Unlock Higher Performance & Lower Costs with AWS Graviton
MaximyzCloud delivers end-to-end AWS Graviton migration and optimization — from workload assessment through ARM64 deployment — delivering up to 40% compute cost reduction and 60% better price-performance over x86.
What Is AWS Graviton?
AWS Graviton processors are custom-designed ARM-based chips built by Amazon Web Services that deliver exceptional price-performance for cloud workloads. Graviton3 — the latest generation — provides up to 60% better price-performance than comparable x86-based instances for a wide range of workloads.
MaximyzCloud's AWS Graviton Delivery practice combines deep ARM64 engineering expertise with AWS partner tooling to migrate, optimize, and operate your workloads on Graviton — delivering sustained compute savings without performance compromise.
Full-Spectrum AWS Graviton Delivery
From initial assessment through production migration — MaximyzCloud manages every stage of your Graviton modernization journey.
AWS Graviton Assessment
Comprehensive workload inventory analysis to identify Graviton-eligible services, estimate savings potential, and prioritize migration candidates by impact and complexity.
Start AssessmentInfrastructure Compatibility Analysis
Deep-dive ARM64 compatibility analysis across your application stack — dependencies, libraries, runtimes, and container images — identifying all modification requirements before migration.
Analyze CompatibilityWorkload Migration Planning
Phased migration roadmap with risk assessment, rollback procedures, testing strategy, and timeline — ensuring zero-disruption transitions for each workload moving to Graviton.
Plan MigrationApplication Optimization
ARM64 compilation optimization, container image rebuilds, runtime configuration tuning, and workload-specific optimizations that unlock maximum Graviton performance gains.
Optimize AppsPerformance Benchmarking
Rigorous side-by-side benchmarking of x86 vs Graviton performance across CPU throughput, memory bandwidth, I/O performance, and application-level metrics.
Run BenchmarksCost Optimization Strategy
Graviton-specific Reserved Instance and Savings Plans strategy to compound savings beyond the base Graviton discount — maximizing total infrastructure cost reduction.
Optimize CostsGraviton Deployment
Production Graviton deployment across EC2 M6g/C6g/R6g/M7g instance families, Graviton-powered EKS node groups, Lambda ARM64 functions, and Fargate ARM64 tasks.
Deploy GravitonInfrastructure Monitoring
Post-migration CloudWatch dashboards with Graviton-specific performance metrics, cost tracking, and automated alerting to validate and sustain optimization gains.
Set Up MonitoringContinuous Optimization
Ongoing Graviton optimization as new instance generations and services launch — ensuring you always benefit from the latest AWS Graviton improvements and savings opportunities.
Stay OptimizedPerformance Reporting
Executive-ready performance reports comparing pre- and post-migration metrics — documenting savings achieved, performance improvements, and ROI delivered by Graviton adoption.
View ReportsThe Case for AWS Graviton
AWS Graviton delivers industry-leading price-performance, enabling businesses to do more with less on every workload.
20–40% Cost Reduction
Graviton instances are priced significantly lower than equivalent x86 — delivering immediate savings without any application performance compromise.
60% Better Price-Performance
Graviton3 delivers up to 60% better price-performance for general-purpose workloads compared to equivalent x86-based EC2 instances.
60% Less Energy
Graviton3 consumes up to 60% less energy than comparable x86 processors — reducing your AWS carbon footprint and supporting ESG goals.
Modern ARM Architecture
Custom ARM-based silicon purpose-built for cloud workloads — with hardware security features, DDR5 memory, and NVMe storage optimization.
Enterprise Scalability
Full AWS service ecosystem support — EC2, EKS, Lambda, Fargate, RDS, ElastiCache — enabling Graviton across your entire infrastructure.
Compound Savings
Combine Graviton savings with Reserved Instances and Savings Plans for compound discounts — delivering total cost reductions of 50–65%.
Workloads Ideal for AWS Graviton
AWS Graviton delivers the greatest value for application workloads that are compiled or containerized and benefit from high CPU and memory throughput.
Web Applications
Node.js, Python, Go, and Java web services benefit immediately from Graviton's ARM64 optimizations and improved throughput per core.
Microservices
Container-based microservices architectures see outstanding Graviton savings — particularly when running high-density multi-service EC2 or Fargate deployments.
Container Workloads
Multi-architecture container images run natively on Graviton EKS nodes and Fargate ARM64 tasks — enabling seamless hybrid fleet deployment.
Kubernetes Environments
EKS Graviton node groups deliver significant per-pod cost savings — ideal for high-density microservices platforms and stateless application tiers.
Analytics Workloads
Data processing, Spark analytics, and streaming workloads benefit from Graviton3's high memory bandwidth and improved floating-point performance.
API Platforms
High-throughput REST and GraphQL API services benefit from Graviton's improved latency characteristics and cost-per-request optimization.
