| CRT Monitor | Vacuum-tube cathode-ray technology | An electron beam scans phosphor-coated pixels on the inside of a glass screen to create visible light. | Fast response Wide viewing angles Flexible resolutions | Large and heavy enclosure, high power consumption, visible flicker at low refresh rates, and limited modern connectivity. | Converts an electronic video signal into a scanned phosphor image with adjustable timing and resolution. | Legacy workstations, specialized equipment, and retro gaming systems. |
| TN LCD | Twisted-nematic liquid crystal with LED backlighting | Liquid-crystal molecules change the polarization of backlight passing through each pixel to control brightness. | Low response latency High refresh potential Lower cost | Narrower viewing angles and generally weaker color consistency than other common LCD panel types. | Rapid control of pixel brightness for motion display, gaming, office work, and general desktop output. | Competitive gaming, entry-level displays, and cost-sensitive desktop monitors. |
| IPS LCD | In-plane-switching liquid crystal with LED backlighting | Liquid-crystal molecules rotate within the plane of the panel to regulate light transmission. | Wide viewing angles Consistent color Good image quality | Native contrast is commonly lower than VA, and some models may show edge glow or light leakage. | Displays stable color and brightness across a broad viewing area for detailed visual work and everyday use. | Content creation, design, photography, productivity, education, and general-purpose computing. |
| VA LCD | Vertical-alignment liquid crystal with LED backlighting | Liquid-crystal cells align vertically when inactive and tilt to control the amount of backlight reaching the viewer. | High native contrast Deep black levels Strong image depth | Pixel transitions can be slower in some dark scenes, and viewing-angle uniformity may be below IPS performance. | Controls light transmission to produce strong contrast for movies, games, documents, and mixed media. | Entertainment displays, general computing, gaming, and high-contrast office environments. |
| OLED Monitor | Organic light-emitting diode | Each pixel emits its own light, so individual pixels can be dimmed or switched off without a separate backlight. | True pixel-level black Very high contrast Fast response Thin design | Potential image retention or burn-in with prolonged static content, brightness limitations in some scenes, and higher cost. | Provides independently controlled luminous pixels for high contrast, fast motion response, and precise dark-scene rendering. | Premium gaming, cinematic viewing, creative work, and high-contrast visual applications. |
| Mini-LED LCD | LCD panel with a high-density mini-LED backlight | A liquid-crystal layer shapes the image while many small LEDs illuminate independently controlled local-dimming zones. | High brightness Improved HDR Better contrast than basic LCD | Blooming around bright objects can occur, and performance depends on the number and control quality of dimming zones. | Combines LCD pixel control with zoned backlight modulation to enhance brightness range and highlight detail. | HDR content, professional visualization, gaming, video editing, and bright-room viewing. |
| Quantum-Dot LCD | LCD with a quantum-dot color-conversion layer | Blue or broad-spectrum backlight energy passes through quantum dots that convert selected wavelengths into purer colors. | Wide color gamut High brightness Efficient color conversion | It remains dependent on the underlying LCD panel and backlight; contrast and viewing angles vary by panel type. | Expands color reproduction and supports vivid, bright images while retaining LCD-based pixel addressing. | Wide-gamut design, HDR media, photography, video production, and advanced gaming displays. |
| E-Paper Monitor | Electrophoretic electronic-paper display | Charged pigment particles move within microcapsules or microcells to reflect ambient light and form text or images. | Low eye-glare potential Very low static power use Excellent readability in bright light | Slow refresh compared with conventional monitors, limited color performance, and weaker suitability for video or animation. | Reflects ambient light to display mostly static information with minimal power consumption between refreshes. | Text-focused work, reading, dashboards, documentation, and low-refresh information displays. |