AMD Radeon RX 7900 XTX and XT Review: Shooting for the Top

Tom's Hardware Verdict

The RX 7900 XTX and XT sport AMD's latest and greatest RDNA 3 architecture, with impressive rasterization performance. Ray tracing remains a second class citizen, and while faster than the previous generation, AMD can't touch Nvidia's in DXR games — and that's not even counting DLSS, which continues to see widespread use.

Pros

  • +

    Fastest and second fastest AMD GPUs

  • +

    Excellent efficiency gains

  • +

    Innovative chiplet design

Cons

  • -

    Chiplets don't actually improve performance (and may hurt it)

  • -

    7900 XT costs too much relative to the 7900 XTX

  • -

    Weaker ray tracing and AI performance

Why you can trust Tom's Hardware Our expert reviewers spend hours testing and comparing products and services so you can choose the best for you. Find out more about how we test .

We've tested the AMD Radeon RX 7900 XTX and Radeon RX 7900 XT, and we have the full results ready for your enjoyment — one day before the official launch party. AMD's latest and greatest RDNA 3 architecture and the RX 7900-Series graphics cards are all set to party with Nvidia's Ada Lovelace architecture and the GeForce RTX 4080 as they vie for a spot on our list of the best graphics cards .

One thing AMD won't do: Take down the GeForce RTX 4090 that sits at the top of our GPU benchmarks hierarchy . AMD has said that it doesn't feel the need to compete directly against a $1,600 (or more!) graphics card, but several senior people at AMD also indicate that Nvidia's AD102 chip was "bigger than expected" and basically out of reach.

What may also be out of reach for many of our readers are the new AMD RX 7900-series cards. While they cost less than Nvidia's RTX 4090 and 4080, with prices starting at $899 for the slower — and frankly less desirable — RX 7900 XT, these are clearly not going after the mainstream gamer market. That task will likely fall to the future Navi 32 / RX 7700-series cards (or maybe 7800-series). For now, if you want AMD's fastest ever consumer graphics card, be prepared to fork over a wad of cash.

We've already done an in-depth look at the RDNA 3 architecture and a preview of the cards, so start with those articles if you want to get up to speed. With actual hardware in hand and a bevy of benchmarks under our belts, that's the main event today. But we do have some additional thoughts, and we'll start as always with the specifications of AMD's latest cards, with Nvidia and some previous generation GPUs for comparison.

Swipe to scroll horizontally
AMD and Nvidia Ada GPU Specifications
Graphics CardRX 7900 XTXRX 7900 XTRX 6950 XTRTX 4090RTX 4080RTX 3090 TiRTX 3080 Ti
ArchitectureNavi 31Navi 31Navi 21AD102AD103GA102GA102
Process TechnologyTSMC N5 + N6TSMC N5 + N6TSMC N7TSMC 4NTSMC 4NSamsung 8NSamsung 8N
Transistors (Billion)45.6 + 6x 2.0545.6 + 5x 2.0526.876.345.928.328.3
Die size (mm^2)300 + 222300 + 185519608.4378.6628.4628.4
CUs / SMs968480128768480
GPU Shaders122881075251201638497281075210240
AI / Tensor Cores19216880512304336320
Ray Tracing Units968480128768480
Boost Clock (MHz)2500240023102520250518601665
VRAM Speed (Gbps)2020182122.42119
VRAM (GB)24201624162412
VRAM Bus Width384320256384256384384
L2 Cache9680128726466
ROPs192192128176112112112
TMUs384336320512304336320
TFLOPS FP3261.451.623.782.648.74034.1
TFLOPS FP16 (FP8/INT8)123 (123)103 (103)47.4661 (1321)390 (780)160 (320)136 (273)
Bandwidth (GBps)96080057610087171008912
TBP (watts)355315335450320450350
Launch DateDec-22Dec-22May-22Oct-22Nov-22Mar-22Jun-21
Launch Price$999$899$1,099$1,599$1,199$1,999$1,199

There's a lot to unpack in the specs, but we'll mostly focus on AMD's new chips. The RX 7900 XTX has the fully enabled Navi 31 GCD (Graphics Compute Die) along with six MCDs (Memory Cache Dies), while the 7900 XT disables a dozen compute units (CUs) in the GCD and one of the MCDs is fused off. Technically there are still six MCD chips present, to ensure even mounting pressure from the heatsink, but one of them is fused off (it could be a non-functional MCD).

