| Image | Part Number | Manufacturer | Description | Series | RoHS Status | Manufacturer Part Number | Lead Free Status | Viewing Area | Display Mode | Interface | Diagonal Screen Size | Touchscreen |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| ULCD-43DCT-AR | 4D Systems | LCD ARDUINO 4.3" SHIELD & CBL | - | - | - | - | 95.04mm W x 53.86mm H | Transmissive | TTL | 4.3" (109.22mm) | Capacitive | |
| GEN4-ULCD-28DT | 4D Systems | DISPLAY LCD TFT 2.8" 240X320 | gen4 | - | - | - | 43.20mm W x 57.60mm H | Transmissive | I²C, SPI, TTL | 2.8" (71.12mm) | Resistive | |
| GLK19264A-7T-1U-422-YG-VPT-E | Matrix Orbital | 192X64 GRAPHIC LCD DISPLAY | - | - | - | - | 74.85mm W x 24.93mm H | - | RS-422 | - | - | |
| GTT43A-TPR-BLM-B0-H1-CT-V5 | Matrix Orbital | LCD TFT 480X272 4.3" RES T/S | - | - | - | - | 98.70mm W x 57.50mm H | Transmissive | TTL | 4.3" (109.22mm) | Resistive | |
| MOP-GL24064A-BGFW-22N-3IN | Matrix Orbital | LCD GRAPHIC DISPLAY 64X240 | - | - | - | - | 132.20mm W x 39.20mm H | - | Parallel | - | - | |
| O096O064ARPP3N0000 | Dale / Vishay | 96X64 RED GRAPHIC (COG) OLED | - | - | - | - | - | - | - | - | - | |
| GLK24064R-25-1U-USB-WB-E | Matrix Orbital | 240X64 GRAPHIC DISPLAY | - | - | - | - | 93.57mm W x 24.93mm H | - | I²C, RS-232, TTL | - | - | |
| GLK240128-25-USB-WB-E | Matrix Orbital | 240X128 GRAPHIC DISPLAY | - | - | - | - | 107.95mm W x 57.55mm H | - | USB | - | - | |
| NHD-7.0-800480EF-ATXL#-CTP | Newhaven Display, Intl. | LCD TFT 7" 800X480 CAP TOUCH LED | - | - | - | - | 154.90mm W x 85.60mm H | Transmissive | Parallel, 24-Bit (RGB) | 7" (177.80mm) | Capacitive | |
| GLK12232-25-FGW-E | Matrix Orbital | LCD GRAPHIC DISPL 122X32 | - | - | - | - | 69.50mm W x 20.50mm H | Transmissive | I²C, RS-232, TTL | - | - |
LCD (liquid crystal display) and OLED (organic light-emitting diode) graphic display modules are used to present graphical information, images, and text in electronic devices. LCDs utilize liquid crystal technology to modulate light transmission, while OLEDs emit light when an electric current passes through organic semiconductor layers. These modules find applications in smartphones, tablets, digital cameras, and wearable devices, offering high resolution, vivid colors, and low power consumption.