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| align="center" |Screen Size | | align="center" |Screen Size | ||
| align="center" | | | align="center" |2.6(inch) | ||
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| align="center" |Type | | align="center" |Type | ||
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| align="center" |Active Area | | align="center" |Active Area | ||
| align="center" |52.80 | | align="center" |39.60*52.80(mm) | ||
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| align="center" |Module PCB Size | | align="center" |Module PCB Size | ||
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| align="center" |Operating Temperature | | align="center" |Operating Temperature | ||
| align="center" | - | | align="center" | -10℃~60℃ | ||
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| align="center" |Storage Temperature | | align="center" |Storage Temperature | ||
| align="center" | - | | align="center" | -20℃~70℃ | ||
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| align="center" |Operating Voltage | | align="center" |Operating Voltage | ||
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==<font color="blue">Program Download</font> == | ==<font color="blue">Program Download</font> == | ||
* [http://www.lcdwiki.com/res/Program/Arduino/2. | * [http://www.lcdwiki.com/res/Program/Arduino/2.6inch/UNO_8BIT_ILI9341_MAR2601_V1.0/2.6inch_Arduino_UNO_8BIT_Module_ILI9341_MAR2601_V1.0.zip '''2.6 inch Arduino UNO module package'''] | ||
==<font color="blue">Product Documentation</font> == | ==<font color="blue">Product Documentation</font> == | ||
* [http://www.lcdwiki.com/res/ | * [http://www.lcdwiki.com/res/MAR2601/2.6inch_Arduino_UNO_Module_MAR2601_User_Manual_EN.pdf '''2.6 inch Arduino UNO Module User Manual'''] | ||
* [http://www.lcdwiki.com/images/ | * [http://www.lcdwiki.com/zh/images/2/24/MAR2601_Size.PNG '''2.6 inch Arduino UNO Module Size Picture'''] | ||
* [http://www.lcdwiki.com/res/ | * [http://www.lcdwiki.com/res/MAR2601/Altium_2.6_37pin_LT26Q3735E_Package_library.zip '''2.6 inch LT26Q3735E TFT LCD Schematic and PCB Package Library'''] | ||
* [http://www.lcdwiki.com/res/ | * [http://www.lcdwiki.com/res/MAR2601/LT26Q3735E.pdf '''2.6 inch TFT Specifications'''] | ||
* [http://www.lcdwiki.com/res/ | * [http://www.lcdwiki.com/res/MAR2601/ILI9341_Datasheet.pdf '''Driver IC ILI9341 Data sheet'''] | ||
==<font color="blue">Reference Materials</font> == | ==<font color="blue">Reference Materials</font> == |
Latest revision as of 14:55, 2 November 2019
Product Picture
Product Description
- Supports development boards such as Arduino UNO and Mega2560 for plug-in use without wiring
- 320X240 resolution, clear display, support for touch function
- Support 16-bit RGB 65K color display, display rich colors
- 8-bit parallel bus, faster than serial SPI refresh
- On-board 5V/3.3V level shifting IC, compatible with 5V/3.3V operating voltage
- Easy to expand the experiment with SD card slot
- Provides an Arduino library with a rich sample program
- Military-grade process standards, long-term stable work
- Provide underlying driver technical support
Product Parameters
Name | Parameter |
Display Color | RGB 65K color |
SKU | MAR2601 |
Screen Size | 2.6(inch) |
Type | TFT |
Driver IC | ILI9341 |
Resolution | 320*240 (Pixel) |
Module Interface | 8-bit parallel interface |
Active Area | 39.60*52.80(mm) |
Module PCB Size | 52.70*78.22(mm) |
Operating Temperature | -10℃~60℃ |
Storage Temperature | -20℃~70℃ |
Operating Voltage | 5V/3.3V |
Power Consumption | TBD |
Product Weight(Package containing) | 35(g) |
Interface Definition
Number | Pin Label | Pin Description |
1 | LCD_RST | LCD bus reset signal, low level reset |
2 | LCD_CS | LCD bus chip select signal, low level enable |
3 | LCD_RS | LCD bus command / data selection signal,
low level: command, high level: data |
4 | LCD_WR | LCD bus write signal |
5 | LCD_RD | LCD bus read signal |
6 | GND | Power ground |
7 | 5V | 5V power input |
8 | 3V3 | 3.3V power input, this pin can be disconnected |
9 | LCD_D0 | LCD 8-bit data Bit0 |
10 | LCD_D1 | LCD 8-bit data Bit1 |
11 | LCD_D2 | LCD 8-bit data Bit2 |
12 | LCD_D3 | LCD 8-bit data Bit3 |
13 | LCD_D4 | LCD 8-bit data Bit4 |
14 | LCD_D5 | LCD 8-bit data Bit5 |
15 | LCD_D6 | LCD 8-bit data Bit6 |
16 | LCD_D7 | LCD 8-bit data Bit7 |
17 | SD_SS | SD card SPI bus chip select signal, low level enable |
18 | SD_DI | SD card SPI bus MOSI signal |
19 | SD_DO | SD card SPI bus MISO signal |
20 | SD_SCK | SD card SPI bus clock signal |
Connect to Arduino
Arduino UNO direct insertion picture | Arduino Mega2560 direct insertion picture |
How to use on Arduino
- Step 1: Download the test program
- Download the Arduino test program from the Program Download column
- For a description of the relevant test procedures, please refer to the test program documentation in the package
- Step 2: Connect the Arduino development board
- Plug the module directly into the Arduino development board ( Do not plug in?)
- After the module is plugged in, power on the Arduino board
- Step 3: Copy the dependent library
- Make sure the Arduino IDE is installed on your computer (if it is not installed: Arduino IDE download URL)
- After installing the Arduino IDE, you need to copy the dependent library to the Arduino project directory as follows:
- (1) Decompress the downloaded test package
- (2) Copy the dependent libraries in the Install libraries directory in the package (shown below) to the libraries folder
- of the Arduino project directory ( Don't know the Arduino project directory?)
- Step 4: Compile and download the program to the development board
- Open the sample in the Example directory of the package to test, compile and download( Don't know how to compile and download?)
- Step 5: Observe the running of the program
- After the program is downloaded, run it directly and observe the running status. If it can be displayed normally, the program runs
- successfully, as shown in the following figure (take the display_graphics program as an example):
Program Download
Product Documentation
- 2.6 inch Arduino UNO Module User Manual
- 2.6 inch Arduino UNO Module Size Picture
- 2.6 inch LT26Q3735E TFT LCD Schematic and PCB Package Library
- 2.6 inch TFT Specifications
- Driver IC ILI9341 Data sheet
Reference Materials
- Arduino IDE software use illustration
- C51 Keil and stc-isp software use illustration
- STM32 keil software use illustration
- PCtoLCD2002 software use illustration
- Image2Lcd software use illustration
- Chinese and English display modulo settings