Matrox QID Matrox QID
NVIDIA RTX A4500 NVIDIA RTX A4500
VS

Comparision Matrox QID vs NVIDIA RTX A4500

Matrox QID

Matrox QID

Rating: 0 points
NVIDIA RTX A4500

WINNER
NVIDIA RTX A4500

Rating: 68 points
Grade
Matrox QID
NVIDIA RTX A4500
Performance
3
6
Memory
0
3
General information
2
8
Functions
4
8

Top specs and features

GPU base clock speed

Matrox QID: 250 MHz NVIDIA RTX A4500: 1050 MHz

RAM

Matrox QID: 0.256 GB NVIDIA RTX A4500: 20 GB

Memory bandwidth

Matrox QID: 9.6 GB/s NVIDIA RTX A4500: 640 GB/s

Gpu memory speed

Matrox QID: 600 MHz NVIDIA RTX A4500: 2000 MHz

GDDR memory versions

Matrox QID: 1 NVIDIA RTX A4500: 6

Description

The Matrox QID video card is based on the MP architecture. NVIDIA RTX A4500 on the Ampere architecture. The first has There is no data million transistors. The second is 28300 million. Matrox QID has a transistor size of There is no data nm versus 8.

The base clock speed of the first video card is 250 MHz versus 1050 MHz for the second.

Let's move on to memory. Matrox QID has 0.256 GB. NVIDIA RTX A4500 has 0.256 GB installed. The bandwidth of the first video card is 9.6 Gb/s versus 640 Gb/s of the second.

FLOPS of Matrox QID is There is no data. At NVIDIA RTX A4500 24.26.

Goes to tests in benchmarks. In the Passmark benchmark, Matrox QID scored There is no data points. And here is the second card 20388 points. In 3DMark, the first model scored There is no data points. Second There is no data points.

In terms of interfaces. The first video card is connected using There is no data. The second is There is no data. Video card Matrox QID has Directx version 8.1. Video card NVIDIA RTX A4500 -- Directx version - 12.2.

Regarding cooling, Matrox QID has There is no dataW heat dissipation requirements versus 200W for NVIDIA RTX A4500.

Why NVIDIA RTX A4500 is better than Matrox QID

Matrox QID vs NVIDIA RTX A4500: highlights

Matrox QID
Matrox QID
NVIDIA RTX A4500
NVIDIA RTX A4500
Performance
GPU base clock speed
The graphics processing unit (GPU) has a high clock speed.
250 MHz
max 2457
Average: 1124.9 MHz
1050 MHz
max 2457
Average: 1124.9 MHz
Gpu memory speed
This is an important aspect for calculating memory bandwidth.
600 MHz
max 16000
Average: 1468 MHz
2000 MHz
max 16000
Average: 1468 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
0.256 GB
max 128
Average: 4.6 GB
20 GB
max 128
Average: 4.6 GB
architecture name
MP
Ampere
GPU name
MP-A4
GA102
Memory
Memory bandwidth
This is the rate at which the device stores or reads information.
9.6 GB/s
max 2656
Average: 257.8 GB/s
640 GB/s
max 2656
Average: 257.8 GB/s
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
0.256 GB
max 128
Average: 4.6 GB
20 GB
max 128
Average: 4.6 GB
GDDR memory versions
Latest versions of GDDR memory provide high data transfer rates to improve overall performance
1
max 6
Average: 4.9
6
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
128 bit
max 8192
Average: 283.9 bit
320 bit
max 8192
Average: 283.9 bit
General information
Year of issue
2004
max 2023
Average:
2021
max 2023
Average:
Purpose
Desktop
Workstation
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
1.5
max 4.6
Average:
4.6
max 4.6
Average:
DirectX
Used in demanding games, providing improved graphics
8.1
max 12.2
Average: 11.4
12.2
max 12.2
Average: 11.4

FAQ

How does the Matrox QID processor perform in benchmarks?

Passmark Matrox QID scored There is no data points. The second video card scored 20388 points in Passmark.

What FLOPS do video cards have?

FLOPS Matrox QID is There is no data TFLOPS. But the second video card has FLOPS equal to 24.26 TFLOPS.

What power consumption?

Matrox QID There is no data Watt. NVIDIA RTX A4500 200 Watt.

How fast are Matrox QID and NVIDIA RTX A4500?

Matrox QID operates at 250 MHz. In this case, the maximum frequency reaches There is no data MHz. The clock base frequency of NVIDIA RTX A4500 reaches 1050 MHz. In turbo mode it reaches 1650 MHz.

What kind of memory do graphics cards have?

Matrox QID supports GDDR1. Installed 0.256 GB of RAM. Throughput reaches 9.6 GB/s. NVIDIA RTX A4500 works with GDDR6. The second one has 20 GB of RAM installed. Its bandwidth is 9.6 GB/s.

How many HDMI connectors do they have?

Matrox QID has There is no data HDMI outputs. NVIDIA RTX A4500 is equipped with There is no data HDMI outputs.

What power connectors are used?

Matrox QID uses There is no data. NVIDIA RTX A4500 is equipped with There is no data HDMI outputs.

What architecture are video cards based on?

Matrox QID is built on MP. NVIDIA RTX A4500 uses the Ampere architecture.

What graphics processor is being used?

Matrox QID is equipped with MP-A4. NVIDIA RTX A4500 is set to GA102.

How many PCIe lanes

The first graphics card has There is no data PCIe lanes. And the PCIe version is There is no data. NVIDIA RTX A4500 There is no data PCIe lanes. PCIe version There is no data.

How many transistors?

Matrox QID has There is no data million transistors. NVIDIA RTX A4500 has 28300 million transistors