Provide technical leadership for the development, implementation, and continuous improvement of silicon photonics wafer-level test and characterization methodologies for photonic integrated circuits (PICs) and associated test structures. Develop and optimize wafer-level characterization methods for active and passive silicon photonic devices, including modulators, photodetectors, waveguides, couplers, resonators, and integrated photonic circuits. Lead RF and high-speed electro-optical wafer characterization, including S-parameter measurements, frequency response, bandwidth, impedance characterization, calibration, de-embedding, and signal-integrity analysis. Develop robust methods for automated optical alignment and coupling at wafer level, with emphasis on measurement accuracy, repeatability, stability, and test throughput. Develop and maintain test automation and data-analysis software using Python or similar programming environments, including instrument control, wafer navigation, optical alignment, test sequencing, error handling, and automated data processing. Analyze wafer-level characterization data and wafer maps to identify device distributions, spatial trends, process variation, systematic effects, yield limiters, and test-related artifacts. Partner with device design, process integration, and foundry teams to correlate wafer-test results with device physics, fabrication processes, process-control monitors, and design parameters. Collaborate effectively with photonics design, RF/analog design, process integration, foundry, packaging, reliability, product engineering, manufacturing, and equipment suppliers to resolve technical issues and support successful product development and production ramp. Analyze characterization datasets to identify performance distributions, process sensitivities, correlations, failure mechanisms, and opportunities for improved device performance and test efficiency. Define test structures and characterization requirements in collaboration with the silicon photonics and design team. Drive design-for-test (DFT) improvements and influence future device and PIC designs based on characterization results and test limitations. Lead root-cause investigations for complex electrical, RF, optical, and electro-optical performance issues. Serve as a technical mentor and coach for junior and mid-career engineers, helping them develop strong fundamentals in silicon photonics, RF measurement, electro-optical characterization, and test engineering. Review test plans, measurement methodologies, automation code, data analysis, and technical conclusions produced by other engineers, providing constructive technical feedback and guidance. Delegate technically challenging projects in a way that develops engineering capability while maintaining appropriate technical oversight.
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Job Type
Full-time
Career Level
Principal