1660 vs 5500xt: AMD RX 5500-XT vs Nvidia GTX 1660

AMD Radeon RX 5500 XT vs. Nvidia GeForce GTX 1660: The Battle for Mainstream Gaming Supremacy

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AMD recently launched the Radeon RX 5500 XT, which aims to capture the attention of mainstream gamers with a mid-range budget to spend on a GPU. Following our review, we already know it’s not as powerful as Nvidia’s GeForce GTX 1660, but can it offer enough value to make up for what it lacks in performance? Let’s find out.

It’s an exciting time to be in the market for a new GPU, with several new products on the market in the last 12 months. Last year at this time, gamers were eagerly awaiting the reveal of AMD’s Navi architecture and the new line of GPUs that would reinvigorate the company’s Radeon Graphics brand. And Nvidia had not yet launched the RT and Tensor core-free 16-series Turing GPUs for the mid-range market.  

Today, we’ve got myriad options from team red, including the recently launched Radeon RX 5500 XT, which introduces Navi to the high-volume segment of the market, in the $200 price range. AMD is no stranger to this price point. For several generations, the Radeon team has focused its attention on mainstream cards like the RX 480, 580, and 590 (all based on the same Polaris architecture). 

However, Nvidia’s GeForce GTX 1660, which hit store shelves in March of 2019, is a strong contender for your gaming money. That GPU’s successor, the GTX 1660 Super, is somewhat more expensive ($230+), but the original model is still readily available and often sells for $210 or less. 

Now the question becomes, which card should you choose if you’re in the market for a new GPU for roughly $200. We compared the features and benefits of the Radeon RX 5500 XT and the GeForce GTX 1660 in four categories — featured technology, game performance, power consumption & heat output and Value — to help you decide which of these two cards is right for you.

Featured Technology 

AMD’s NAVI 14 XTX GPU features the same number of cores (1408) as the version of Nvidia’s Turing TU116-300-A1 chip found in the GTX 1660. Although it operates at a higher frequency and produces higher peak floating-point performance (5.2 TFLOPS vs the GTX 1660’s 5 TFLOPS). 

AMD’s NAVI 14 XTX features 6.4 billion transistors, which is 200 million fewer than the Turing TU116, but AMD crammed its chip into a much smaller package. Thanks to TSMC’s 7nm finFET process, AMD’s GPU fits on a 158 mm² die. Turing GPUs are also manufactured on TSMC’s finFET process, but Nvidia is working with a larger 12nm process. As a result, the TU116-300-A1 is nearly twice the size of NAVI 14 XTX at 284 mm².

The RX 5500 XT also offers faster GDDR6 memory compared to the GTX 1660’s GDDR5 memory modules. Nvidia does provide a larger 192-bit memory bus versus AMD’s 128-bit memory bus configuration, but the faster memory more than makes up for the difference in bus size. Theoretically, the NAVI 14 XTX has 224 GB/s of memory bandwidth to work with, compared to the 192 GB/s that TU116 offers. The Radeon RX 5500 XT is available in 4GB and 8GB configurations. But for this comparison, we’re focusing on the 8GB version. The GeForce GTX 1660 falls right in the middle, with 6GB of graphics memory.

By the numbers, AMD’s RX 5500 XT appears to be the stronger of the two GPUs. It’s manufactured on a smaller, more efficient process, offers a higher base and boost clock speed, and has a higher theoretical performance limit. The higher capacity of faster GDDR6 memory also gives it a significant advantage.

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Gigabyte RX 5500 XT Gaming OC 8G Gigabyte GeForce GTX 1660 OC 6G
Architecture (GPU) RDNA (Navi 14 XTX) Turing (TU116)
ALUs/Stream Processors 1408 1408
Peak FP32 Compute (Based on Typical Boost) 5. 2 TFLOPS 5 TFLOPS
Tensor Cores N/A N/A
RT Cores N/A N/A
Texture Units 88 88
ROPs 32 48
Base Clock Rate 1685 MHz 1530 MHz
Nvidia Boost/AMD Game Rate 1737 MHz 1785 MHz
AMD Boost Rate 1845 MHz N/A
Memory Capacity 8GB GDDR6 6GB GDDR5
Memory Bus 128-bit 192-bit
Memory Bandwidth 224 GB/s 192 GB/s
L2 Cache 2MB 1. 5MB
TDP 130W 120W
Transistor Count 6.4 billion 6.6 billion
Die Size 158 mm² 284 mm²

