【ESP32 HMI 5-inch display】800x480 resolution IPS capacitive touch display, integrated ESP32-S3 module, frequency up to 240MHz, compatible with Bluetooth 5.0 and BLE;
【Smart AI function】Equipped with high-performance microphone and speaker, supporting voice command interaction, voice recognition and speech synthesis;
【Replaceable wireless module design】Replaceable plug-in wireless communication module, pre-installed firmware supports multiple communication protocols such as Zigbee, LoRa, nRF2401, Matter, Thread, Wi-Fi 6 and Meshtastic;
【Real-time clock function】
【Multiple development environments】 Supports development environments such as Arduino IDE and Espressif IDF, and is compatible with LVGL graphics library.
Following the acclaim of the CrowPanel Basic Series screens, we are now launching the upgraded CrowPanel Advance Series screens, aiming to provide more outstanding performance and richer features.
As an upgraded version of the Crowpanel HMI 5-inch display, the Advance ESP32 5-inch AI display is a powerful HMI touch screen equipped with a 800*480 resolution IPS screen. It uses the ESP32-S3 chip as the core processor, equipped with an Xtensa 32-bit LX7 dual-core processor and a main frequency of up to 240MHz. It has 512KB SRAM, 8M PSRAM, and 16M Flash. This gives it strong data processing power. The 2.4GHz Wi-Fi and BLE functions, with a built-in RF antenna, ensure a stable, reliable wireless connection. Also, the diverse interfaces and low power make this 5-inch screen ideal for HMI applications that need strong wireless connectivity. It supports the Arduino IDE, Espressif IDF, PlatformIO and MicroPython. It is compatible with the LVGL graphics library and supports MicroPython and C++.
This 5-inch screen uses an IPS panel, and the 178°wide viewing angle allows you to enjoy a vivid visual experience at any angle. Capacitive touch technology enables smooth, responsive interactions. It makes every touch accurate and intuitive.
A notable feature of the CrowPanel Advance 5-inch display is its integrated AI function. Users can interact by using the microphone and speaker. This includes voice recognition and speech synthesis. They can have seamless conversations with smart assistants to get information.
Another highlight of this screen is its modular design. It provides diverse wireless options. Users can replace modules as needed. They support multiple protocols: Zigbee, LoRa, nRF2401, Matter, Thread, and Wi-Fi 6. In addition, when paired with the SX1262 wireless module, it can support access to the Meshtastic network(An open source, off-grid, decentralized, mesh network built to run on affordable, low-power devices). One screen and different modules can connect wirelessly in any scenario.
This upgrade integrates the latest wireless tech, an optimized port layout, a great touch display, and more larger storage.
These improvements enhance the flexibility and reliability of connectivity, provide users with more diverse choices and wider application possibilities, and meet the stringent requirements of modern intelligent systems for remote monitoring and control.
Design&manufactured by Elecrow, customized requests can be discussed(based on MOQ), you can contact us at service@elecrow.com.
Integrated Intelligent AI Functions
Voice interaction is achieved through the microphone and speaker, allowing seamless conversations with the smart assistant and easy access to information.
Replaceable Wireless Module Design, Provides Diversified Wireless Communication Options
By replacing the module, it supports multiple communication protocols such as Zigbee, LoRa, nRF2401, Matter, Thread and Wi-Fi 6. One screen can meet various wireless communication requirements.
IPS Panel With 178°Wide Viewing Angle
The 178°wide viewing angle allows you to enjoy a vivid visual experience at any angle.
Support Multiple Development Environments
It supports multiple development environments such as Arduino IDE, Espressif IDF, PlatformIO and MicroPython, and development languages like MicroPython, and C++ to meet the needs of different developers and make every project possible.
Support Open Source Graphics Library - LVGL
It supports the LVGL graphics library, and you can design various UIs.
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Connect With More Than 150+ Crowtail Sensors
Application Scenario
Hardware Overview
Application scenarios
Target Group
Engineers and technicians, system integrators, facility managers, R&D personnel, agricultural workers, environmental scientists, medical professionals, retailers and restaurant owners, educational institutions, energy companies, etc.
