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Test Development Engineer (Advanced Manufacturing)

2 days WFH)Bayan Lepas, Malaysiafull timeEntry Level
Expired

Job description

ROLE MISSIONWe are seeking a technically rigorous Test Development Engineer to lead the architecture and optimization of our test systems. This is not a generalist process role; we require a "first-principles" expert who possesses a deep theoretical understanding of electrical engineering and the ability to design efficient, logic-driven algorithms for automated validation. The successful candidate will be responsible for ensuring that our test solutions are conceptually sound, statistically valid, and execution-ready for high-volume manufacturing.KEY RESPONSIBILITIESA. Fundamental Electrical Design & ValidationDesign, debug, and validate complex test circuit architectures.Demonstrate expert-level proficiency in circuit analysis, including the design and troubleshooting of voltage divider networks and various power supply topologies.Ensure all test hardware adheres to design specifications and safety protocols.B. Algorithmic Test DevelopmentAuthor efficient, scalable test scripts and software drivers.Articulate the underlying logic and algorithms of test sequences before implementation to ensure system efficiency and reliability.Debug, verify, and deploy test solutions to the production floor with a zero-defect mindset.C. Statistical Governance (GR&R)Lead and interpret Gage Repeatability and Reproducibility (GR&R) studies.Move beyond data entry to analyse the theoretical concepts behind standard deviation and variance to drive hardware improvements.Implement SPC (Statistical Process Control) and capability monitoring (Cpk/Ppk) to ensure line stability.D. Maintenance & TroubleshootingPerform deep-dive root-cause analysis (RCA) on equipment-related failures, specifically focusing on control boards, fans, and power distribution systems.Collaborate with maintenance teams to establish predictive maintenance schedules for critical test assets.RequirementsTECHNICAL REQUIREMENTSCore Electrical Theory: Strong fundamental knowledge of circuit analysis (Ohm’s Law, Kirchhoff’s Laws) and the ability to solve electrical problems from scratch without software assistance.Programming Skills: Professional proficiency in LabVIEW, C++, or C#. Must be able to demonstrate algorithmic thinking rather than just code syntax.Engineering Statistics: Deep familiarity with the underlying concepts of GR&R, normal distribution, and statistical process control.Hardware Instrumentation: Hands-on experience with multimeters, oscilloscopes, spectrum analyzers, and power meters.QUALIFICATIONS & EXPERIENCEEducation: Bachelor’s or Master’s Degree in Electrical Engineering, Electronic Engineering, or a related field.Experience: 1-3 years of demonstrated work experience in a high-volume electronic manufacturing environment.Compliance Knowledge: Familiarity with ISO 9001 and IATF 16949 standards is highly preferred.Language: Strong command of English (written and verbal) is essential for technical reporting and global stakeholder liaison.BenefitsDirect exposure to Tier-1 MNC global manufacturing processes and technologies.Rapid career growth opportunities as the project team expands.Professional development in high-demand Advanced Manufacturing and ATE fields.ROLE MISSIONWe are seeking a technically rigorous Test Development Engineer to lead the architecture and optimization of our test systems. This is not a generalist process role; we require a "first-principles" expert who possesses a deep theoretical understanding of electrical engineering and the ability to design efficient, logic-driven algorithms for automated validation. The successful candidate will be responsible for ensuring that our test solutions are conceptually sound, statistically valid, and execution-ready for high-volume manufacturing.KEY RESPONSIBILITIESA. Fundamental Electrical Design & ValidationDesign, debug, and validate complex test circuit architectures.Demonstrate expert-level proficiency in circuit analysis, including the design and troubleshooting of voltage divider networks and various power supply topologies.Ensure all test hardware adheres to design specifications and safety protocols.B. Algorithmic Test DevelopmentAuthor efficient, scalable test scripts and software drivers.Articulate the underlying logic and algorithms of test sequences before implementation to ensure system efficiency and reliability.Debug, verify, and deploy test solutions to the production floor with a zero-defect mindset.C. Statistical Governance (GR&R)Lead and interpret Gage Repeatability and Reproducibility (GR&R) studies.Move beyond data entry to analyse the theoretical concepts behind standard deviation and variance to drive hardware improvements.Implement SPC (Statistical Process Control) and capability monitoring (Cpk/Ppk) to ensure line stability.D. Maintenance & TroubleshootingPerform deep-dive root-cause analysis (RCA) on equipment-related failures, specifically focusing on control boards, fans, and power distribution systems.Collaborate with maintenance teams to establish predictive maintenance schedules for critical test assets.

ROLE MISSION

ROLE MISSIONROLE MISSION

We are seeking a technically rigorous Test Development Engineer to lead the architecture and optimization of our test systems. This is not a generalist process role; we require a "first-principles" expert who possesses a deep theoretical understanding of electrical engineering and the ability to design efficient, logic-driven algorithms for automated validation. The successful candidate will be responsible for ensuring that our test solutions are conceptually sound, statistically valid, and execution-ready for high-volume manufacturing.

KEY RESPONSIBILITIES

KEY RESPONSIBILITIESKEY RESPONSIBILITIES

A. Fundamental Electrical Design & Validation

A. Fundamental Electrical Design & Validation
  • Design, debug, and validate complex test circuit architectures.

Design, debug, and validate complex test circuit architectures.

  • Demonstrate expert-level proficiency in circuit analysis, including the design and troubleshooting of voltage divider networks and various power supply topologies.

Demonstrate expert-level proficiency in circuit analysis, including the design and troubleshooting of voltage divider networks and various power supply topologies.

voltage divider networkspower supply topologies
  • Ensure all test hardware adheres to design specifications and safety protocols.

Ensure all test hardware adheres to design specifications and safety protocols.

B. Algorithmic Test Development

B. Algorithmic Test Development
  • Author efficient, scalable test scripts and software drivers.

Author efficient, scalable test scripts and software drivers.

  • Articulate the underlying logic and algorithms of test sequences before implementation to ensure system efficiency and reliability.

Articulate the underlying logic and algorithms of test sequences before implementation to ensure system efficiency and reliability.

  • Debug, verify, and deploy test solutions to the production floor with a zero-defect mindset.

Debug, verify, and deploy test solutions to the production floor with a zero-defect mindset.

C. Statistical Governance (GR&R)

C. Statistical Governance (GR&R)
  • Lead and interpret Gage Repeatability and Reproducibility (GR&R) studies.

Lead and interpret Gage Repeatability and Reproducibility (GR&R) studies.

  • Move beyond data entry to analyse the theoretical concepts behind standard deviation and variance to drive hardware improvements.

Move beyond data entry to analyse the theoretical concepts behind standard deviation and variance to drive hardware improvements.

  • Implement SPC (Statistical Process Control) and capability monitoring (Cpk/Ppk) to ensure line stability.

Implement SPC (Statistical Process Control) and capability monitoring (Cpk/Ppk) to ensure line stability.

D. Maintenance & Troubleshooting

D. Maintenance & Troubleshooting
  • Perform deep-dive root-cause analysis (RCA) on equipment-related failures, specifically focusing on control boards, fans, and power distribution systems.

Perform deep-dive root-cause analysis (RCA) on equipment-related failures, specifically focusing on control boards, fans, and power distribution systems.

  • Collaborate with maintenance teams to establish predictive maintenance schedules for critical test assets.

Collaborate with maintenance teams to establish predictive maintenance schedules for critical test assets.