Kubernetes & Containers
Deploy and operate containerised workloads with confidence. Cluster design, GitOps workflows, autoscaling, and service mesh integration.

Kubernetes is the most capable container orchestration platform available - and also one of the most complex to operate correctly. Misconfigured clusters are a common source of outages, security incidents, and runaway cloud costs. We design, deploy, and operate Kubernetes environments that are production-grade from day one.
Our cluster designs are built on proven reference architectures tailored to your cloud provider and workload requirements. We harden every cluster: node security, network policies, RBAC, secrets encryption at rest, image admission controllers, and audit logging. Multi-tenancy is implemented with namespace isolation, resource quotas, and policy enforcement so teams can self-serve without stepping on each other.
Deployment workflows are GitOps-driven. Application manifests live in Git, and ArgoCD or Flux continuously reconciles cluster state to match what's declared. This means deployments are auditable, rollbacks are trivial, and there's no manual kubectl apply in production.
Service mesh integration with Istio or Linkerd adds mTLS between services, fine-grained traffic management for canary releases and A/B tests, and rich observability for inter-service communication without any application code changes.
We implement autoscaling at every layer - Horizontal Pod Autoscaler based on CPU and custom metrics, Vertical Pod Autoscaler for right-sizing recommendations, and Cluster Autoscaler or Karpenter for dynamic node provisioning - so your platform scales efficiently under variable load.
What it does
- Kubernetes cluster design, setup, and hardening for production workloads
- GitOps-driven deployments with ArgoCD or Flux and Helm chart management
- Horizontal and vertical pod autoscaling with resource optimisation


Who it's for
- Teams adopting Kubernetes for the first time
- Organisations with Kubernetes clusters that are hard to operate
- Platforms needing multi-tenancy, RBAC, and namespace isolation
- Engineering teams running containers without orchestration
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