and a gym subsidy strengthen the overall medical package.
  • Parental & Family Support — Family‑forming benefits include paid parental leave, adoption assistance, IVF coverage, and practical supports like lactation rooms and milk‑shipment for travel. These provisions indicate substantial caregiving support across life stages.
  • Leave & Time Off Breadth — Paid time off can reach a high ceiling when combining vacation and company holidays, with accruals increasing by tenure. Flexible workplace policies and a vacation sell‑back option add usability to the time‑off program.

ASML Insights

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The Company
HQ: Veldhoven
34,760 Employees
Year Founded: 1984

What We Do

ASML is a high-tech company, headquartered in the Netherlands. We manufacture the complex lithography machines that chipmakers use to produce integrated circuits, or computer chips. Over 30 years, we have grown from a small startup into a multinational company with over 60 locations across Europe, Asia and the US. Behind ASML’s innovations are engineers who think ahead. The people who work at our company include some of the most creative minds in physics, electrical engineering, mathematics, chemistry, mechatronics, optics, mechanical engineering, computer science and software engineering. Because ASML spends more than €2 billion per year on R&D, our teams have the freedom, support and resources to experiment, test and push the boundaries of technology. They work in close-knit, multidisciplinary teams, listening to and learning from each other.

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