NVIDIA DGX Spark

Powered by the NVIDIA GB10 Grace Blackwell Superchip, NVIDIA DGX Spark delivers 1000 AI TOPS of AI performance in a power-efficient, compact form factor. With the NVIDIA AI software stack preinstalled and 128GB of memory, developers can prototype, fine-tune, and inference the latest generation of reasoning AI models from DeepSeek, Meta, Google, and others with up to 200 billion parameters locally, and seamlessly deploy to the data center or cloud.

Features

NVIDIA GPU, CPU, Networking, and AI Software Technologies

NVIDIA GB10 Superchip

Experience up to 1000 AI TOPS of AI performance at FP4 precision with the NVIDIA Grace Blackwell architecture.

NVIDIA ConnectX Networking

High-performance NVIDIA Connect-X networking enables connecting two NVIDIA DGX Spark systems together to work with AI models up to 405 billion parameters.

128 GB of Coherent Unified System Memory

Run AI development and testing workloads with AI models up to 200 billion parameters at your desktop with large, unified system memory.

NVIDIA AI Software Stack

Use a full-stack solution for generative AI workloads, including tools, frameworks, libraries, and pretrained models.

NVIDIA DGX Spark

Specifications

NVIDIA DGX Spark

Architecture                      

NVIDIA Grace Blackwell

GPU

NVIDIA Blackwell Architecture

CPU

20 core Arm, 10 Cortex-X925 + 10 Cortex-A725 Arm

CUDA Cores

NVIDIA Blackwell Generation

Tensor Cores

5th Generation

RT Cores

4th Generation

Tensor Performance1

1000 AI TOPS

System Memory

128 GB LPDDR5x, unified system memory

Memory Interface

256-bit

Memory Bandwidth

273 GB/s

Storage

4 TB NVME.M2 with self-encryption

USB

4x USB TypeC

Ethernet

1x RJ-45 connector
10 GbE

NIC

ConnectX-7 Smart NIC

Wi-Fi

WiFi 7

Bluetooth

BT 5.3

Audio-output

HDMI multichannel audio output

Power Consumption

TBD

Display Connectors

1x HDMI 2.1a

NVENC | NVDEC

1x | 1x

OS

NVIDIA DGX OS

System Dimensions

150 mm L x 150 mm W x 50.5 mm H

System Weight

1.2 kg

* preliminary specifications, subject to change

1 Theoretical FP4 TOPS using the sparsity feature.