Role Overview
We are looking for experienced and hands-on technology professionals with strong expertise across
application development, data architecture, infrastructure, and solution delivery
. The ideal candidates should be capable of designing and delivering
scalable, enterprise-grade solutions
while working in fast-paced, high-impact environments, with a solid understanding of the
insurance domain
.
Key Responsibilities Design, develop, and support applications using
. NET /. NET Core and Python Define scalable and robust
application architectures Lead development of
modern data platforms
(relational, No SQL, data lakes, streaming pipelines) Translate business requirements into
end-to-end technical solutions Support
cloud and on-prem infrastructure design
(Azure, Kubernetes/AKS, containers) Drive
SDLC and Dev Ops practices
(CI/CD, automation, code quality) Collaborate with cross-functional teams (business, data, engineering) Troubleshoot complex issues across
application, data, and infrastructure layers Ensure solutions meet
scalability, resilience, and security standards Align technology solutions with
insurance business processes and requirements
Required Qualifications ~6–10 years of experience in
full stack development ~ Bachelor’s degree in Computer Science, Information Technology, Engineering, or a related field. ~ Strong expertise in: ~. NET /. NET Core ~ Python ~ Experience with: ~ Relational & No SQL databases ~ Data modeling (star schemas, dimensional modeling) ~ Data lakes and streaming architectures ~ Hands-on experience with: ~ Azure cloud ecosystem ~ Containers, Kubernetes / AKS ~ Solid understanding of: ~ SDLC, Agile, and Dev Ops (CI/CD pipelines, automation) ~ Strong problem-solving and stakeholder management skills ~ Good understanding of the
insurance industry
Candidate Profile Strong
engineering mindset with hands-on delivery experience Ability to work under pressure and manage
multiple priorities Comfortable engaging with both
technical teams and business stakeholders Experience in
enterprise-scale environments