


RLX COMPONENTS s.r.o. , Electronic Components Distributor.
RLX COMPONENTS s.r.o. , Electronic Components Distributor.
NVIDIA Jetson Thor T4000 Module (900-13834-0000-000)
N-VIDIA Jetson Thor T4000 , Up To 1200 / 2070 FP4 TFLOPS Of AI Compute And 64 / 128 GB Of Memory, Delivering The Ultimate Platform For Physical AI And Humanoid Robotics
delivering up to 1200 / 2070 FP4 TFLOPS of AI compute
The N-VIDIA Jetson Thor series of modules gives you the ultimate platform for physical AI and robotics, delivering up to 1200 FP4 TFLOPS / 2070 FP4 TFLOPS of AI compute and 64GB / 128 GB of memory with power configurable between 40 W and 70 W, or between 40 W and 130 W. They deliver over 7.5x higher AI compute than N-VIDIA Jetson AGX Orin, with 3.5x better energy efficiency. This system-on-module (SoM) features an N-VIDIA Blackwell architecture GPU with a Transformer engine and Multi-Instance GPU (MIG) support to effortlessly run the latest generative AI models. N-VIDIA Jetson Thor accelerates low-latency, real-time multi-sensor applications with a 12-core / 14-core Arm® Neoverse®-V3AE CPU, 3x / 4x 25 GbE networking, and extensive I/O options for sensor fusion. It also includes a suite of accelerators, including a third-generation Programmable Vision Accelerator (PVA), dual encoders and decoders, an optical flow accelerator, and more.
Jetson Thor series supports a wide range of generative AI models, from vision language action (VLA) models like N-VIDIA Isaac™ GR00T for humanoids to all popular large language models (LLMs) and vision language models (VLMs).
To deliver a seamless cloud-to-edge experience, Jetson Thor runs the N-VIDIA AI software stack for physical AI applications, including N-VIDIA Isaac for robotics, N-VIDIA Metropolis for visual agentic AI, and N-VIDIA Holoscan for sensor processing. You can also build AI agents at the edge using N-VIDIA agentic AI workflows like Video Search and Summarization (VSS).
N-VIDIA Jetson Thor series modules give you the ultimate platform for physical AI and robotics, delivering up to 1200 FP4 TFLOPS / 2070 FP4 TFLOPS of AI compute and 64GB / 128 GB of memory with power configurable between 40 W and 70 W, or between 40 W and 130 W. They deliver higher AI compute than N-VIDIA Jetson AGX Orin.

Blackwell GPU, sensor processing, and robotic AI software stack

Unlock Physical AI with the Power of Jetson Thor

| - Refer to the "Software Features" section of the latest N-VIDIA Jetson Linux Developer Guide for a list of supported features. - These specifications are preliminary and subject to change. |
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| Model | Jetson AGX Thor Developer Kit |
Jetson Thor T5000 | Jetson Thor T4000 |
|---|---|---|---|
| AI Performance | 2070 TFLOPS (FP4 - sparse) |
1200 TFLOPS (FP4 - sparse) |
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| GPU | 2560-core N-VIDIA Blackwell architecture GPU with 96 fifth-gen Tensor Cores, Multi-Instance GPU (MIG) with 10 TPCs |
1536-core N-VIDIA Blackwell architecture GPU with 64 fifth-gen Tensor Cores, Multi-Instance GPU (MIG) with 6 TPCs |
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| GPU Max Frequency | 1.57 GHz | ||
| CPU | 14-core Arm® Neoverse®-V3AE 64-bit CPU, 1 MB L2 cache per core, 16 MB shared system L3 cache |
12-core Arm® Neoverse®-V3AE 64-bit CPU, 1 MB L2 cache per core, 16 MB shared system L3 cache |
|
| CPU Max Frequency | 2.6 GHz | ||
| Vision Accelerator | 1x PVA v3 | ||
| Memory | 128 GB 256-bit LPDDR5X 273 GB/s |
64 GB 256-bit LPDDR5X 273 GB/s |
|
| Storage | 1 TB NVMe M.2 Key M slot | Supports NVMe through PCIe Supports Solid State Drives through USB3.2 |
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| Video Encoding | 6x 4Kp60 (H.265) 12x 4Kp30 (H.265) 24x 1080p60 (H.265) 50x 1080p30 (H.265) 48x 1080p30 (H.264) 6x 4Kp60 (H.264) |
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| Video Decoding | 4x 8Kp30 (H.265) 10x 4Kp60 (H.265) 22x 4Kp30 (H.265) 46x 1080p60 (H.265) 92x 1080p30 (H.265) 82x 1080p30 (H.264) 4x 4Kp60 (H.264) |
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| Cameras | HSB camera via QSFP slot USB camera |
Up to 20 cameras via HSB Up to 6 cameras through 16x lanes MIPI CSI-2 Up to 32 cameras using Virtual Channels C-PHY 2.1 (10.25 Gbps) D-PHY 2.1 (40 Gbps) |
|
| PCIe* | M.2 Key M slot with x4 PCIe Gen5 M.2 Key E slot with x1 PCIe Gen5 |
Up to 8 lanes - Gen5 Root port only - C1 (x1) and C3 (x2) Root port or endpoint - C2 (x1), C4 (x8), and C5 (x4) |
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| USB Ports* | 2x USB-A (3.2 Gen2) 2x USB-C (3.1) |
xHCI host controller with integrated PHY (Up to) 3x USB 3.2 4x USB 2.0 |
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| Networking* | 1x 50GbE RJ45 connector 1x QSFP28 (4x 25 GbE) |
4x 25 GbE | 3x 25 GbE |
| Displays | 1x HDMI 2.0b 1x DisplayPort 1.4a |
4x shared HDMI 2.1 VESA DisplayPort 1.4a-HBR2, MST |
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| Other I/O | QSFP connector M.2 Key E expansion slot (WLAN/BT, x1 PCIe, USB2.0, UART, I2C, I2S) M.2 Key M connector (NVMe for storage) PCIe x4 lanes, I2C, PCIe x2 lanes 2x 13-pin CAN header 2x 6-pin automation header LED JTAG connector (2x 5-pin header) 1x fan connector – 12V, PWM Tach audio panel header (2x 5-pin) Microsoft power jack RTC backup battery connector (2-pin) |
5x I2S/2x Audio Hub (AHUB), 2x DMIS, 4x UART, 4x CAN, 3x SPI, 12x I2C, 6x PWM outputs | 5x I2S/2x Audio Hub (AHUB), 2x DMIS, 4x UART, 3x SPI, 13x I2C, 6x PWM outputs |
| Power | 40W ~ 130W | 40W ~ 130W | 40W ~ 70W |
| Dimensions | 243.19 x 112.40 x 56.88 (mm) Thermal Transfer Plate (TTP) and optional fan or heatsink |
100 x 87 (mm) 699 pin B2B connector Integrated Thermal Transfer Plate (TTP) with Heatpipe |
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