PowerColor Red Dragon Radeon RX 590 PowerColor Red Dragon Radeon RX 590
XFX Radeon RX 590 Fatboy XFX Radeon RX 590 Fatboy
VS

Comparision PowerColor Red Dragon Radeon RX 590 vs XFX Radeon RX 590 Fatboy

XFX Radeon RX 590 Fatboy

WINNER
XFX Radeon RX 590 Fatboy

Rating: 31 points
Grade
PowerColor Red Dragon Radeon RX 590
XFX Radeon RX 590 Fatboy
Performance
6
6
Memory
4
4
General information
7
7
Functions
8
8
Benchmark tests
3
3
Ports
4
4

Top specs and features

Passmark score

PowerColor Red Dragon Radeon RX 590: 9207 XFX Radeon RX 590 Fatboy: 9264

3DMark Cloud Gate GPU benchmark score

PowerColor Red Dragon Radeon RX 590: 83132 XFX Radeon RX 590 Fatboy: 83642

3DMark Fire Strike Score

PowerColor Red Dragon Radeon RX 590: 13817 XFX Radeon RX 590 Fatboy: 13902

3DMark Fire Strike Graphics test score

PowerColor Red Dragon Radeon RX 590: 16099 XFX Radeon RX 590 Fatboy: 16198

3DMark 11 Performance GPU benchmark score

PowerColor Red Dragon Radeon RX 590: 22369 XFX Radeon RX 590 Fatboy: 22507

Description

The PowerColor Red Dragon Radeon RX 590 video card is based on the Polaris architecture. XFX Radeon RX 590 Fatboy on the Polaris architecture. The first has 5700 million transistors. The second is 5700 million. PowerColor Red Dragon Radeon RX 590 has a transistor size of 12 nm versus 12.

The base clock speed of the first video card is 1469 MHz versus 1469 MHz for the second.

Let's move on to memory. PowerColor Red Dragon Radeon RX 590 has 8 GB. XFX Radeon RX 590 Fatboy has 8 GB installed. The bandwidth of the first video card is 256 Gb/s versus 256 Gb/s of the second.

FLOPS of PowerColor Red Dragon Radeon RX 590 is 6.81. At XFX Radeon RX 590 Fatboy 6.98.

Goes to tests in benchmarks. In the Passmark benchmark, PowerColor Red Dragon Radeon RX 590 scored 9207 points. And here is the second card 9264 points. In 3DMark, the first model scored 16099 points. Second 16198 points.

In terms of interfaces. The first video card is connected using PCIe 3.0 x16. The second is PCIe 3.0 x16. Video card PowerColor Red Dragon Radeon RX 590 has Directx version 12. Video card XFX Radeon RX 590 Fatboy -- Directx version - 12.

Regarding cooling, PowerColor Red Dragon Radeon RX 590 has 175W heat dissipation requirements versus 175W for XFX Radeon RX 590 Fatboy.

