Lead Automation Engineer
Eli Lilly
- Location
- Hyderabad, Telangāna, India
- Employment
- Full Time
- Work model
- On-Site
- Level
- Senior
- Posted
- Sep 16, 2026
Skills
About this role
At Lilly, the work is demanding because patients are waiting. We unite caring with discovery to help make life better for people around the world, knowing that every decision, every detail, and every day matters. Headquartered in Indianapolis, Indiana, our over 50,000 employees around the globe take on complex challenges to discover and deliver life-changing medicines, strengthen how health is understood and managed, and support the communities we serve. This is hard, urgent, selfless work—but it’s work worth doing. If you’re driven by purpose and ready to bring your best to work that truly matters for patients, we invite you to join us. About the technology organization Technology at Lilly builds and operates mission-critical digital products and platforms that support the discovery, development, and delivery of medicines that make life better for people around the world. Our teams operate in highly regulated, high-availability environments, where operational excellence, reliability, and quality are non-negotiable. Within Tech@Lilly, the Digital Core organization applies a product, platform, and reliability-first mindset, ensuring that operational capabilities scale sustainably across the enterprise.
About the Team
Tech@Lilly builds and maintains capabilities using pioneering technologies like the most prominent tech companies. What differentiates Lilly IT is that we redefine what's possible through tech to advance our purpose — creating medicines that make life better for people around the world — including data-driven drug discovery, connected clinical trials, resilient enterprise platforms, and intelligent digital operations. The Digital Core team leads Lilly's transformation into the Digital and AI era. Lilly Capability Centre India (LCCI), Hyderabad, is Lilly's premier Global Technology Hub, harnessing data, AI, analytics, and digital solutions to revolutionize healthcare and improve patient outcomes worldwide. Role summary You build the automation and the observability around it that turns a validated fix into a production-safe, autonomous action. Sitting inside Agentic Automation Engineering, you take remediation procedures authored and validated by SRE — and automation opportunities surfaced through discovery, telemetry, and alert correlation — and codify them into automation that runs safely, is fully instrumented, respects rollback and exception handling, and earns broader autonomy over time. This is a hands-on individual-contributor role focused on build quality, codification rigor, and instrumentation depth. You work daily with SRE's runbook library and graduation criteria, with the observability stack that proves an automation is behaving as designed, and with Operations' outcome validation, so automation only ever runs what's been proven safe. Success is measured by automations shipped and codified, runbooks translated into working automation, the quality of the signals you emit alongside them, zero P1/P2 incidents caused by automation you've built, and the pace at which your automation earns broader autonomy.
What you'll be doing
1) Automation build — from validated fix to production automation Build production-grade automation that executes validated remediation steps end to end — detection through action — with safe rollback built in. Take automation opportunities and known-fix candidates surfaced through discovery, telemetry, and alert correlation, and turn them into shipped, tested automations. Maintain and extend the existing automation portfolio (scripted orchestration, platform tooling, and, where appropriate, RPA) as new opportunities are approved. Working proficiency with Ansible, Terraform, or equivalent IaC/configuration management tooling for building safe, repeatable remediation and provisioning automation. 2) Runbook codification Translate SRE-authored remediation procedures into codified, executable automation steps: safe execution order, rollback steps, and