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NVIDIA Jetson T5000 128GB Production Module
- Type
- Jetson T5000 production system-on-module; Jetson Thor family
Before you order
- Confirm the exact SKU, part number, specification option and quantity.
- Confirm the host platform, port, electrical interface and firmware requirements.
- Confirm availability, lead time, destination and applicable service terms before payment.
| CPU | 14-core 64-bit Arm Neoverse V3AE |
|---|---|
| GPU | NVIDIA Blackwell; 2,560 CUDA cores; fifth-generation Tensor Cores |
| Memory | 128 GB, 256-bit LPDDR5X |
| CPU cache | 1 MB L2 per core; 16 MB shared system L3 |
| AI compute | Up to 2,070 sparse FP4 TFLOPS, NVIDIA-reported at 130 W |
| Part Number | 900-13834-0080-001 |
| Product type | Jetson T5000 production system-on-module; Jetson Thor family |
| Storage support | External NVMe via PCIe; external SSD via USB 3.2 |
| Memory bandwidth | 273 GB/s |
| Module connector | 699-pin board-to-board connector |
| Module dimensions | 100 × 87 mm |
| Thermal interface | Integrated thermal transfer plate (TTP) with heatpipe; system cooling must be engineered |
| Multi-Instance GPU | MIG-capable GPU with 10 texture processing clusters (TPCs) |
| Vision accelerator | 1 × PVA v3 |
| Maximum CPU frequency | 2.6 GHz |
| Maximum GPU frequency | 1.57 GHz |
| Networking capability | 4 × 25 GbE |
| Manufacturer lifecycle | Available through August 2035 |
| Production integration | Requires a compatible carrier, suitable power and cooling, storage and flashed software |
| Manufacturer part number | 900-13834-0080-001 |
| Module power configuration | 40–130 W |
Product questions & answers
Is 900-13834-0080-001 a complete Jetson AGX Thor Developer Kit?
It identifies the Jetson T5000 production module. A complete deployed system also needs a carrier, cooling, power, storage and a software image. Do not assume the developer kit’s enclosure, fan, power supply or 1 TB drive is part of this module SKU.
How should I interpret the T5000 figure of 2,070 TFLOPS?
NVIDIA reports up to 2,070 sparse FP4 TFLOPS and labels the headline as measured at 130 W. Precision, sparsity and test conditions matter. It is not a frame-rate or tokens-per-second commitment, and it cannot be divided directly by Orin NX sparse INT8 TOPS to predict a workload speedup.
Will T5000 plug into an existing AGX Orin or Orin NX carrier?
The T5000 uses a 100 × 87 mm footprint and a 699-pin board-to-board connector. NVIDIA lists Thor and AGX Orin as form-factor compatible, without declaring them pin-compatible. Orin NX has a different 260-pin format. Review the carrier design and bring-up documentation before planning a migration.
Does its 128 GB memory include operating-system storage?
The 128 GB specification describes LPDDR5X system memory. The module supports external NVMe or USB SSD storage. The developer kit’s advertised 1 TB NVMe capacity must not be treated as a drive included with this production-module part number.
Can a small passive heatsink support every T5000 mode?
Cooling must be sized for the selected workload, power mode, enclosure and ambient conditions. The published module range reaches 130 W, and the integrated TTP is a thermal interface rather than evidence that any particular heatsink is sufficient. Validate sustained clocks and temperature in the finished system.
Does the 4 × 25 GbE specification mean the module has four network sockets?
It describes module-level networking capability. External connectors, physical routing and supported sensor paths come from the carrier and system design. Check the carrier, software support and sensor interfaces together before specifying a camera or high-rate data-ingest configuration.