Why XFX Radeon RX 590 Fatboy is better than PowerColor Red Dragon Radeon RX 590

PowerColor Red Dragon Radeon RX 590 vs XFX Radeon RX 590 Fatboy: highlights

PowerColor Red Dragon Radeon RX 590
PowerColor Red Dragon Radeon RX 590
XFX Radeon RX 590 Fatboy
XFX Radeon RX 590 Fatboy
Performance
GPU base clock speed
The graphics processing unit (GPU) has a high clock speed.
1469 MHz
max 2457
Average: 1124.9 MHz
1469 MHz
max 2457
Average: 1124.9 MHz
Gpu memory speed
This is an important aspect for calculating memory bandwidth.
2000 MHz
max 16000
Average: 1468 MHz
2000 MHz
max 16000
Average: 1468 MHz
FLOPS
Measuring the processing power of a processor is called FLOPS.
6.81 TFLOPS
max 1142.32
Average: 53 TFLOPS
6.98 TFLOPS
max 1142.32
Average: 53 TFLOPS
RAM
RAM in video cards (also known as video memory or VRAM) is a special type of memory used by a video card to store graphics data. It serves as a temporary buffer for textures, shaders, geometry, and other graphics resources that are needed to display images on the screen. More RAM allows the graphics card to work with more data and handle more complex graphic scenes with high resolution and detail. Show more
8 GB
max 128
Average: 4.6 GB
8 GB
max 128
Average: 4.6 GB
Number of PCIe lanes
The number of PCIe lanes in video cards determines the speed and bandwidth of data transfer between the video card and other computer components through the PCIe interface. The more PCIe lanes a video card has, the more bandwidth and ability to communicate with other computer components. Show more
16
max 16
Average:
16
max 16
Average:
Pixel rendering speed
The higher the pixel rendering speed, the smoother and more realistic the display of graphics and the movement of objects on the screen will be.
49.44 GTexel/s    
max 563
Average: 94.3 GTexel/s    
49.44 GTexel/s    
max 563
Average: 94.3 GTexel/s    
TMUs
Responsible for texturing objects in 3D graphics. TMU provides textures to the surfaces of objects, which gives them a realistic look and detail. The number of TMUs in a video card determines its ability to process textures. The more TMUs, the more textures can be processed at the same time, which contributes to better texturing of objects and increases the realism of graphics. Show more
144
max 880
Average: 140.1
144
max 880
Average: 140.1
ROPs
Responsible for the final processing of pixels and their display on the screen. ROPs perform various operations on pixels, such as blending colors, applying transparency, and writing to the framebuffer. The number of ROPs in a video card affects its ability to process and display graphics. The more ROPs, the more pixels and image fragments can be processed and displayed on the screen at the same time. A higher number of ROPs generally results in faster and more efficient graphics rendering and better performance in games and graphics applications. Show more
32
max 256
Average: 56.8
32
max 256
Average: 56.8
Number of shader blocks
The number of shader units in video cards refers to the number of parallel processors that perform computational operations in the GPU. The more shader units in the video card, the more computing resources are available for processing graphics tasks. Show more
2304
max 17408
Average:
2304
max 17408
Average:
Turbo gpu
If the GPU speed has dropped below its limit, then to improve performance, it can go to a high clock speed.
1545 MHz
max 2903
Average: 1514 MHz
1545 MHz
max 2903
Average: 1514 MHz
Texture size
A certain number of textured pixels are displayed on the screen every second.
222.5 GTexels/s
max 756.8
Average: 145.4 GTexels/s
222.5 GTexels/s
max 756.8
Average: 145.4 GTexels/s
architecture name
Polaris
Polaris
GPU name
Polaris 30
Polaris 30
Memory
Memory bandwidth
This is the rate at which the device stores or reads information.
256 GB/s
max 2656
Average: 257.8 GB/s
256 GB/s
max 2656
Average: 257.8 GB/s
Effective memory speed
The effective memory clock is calculated from the size and transfer rate of the memory information. The performance of the device in applications depends on the clock frequency. The higher it is, the better. Show more
8000 MHz
max 19500
Average: 6984.5 MHz
8000 MHz
max 19500
Average: 6984.5 MHz
RAM
RAM in video cards (also known as video memory or VRAM) is a special type of memory used by a video card to store graphics data. It serves as a temporary buffer for textures, shaders, geometry, and other graphics resources that are needed to display images on the screen. More RAM allows the graphics card to work with more data and handle more complex graphic scenes with high resolution and detail. Show more
8 GB
max 128
Average: 4.6 GB
8 GB
max 128
Average: 4.6 GB
GDDR memory versions
Latest versions of GDDR memory provide high data transfer rates to improve overall performance
5
max 6
Average: 4.9
5
max 6
Average: 4.9
Memory bus width
A wide memory bus means that it can transfer more information in one cycle. This property affects memory performance as well as the overall performance of the device's graphics card. Show more
256 bit
max 8192
Average: 283.9 bit
256 bit
max 8192
Average: 283.9 bit
General information
Crystal size
The physical dimensions of the chip on which the transistors, microcircuits and other components necessary for the operation of the video card are located. The larger the die size, the more space the GPU takes up on the graphics card. Larger die sizes can provide more computing resources such as CUDA cores or tensor cores, which can result in increased performance and graphics processing capabilities. Show more
232
max 826
Average: 356.7
232
max 826
Average: 356.7
Generation
A new generation of graphics card usually includes improved architecture, higher performance, more efficient use of power, improved graphics capabilities, and new features. Show more
Polaris
Polaris
Manufacturer
GlobalFoundries
GlobalFoundries
Power Consumption (TDP)
Heat Dissipation Requirements (TDP) is the maximum possible amount of energy dissipated by the cooling system. The lower the TDP, the less power will be consumed Show more
175 W
Average: 160 W
175 W
Average: 160 W
Technological process
The small size of the semiconductors means this is a new generation chip.
12 nm
Average: 34.7 nm
12 nm
Average: 34.7 nm
Number of transistors
The higher their number, the more processor power this indicates.
5700 million
max 80000
Average: 7150 million
5700 million
max 80000
Average: 7150 million
PCIe connection interface
A considerable speed of the expansion card used to connect the computer to the peripherals is provided. The updated versions offer impressive bandwidth and high performance. Show more
3
max 4
Average: 3
3
max 4
Average: 3
Width
255 mm
max 421.7
Average: 192.1 mm
270 mm
max 421.7
Average: 192.1 mm
Height
143 mm
max 620
Average: 89.6 mm
124 mm
max 620
Average: 89.6 mm
Purpose
Desktop
Desktop
Functions
OpenGL Version
OpenGL provides access to the graphics card's hardware capabilities for displaying 2D and 3D graphics objects. New versions of OpenGL may include support for new graphical effects, performance optimizations, bug fixes, and other improvements. Show more
4.5
max 4.6
Average:
4.6
max 4.6
Average:
DirectX
Used in demanding games, providing improved graphics
12
max 12.2
Average: 11.4
12
max 12.2
Average: 11.4
Supports FreeSync technology
FreeSync technology in AMD graphics cards is an adaptive frame synchronization that reduces or eliminates tearing and stuttering (jerking) during gameplay. Show more
Available
Available
Shader model version
The higher the version of the shader model in the video card, the more functions and possibilities are available for programming graphic effects.
6.4
max 6.7
Average: 5.9
6.4
max 6.7
Average: 5.9
Benchmark tests
Passmark score
The Passmark Video Card Test is a program for measuring and comparing the performance of a graphics system. It conducts various tests and calculations to evaluate the speed and performance of a graphics card in various areas. Show more
9207
max 30117
Average: 7628.6
9264
max 30117
Average: 7628.6
3DMark Cloud Gate GPU benchmark score
83132
max 196940
Average: 80042.3
83642
max 196940
Average: 80042.3
3DMark Fire Strike Score
13817
max 39424
Average: 12463
13902
max 39424
Average: 12463
3DMark Fire Strike Graphics test score
It measures and compares the ability of a graphics card to handle high-resolution 3D graphics with various graphical effects. The Fire Strike Graphics test includes complex scenes, lighting, shadows, particles, reflections, and other graphical effects to evaluate the graphics card's performance in gaming and other demanding graphics scenarios. Show more
16099
max 51062
Average: 11859.1
16198
max 51062
Average: 11859.1
3DMark 11 Performance GPU benchmark score
22369
max 59675
Average: 18799.9
22507
max 59675
Average: 18799.9
3DMark Vantage Performance test score
46393
max 97329
Average: 37830.6
46678
max 97329
Average: 37830.6
3DMark Ice Storm GPU benchmark score
380794
max 539757
Average: 372425.7
383132
max 539757
Average: 372425.7
SPECviewperf 12 test score - Showcase
69
max 180
Average: 108.4
70
max 180
Average: 108.4
SPECviewperf 12 test score - 3ds Max
112
max 275
Average: 169.8
116
max 275
Average: 169.8
Ports
Has hdmi output
HDMI output allows you to connect devices with HDMI or mini HDMI ports. They can send video and audio to the display.
Available
Available
HDMI version
The latest version provides a wide signal transmission channel due to the increased number of audio channels, frames per second, etc.
2
max 2.1
Average: 1.9
2
max 2.1
Average: 1.9
DisplayPort
Allows you to connect to a display using DisplayPort
3
max 4
Average: 2.2
3
max 4
Average: 2.2
DVI Outputs
Allows you to connect to a display using DVI
1
max 3
Average: 1.4
1
max 3
Average: 1.4
Number of HDMI connectors
The more their number, the more devices can be connected at the same time (for example, game / TV set-top boxes)
1
max 3
Average: 1.1
1
max 3
Average: 1.1
Interface
PCIe 3.0 x16
PCIe 3.0 x16
HDMI
A digital interface that is used to transmit high-resolution audio and video signals.
Available
Available

