
Developed an automated hydro pressure testing sequence for the masa-umich/mcnugget repository, focusing on automation and embedded systems using Python. The feature enabled configurable pressure increments, duration, and safety bounds, integrating control systems logic to manage valve actuation for both pressurization and venting. The workflow maintained target pressure for a specified duration to validate tank integrity, incorporating safety checks and user prompts to ensure repeatable and safe operation. This work reduced manual testing time, improved test consistency, and established a scalable foundation for future hardware-automation workflows, demonstrating a methodical approach to embedded testing and control system integration within a hardware context.
January 2025 on masa-umich/mcnugget: Delivered an automated hydro pressure testing sequence enabling configurable pressure increments, duration, and bounds, with valve control for pressurization and venting, target-pressurization maintenance for a defined duration, and built-in safety checks and user prompts to ensure safe, repeatable tank integrity validation. This feature reduces manual testing time, improves test repeatability, and strengthens safety compliance. The work establishes a scalable foundation for hardware-automation test workflows and future validations.
January 2025 on masa-umich/mcnugget: Delivered an automated hydro pressure testing sequence enabling configurable pressure increments, duration, and bounds, with valve control for pressurization and venting, target-pressurization maintenance for a defined duration, and built-in safety checks and user prompts to ensure safe, repeatable tank integrity validation. This feature reduces manual testing time, improves test repeatability, and strengthens safety compliance. The work establishes a scalable foundation for hardware-automation test workflows and future validations.

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