Main Chip-ESP32-S3-WROOM-1-N16R8 |
|
CPU/SoC |
high-performance Xtensa 32-bit LX7 dual-core processor, with a up to 240MHz |
System Memory |
512KB SRAM、8M PSRAM |
Memory |
16M Flash,384KB ROM |
Development Language |
MicroPython、C/C++ |
Development Environment |
ESP-IDF、Arduino IDE、LVGL |
Screen |
|
Size |
5.0 inch |
Diver IC |
ST7262 |
Resolution |
800*480 |
Display Panel |
IPS Panel |
Touch Panel |
Capacitive Single Touch |
Viewing Angle |
178° |
Brightness |
400 cd/m²(Typ.) |
Color Depth |
16-bit |
Wireless Communication - Onboard Antenna |
|
WiFi |
Support 2.4GHz, 802.11a/b/g/n |
Bluetooth |
Support Bluetooth 5.0 and BLE |
Other |
Zigbee、LoRa、nRF2401、Matter、Thread and Wi-Fi 6 (Optional) |
Interface/Function |
|
Interface |
USB port, UART, I2C, SD card slot, battery socket, speaker port, microphone, etc. |
Function |
RTC clock, audio amplifier, volume control, battery charge management, USB to UART, etc. |
Button/LED Indicator |
|
Reset Button |
Yes, press to reset device |
Boot Button |
Yes, press and hold the power button to burn the program |
PWR |
Power indicator |
CHG |
Lithium battery charging status, completion indication |
Other |
|
Installation method |
Back hanging, fixed hole |
Operating temperature |
-20~70 °C |
Storage temperature |
-30~80 °C |
Power Input |
5V/2A, USB or UART terminal |
Active Area |
108mm*65mm |
Dimensions |
136.4*84.7**15.4mm |
Four Wireless Module Details
Pin |
Pin Direction |
Note |
U1RXD |
Input |
Serial port 0 receiving pin |
U1TXD |
Output |
Serial port 0 receiving pin |
GPIO12 |
Input/Output |
GPIO |
GPIO13 |
Input/Output |
GPIO |
GPIO14 |
Input/Output |
GPIO |
3V3 |
|
Power supply |
GND |
|
Ground wire, connected to the power reference ground |
GPIO1 |
Input/Output |
GPIO |
GPIO0 |
Input/Output |
GPIO |
GPIO2 |
Input/Output |
GPIO |
GPIO22 |
Input/Output |
GPIO |
GPIO10 |
Input/Output |
GPIO |
GPIO11 |
Input/Output |
GPIO |
BOOT |
Press and then tap the RST key to enter the burning mode |
|
RST |
Press it to re-run the program and also to burn the program. |
Chip performance
Chip Model |
ESP32-H2FH4 |
|
FLASH |
4MB Quad SPI |
|
SRAM |
320KB |
|
ROM |
128KB |
|
LP memory |
4KB |
|
Ambient temperature |
-40℃~105℃ |
|
Voltage |
3.3V |
|
Bluetooth Low Energy Radio Specifications |
||
Working channel center frequency range |
2402~2480MHz |
|
RF transmission power range |
-24.0~20.0dBm |
Patch Antenna Performance
Gain and efficiency |
Bandwidth 2.4G~2.5GHz |
Peak Gain |
4.33dBi |
Average Gain across the band |
4.0dBi |
Gain Range across the band |
3.59dBi~4.33dBi |
Peak Efficiency |
62.5% |
Average Efficiency across the band |
57.5% |
Efficiency Range across the band |
51.3%~62.5% |
Pin |
Pin Direction |
Note |
U1RXD |
Input |
Serial port 0 receiving pin |
U1TXD |
Output |
Serial port 0 receiving pin |
GPIO0 |
Input/Output |
GPIO |
GPIO1 |
Input/Output |
GPIO |
GPIO2 |
Input/Output |
GPIO |
3V3 |
|
Power supply |
GND |
|
Ground wire, connected to the power reference ground |
GPIO23 |
Input/Output |
GPIO |
GPIO22 |
Input/Output |
GPIO |
GPIO21 |
Input/Output |
GPIO |
GPIO20 |
Input/Output |
GPIO |
GPIO19 |
Input/Output |
GPIO |
GPIO18 |
Input/Output |
GPIO |
BOOT |
Press and then tap the RST key to enter the burning mode |
|
RST |
Press it to re-run the program and also to burn the program. |
Chip performance
Chip Model |
ESP32-C6FH4 |
|
L1 cache |
32KB |
|
ROM |
