Ferrin Tassawwer Amith is an accomplished Continuing Airworthiness Engineer with a strong foundation in commercial fleet maintenance and advanced mechanical engineering. He holds a Bachelor of Science in Aircraft Maintenance Engineering from LeTourneau University in Texas and is currently completing his Master of Mechanical Engineering in Australia. Combining extensive hands-on regulatory experience with advanced academic insights, Ferrin has spent years working within strict aviation safety frameworks, optimising fleet reliability, and supporting complex engineering operations for commercial air carriers.
Ferrin specialises in continuing airworthiness management, commercial aircraft systems, and regulatory compliance under FAA and international aviation frameworks. His technical expertise spans comprehensive maintenance execution and system troubleshooting across a diverse range of commercial platforms, including the Boeing 737 family (NG and MAX 9), Airbus A321, Dash 8 Q400, and Embraer E175 aircraft. At MEMKO, his work centres on delivering technical airworthiness support, optimising maintenance programs, and ensuring fleet safety and operational integrity for commercial airline clients.
Across his career, Ferrin has demonstrated exceptional technical problem-solving and a deep commitment to aviation safety, earning recognition for his precision in high-stakes environments. His notable career milestones include dedicating three years to executing high-standard commercial fleet maintenance as an FAA Aircraft Maintenance Engineer for Alaska Airlines in Seattle, Washington. Currently balancing his final semester of postgraduate studies with his engineering role, he delivers focused, data-driven technical support directly to MEMKO’s dedicated Nauru Airlines team.
Ferrin brings to MEMKO a powerful capability in practical airworthiness engineering, regulatory compliance, and commercial fleet optimisation. He is passionate about helping aviation organisations navigate complex maintenance requirements, embrace rigorous safety standards, and achieve long-term operational growth through robust engineering innovation and proactive systems management.