
Developed the Injector Sensor Hub hardware design for the waterloo-rocketry/canhw repository, establishing a production-ready platform for integrating multiple sensors and enabling robust CAN Bus communication. Leveraged skills in embedded systems, hardware design, and schematic capture using KiCad to create a schematic for the PIC18F26K83 microcontroller and MCP2562 CAN transceiver. Produced comprehensive manufacturing artifacts, including a bill of materials, netlist, and component placement data, to streamline the transition from prototype to production. The design incorporated support for multi-sensor inputs and status LEDs, enhancing telemetry and diagnostics while reducing integration risk and accelerating the prototyping process for field testing.
May 2025: Delivered the Injector Sensor Hub hardware design for the waterloo-rocketry/canhw project, establishing a production-ready foundation for sensor integration and CAN communications. Completed manufacturing artifacts (schematic for PIC18F26K83, MCP2562 CAN transceiver, BOM, netlist, and component placement data) to support manufacturing handoff. Enabled multi-sensor inputs and status LEDs, strengthening telemetry and fault-detection capabilities. The work reduces integration risk and accelerates prototyping toward field testing and production.
May 2025: Delivered the Injector Sensor Hub hardware design for the waterloo-rocketry/canhw project, establishing a production-ready foundation for sensor integration and CAN communications. Completed manufacturing artifacts (schematic for PIC18F26K83, MCP2562 CAN transceiver, BOM, netlist, and component placement data) to support manufacturing handoff. Enabled multi-sensor inputs and status LEDs, strengthening telemetry and fault-detection capabilities. The work reduces integration risk and accelerates prototyping toward field testing and production.

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