
Dimitrije Lilic developed foundational device driver features and bug fixes in embedded systems, focusing on sensor and peripheral integration using C. In the kholia/zephyr repository, he resolved a data conversion bug in the ADXL345 sensor driver, improving q31_t accuracy and data reliability across full-resolution and multiple measurement ranges. Later, in the analogdevicesinc/msdk repository, he implemented asynchronous ADC streaming for the MAX32690, integrating with Zephyr RTOS to enable real-time, high-throughput data acquisition. His work demonstrated depth in RTOS integration, peripheral interfacing, and sensor data handling, resulting in more robust and maintainable embedded software for edge applications.

July 2025: Delivered foundational MAX32690 ADC asynchronous streaming with Zephyr RTOS, enabling real-time, high-throughput data acquisition for edge applications. Implemented new APIs to start and manage continuous ADC streams, integrated with Zephyr RTOS to improve responsiveness, and laid groundwork for higher sampling rates and telemetry within the MSDK.
July 2025: Delivered foundational MAX32690 ADC asynchronous streaming with Zephyr RTOS, enabling real-time, high-throughput data acquisition for edge applications. Implemented new APIs to start and manage continuous ADC streams, integrated with Zephyr RTOS to improve responsiveness, and laid groundwork for higher sampling rates and telemetry within the MSDK.
Concise monthly summary for 2024-10 focusing on key accomplishments in the kholia/zephyr repo. Highlighted bug fix for ADXL345 sensor driver q31_t conversion accuracy in RTIO stream, with improved data format configuration across full-resolution setting and multiple measurement ranges. This work improved sensor data reliability, data quality, and downstream system stability. Commit reference included for traceability.
Concise monthly summary for 2024-10 focusing on key accomplishments in the kholia/zephyr repo. Highlighted bug fix for ADXL345 sensor driver q31_t conversion accuracy in RTIO stream, with improved data format configuration across full-resolution setting and multiple measurement ranges. This work improved sensor data reliability, data quality, and downstream system stability. Commit reference included for traceability.
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