FP32 IS THE ONLY PRECISION ROW, for the reason recorded on the Quadro P4000. NVIDIA's 3.0 TFLOPS comes from the QUICK SPECS panel of its Quadro desktop workstations page, not from the datasheet, which prints no throughput figure at all. REFUSED: base and boost clocks, unpublished; memory_clock_gbps, since NVIDIA prints "Up to 140 GB/s" across a 160-bit bus but never a data rate; ECC, transistor count and die size. This is a GP106 part, and NVIDIA published no die-level figures for GP106 in any whitepaper, so the 16 nm node is a generation-level attribution from the GeForce GTX 1080 whitepaper and the Pascal launch materials rather than a GP106-specific statement. Note the card draws 75 W and therefore needs no supplementary power connector, which is most of why it survives in dense workstation and transcoding deployments.

NVIDIA Quadro P2000 5GB

Pascal PCIe 2017 16nm Spec confidence: Official
FP32
3
TFLOPS
Memory
5 GB
GDDR5
Bandwidth
140 GB/s
memory
TDP
75 W
40.0 FP32 dense TFLOPS/kW of TDP
Download datasheet

Overview

The Quadro P2000 is the 75 W, single-slot Pascal card that runs entirely off the PCIe slot, with no supplementary power connector, and that is the whole reason it is still in service. It carries 1,024 CUDA cores and 5 GB of GDDR5 on an unusual 160-bit bus for 140 GB/s, which NVIDIA rates at 3.0 TFLOPS FP32. As a compute device it is the smallest thing in this database that is still rented by the hour: no Tensor Cores, no sparsity, no published half or double precision rate, and a frame buffer that rules out anything but small models. Its practical niche is media, since it carries Pascal's dedicated encode and decode engines in a slot-powered card, and light CUDA work where availability matters more than throughput.

Performance

Peak theoretical throughput by precision type

PrecisionPeak
FP64
No verified data available
FP32
32-bit floating point
3TFLOPS
TF32
No verified data available
BF16
No verified data available
FP16
No verified data available
FP8
No verified data available
FP6
No verified data available
FP4
No verified data available
INT8
No verified data available

Every figure here is dense. The vendor documents no structured (2:4) sparsity mode for this part, so there is no second number to quote.

Specifications

Architecture

Pascal

Form Factor

PCIe

Launch Year

2017

Process Node

16nm

Memory

5 GB GDDR5

Bandwidth

140 GB/s

TDP

75 W

Max power

75 W

CUDA Cores

1,024

Spec Confidence

Official

Full Specifications

Compute Engine
CUDA Cores 1,024
Streaming Multiprocessors 8
Memory
Memory 5 GB
Memory Type GDDR5
Bandwidth 140 GB/s
Interface Width 160-bit
Interconnect & I/O
PCIe 3.0 x16
Power & Thermal
TDP 75 W
Max power 75 W
Cooling Active
Enterprise Features
Sparsity No
Compute APIs CUDA, DirectCompute, OpenCL
Physical & Media
Width 1-slot
General
Form Factor PCIe
Architecture Pascal
Process Node 16nm
Launch Year 2017

Datasheet & Resources

Data Provenance

Every figure traced to a source

Primary Source

Publisher
NVIDIA
Published
No verified data available

Data Quality

Spec confidence
Official
Clock basis
Boost
Core precisions with figures
1 of 9
Normalization
All values in TFLOPS

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Frequently Asked Questions

How many TFLOPS does the NVIDIA Quadro P2000 have?

The NVIDIA Quadro P2000 delivers 3 TFLOPS FP32 at peak. Flopper does not currently have verified FP16 and FP8 throughput figures for it.

What is the power consumption of the NVIDIA Quadro P2000?

The NVIDIA Quadro P2000 has a TDP (Thermal Design Power) rating of 75 watts.

How much memory does the NVIDIA Quadro P2000 have?

The NVIDIA Quadro P2000 is equipped with 5 GB of memory with 140 GB/s of memory bandwidth.

What architecture is the NVIDIA Quadro P2000 based on?

The NVIDIA Quadro P2000 is based on the Pascal architecture, launched in 2017.

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