The GPU shader counts are where things start to get a bit different from other architectures. AMD says there are still 64 Streaming Processors (SP) per CU, but there are now four SIMD32 vector units per CU as well — two of which can only process FP32 or Matrix operations and not INT32. We're going to call each of these a GPU shader, which goes along with AMD's peak throughput data of 61.4 teraflops FP32 on the 7900 XTX. This is similar to what Nvidia did with Ampere (and now Ada), so just know that the official SP count is no longer the same as the potential GPU shaders count.

We've also received some clarification on the "AI Accelerators" that are part of the RDNA 3 architecture. The short summary is that they repurpose the SIMD32 units to do matrix operations instead of FP32 (or FP16). They also support BF16 (16-bit brain-float) formats and INT8 alongside FP16. All three of those (FP16/BF16/INT8) have the same peak throughput that's double the FP32 single-precision floating-point throughput.

What's the difference between the previous half-precision FP16 shader support and the AI Accelerator FP16 support? Basically, it comes down to optimizing throughput and reducing power consumption, with some new instructions that are supported in matrix mode. Obviously, the peak FP16/BF16 rates are significantly lower than what the RTX 4080 and 4090 can deliver. Finding software that specifically uses the AI Accelerator on AMD's RDNA 2 / RDNA 3 GPUs is also proving difficult right now, so we may need to revisit the subject at a later date.

(Image credit: AMD)

Of course, one of the big deals with RDNA 3 and Navi 31 is the move to a chiplet architecture. Separating the memory and cache from the rest of the GPU functionality helps to bring prices down, or at least it reduces AMD's costs. It could also open the door to higher performance future designs. For now, however, it's important to note that all indications are that the use of chiplets does represent something of a performance compromise.

Not to jump ahead here, but if you look at the paper specs and see 160% more theoretical compute and 67% more memory bandwidth compared to the RX 6950 XT, clearly that doesn't really match up with AMD's own benchmarks that suggest more like a 50–80 percent improvement in individual games (around 60% on average). We feel some of that comes from additional overhead and latency associated with the use of chiplets. In other words, RDNA 3 chiplets feel a bit more like Zen 2 chiplets rather than, say, Zen 3 or Zen 4 chiplets where AMD's Ryzen CPUs really hit their stride.

There's another minor change from the previously published specifications on the RX 7900 XT. When first announced, AMD listed a 300W TBP (Total Board Power) rating, but it has since increased that to 315W. It says it found there was a decent increase in performance for a relatively minor bump in power use.

Finally, let's talk pricing and potential performance. We weren't particularly happy with Nvidia's "step down" RTX 4080 ushering in higher prices on the xx80 model GPUs, but AMD's RX 7900 XT is arguably just as bad. On paper, it has 17% less memory and memory bandwidth, and 16% less computational performance. That's fine on its own, but the price savings are only 10%. In other words, just like the RTX 4090 may actually be the better "deal" from Nvidia, we think most people eyeing the RX 7900 XT will be better off spending an extra $100 for the XTX model.

Current page: AMD Radeon RX 7900 XTX and RX 7900 XT Review

Next Page AMD RX 7900 XTX and XT Design

Jarred Walton is a senior editor at Tom's Hardware focusing on everything GPU. He has been working as a tech journalist since 2004, writing for AnandTech, Maximum PC, and PC Gamer. From the first S3 Virge '3D decelerators' to today's GPUs, Jarred keeps up with all the latest graphics trends and is the one to ask about game performance.