Ampere Computing

Ampere Computing offers cloud native processors designed for data center solutions, focusing on sustainability and efficiency.

Services

Ampere Computing offers cloud native processors and CPUs designed for data center solutions. The company provides a variety of processors catering to applications like AI, data analytics, edge computing, media services, storage, and web services. Additionally, Ampere partners with leading cloud service providers and systems integrators worldwide to deliver efficient and scalable solutions.

Products

Ampere Computing offers two main product families: the Ampere Altra Family and the AmpereOne Family. The Ampere Altra Family includes processors that scale from 32 to 128 cores. The AmpereOne Family boasts processors with up to 192 cores. These processors are designed to support AI workloads and run smoothly on frameworks like TensorFlow, PyTorch, and ONNX.

Sector

Ampere Computing operates in the semiconductor and cloud computing sectors. The company focuses on creating sustainable cloud computing solutions with processors that consume less power and resources compared to traditional architectures. Their products cater to diverse applications such as AI, data analytics, and media services.

Sustainable Cloud Computing

Ampere Computing emphasizes sustainable cloud computing with processors that require a fraction of the power and resources compared to conventional architectures. The company's cloud native processors are designed to triple data center efficiency, as outlined in their published eBook. This approach helps reduce the environmental footprint while maintaining high performance.

Developer Resources

Ampere Computing provides a developer center equipped with resources, support, and tools designed for creating sustainable cloud applications. This includes comprehensive documentation, technical support, and tools that help developers optimize their applications for Ampere’s processors, ensuring effective and efficient cloud-native solutions.

Companies similar to Ampere Computing