AMD offers a variety of software features for the Radeon RX 5500 XT. The company’s Radeon Software allows you to monitor your GPU’s temperature, fan speed and voltage, adjust the graphics settings for your games, access performance reports and game states, and update your GPU drivers. The Radeon Software Adrenalin 2020 edition also lets launch games directly from the Radeon Software dashboard. It even offers integrated media capture and game streaming features, including screenshots, video, and instant gif capture as well as compatibility with many popular streaming services such as Twitch, YouTube, Mixer, Facebook and more.

AMD also offers a feature called Game Boost, which monitors your framerate and dynamically adjusts the resolution of your games when it won’t impact the visual experience to maximize performance.  

The Radeon RX 5500 XT also supports a technology called Radeon Anti-Lag, which aims to reduce input lag by managing the queue of work sent to the CPU and ensuring that the CPU can’t get ahead of the GPU. Also, Radeon Image Sharpening combines contrast-adaptive sharpening with GPU upscaling to produce crisper in-game visuals. 

Nvidia’s GeForce Experience software is a reasonable equivalent to AMD’s Radeon Software Adrenalin. It enables you to keep your drivers up to date, offers performance-optimized game setting configurations, and allows you to launch your games from the GeForce Experience dashboard. 

Nvidia’s software supports media capture and game streaming features that integrate with popular streaming platforms. The GeForce GTX 1660 takes full advantage of Nvidia’s NVENC hardware encoder technology , which lowers the CPU overhead associated with software encoding. NVENC allows the CPU to send a single set of instructions to the GPU, which the GPU uses to output to your display and broadcast without impeding performance.

GeForce Experience also includes Nvidia’s advanced screenshot capture technology, called Nvidia Ansel, which allows you to capture extremely high-resolution (up to 33x 1080p) images of supported games. Ansel also offers free-camera capture, which allows you to snap angles that aren’t possible in-game, and the ability to capture 360-degree images. Ansel even supports RAW EXR output, which allows you to make changes to the image in post-processing, such as create HDR-enhanced images. 

Both AMD and Nvidia offer support for adaptive display technology. The Radeon RX 5500 XT supports both FreeSync and FreeSync 2, whereas the GeForce 1660 is compatible with Nvidia’s more-expensive G-Sync adaptive display technology. Nvidia also supports a select few FreeSync displays. And as for performance, both AMD and Nvidia offer dynamic clock speed boosting technologies that automatically overclock your GPU to maximize the capabilities of your hardware configuration.

Winner: Tie. Both AMD and Nvidia offer compelling feature sets for their budget-minded options. Each card supports automated game optimization, game streaming, and driver update software. And they both support performance optimization features that maximize your gameplay experience.

Gaming Performance

We tested 11 relatively demanding games on both GPUs with maximum and medium settings enabled. In The Division 2, Gears of War 5, Strange Brigade, Far Cry 5, Shadow of the Tomb Raider, Final Fantasy XIV, Forza Horizon 4 and Battlefield V both cards managed to drive 60 fps average gameplay with the graphics settings maxed right out. 

More demanding titles such as Borderlands 3 and Metro: Exodus, we had to drop the settings to medium to achieve the coveted bare minimum of 60 fps. Ghost Recon: Breakpoint was also very demanding, and our Radeon was unable to crest 50 fps at max settings. However, the GTX 1660 fell just a sliver short with an average framerate of 58. 7 fps on max settings. 

Both cards produce acceptable performance for 1080p gaming, but the GeForce outshined the Radeon by a small margin in all but two of our tests (at medium settings), but the two that AMD won were by less than a 1% margin. The GTX 1660 often held a 5% or better lead over the RX 5500 XT in our max settings tests. 

