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  2. Comparison of CRT, LCD, plasma, and OLED displays - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_CRT,_LCD...

    Response time 0.01 ms [10] to less than 1 μs, [11] but limited by phosphor decay time (around 5 ms) [12] 1–8 ms typical (according to manufacturer data), older units could be as slow as 35 ms [13] Typically less than 0.01 ms, as low as 2 μs, [10] [14] but limited by phosphor decay time (around 5 ms)

  3. Response time compensation - Wikipedia

    en.wikipedia.org/wiki/Response_Time_Compensation

    Response time compensation for liquid-crystal displays is also known as "Overdrive". LCDs moderate light flow by rotating liquid crystal molecules to various alignments where they transmit more or less light depending on the electrical setting at each individual pixel .

  4. STN display - Wikipedia

    en.wikipedia.org/wiki/STN_display

    A STN (super-twisted nematic) display is a type of liquid-crystal display (LCD). ... However, advancements have improved response times to 100 ms (still longer than ...

  5. Comparison of display technology - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_display...

    LCD: Flat 115 [10] 292 TV, computer monitor: Yes LCD self-contained rear-projection: Flat lenticular: 70 [11] 178 TV: Yes LCD front-projection: Flat (limited only by brightness) TV or presentation Yes DLP self-contained rear-projection Flat lenticular: 120 [12] 305 TV: Yes DLP front-projection Flat (limited only by brightness) TV or ...

  6. Liquid-crystal display - Wikipedia

    en.wikipedia.org/wiki/Liquid-crystal_display

    An FSC LCD needs an LCD panel with a refresh rate of 180 Hz, and the response time is reduced to just 5 milliseconds when compared with normal STN LCD panels which have a response time of 16 milliseconds. [122] [123] FSC LCDs contain a Chip-On-Glass driver IC can also be used with a capacitive touchscreen. This technique can also be applied in ...

  7. IPS panel - Wikipedia

    en.wikipedia.org/wiki/IPS_panel

    The True depth method was the only viable technology for active matrix TFT LCDs in the late 1980s and early 1990s. Early panels showed grayscale inversion from up to down, [2] and had a high response time (for this kind of transition, 1 ms is visually better than 5 ms).

  8. Display motion blur - Wikipedia

    en.wikipedia.org/wiki/Display_motion_blur

    Reducing the time an LCD pixel is lit can be accomplished via turning off the backlight for part of a refresh. [4] This reduces motion blur due to eye tracking by decreasing the time the backlight is on. In addition, strobed backlights can also be combined with motion interpolation to reduce eye-tracking-based motion blur.

  9. MicroLED - Wikipedia

    en.wikipedia.org/wiki/MicroLED

    The sub-nanosecond response time of μLED has a huge advantage over other display technologies for 3D/AR/VR displays since these devices need more frames per second and fast response times to minimise ghosting. [7] MicroLEDs are capable of high speed modulation, and have been proposed for chip-to-chip interconnect applications. [9]