The LILYGO T4 S3 is a versatile ESP32-S3 development board with a 2.41-inch SPI RGB AMOLED display. Powered by the ESP32-S3 Dual-core LX7 microprocessor, it provides seamless connectivity with Wi-Fi (2.4 GHz) and Bluetooth 5 (LE). The board also supports various development platforms such as Arduino , PlatformIO-IDE , and Micropython. The LILYGO T4 S3 comes with an onboard MicroSD card interface, and features boot, reset buttons, and GPIO pins for easy integration into projects.
Features of LILYGO T4 S3
- 2.41-inch SPI RGB AMOLED display, providing 450x600 resolution and 800cd/m brightness.
- ESP32-S3 Dual-core LX7 chip with 16MB flash and 8MB PSRAM.
- Supports MicroSD card for additional storage.
- Built-in boot and reset buttons for easy debugging.
- Ideal for touchscreen applications with a high-resolution display.
- Multiple interface options including QSPI and JST-GH connectors for expansion modules.
- Supports Arduino, PlatformIO-IDE, and Micropython for development.
Includes
- 1 x LILYGO T4-S3 board with 2.41-inch AMOLED screen.
- 1 x Power Cable (2 pin 1.25mm pitch).
- 1 x Female Pin (15 pin, 1.27mm pitch).
- 1 x Battery Cable (for battery power supply).
Specifications of LILYGO T4 S3
LILYGO T4 S3 | Details |
---|---|
MCU | ESP32-S3R8 Dual-core LX7 microprocessor |
Wireless Connectivity | 2.4 GHz Wi-Fi & Bluetooth 5 (LE) |
Development Platforms | Arduino, PlatformIO-IDE, Micropython |
Flash | 16MB |
PSRAM | 8MB |
Language | C, C++, Lua |
Onboard Functions | Boot button, Reset button, MicroSD |
Display | 2.41-inch SPI RGB AMOLED |
Active Area | 36.2mm x 48.96mm |
Brightness | 800cd/m |
Resolution | 450(W) x 600(H) |
Interface | QSPI |
Power | Battery support (JST-GH connector) |
Applications of LILYGO T4 S3
- IoT projects requiring wireless connectivity and visual data representation.
- Portable devices like smart clocks, sensors, and interactive displays.
- Home automation systems with integrated user interfaces.
- Prototyping for wearable technology and personal gadgets.
- Educational tools for teaching electronics and coding with real-time display feedback.