Winner: Nvidia. Despite having the superior on-paper specifications and equivalent software features, in a competition of might, the GTX 1660 outperformed the RX 5500 XT in almost every test we threw at these two cards. Nvidia’s configuration appears much more capable of handling games with maximum graphics settings enabled than AMD’s. Strangely, the RX 5500 XT is a stronger competitor with medium settings, but why would you settle for medium if you don’t need to? 

Power Consumption and Heat Output 

On the budget end of the GPU market, power consumption shouldn’t really be much of concern. None of the GPUs of this calibre draw anywhere near enough power to make a significant difference in your system’s configuration. Both AMD and Nvidia recommend at least a 450-watt power supply for their respective cards.

AMD’s Radeon RX 5500 XT features a TDP rating of 130w, whereas Nvidia’s GeForce GTX 1660 includes a TDP rating of 120w. In practice, the Radeon GPUs actually draw quite a bit less than 130 watts, except under extreme loads. We tested two examples of the RX 5500 XT, a 4GB Sapphire and an 8GB Gigabyte card, and we found that, in-game, the AMD card will average close to 100w. 

The Gigabyte GeForce GTX 1660 sample that we tested in March 2019 needed an average of 126 watts, and peaked at 134 watts, and the Zotac model that we used in the Radeon RX 5500 XT review pulled between 110 and 120 watts in our Metro: Exodus power test. 

Interestingly, the Zotac GeForce GTX 1660 peaked around 100w in our Furmark stress test, whereas the Gigabyte sample drew around 130w for this test. Both the Gigabyte and Sapphire Radeon cards topped 120w in this test, with the Sapphire model touching 136w at its peak.  

You likely won’t be concerned with the power requirements for these cards, but higher power draw does equate to higher heat output, which is likely of higher concern to you. 

Our Gigabyte RX 5500 XT OC 8G proved to be one of the coolest-running GPUs that we’ve seen in this segment. Following three passes of our Metro: Exodus test, the data showed that the GPU never exceeded 63C. Our tests with Gigabyte’s GeForce GTX 1660 OC 6G showed that it peaked at a 68C. It’s also worth noting that the fans on the GeForce were spinning at 2000 rpm, and the Radeon card spun at a leisurely 1800 rpm.

Winner: AMD. The power requirements for either of these cards is low enough to be negligible. However, the low heat output from the Radeon RX 5500 XT, likely aided by its smaller 7nm process, gives AMD a leg up in this category.

Value Proposition 

Comparing the value of the Radeon RX 5500 XT 8GB to the GeForce GTX 1660 is a somewhat challenging task. If you compare these cards at the same price, the GeForce GTX 1660 is the clear winner.  

Nvidia’s offering outperforms the competition handily in gaming tests, which if we’re honest is kind of the point of a graphics card—especially in the $200 range. However, AMD’s option still delivers acceptable performance and costs a few dollars less, which somewhat evens that playing field. Where the Radeon maybe 5% to 10% cheaper, it’s also 5% to 10% slower in many cases.

Winner: Nvidia. We can’t call the Radeon RX 5500 XT a bad deal. It’s far and away a better card than you would have bought for the same price a year ago. However, for just a few dollars more you can get better gaming performance from a GeForce GTX 1660. 

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Round Nvidia GeForce GTX 1660 6GB AMD Radeon RX 5500 XT 8GB
Featured Technology
Gaming Performance Row 1 — Cell 2
Power Consumption Row 2 — Cell 1
Value Proposition Row 3 — Cell 2
Total 3 2

What a difference a year can make. The last time we did a showdown of the mid-range GPUs, we put the Radeon RX 590 toe to toe with the GeForce GTX 1060 and AMD’s card was the definitive winner. This time around, the tables have turned and Nvidia has captured the mid-tier crown back from AMD. 

But pricing is close and can always change. So if you’re reading this in the weeks and months after first publication (in mid-January 2020), make sure to check your favorite online store to see if the value balance has shifted — or if something better has come along. Like most areas of PC tech, price cuts and new products are always coming along to change the battle for your hard-earned component dollars.

