The AA106TA01DDE11 is a 10.6" industrial LCD display panel manufactured by Mitsubishi, featuring 240x400 resolution with WLED backlight and LVDS interface. With 150 cd/m² brightness and 80:1 contrast ratio, viewing angle 88/88/88/88, supporting 65K/262K/16.7M colors, designed for handheld devices and embedded display applications.
| Brand | Mitsubishi |
| Model | AA106TA01DDE11 |
| Size | 10.6" |
| Resolution | 1280×768 |
| Brightness | 150 cd/m² |
| Contrast Ratio | 80:1 |
| Viewing Angle | 88/88/88/88 |
| Display Colors | 65K/262K/16.7M |
| Backlight | WLED |
| Interface | LVDS |
Handheld devices
Embedded systems displays
Portable instruments
Wearable devices
Point-of-sale terminals
Small appliance displays
FAQ:
Q1: What are the core specifications of the Mitsubishi AA106TA01DDE11 LCD screen?
A1: This LCD screen features a 10.6-inch display size with a resolution of 1280×768, a 15:9 aspect ratio (widescreen), and typically uses an LVDS signal interface, making it suitable for industrial and medical applications requiring widescreen displays.
Q2: What does the long suffix “DDE11” in the model number represent, and how does it differ from previous DE1 or DA versions?
A2: “AA106TA01” is the base series model for the 10.6-inch 1280×768 display, while “DDE11” is a specific revision code by Mitsubishi, typically representing a specific backlight module specification (e.g., LED bar tweaks), connector model, or electrical parameter upgrades. Compared to DE1 or DA, the core display parameters remain the same, but you must verify the “DDE11” datasheet during replacement to ensure pin definitions and backlight driving current are fully compatible.
Q3: What are the advantages of the 1280×768 non-standard resolution in industrial displays?
A3: The 1280×768 (15:9 ratio) provides more horizontal display space than traditional 4:3 screens. In industrial HMIs, semiconductor equipment, or medical instruments, this widescreen ratio is highly suitable for displaying instrument data, waveforms, and operation menus side-by-side, allowing operators to access more information without switching screens, thereby improving efficiency.