FAQ

How does the PowerColor Red Dragon Radeon RX 590 processor perform in benchmarks?

Passmark PowerColor Red Dragon Radeon RX 590 scored 9207 points. The second video card scored 9264 points in Passmark.

What FLOPS do video cards have?

FLOPS PowerColor Red Dragon Radeon RX 590 is 6.81 TFLOPS. But the second video card has FLOPS equal to 6.98 TFLOPS.

What power consumption?

PowerColor Red Dragon Radeon RX 590 175 Watt. XFX Radeon RX 590 Fatboy 175 Watt.

How fast are PowerColor Red Dragon Radeon RX 590 and XFX Radeon RX 590 Fatboy?

PowerColor Red Dragon Radeon RX 590 operates at 1469 MHz. In this case, the maximum frequency reaches 1545 MHz. The clock base frequency of XFX Radeon RX 590 Fatboy reaches 1469 MHz. In turbo mode it reaches 1545 MHz.

What kind of memory do graphics cards have?

PowerColor Red Dragon Radeon RX 590 supports GDDR5. Installed 8 GB of RAM. Throughput reaches 256 GB/s. XFX Radeon RX 590 Fatboy works with GDDR5. The second one has 8 GB of RAM installed. Its bandwidth is 256 GB/s.

How many HDMI connectors do they have?

PowerColor Red Dragon Radeon RX 590 has 1 HDMI outputs. XFX Radeon RX 590 Fatboy is equipped with 1 HDMI outputs.

What power connectors are used?

PowerColor Red Dragon Radeon RX 590 uses There is no data. XFX Radeon RX 590 Fatboy is equipped with There is no data HDMI outputs.

What architecture are video cards based on?

PowerColor Red Dragon Radeon RX 590 is built on Polaris. XFX Radeon RX 590 Fatboy uses the Polaris architecture.

What graphics processor is being used?

PowerColor Red Dragon Radeon RX 590 is equipped with Polaris 30. XFX Radeon RX 590 Fatboy is set to Polaris 30.

How many PCIe lanes

The first graphics card has 16 PCIe lanes. And the PCIe version is 3. XFX Radeon RX 590 Fatboy 16 PCIe lanes. PCIe version 3.

How many transistors?

PowerColor Red Dragon Radeon RX 590 has 5700 million transistors. XFX Radeon RX 590 Fatboy has 5700 million transistors