Sunnyvale, California, United States
• Prototyped a Raspberry Pi-controlled monitor, facilitating remote Qt UI interactions with the main treatment delivery system on CentOS, streamlining patient alignment, and expediting system setup.
• Modified legacy radiation control software to fetch, clean and summarize real-time data from the linear accelerator, enabling cloud-based health tracking and device failure prediction.
• Rebuilt a manufacturing tool in C++ using wxWidgets, reconstructing both frontend and backend components to replace an obsolete test fixture in Madison and enable performance validation of the 64-leaf collimator with the current system setup.
• Collaborated with EE team in Madison to upgrade Python-based installer, introducing PCI board FPGA download and version verification, standardizing firmware upgrades, enhancing efficiency in the system upgrade process.
• Collaborated with the product integration team to enhance a C++ Windows application using Qt plugins for Cisco device configurations and firmware upgrades, adapting to evolving requirements and boosting field service efficiency.
• Drove integration of the new generator model into an X-ray imaging system on Windows, overseeing software adjustment and compatibility, spotting firmware issues, and ensuring timely qualification through efficient communication with the vendor.
• Developed regression models to estimate calibration time for an imaging system, leveraging provided protocol settings and sequence order, enhancing predictive accuracy, speeding up R&D process and offering improved customer-facing features.
• Refined image quality with an image physicist to enhance a bad pixel correction algorithm in an internal image processing tool.