5.6 Inch 640x480 TFT LCD Module With RGB 18 Bit Interface For Industrial Application
Display General Description
The P056I640480TE-W02 is a 5.6-inch TFT LCD module with a resolution of 640 x 480 dots, boasting a brightness of 350cd/m² and a contrast ratio of 1000:1 (typical). It utilizes the ILI6192A-01+ILI5481A driver IC, supporting 18-bit RGB interfaces. With a voltage power supply ranging from 3.2V to 3.4V (typical value: 3.3V), its module dimensions measure 126.500(W) × 100(H) mm, featuring an active area of 112.896 x84.672 mm.
Featuring a 12 o'clock viewing direction, a 6 o'clock gray scale inversion direction, and a 4:3 aspect ratio, the P056I640480TE-W02 is versatile for various applications. It operates efficiently within a temperature range of -20℃ to +70℃, with a storage temperature ranging from -30℃ to +80℃.
The brightness of this TFT display makes it ideal for Industrial Control and Monitoring applications, offering clear and easy-to-read displays for machine status, control panels, and monitoring systems, even in challenging environmental conditions. Moreover, its suitability for Outdoor Displays ensuring optimal visibility of information in bright light conditions without sacrificing clarity or legibility.
General Data
Model Name | 5.6 inch TFT LCD Display |
Resolution | 640x480 |
Model Size (W*H*T) | 126.5(H) x 100(V) x 5.7(T)mm |
Display Area (W*H) | 112.896(H) x84.672(V)mm |
Interface | 18 bit RGB |
Display Mode | Normally White TN,Transmissive |
Viewing | 12:00 o'clock |
Brightness | 350 cd/m2 |
Pin number | 40 |
Drive IC | ILI6192A-01+ILI5481A |
BACKLIGHT TYPE | 21 WHITE LED |
Operating temperatures | -20 to 70 degree |
Storage temperatures | -30 to 80 degree |
Drawing
Product Details
TFT Applications
The brightness of this TFT display makes it ideal for Industrial Control and Monitoring applications, offering clear and easy-to-read displays for machine status, control panels, and monitoring systems, even in challenging environmental conditions. Moreover, its suitability for Outdoor Displays ensuring optimal visibility of information in bright light conditions without sacrificing clarity or legibility.