nvidiaGTX 10

NVIDIA GeForce GTX 1080 Ti

Budget GPU • Best for 1080p UltraPascal Architecture • 11GB GDDR5X

Value Score
14.4
Rating
Poor Value
Current Prices
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MSRP$699
ReleasedJan 2017

Gaming Benchmarks

1080p Ultra66.4 fps
1440p Ultra50.2 fps
4K Ultra29.5 fps
Ray Tracing (1440p DXR)
Productivity (score)118

Frame rates measured by Tom's Hardware GPU hierarchy. Geometric mean of 15 games, ultra settings, no upscaling. Ray tracing figures are DXR-enabled at 1440p. A dash means this card was not tested at that resolution. Productivity is a synthetic score, not fps.

Specifications

ArchitecturePascal
GPU ChipGP102
VRAM11GB GDDR5X
Memory Bandwidth484 GB/s
Memory Bus352-bit
Shaders / CUDA Cores3,584
Boost Clock1582 MHz
TDP / Power Draw250W
Process NodeTSMC 16FF+
Ray TracingNo
Release Year2017

3DMark Scores

Steel Nomad2,231

Recommended PSU for GeForce GTX 1080 Ti

600W
Minimum recommended PSU wattage
Based on 250W GPU TDP + system overhead

GTX 1080 Ti performance analysis

Derived from the benchmark and specification figures above, ranked against the 77 current cards in the database.

GTX 1080 Ti percentile ranks across five derived metrics Frames per watt: 0.20 fps/W, 6th percentile of 77 current cards. Frames per $100: 7.2 fps/$100, 4th percentile of 77 current cards. Bandwidth per pixel: 2,615 B/px, 94th percentile of 77 current cards. 4K retention: 59% of 1440p, 45th percentile of 77 current cards Frames per watt 6th · 0.20 fps/W Frames per $100 4th · 7.2 fps/$100 Bandwidth per pixel 94th · 2,615 B/px 4K retention 45th · 59% of 1440p
Percentile rank among 77 current cards, computed from the benchmark and specification data on this page. Bars at or above the 50th percentile are shown in the brand colour.

The GTX 1080 Ti's strongest measured trait is bandwidth per pixel at 2,615 B/px, which puts it in the 94th percentile — that metric describes memory bandwidth available for every pixel it draws at 1440p. Its weakest is frames per $100 at 7.2 fps/$100 (4th percentile). That is a wide spread for a single card: it is specialised rather than balanced, and whether it suits you depends on which of the two you actually load.

Board power against 1440p frame rate, with the GTX 1080 Ti highlighted GTX 1080 Ti draws 250 W for 50.2 fps at 1440p. Cards plotted above the dashed line deliver more frames per watt; cards below deliver fewer. 200 150 100 50 0 0 150 300 450 600 GTX 1080 Ti efficiency line GTX 1080 Ti Board power (W) 1440p average fps
Every current card, power on the horizontal axis and 1440p frame rate on the vertical. The dashed line is the GTX 1080 Ti's own efficiency; anything above it converts watts into frames more effectively.

The GTX 1080 Ti turns a 250W board power budget into 50.2 fps at 1440p, or 0.20 fps/W against a pool median of 0.32 fps/W. Power, not transistor count, is the binding constraint on a modern GPU — Dennard scaling stopped holding around 2005, and Esmaeilzadeh and colleagues showed at ISCA 2011 that the fraction of a chip that can be powered at full speed shrinks with every node (“dark silicon”). Frames per watt is the shortest honest summary of what an architecture is doing with that budget.

Every rendered pixel has to be fed from memory. At 1440p the GTX 1080 Ti has 2,615 B/px of memory bandwidth available per pixel it draws, against a median of 1,808 B/px comfortably fed, so its shaders are the limit before its memory is. This is the roofline model applied to a game frame: Williams, Waterman and Patterson (Communications of the ACM, 2009) showed that any workload runs into either a compute ceiling or a memory-bandwidth ceiling, and that the ratio of the two is what decides which one you hit.

The GTX 1080 Ti ranks #49 in 3DMark Steel Nomad but #58 on the 1440p game average — 9 places lower in real games than the synthetic implies. Steel Nomad is a 4K, non-ray-traced pass with heavy async compute and no upscaling, so it rewards raw shader and bandwidth throughput and ignores driver overhead, geometry front-end limits, and everything a game engine does outside the compute path. A gap this size means the hardware on paper is ahead of what the driver and engine mix currently extract from it.

GTX 1080 Ti frame rate by resolution against its performance class 1080p: GTX 1080 Ti 66 fps, class median 72 fps. 1440p: GTX 1080 Ti 50 fps, class median 53 fps. 4K: GTX 1080 Ti 30 fps, class median 29 fps 1080p 66 fps 72 fps 1440p 50 fps 53 fps 4K 30 fps 29 fps
GTX 1080 Ti in the brand colour, grey is the median of the 9 other cards within 10% of its 1440p frame rate. A card that falls faster than its class at 4K is running short of bandwidth or memory, not shader throughput.

On memory capacity, the GTX 1080 Ti carries 11GB against a median of 8GB across the 9 other cards within 10% of its 1440p frame rate. It carries more memory than its performance class typically ships with, which mostly matters for high-resolution textures, local AI models, and viewport-heavy creative work rather than frame rate.

Method: percentiles are computed over the 77 non-legacy cards with a 1440p figure. Frame rates come from Tom's Hardware GPU hierarchy; specifications from manufacturer datasheets. Theoretical FP32 TFLOPS is deliberately not used as a cross-vendor comparison — RDNA 3 and 4 dual-issue FP32 doubles the paper figure without doubling game performance, and AMD itself declined to count it as extra shaders. The measured Steel Nomad score is used as the compute proxy instead. GPURanker does not run its own benchmarks.

Is the GeForce GTX 1080 Ti Worth It in 2026?

At $699, the NVIDIA GeForce GTX 1080 Ti scores 14/100 on our Value Scale. There may be better options in this price range offering more performance per dollar.

You'll need at least a 600W PSU to run this card reliably (250W TDP).

NVIDIA GeForce GTX 1080 Ti Overview

The NVIDIA GeForce GTX 1080 Ti is a budget graphics card built on NVIDIA's Pascal architecture using a TSMC 16FF+ manufacturing process. With 11GB of GDDR5X memory on a 352-bit bus, it targets 1080p ultra gaming.

At its current best price of $699, the NVIDIA GeForce GTX 1080 Ti earns a Value Score of 14/100 — rated as "Poor Value". Its 250W TDP makes it moderately power-hungry.