Visa is a world leader in payments and technology, with over 259 billion payments transactions flowing safely between consumers, merchants, financial institutions, and government entities in more than 200 countries and territories each year. Our mission is to connect the world through the most innovative, convenient, reliable, and secure payments network, enabling individuals, businesses, and economies to thrive while driven by a common purpose - to uplift everyone, everywhere by being the best way to pay and be paid. Make an impact with a purpose-driven industry leader. Join us today and experience Life at Visa.
Visa's Technology Organization is a community of problem solvers and innovators reshaping the future of commerce. We operate the world's most sophisticated processing networks capable of handling more than 65k secure transactions a second across 80M merchants, 15k Financial Institutions, and billions of everyday people. While working with us you'll get to work on complex distributed systems and solve massive scale problems centered on new payment flows, business and data solutions, cyber security, and B2C platforms.
The Opportunity: This is an exceptional opportunity to join Visa's Engineering and AI organization to design, scale, and optimize our large-scale data engineering and AI/ML infrastructure powering mission-critical products. As part of the Post Purchase Solutions team, you will lead the architecture and implementation of next-generation data pipelines, integrating structured and unstructured data across Hadoop and cloud-based systems (AWS/Azure) to unlock actionable insights and support intelligent decisioning models. You will partner closely with AI/ML, product, and analytics teams to build secure, scalable, and high-performance data systems that fuel advanced AI models, insights generation, and data-driven automation. This role combines hands-on engineering excellence with architectural leadership to transform Visa's post-purchase ecosystem into a data-first, AI-powered platform.
The Work Itself:
Essential Functions: Works directly with