Leadtek NVIDIA Quadro T400 Brand New Ai Data Analytics Deep Learning Graphics Card
LeadTek NVIDIA Quadro T400 Graphic Design Graphic Card
Turing GPU Architecture
Based on state-of-the-art 12nm FFN (FinFET NVIDIA) high-performance manufacturing process customized for NVIDIA to incorporate 384 CUDA cores, the NVIDIA T400 and NVIDIA 4GB GPUs (NVIDIA T400 series) are an efficient Single Slot professional solution for CAD, DCC, financial service industry (FSI) and visualization professionals in general looking to reach great performance in a compact form factor. The Turing GPU architecture enables the biggest leap in computer real-time graphics rendering since NVIDIA’s invention of programmable shaders in 2001.
Higher Speed GDDR6 Memory
Built with Turing’s vastly optimized GDDR6 memory subsystem for the industry’s fastest graphics the NVIDIA T400 features 2GB or 4GB of frame buffer capacity and 80 GB/s of peak bandwidth, more than double the throughput. NVIDIA T400 series is the ideal platform for 3D professionals and high demanding and multi display environments, with vast arrays of datasets.
H.264 and HEVC Encode/Decode Enginesi
Deliver faster than real-time performance for transcoding, video editing, and other encoding applications with two dedicated H.264 and HEVC encode engines and a dedicated decode engine that are independent of 3D/compute pipeline.
NVIDIA Quadro T400 Graphic Design Graphic Card Specification
GPU Architecture | NVIDIA Turing Architecture |
CUDA Parallel Processing cores | 384 |
Single-Precision Performance | Up to 1.094 TFLOPS |
Frame Buffer Memory | 2 GB GDDR6 |
Memory Interface | 64-bit |
Memory Bandwidth | Up to 80 GB/s |
Max Power Consumption | 30W |
Graphics Bus | PCI Express 3.0 x16 |
Display Connectors | mDP 1.4 (3) |
Form Factor | 2.713” H x 6.137” L, Single Slot |
Product Weight | 123.5g |
Thermal Solution | Active |
Software Support
NVIDIA CUDA Parallel Computing Platform
Natively execute standard programming languages like C/C++ and Fortran, and APIs such as OpenCL, OpenACC and Direct Compute to accelerates techniques such as ray tracing, video and image processing, and computation fluid dynamics.
Unified Memory
Featuring concurrent execution of floating point and integer operations, adaptive shading technology, and a new unified memory architecture with twice the cache of its predecessor, Turing shaders enable awesome performance increases for today’s professional applications.