NEMIX RAM DDR5-5600 2TB (16x128GB) ECC RDIMM CL46 1.1V Supermicro H14SST-G memory upgrade
- 2TB (16 x 128GB)
- 288-Pin DDR5 RDIMM
Vi tager imod kryptovaluta — så den krypto, du ejer, kan købe rigtig hardware.Betal med krypto, brug det på rigtig hardware. Gratis, forsikret levering til hele verden ved køb over 399 $. Neutrale, umærkede papkasser, sendt fra Tyskland.Gratis, forsikret levering over 399 $. Din kurs låses i 30 minutter, så snart kassen åbner.Kurs låst i 30 minutter. Hver vare er forseglet, har kontrolleret serienummer og er dækket af 24 måneders garanti.Forseglet, 24 måneders garanti.
NVIDIA
Passive 24 GB GDDR5 accelerator with 3840 CUDA cores delivering 12 TFLOPS single-precision and 47 TOPS integer performance for dense inference workloads
The NVIDIA Tesla P40 is a workstation graphics card built for data-centre compute workloads. It delivers 24 GB of GDDR5 memory across a 384-bit bus providing 346 GB/s bandwidth. With 3840 CUDA cores it reaches 12 Tflops peak single-precision and 47 TOPS integer performance at boost clocks. The card uses a PCI Express 3.0 x16 interface and draws up to 250 W.
This passive dual-slot full-height board requires strong directed airflow from the chassis; it is not suited for quiet workstations or cases without server-grade cooling. Buyers who need display outputs for visualisation should look elsewhere because the card has no video connectors. Systems limited to a single 8-pin PCIe power cable cannot use the included adapter without two PCIe 8-pin sources.
The 24 GB frame buffer is the single specification that determines whether this card can hold your model or dataset. Workloads exceeding this capacity will require multi-GPU configurations or accelerators with larger memory. The 346 GB/s bandwidth and 3840 CUDA cores scale with that capacity for throughput-bound tasks.
| Memory Type | GDDR5 |
|---|
The card uses a passive heatsink with no moving parts, so routine cleaning is limited to removing dust from the fins. Thermal-paste replacement is not a scheduled task and would only be considered if temperatures rise unexpectedly after years of continuous operation.
The passive cooler must dissipate the full 250 W TDP without airflow of its own, so the chassis must supply enough directed air to keep the heatsink below its thermal ceiling; otherwise the GPU will throttle to protect itself.
At sustained load the GPU draws up to 250 W and converts virtually all of that into heat inside the case, requiring the server chassis to move that much thermal energy continuously.
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