Deploy your containerized workloads in a threat-resistant environment by leveraging Chainguard container hosts, backed by our CVE remediation SLA, helping you eliminate developer toil and enabling your team to focus on innovation instead of patching vulnerabilities. These minimal, low-to-zero-CVE container hosts are built entirely from source in Chainguard's SLSA Level 2 infrastructure. These container hosts include only those components required to run as a container host, along with an optimized kernel.
Run your containerized workloads on a foundation that is secure by default, eliminating the endless cycle of CVE patching and remediation that drains your team's time and resources.
Why Chainguard Container Hosts?
Secure base from day one: Minimal VM images built entirely from source in our SLSA Level 2 environment include only essential components, eliminating bloat and vulnerabilities
Stop chasing CVEs: No more valuable engineering time spent on emergency patching, security advisories, or remediation tickets, allowing your teams to focus on building features, not fixing CVEs.
FIPS variants: Includes FIPS requirements, hardening to STIG guidelines, and CIS Benchmark Level 1
Chainguard offers custom pricing through AWS Marketplace Private Offers. Contact aws-marketplace@chainguard.dev for more information on our enterprise pricing.
Highlights
Low-to-zero known CVEs with frequent patches and rebuilds
Complete supply chain transparency with full SLSA Build Level 2 provenance, signatures, and SBOMs
Compliant variants with FIPS requirements, hardening to STIG guidelines, and CIS Benchmark Level 1
Access real-time vendor security and compliance information through their Trust Center powered by Drata or Vanta. Review certifications and security standards before purchase.
AWS Marketplace now accepts line of credit payments through the PNC Vendor Finance program. This program is available to select AWS customers in the US, excluding NV, NC, ND, TN, & VT.
Try this product free for 30 days according to the free trial terms set by the vendor. Usage-based pricing is in effect for usage beyond the free trial terms. Your free trial gets automatically converted to a paid subscription when the trial ends, but may be canceled any time before that.
Pricing is based on actual usage, with charges varying according to how much you consume. Subscriptions have no end date and may be canceled any time. Alternatively, you can pay upfront for a contract, which typically covers your anticipated usage for the contract duration. Any usage beyond contract will incur additional usage-based costs.
Additional AWS infrastructure costs may apply. Use the AWS Pricing Calculator to estimate your infrastructure costs.
You pay by the hour for each Arm64 (Graviton) EC2 instance running this Container Host on EKS. Pricing is not tiered; every dimension maps to one specific instance type. Rates scale with instance size, so a large instance costs more per hour than a small one. Options span several families: general-purpose (m, t4g), compute-optimized (c), memory-optimized (r, x8g), and storage-focused (i8g, im4gn). Suffixes signal variants, such as 'd' for local storage, 'n' for network throughput, and 'b' for extra bandwidth. You choose the instance matching your workload, and hourly charges apply while it runs.
Top-of-mind questions for buyers
What does one billed hour cover, and what am I actually paying for on each instance?
You pay a software fee for the Container Host image running on one Arm64 (Graviton) EC2 instance, charged per hour it runs. The image is a minimal Linux host built to run containers on EKS. The AWS compute cost for the instance itself is separate and billed by AWS.
Am I charged when an instance is stopped or idle?
The software fee meters running time per instance-hour. A fully stopped instance does not accrue this hourly software charge. Stopped instances may still incur underlying AWS storage fees, but those come from AWS, not this listing. Charges resume when you start the instance again.
How do I choose which instance dimension to pay for?
Each dimension maps to one specific instance type. You match the family to your workload: general-purpose (m, t4g), compute-optimized (c), memory-optimized (r, x8g), or storage-focused (i8g, im4gn). Larger sizes cost more per hour. You can run several instances at once, and each bills independently.
Request a private offer to receive a custom quote.
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An AMI is a virtual image that provides the information required to launch an instance. Amazon EC2 (Elastic Compute Cloud) instances are virtual servers on which you can run your applications and workloads, offering varying combinations of CPU, memory, storage, and networking resources. You can launch as many instances from as many different AMIs as you need.
Version release notes
Chainguard EKS 1.36 arm64 20260810-0331
Additional details
Usage instructions
This AMI is intended for Amazon EKS worker nodes (managed node groups or self-managed node groups). Deploy it by creating a new Amazon EKS cluster or node group using eksctl and following the documentation for custom AMI support:
Retrieve the AMI ID for your region, for example for us-east-1:
Configure eksctl to use the Chainguard Container Host AMI by setting "amiFamily: AmazonLinux2023" and "ami: ami-01234567" for the node group in the configuration file. Replace the AMI ID with the one retrieved in step 1.
If you enabled SSH access via eksctl, you can connect to the instances in your node group as "ec2-user".
AWS Support is a one-on-one, fast-response support channel that is staffed 24x7x365 with experienced and technical support engineers. The service helps customers of all sizes and technical abilities to successfully utilize the products and features provided by Amazon Web Services.
Deploy your containerized workloads in a threat-resistant environment by leveraging Chainguard container hosts, backed by our CVE remediation SLA, helping you eliminate developer toil and enabling your team to focus on innovation instead of patching vulnerabilities. These minimal, low-to-zero-CVE container hosts are built entirely from source in Chainguard's SLSA Level 2 infrastructure. These container hosts include only those components required to run as a container host, along with an optimized kernel.
Chainguard Images are a collection of minimal, hardened container images that are patched and rebuilt daily, and come with low-to-zero known CVEs, SLSA 2 compliance, signatures, and SBOMs.
Chainguard Images are a collection of minimal, hardened container images that are patched and rebuilt daily, and come with low-to-zero known CVEs, SLSA 2 compliance, signatures, and SBOMs.
Deploy your containerized workloads in a threat-resistant environment by leveraging Chainguard container hosts, backed by our CVE remediation SLA, helping you eliminate developer toil and enabling your team to focus on innovation instead of patching vulnerabilities. These minimal, low-to-zero-CVE container hosts are built entirely from source in Chainguard's SLSA Level 2 infrastructure. These container hosts include only those components required to run as a container host, along with an optimized kernel.
Deploy your containerized workloads in a threat-resistant environment by leveraging Chainguard container hosts, backed by our CVE remediation SLA, helping you eliminate developer toil and enabling your team to focus on innovation instead of patching vulnerabilities. These minimal, low-to-zero-CVE container hosts are built entirely from source in Chainguard's SLSA Level 2 infrastructure. These container hosts include only those components required to run as a container host, along with an optimized kernel.
Deploy your containerized workloads in a threat-resistant environment by leveraging Chainguard container hosts, backed by our CVE remediation SLA, helping you eliminate developer toil and enabling your team to focus on innovation instead of patching vulnerabilities. These minimal, low-to-zero-CVE container hosts are built entirely from source in Chainguard's SLSA Level 2 infrastructure. These container hosts include only those components required to run as a container host, along with an optimized kernel.
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