
Lisandro developed foundational flow measurement features for the ISPC-PI-II-2024/Proyecto_hidroponico repository, focusing on sensor integration and simulation for hydroponic systems. He designed a reusable C++ library to calculate flow rate and volume, simulating Hall effect sensor behavior and validating accuracy through unit testing. In the following month, he integrated the YF-S401 flow meter using Arduino and interrupt-driven pulse counting, implementing debounce logic and real-time tracking of flow metrics. Lisandro maintained thorough documentation and version control, ensuring traceability. His work enabled accurate, reliable flow sensing and monitoring, supporting improved nutrient dosing and operational efficiency in embedded IoT environments.

May 2025 monthly summary for ISPC-PI-II-2024/Proyecto_hidroponico. Delivered YF-S401 flow meter support with documentation and sensor integration, enhancing real-time flow measurement for the hydroponics system. Implemented interrupt-driven pulse counting, flow rate in L/min, total volume tracking, and a robust debounce mechanism to ensure accuracy. Updated technical documentation and maintained clear traceability in version control. All changes align with project goals of improved dosing accuracy, monitoring, and operational reliability.
May 2025 monthly summary for ISPC-PI-II-2024/Proyecto_hidroponico. Delivered YF-S401 flow meter support with documentation and sensor integration, enhancing real-time flow measurement for the hydroponics system. Implemented interrupt-driven pulse counting, flow rate in L/min, total volume tracking, and a robust debounce mechanism to ensure accuracy. Updated technical documentation and maintained clear traceability in version control. All changes align with project goals of improved dosing accuracy, monitoring, and operational reliability.
April 2025 — ISPC-PI-II-2024/Proyecto_hidroponico: Hall Effect Flow Meter: Calculation Library and Simulation delivered. Implemented a reusable library for flow rate and volume calculations, plus a main sketch that simulates the sensor behavior by counting button presses. Added unit tests to verify calculation accuracy (commit: f4e215f0d814a93e9f506430e0dc936026b18ae2). No major bugs fixed this month. Impact: provides foundational measurement and testing capabilities for hydroponics flow control, enabling faster feature iteration and more reliable sensor-based decisions. Technologies/skills demonstrated: embedded systems development, library design, simulation, unit testing, version control.
April 2025 — ISPC-PI-II-2024/Proyecto_hidroponico: Hall Effect Flow Meter: Calculation Library and Simulation delivered. Implemented a reusable library for flow rate and volume calculations, plus a main sketch that simulates the sensor behavior by counting button presses. Added unit tests to verify calculation accuracy (commit: f4e215f0d814a93e9f506430e0dc936026b18ae2). No major bugs fixed this month. Impact: provides foundational measurement and testing capabilities for hydroponics flow control, enabling faster feature iteration and more reliable sensor-based decisions. Technologies/skills demonstrated: embedded systems development, library design, simulation, unit testing, version control.
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