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| Amazon Graviton | |
|---|---|
| Name | Amazon Graviton |
| Developer | Amazon Web Services |
| Architecture | ARM |
| Introduced | 2018 |
| Cores | variable |
| Application | Cloud computing, Servers |
Amazon Graviton Amazon Web Services offers a family of ARM-based processors designed for cloud compute instances. The processors target enterprise workloads on cloud platforms used by organizations such as Netflix, Airbnb, NASA, Comcast and Snapchat, and compete with offerings from Intel Corporation, Advanced Micro Devices, NVIDIA Corporation, Google LLC and Microsoft Corporation. The platform integrates into services across regions operated by Amazon Web Services, interacting with products like Amazon EC2, Amazon S3, AWS Lambda and Amazon RDS.
The Graviton family is positioned as an alternative to x86 offerings from Intel Corporation and Advanced Micro Devices for cloud-native workloads run by companies such as Pinterest, Spotify, Zoom Video Communications, Salesforce and Slack Technologies. Its launch followed ARM technology trends popularized by firms like Apple Inc. and supported by ecosystems including Arm Holdings plc, Canonical Ltd. and Red Hat. Adoption decisions often involve comparisons with offerings from hyperscalers such as Google Cloud Platform and Microsoft Azure and integrations with container platforms like Docker, Inc. and orchestration tools from Kubernetes contributors including Cloud Native Computing Foundation members.
Graviton chips are based on ARM architecture licenses from Arm Holdings plc and incorporate microarchitectural techniques influenced by designs from Apple Inc. and telecom vendors such as Qualcomm. The designs emphasize power efficiency similar to mobile SoC strategies seen in Samsung Electronics products and include features for virtualization used by cloud stacks like Xen Project and KVM. Networking and I/O integration references technologies adopted by companies such as Broadcom Inc. and Marvell Technology, Inc.; memory subsystem design reflects practices employed by firms like Micron Technology and SK Hynix. The platform is engineered to interoperate with management tooling from vendors like HashiCorp and observability suites produced by companies such as Datadog, Inc. and New Relic, Inc..
Benchmarking comparisons often pit Graviton instances against Intel Xeon and AMD EPYC processors used by enterprises including Goldman Sachs, JPMorgan Chase, Morgan Stanley, Bloomberg L.P. and Thomson Reuters. Workloads demonstrating high value include web services for Facebook, Twitter, LinkedIn, high-throughput databases used by MongoDB, Inc. and Oracle Corporation deployments, and data-processing pipelines from organizations like Palantir Technologies and SAS Institute. Machine learning inference and microservices scenarios cite efficiency gains compared to GPU offerings from NVIDIA Corporation and custom accelerators from companies such as Cerebras Systems. High-performance computing cases reference collaborations with academic institutions like Massachusetts Institute of Technology, Stanford University, University of Cambridge and research groups funded by agencies such as National Aeronautics and Space Administration.
Several generations have been released to the market, following hardware iteration patterns established by firms like Intel Corporation (e.g., Xeon generations) and Advanced Micro Devices (e.g., EPYC families). Variants address different segments: general-purpose instances similar to offerings from Oracle Corporation and IBM; compute-optimized instances akin to products by Google LLC; and memory-optimized configurations comparable to engineered systems from Hewlett Packard Enterprise and Dell Technologies. Instance types integrate with storage services used by NetApp, Inc. and Pure Storage and are available across AWS regions operated alongside infrastructure from partners like Equinix.
Software ecosystem support includes major Linux distributions from Canonical Ltd. (Ubuntu), Red Hat (Red Hat Enterprise Linux), and community projects like Debian. Container runtimes such as Docker, Inc. and orchestration platforms from Cloud Native Computing Foundation projects (e.g., Kubernetes) are supported, as are language runtimes and frameworks maintained by organizations like The Python Software Foundation, Node.js Foundation, Eclipse Foundation and The Linux Foundation. Tooling integrations exist with configuration management and CI/CD vendors such as Jenkins, GitLab, Atlassian and CircleCI. Database systems from PostgreSQL Global Development Group, MySQL AB (Oracle), MongoDB, Inc. and analytics engines like Apache Spark and Apache Hadoop have build targets or community ports enabling native execution.
Security features reflect industry best practices championed by standards bodies such as National Institute of Standards and Technology and incorporate silicon-level mitigations similar to techniques discussed in publications from University of Cambridge and research by teams at Google LLC and Microsoft Research. Graviton instances participate in compliance programs aligned with audits by firms like Deloitte and KPMG and meet certification frameworks used by organizations including FedRAMP and ISO. Reliability engineering borrows practices from site reliability engineering communities exemplified by Google LLC and incident response playbooks practiced at companies like Netflix and Facebook.
The introduction influenced cloud procurement strategies at enterprises such as Procter & Gamble, Unilever, Johnson & Johnson, Siemens and General Electric. It has driven competitive responses from vendors like Intel Corporation, Advanced Micro Devices and cloud providers including Google Cloud Platform and Microsoft Azure, and stimulated partnerships across the semiconductor supply chain involving TSMC, ARM Holdings plc and component suppliers like Samsung Electronics. Market analyses appearing in reports by firms such as Gartner, Inc., Forrester Research and IDC discuss displacement of some x86 instances and the role in multi-cloud strategies adopted by organizations such as Accenture and Capgemini.