The Unsoldered TTGO SIM7600E-H Module is a powerful development board designed for IoT applications requiring multi-network connectivity and sustainable power options. Equipped with the ESP32-WROVER-B chip for WiFi and Bluetooth, and the SIM7600E-H module for 4G LTE, GSM, and GPS support, this board provides versatile communication options. The 18650 battery holder and solar charge capability enable off-grid power solutions, making it suitable for remote and low-power applications. The CH9102F USB-to-serial chip ensures stable data transfer, and the unsoldered design allows for flexibility in prototyping and customization.
- Multi-Network Connectivity: ESP32-WROVER-B for WiFi and Bluetooth, SIM7600E-H for 4G LTE, GSM, and GPS capabilities.
- Sustainable Power Options: Includes a 18650 battery holder and solar charge controller for renewable energy solutions.
- CH9102F USB-to-Serial Chip: Provides reliable and stable data communication for development purposes.
- Flexible Prototyping Design: Unsoldered configuration allows for easy customization and adaptation for various projects.
- Low-Power Operation: Suitable for battery-operated, low-power IoT solutions.
Unsoldered TTGO SIM7600E-H Module ESP32-WROVER-B Chip WiFi Bluetooth 18560 Battery Holder Solar Charge Development Board CH9102F Chip Specifications
- Wireless Connectivity: WiFi, Bluetooth (ESP32-WROVER-B), 4G LTE, GSM, GPS (SIM7600E-H)
- Power Options: 18650 battery holder and solar charging capability
- USB-to-Serial Chip: CH9102F for stable communication
- Power Supply: 2.3V ~ 3.6V
Unsoldered TTGO SIM7600E-H Module ESP32-WROVER-B Chip WiFi Bluetooth 18560 Battery Holder Solar Charge Development Board CH9102F Chip Applications
- Remote IoT Monitoring: Ideal for remote IoT applications requiring cellular, GPS, and wireless connectivity.
- Solar-Powered IoT Solutions: Suitable for off-grid devices that rely on solar energy and battery backup.
- Embedded Systems Prototyping: Perfect for developers working on low-power, sustainable IoT solutions with diverse connectivity options.