03 · Expertise

Kubernetes

Kubernetes and EKS architecture, modernization, migration, and production operations.

Kubernetes concentrates infrastructure decisions. Cluster topology, identity, networking, workload placement, upgrade policy, and ownership become one operating surface, whether or not they were designed together.

We resolve the architecture at that whole-system level. The work may begin with an unstable cluster, an expensive topology, a stalled migration, or a platform that has accumulated too many exceptions. It ends with fewer ambiguous boundaries and an implementation path the operating team can own.

The cluster count is an architectural decision

There is no universally correct number of clusters. Isolation requirements, failure domains, upgrade independence, regional design, and team ownership determine the answer. We make those constraints visible before choosing the topology.

FIG. 03Kubernetes · system boundariesFragmented
Kubernetes · system boundariesFragmented Kubernetes topology with four clusters and duplicated platform paths.Kubernetes estate××deliveryfour pathscluster ateam-ownedcluster bteam-ownedcluster cversion driftcluster dversion driftoperationsduplicated
Subject
EKS · clusters · workloads · operations
Reading
Cluster growth follows team demand, creating separate upgrade, ingress, identity, and observability paths.
Legend
Solid: active · dashed: planned or failed · ×: failure
Representation
System model, not a client architecture.
03 · Kubernetes · system boundaries

Start with the system

A difficult infrastructure problem?

The first conversation is about the architecture, the constraints, and what makes the problem difficult.

Discuss your infrastructure