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 Kevin Carbotte is a contributing writer for Tom’s Hardware who primarily covers VR and AR hardware. He has been writing for us for more than four years.  

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AMD Radeon RX 5500 XT vs Nvidia GeForce GTX 1660: What is the difference?

55points

AMD Radeon RX 5500 XT

50points

Nvidia GeForce GTX 1660

Comparison winner

vs

54 facts in comparison

AMD Radeon RX 5500 XT

Nvidia GeForce GTX 1660

Why is AMD Radeon RX 5500 XT better than Nvidia GeForce GTX 1660?

  • 101MHz faster GPU clock speed?
    1607MHzvs1506MHz
  • 33.33% more VRAM?
    8GBvs6GB
  • 5996MHz higher effective memory clock speed?
    14000MHzvs8004MHz
  • 32GB/s more memory bandwidth?
    224GB/svs192GB/s
  • 137MHz faster GPU turbo speed?
    1845MHzvs1708MHz
  • 0. 8 newer version of OpenCL?
    2vs1.2
  • 5nm smaller semiconductor size?
    7nmvs12nm
  • 1 higher version of GDDR memory?
    6vs5

Why is Nvidia GeForce GTX 1660 better than AMD Radeon RX 5500 XT?

  • 26.68 GPixel/s higher pixel rate?
    85.68 GPixel/svs59 GPixel/s
  • 10W lower TDP?
    120Wvs130W
  • 251MHz faster memory clock speed?
    2001MHzvs1750MHz
  • 64bit wider memory bus width?
    192bitvs128bit
  • 6°C lower load GPU temperature?
    67°Cvs73°C
  • 16 more render output units (ROPs)?
    48vs32
  • 3°C lower idle GPU temperature?
    30°Cvs33°C
  • 1 more DVI outputs?
    1vs0

Which are the most popular comparisons?

AMD Radeon RX 5500 XT

vs

AMD Radeon RX 580

Nvidia GeForce GTX 1660

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AMD Radeon RX 580

AMD Radeon RX 5500 XT

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Nvidia Geforce GTX 1660 Super

Nvidia GeForce GTX 1660

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Nvidia GeForce RTX 2060

AMD Radeon RX 5500 XT

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Nvidia GeForce RTX 2060

Nvidia GeForce GTX 1660

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Nvidia GeForce GTX 1050

AMD Radeon RX 5500 XT

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Asus Phoenix GeForce GTX 1060 6GB

Nvidia GeForce GTX 1660

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Nvidia GeForce RTX 3050 Laptop

AMD Radeon RX 5500 XT

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Nvidia GeForce RTX 3060

Nvidia GeForce GTX 1660

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Nvidia GeForce GTX 1650

AMD Radeon RX 5500 XT

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Nvidia GeForce RTX 2060 Super

Nvidia GeForce GTX 1660

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Nvidia GeForce RTX 3050

AMD Radeon RX 5500 XT

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MSI Radeon RX 580

Nvidia GeForce GTX 1660

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Nvidia GeForce GTX 1070

AMD Radeon RX 5500 XT

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Nvidia GeForce GTX 1660 Ti

Nvidia GeForce GTX 1660

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Nvidia GeForce GTX 1060

AMD Radeon RX 5500 XT

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MSI GeForce GTX 1050 Ti GAMING X

Nvidia GeForce GTX 1660

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AMD Radeon RX 570

Price comparison

User reviews

Overall Rating

AMD Radeon RX 5500 XT

2 User reviews

AMD Radeon RX 5500 XT

5. 5/10

2 User reviews

Nvidia GeForce GTX 1660

3 User reviews

Nvidia GeForce GTX 1660

9.0/10

3 User reviews

Features

Value for money

5.5/10

2 votes

8.7/10

3 votes

Gaming

5.5/10

2 votes

9.3/10

3 votes

Performance

5.5/10

2 votes

9.3/10

3 votes

Quiet operation

5.5/10

2 votes

8.3/10

3 votes

Reliability

5.5/10

2 votes

9.3/10

3 votes

Performance

GPU clock speed

1607MHz

1506MHz

The graphics processing unit (GPU) has a higher clock speed.

