Display Type | OLED |
Brand name | WISEVISION |
Size | 0.50 inch |
Pixels | 48x88 Dots |
Display Mode | Passive Matrix |
Active Area (A.A) | 6.124×11.244 mm |
Panel Size | 8.928×17.1×1.227 mm |
Color | Monochrome (White) |
Brightness | 80 (Min)cd/m² |
Driving Method | Internal supply |
Interface | SPI/I²C |
Duty | 1/48 |
Pin Number | 14 |
Driver IC | CH1115 |
Voltage | 1.65-3.5 V |
Weight | TBD |
Operational Temperature | -40 ~ +85 °C |
Storage Temperature | -40 ~ +85°C |
X050-8848TSWYG02-H14 Compact OLED Display Specifications
The X050-8848TSWYG02-H14 is a compact OLED display featuring a 48×88 dot matrix with a 0.50-inch diagonal size. The module measures 8.928×17.1×1.227 mm (L×W×H) with an active display area of 6.124×11.244 mm. It integrates a CH1115 controller IC and supports both 4-wire SPI and I²C interfaces, operating on a 3V power supply.
This PMOLED display utilizes COG (Chip-on-Glass) technology, eliminating the need for a backlight due to its self-emissive design. It offers ultra-low power consumption and a lightweight form factor. With a minimum brightness of 80 cd/m², the module delivers exceptional visibility even in brightly lit environments.
Key Features:
- Logic supply voltage (VDD): 2.8V
- Display supply voltage (VCC): 7.5V
- Current consumption: 7.4V (50% checkerboard pattern, white display, 1/48 duty cycle)
- Operating temperature range: -40℃ to +85℃
- Storage temperature range: -40℃ to +85℃
Applications:
Ideal for wearable devices, e-cigarettes, portable electronics, personal care appliances, voice recorder pens, health monitoring devices, and other compact applications requiring high-visibility displays with low power consumption.
The X050-8848TSWYG02-H14 combines superior optical performance with robust environmental durability, making it a versatile solution for space-constrained electronic designs.
1. Thin–No need of backlight, self-emissive;
2. Wide viewing angle :Free degree;
3. High Brightness: 100 cd/m²;
4. High contrast ratio(Dark Room): 2000:1;
5. High response speed(<2μS);
6. Wide Operation Temperature;
7. Lower power consumption.