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Micro-Technology Solutions

Display & Pixel Diagnostics

Online Screen Test & Dead Pixel Detection

Inspect your monitor in fullscreen: RGB primary colors, dead/stuck pixel detection, and solid backgrounds for photographic evidence.

TEST----

The guided test will sequentially project 5 pure color screens for 6 seconds each to help you visually detect dead pixels, light bleed or panel imperfections. The interface auto-hides so it's never mistaken for a real defect; move the mouse or tap the screen to reveal controls.

Color sequence — RGB dead pixel test

5 screens · 6 s each · interface auto-hides

Red
Green
Blue
White
Black

Display information

Technical data detected by the browser.

user@arostik:~ $ Display-Info -- Screen
Native res=
Window=
DPR=
Color depth=
Fullscreen API=
Mode=Diagnostic
user@arostik:~ $
Operation & Purpose

What is the Screen Test and How Does It Work?

1

What problem does it solve?

Allows thorough inspection of 100% of your monitor's surface area for dead pixels, stuck subpixels, backlight bleeding, and image retention.

2

Guided Mode & Solid Backgrounds

Guided mode cycles through 5 primary colors (Red, Green, Blue, White, Black). Solid mode locks clean flat colors to take photographic evidence for warranty claims.

3

Self-Hiding Clean Canvas

During fullscreen testing, all UI overlays automatically fade away after 1.8 seconds of inactivity so no controls obscure panel bezels.

Quick Usage Guide

  1. Limpia suavemente la superficie de tu monitor con un paño de microfibra para no confundir motas de polvo con píxeles dañados.
  2. Pulsa "Iniciar Test" y acepta el modo pantalla completa.
  3. Observa detenidamente cada color plano durante 6 segundos e indica si observas anomalías (puedes salir en cualquier momento con la tecla ESC).
Diagnostics & Maintenance

Common Monitor Issues & Step-by-Step Fixes

Distinguish between stuck pixels, dead subpixels, backlight bleed, and display signal bottlenecks.

🔴

Issue 1: Stuck Pixel (Persistent bright red, green, or blue dot)

Quick User Solution

Unlike dead pixels, stuck pixels still receive current. Run rapid RGB color cycling animations for 20-30 minutes to unstick frozen liquid crystal molecules.

🔧 Advanced Technical Fix

Power down the screen. Using a microfiber cloth over a blunt stylus or fingertip, apply gentle pinpoint pressure on the stuck pixel, power on the monitor, then release.

Issue 2: Dead Pixel (Permanent black subpixel defect)

Quick User Solution

A pure black pixel indicates physical TFT transistor circuit failure. Use Mode 2 (Solid White) in this tool to photograph the flaw for warranty replacement RMA.

🔧 Advanced Technical Fix

Check ISO 13406-2 / ISO 9241-307 manufacturer policy. Class I panels guarantee 0 dead pixels, while commercial Class II panels require 3-5 defective pixels per million to qualify for RMA.

💡

Issue 3: Backlight bleeding or IPS Glow in corners

Quick User Solution

Lower monitor brightness to 40-50% and mount bias backlighting behind the display to diminish perceived IPS glow contrast in dark rooms.

🔧 Advanced Technical Fix

Backlight bleed stems from uneven bezel mechanical clamping. If mounted on a VESA arm, loosen mounting screws by 1/4 turn to relieve chassis corner torque on the light diffuser.

Issue 4: Display flickering or intermittent horizontal lines

Quick User Solution

Replace low-grade HDMI/DisplayPort cables with certified shielded cables and ensure connection directly into the discrete GPU rather than motherboard ports.

🔧 Advanced Technical Fix

In GPU control panels (NVIDIA/AMD), lock native refresh rate (e.g. 144Hz/165Hz), disable windowed G-Sync/FreeSync flicker, and update monitor scaler firmware.

Trivia & Displays

Did You Know? Amazing Facts on Displays & Pixels

Over 6 million tiny lights in a 1080p display

A 1080p display contains 2,073,600 pixels. Each pixel houses 3 discrete RGB subpixels, meaning you are looking at 6,220,800 simultaneous micro-transistors on glass.

Why OLED delivers true infinite contrast black

Traditional IPS/LCD panels use backlights attempting to be blocked by crystals. In OLED, each organic subpixel emits its own light; to display black, it powers off to zero lux.

144 Hz vs 60 Hz: Milliseconds that change perception

At 60 Hz, a frame renders every 16.6 ms. At 144 Hz, this drops to 6.94 ms, and at 240 Hz down to 4.16 ms, dramatically reducing eye strain and motion ghosting.

Screen Burn-in: The origin of Screensavers

Animated screensavers were invented in the 1980s for CRT monitors. Static images caused phosphorus degradation, permanently etching ghost silhouettes into glass.