Managed Private Environments
This capability is for enterprise organizations, CTOs and IT directors who require dedicated, isolated infrastructure environments to run business-critical systems.
KryoNex designs, builds and manages private cloud architectures that provide the scalability of modern cloud computing with the strict isolation of a traditional datacenter.
Multi-tenant public clouds introduce compliance and noisy-neighbor risks that highly regulated industries cannot accept.
Internal engineering teams struggle to enforce consistent security, network and access policies across fragmented cloud deployments.
Designing the network topology, VPC peering and security groups required to isolate workloads.
Developing Terraform/OpenTofu scripts to ensure infrastructure is auditable and reproducible.
Moving legacy systems into the private environment without prolonged downtime.
Providing 24/7 proactive monitoring, patching and incident response for the infrastructure.
A strategic engagement to audit your current footprint and deliver a robust private cloud blueprint.
A project-based engagement where we physically build the infrastructure and migrate your workloads.
An ongoing operational partnership where KryoNex retains full responsibility for infrastructure uptime and security.
We deploy infrastructure within dedicated Virtual Private Clouds (VPCs) with strict ingress/egress filtering, completely walling off your data from public internet threats.
We configure Identity and Access Management (IAM) to ensure that only authenticated services and personnel can communicate with your underlying systems.
We analyze your current workloads, compliance boundaries and performance requirements.
We map out the VPCs, subnets, NAT gateways and firewall rules required for isolation.
We write the infrastructure-as-code to provision the environment automatically and predictably.
We execute the migration strategy, redirecting traffic to the new secure environment.
Using Terraform allows us to treat infrastructure like software—versioned, auditable and instantly recoverable in a disaster.
Virtual Private Clouds provide absolute network isolation, ensuring your data never crosses paths with other tenants.
Containerization allows workloads to move smoothly between development and production without environment mismatches.
We don't just click around in cloud consoles. We write declarative code for every piece of infrastructure, ensuring perfect reproducibility.
Whether you need isolation on AWS, GCP, Azure, or dedicated bare-metal, we architect the environment to fit your operational reality.
You own the cloud account, you own the infrastructure code and you own the data. We provide the engineering and the management.
Every infrastructure change is submitted as a pull request and reviewed by senior cloud architects before execution.
Environments are designed from day one to pass rigorous third-party penetration testing and compliance audits.
We routinely conduct "game days" to simulate infrastructure failures and verify our automated recovery mechanisms.
You need absolute network isolation, operate under strict regulatory or security requirements and want your infrastructure treated as professional software code.
You are an early-stage startup that can operate safely on a basic shared PaaS provider, or you already have a mature in-house Platform Engineering team.
We engineer solutions for dedicated on-premise hardware, hybrid architectures, or isolated single-tenant environments on major providers like AWS and GCP.
KryoNex uses Infrastructure as Code (IaC) to ensure environments are provisioned predictably, auditable and easily recoverable.
Yes. We audit your current infrastructure and design a phased migration strategy to move systems into the private cloud with minimal downtime.
Skip the generic sales calls. Speak directly with a KryoNex Solutions Architect to map your current architecture, identify engineering bottlenecks and design a scalable path forward.
Review your current tech stack and bounded contexts with a senior engineer.
Establish realistic milestones, engineering phases and capacity requirements.