SaaS Applications
Multi-tenant SaaS platforms running on Graviton can significantly reduce per-tenant infrastructure costs — improving margins at scale.
Cloud-Native Systems
Serverless Lambda ARM64 functions and cloud-native applications deliver the best Graviton price-performance with minimal migration complexity.
Our AWS Graviton Delivery Process
A structured, risk-managed migration process that delivers Graviton performance and savings without disrupting your operations.
Discovery
Map your AWS infrastructure, workload inventory, and identify Graviton migration candidates with savings potential estimates.
Assessment
ARM64 compatibility analysis of applications, containers, dependencies, and runtimes — documenting all modification requirements.
Benchmarking
Side-by-side x86 vs Graviton performance benchmarks to validate savings and performance projections before production migration.
Migration Planning
Phased migration roadmap with rollback procedures, testing protocols, and timeline — prioritized by savings impact and migration risk.
Deployment
Zero-downtime Graviton deployment with blue-green or canary release strategies — validating performance at each migration stage.
Optimization
Post-migration fine-tuning, savings plan configuration, and ongoing optimization as new Graviton instance generations launch.
Your Trusted Graviton Delivery Partner
MaximyzCloud's AWS Graviton Delivery practice combines deep ARM64 engineering expertise, established AWS partner relationships, and a proven migration methodology that delivers Graviton performance and savings with zero production risk.
Graviton Delivery Partner
AWS-recognized Graviton delivery expertise and access to Graviton-specific tooling and resources.
ARM64 Engineering Depth
Certified engineers with hands-on ARM64 compilation, container, and performance optimization experience.
Benchmark-First Approach
We prove Graviton performance with your actual workloads before committing to production migration.
Zero Downtime Guarantee
Blue-green and canary migration strategies ensure zero production disruption throughout the process.
Compound Savings
We stack Graviton discounts with RI and Savings Plans for maximum total infrastructure cost reduction.
Continuous Optimization
Ongoing Graviton optimization as new AWS generations launch — always delivering best-in-class savings.
AWS Graviton FAQ
AWS Graviton processors are custom ARM-based chips designed by Amazon specifically for cloud workloads. Unlike traditional x86 (Intel/AMD) processors, Graviton uses the ARM64 instruction set architecture — which AWS has optimized for efficiency, performance, and cost-effectiveness in cloud environments. Graviton3, the latest generation, delivers up to 60% better price-performance, 25% better compute performance, and uses up to 60% less energy than comparable x86-based EC2 instances, while being priced 20–40% lower.
Graviton instances are priced 20–40% lower than equivalent x86-based instances for the same compute capacity. When combined with Reserved Instance or Savings Plans purchasing strategies, total compute cost reductions of 50–65% are achievable compared to on-demand x86. The actual savings depend on your workload type, current instance families, and purchasing commitments. MaximyzCloud conducts a detailed savings analysis as part of our initial assessment to give you a precise savings forecast for your specific environment.
AWS Graviton is suitable for most modern cloud workloads including web applications (Node.js, Python, Go, Java, Ruby), containerized microservices, Kubernetes workloads on EKS, serverless Lambda functions, analytics and data processing, API platforms, and SaaS applications. Workloads with pre-compiled binaries for x86 that cannot be recompiled may require additional effort. MaximyzCloud's compatibility assessment identifies exactly which workloads are Graviton-ready and which require preparation.
For most interpreted language applications (Python, Node.js, Ruby, PHP) and JVM-based applications (Java, Kotlin, Scala), migration to Graviton requires no code changes — just a redeployment to ARM64 instances. Compiled languages (C, C++, Go, Rust) require recompilation for ARM64, which is typically straightforward with modern build systems. Containerized applications need ARM64 image builds, which we automate as part of the migration process. Our compatibility assessment identifies the exact modification requirements for your specific stack before any production changes.
A standard Graviton migration with MaximyzCloud takes 2 to 6 weeks from initial assessment to production deployment, depending on workload complexity. Simple interpreted language services can be migrated in as little as 3 to 5 days. Container-heavy environments typically complete in 2 to 3 weeks. Complex compiled application stacks may require 4 to 6 weeks including benchmarking and staging validation. All migrations use zero-downtime deployment strategies with validated rollback procedures.
MaximyzCloud provides end-to-end AWS Graviton delivery — from the initial workload assessment and compatibility analysis through benchmarking, migration planning, ARM64 optimization, production deployment, and post-migration monitoring. As an AWS Graviton Delivery Partner, we have access to AWS Graviton migration tooling, best practices, and specialist support that accelerates adoption and reduces migration risk. Our benchmark-first approach means we prove Graviton performance with your actual workloads before committing to production changes.
Transform Your AWS Infrastructure with Graviton-Powered Performance
Book a free Graviton assessment with our AWS-certified engineers. We'll analyze your workloads, provide a savings forecast, and build a zero-risk migration roadmap.