NVIDIA GeForce RTX 3060 Laptop GPU
The NVIDIA GeForce RTX 3060 Laptop GPU is built on the Ampere architecture and manufactured using Samsung's 8nm process. It features 3840 CUDA cores, 120 Tensor Cores (3rd Generation), and 30 RT Cores (2nd Generation). The GPU operates at base clock speeds ranging from 816 MHz to 1387 MHz and boost clock speeds between 1283 MHz and 1703 MHz, depending on the specific laptop configuration.
Equipment NVIDIA — These are highly productive data processing platforms, developed in accordance with modern requirements for computing systems in the fields of artificial intelligence, research, industrial automation and corporate analytics. Architecture used — Hopper, Grace Hopper, Blackwell — provide high calculation density, energy efficiency and scalability.
NVIDIA solutions are focused on comprehensive support for neural network training and inference tasks, including large language models, generative artificial intelligence, computer vision, natural language processing, modeling and virtualization of processes.
Key features of platforms:
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Support for Hopper, Grace, Blackwell and other architectures Orin
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The use of graphic processors with interfaces NVLink/NVSwitch for an accelerated interaction between GPU
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Memory HBM3 or HBM3e with high bandwidth
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Ability to build scaled clusters, combined into a single computing knot
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Compatibility with NVIDIA AI Enterprise, CUDA, Triton Inference Server, TensorRT, RAPIDS and other libraries
Scope of equipment NVIDIA:
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Training and Infession of Modeling and Artificial Intelligence Models
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Modeling and simulating processes in scientific and engineering tasks
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Automation of production processes and robotic complexes
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Creating digital doubles of objects and technological chains
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Treatment of large data arrays and highly loaded analytical calculations
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Graphic rendering, 3D modeling, physical process simulation and visualization
A brief overview of the main lines of equipment:
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HGX — Server platforms for data centers designed to build scalable artificial intelligence infrastructure. Used in rack solutions and dated centers.
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DGX — Ready NVIDIA Systems for AI-Clea. These are pre -configured solutions with maximum productivity to teach large models. Applied in scientific centers, laboratories, corporate sector.
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IGX Orin — Industrial-grade platform for embedded artificial intelligence systems. Used in medicine, automation, transport, safety systems.
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GH200 / GB200 / GB300 — new generation superflies that combine CPU and GPU in a single computing module with coherent memory. Applied in AI cluster, cloud solutions, LLM-models and digital doubles.
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RTX Workstation — Professional graphics processors for workstations. Designed for design and graphics professionals, 3D, CAD and visualization. Provide accelerated processing of professional applications and AI-tasks.
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GeForce RTX for a note TbEven — mobile graphic processors designed for resource -intensive tasks: Games, Rendering, Modeling, Application AI at User level.
Advantages of use of equipment NVIDIA:
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Maximum productivity for artificial intelligence and machine learning tasks
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Infrastructure optimization to work with new generation models
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High scalability — from one node to II cluster
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Compatibility with leading frameworks and software
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Support for corporate solutions and IT infrastructures
- Perspective for building modern date centers and peripheral computing
| Specification | Details |
|---|---|
| Architecture | Ampere |
| GPU Codename | GA106 (GN20-E3) |
| Manufacturing Process | 8 nm (Samsung) |
| Transistor Count | 13.25 billion |
| Die Size | 300 mm² |
| CUDA Cores | 3840 |
| Tensor Cores | 120 (3rd Generation) |
| RT Cores | 30 (2nd Generation) |
| Base Clock | 816–1387 MHz (configurable) |
| Boost Clock | 1283–1703 MHz (configurable) |
| Memory Type | GDDR6 |
| Memory Size | 6 GB |
| Memory Bus Width | 192-bit |
| Memory Bandwidth | Up to 336 GB/s |
| Effective Memory Speed | 12–14 Gbps |
| TGP (Total Graphics Power) | 60–140 W (configurable) |
| Interface | PCIe 4.0 x16 |
| DirectX Support | 12 Ultimate |
| Vulkan Support | 1.2 |
| OpenGL Support | 4.6 |
| OpenCL Support | 2.0 |
| CUDA Compute Capability | 8.6 |
| Ray Tracing Support | Yes |
| DLSS Support | DLSS 2.0 |
| NVENC / NVDEC | 7th Gen Encoder / 5th Gen Decoder |
| L1 Cache | 128 KB per cluster |
| L2 Cache | 3 MB shared |
| Pixel Fill Rate | 62–82 GPixel/s |
| Texture Fill Rate | 154–204 GTexel/s |
| FP32 Performance | 9.9–13.1 TFLOPS |
| Release Date | January 12, 2021 |
| condition | new |
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