320KB |
|
HP SRAM |
512KB |
|
LP SRAM |
16KB |
|
FLASH |
4MB Quad SPI |
|
Ambient temperature |
-40℃~105℃ |
|
Voltage |
3.3V |
|
Bluetooth Low Energy Radio Specifications |
||
Working channel center frequency range |
2402~2480MHz |
|
RF transmission power range |
-15.0~20.0dBm |
|
WIFI RF Specifications |
||
Working channel center frequency range |
2412~2484MHz |
|
Wireless Standards |
IEEE 802.11b/g/n/ax |
Patch Antenna Performance
Gain and efficiency |
Bandwidth 2.4G~2.5GHz |
Peak Gain |
3.74dBi |
Average Gain across the band |
3.66dBi |
Gain Range across the band |
3.45dBi~3.74dBi |
Peak Efficiency |
58.9% |
Average Efficiency across the band |
55.9% |
Efficiency Range across the band |
53.0%~58.9% |
Pin |
Pin Direction |
Note |
CE |
Input |
Module control pin |
SCK |
Output |
SPI Data Pin |
MISO |
Input |
SPI Data Pin |
MOSI |
Output |
SPI Data Pin |
3V3 |
|
Power Supply |
GND |
|
Ground wire, connected to the power reference ground |
CSN |
Input |
Module chip select pin, used to start an SPI communication |
IRQ |
Input |
Module interrupt signal output, low level is effective |
Chip performance
u Chip Model:nRF24L01+
u Worldwide 2.4GHz ISM band operation
u 250kbps, 1Mbps and 2Mbps on air data rates
u Ultra low power operation
u 11.3mA TX at 0dBm output power
u 13.5mA RX at 2Mbps air data rate
u 900nA in power down
u On chip voltage regulator
u 1.9 to 3.6V supply range
Patch Antenna Performance
Gain and efficiency |
Bandwidth 2.4G~2.5GHz |
Peak Gain |
3.74dBi |
Average Gain across the band |
3.66dBi |
Gain Range across the band |
3.45dBi~3.74dBi |
Peak Efficiency |
58.9% |
Average Efficiency across the band |
55.9% |
Efficiency Range across the band |
53.0%~58.9% |
Pin |
Pin Direction |
Note |
DIO1 |
Input/Output |
Configurable general purpose IO ports |
SCK |
Input |
SPI Data Pin |
MISO |
Input |
SPI Data Pin |
MOSI |
Output |
SPI Data Pin |
3V3 |
|
Power supply |
GND |
|
Ground wire, connected to the power reference ground |
NRESET |
Output |
Chip reset trigger input pin, low level is effective |
DIO2 |
Input |
RF switch send/receive control pin, low level is receiving, high level is sending |
BUSY |
Output |
Used for status indication |
NSS |
Input |
Module chip select pin, used for SPI communication |
DIO3 |
Input/Output |
Configurable general purpose IO ports |
Antenna Performance
Gain(dBi) |
3.5dBi |
VSWR |
<=1.9 |
Input impedance(Ω) |
50 |
Polarization |
Vertical |
Lightning Protection |
DC Ground |
Mechanical Specification |
|
Wire Spec |
RF1.13 |
Wire length(cm) |
10cm |
Input connector type |
IPEX-1 |
Antenna weight(kg) |
0.01 |
Operating temperature |
-40℃~85℃ |
Display Pin Definition
Pin |
Description |
Connector Type |
SPK |
Output audio signal and connect to speakers. The mainboard has a power amplifier chip circuit. |
PH2.0-2P |
PWR |
Power LED |
|
RST |
Reset button. Press it to reset the system. |
|
BOOT |
|
|
UART0-OUT |
Build communication between Logic modules, including serial communication module and printing module. |
HY2.0-4P |
UART1-OUT |
Build communication between Logic modules, including serial communication module and printing module. |
HY2.0-4P |
UART1-IN |
|
HY2.0-4P |
I2C-OUT |
Establish communication between microcontroller and peripheral devices. |
HY2.0-4P |
BAT |
Connect lithium battery. (With battery charging circuit) |
PH2.0-2P |
For more pin functions, see Wiki.