What is the difference between high and low refresh rates of LED displays? For many people outside the industry, they don’t understand the refresh rate of this LED display, and they don’t know whether it is better to have a high refresh rate or a low refresh rate. Today, the editor of Weifeng Technology will give you a simple and clear introduction.
The refresh rate of LED displays is the core indicator for measuring the image update speed. It is directly measured in Hertz (Hz) and accurately depicts the number of times the image on the screen jumps per second. The high refresh rate and low refresh rate of LED displays are not just a simple difference in a string of numbers, but also a clear dividing line between visual enjoyment and visual fatigue.
What is the difference between high and low refresh rates of LED displays?
Visual experience
The high refresh rate of LED displays (such as 120Hz, 144Hz or even higher) can significantly reduce the phenomenon of screen smearing and blurring, making dynamic scenes clearer and more natural. When playing high-speed motion pictures or broadcasting e-sports games and sports events, high refresh rates can bring a smoother and more coherent visual experience.
In contrast, LED displays with low refresh rates (such as 60Hz and below) are slow to update the screen, and may have some smearing or blurring, affecting the viewing experience.
Visual comfort
LED rental screens with high refresh rates also have a positive effect on eye comfort. Watching a high refresh rate screen for a long time helps reduce eye fatigue because the picture is more stable and smooth.
LED rental screens with low refresh rates may increase eye fatigue, especially when watching for a long time or watching high-speed motion pictures.
Response speed
High refresh rates are often accompanied by faster response times, that is, the screen takes less time from receiving a signal to displaying a new picture. This helps viewers capture details faster and improve the viewing experience.
LED rental screens with low refresh rates may result in longer screen response times and cannot meet application scenarios with high real-time requirements.
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