GPU turbo

1845MHz

1708MHz

When the GPU is running below its limitations, it can boost to a higher clock speed in order to give increased performance.

pixel rate

59 GPixel/s

85. 68 GPixel/s

The number of pixels that can be rendered to the screen every second.

floating-point performance

5.2 TFLOPS

5.03 TFLOPS

Floating-point performance is a measurement of the raw processing power of the GPU.

texture rate

162.36 GTexels/s

157.1 GTexels/s

The number of textured pixels that can be rendered to the screen every second.

GPU memory speed

1750MHz

2001MHz

The memory clock speed is one aspect that determines the memory bandwidth.

shading units

Shading units (or stream processors) are small processors within the graphics card that are responsible for processing different aspects of the image.

texture mapping units (TMUs)

TMUs take textures and map them to the geometry of a 3D scene. More TMUs will typically mean that texture information is processed faster.

render output units (ROPs)

The ROPs are responsible for some of the final steps of the rendering process, writing the final pixel data to memory and carrying out other tasks such as anti-aliasing to improve the look of graphics.

Memory

effective memory speed

14000MHz

8004MHz

The effective memory clock speed is calculated from the size and data rate of the memory. Higher clock speeds can give increased performance in games and other apps.

maximum memory bandwidth

224GB/s

192GB/s

This is the maximum rate that data can be read from or stored into memory.

VRAM (video RAM) is the dedicated memory of a graphics card. More VRAM generally allows you to run games at higher settings, especially for things like texture resolution.

memory bus width

128bit

192bit

A wider bus width means that it can carry more data per cycle. It is an important factor of memory performance, and therefore the general performance of the graphics card.

version of GDDR memory

Newer versions of GDDR memory offer improvements such as higher transfer rates that give increased performance.

Supports ECC memory

✖AMD Radeon RX 5500 XT

✖Nvidia GeForce GTX 1660

Error-correcting code memory can detect and correct data corruption. It is used when is it essential to avoid corruption, such as scientific computing or when running a server.

Features

DirectX version

DirectX is used in games, with newer versions supporting better graphics.

OpenGL version

OpenGL is used in games, with newer versions supporting better graphics.

OpenCL version

Some apps use OpenCL to apply the power of the graphics processing unit (GPU) for non-graphical computing. Newer versions introduce more functionality and better performance.

Supports multi-display technology

✔AMD Radeon RX 5500 XT

✔Nvidia GeForce GTX 1660

The graphics card supports multi-display technology. This allows you to configure multiple monitors in order to create a more immersive gaming experience, such as having a wider field of view.

load GPU temperature

A lower load temperature means that the card produces less heat and its cooling system performs better.

supports ray tracing

✖AMD Radeon RX 5500 XT

✖Nvidia GeForce GTX 1660

Ray tracing is an advanced light rendering technique that provides more realistic lighting, shadows, and reflections in games.

Supports 3D

✔AMD Radeon RX 5500 XT

✔Nvidia GeForce GTX 1660

Allows you to view in 3D (if you have a 3D display and glasses).

supports DLSS

✖AMD Radeon RX 5500 XT

✖Nvidia GeForce GTX 1660

DLSS (Deep Learning Super Sampling) is an upscaling technology powered by AI. It allows the graphics card to render games at a lower resolution and upscale them to a higher resolution with near-native visual quality and increased performance. DLSS is only available on select games.

PassMark (G3D) result

Unknown. Help us by suggesting a value. (AMD Radeon RX 5500 XT)

This benchmark measures the graphics performance of a video card. Source: PassMark.

Ports

has an HDMI output

✔AMD Radeon RX 5500 XT

✔Nvidia GeForce GTX 1660

Devices with a HDMI or mini HDMI port can transfer high definition video and audio to a display.

HDMI ports

More HDMI ports mean that you can simultaneously connect numerous devices, such as video game consoles and set-top boxes.

HDMI version

HDMI 2.0

HDMI 2.0

Newer versions of HDMI support higher bandwidth, which allows for higher resolutions and frame rates.