Radio module with the operating frequency of 433 MHz, based on the CMT2300A chip. It is an inexpensive transceiver module designed to work in unlicensed ISM bands. The module transmit power, operating frequency, modulation frequency and other parameters can be configured by the microcontroller through the SPI interface. CMT2300A has 64 byte Tx/Rx FIFO, GPIO and configurable interrupts built-in. It has the ability to work in Duty-Cycle mode, channel detection and precise RSSI. The module is supplied with the voltage of 3.3 V, and communication takes place via the SPI serial interface. There is a pin on the board that allows you to connect an external antenna. The board uses an edge connector (1.27 mm pitch), which allows it to be soldered to another board as an SMD element. As a result, the module can be easily implemented in the project.
Manufacturer BTC Korporacja sp. z o. o. Lwowska 5 05-120 Legionowo Poland sprzedaz@kamami.pl 22 767 36 20
Responsible person BTC Korporacja sp. z o. o. Lwowska 5 05-120 Legionowo Poland sprzedaz@kamami.pl 22 767 36 20
Goldpin black 1x40 pins. simple to print, pitch 1.27mm, gold-plated contacts
Radio module with operating frequency of 433 MHz. Communication takes place via the UART serial interface. It is supplied with the voltage in the range from 3.3 to 5 V. DFRobot TEL0114
LoRa radio module with 433 MHz operating frequency. Communication takes place via the UART serial interface. It is supplied with the voltage in the range from 3.4 to 5.5 V. DFRobot TEL0116
Development board designed for IoT projects. It is equipped with a WiFi/Bluetooth module ESP32, LoRa 433 MHz, GPS and a basket for a Li-Ion 18650 battery. TTGO T-Beam V1.2
No product available!
LoRa module with RP2040 microcontroller. It uses the SX1262 chip, ensuring reliable long-distance communication in the frequency range from 850 to 930 MHz. Waveshare RP2040-LoRa-HF
Adafruit Feather 32u4 RFM95 is a development board with built-in ATmega32u4 AVR microcontroller (8MHz, 32kB Flash, 2kB RAM) and RFM95W module enabling wireless communication in the 868 MHz or 915 MHz band. The board is compatible with Arduino IDE. Adafruit 3078
Wio-WM1302 LoRaWAN Gateway Module (SPI) US915-M Seeed Studio 114992969 is a mini-PCIe format module based on the SX1302 chip, designed for building LoRaWAN gateways in the US915 band. Thanks to its low power consumption, high sensitivity, and SPI interface, it is well suited for IoT and M2M applications requiring reliable long-range communication.
No product available!
LoRa module with RP2040 microcontroller. It uses the SX1262 chip, ensuring reliable long-distance communication in the frequency range from 410 to 525 MHz. Comes with a USB Type-C adapter. Waveshare RP2040-LoRa-LF-Kit
Compact and energy-efficient solution combining Bluetooth 5.0 and LoRa (862–930 MHz), ideal for IoT projects requiring long range and low power consumption. It uses the XIAO nRF52840 MCU with Cortex-M4 core and support for multiple interfaces and the LoRa SX1262 module for reliable wireless communication. The kit is perfect for applications such as Meshtastic, asset tracking, sensor networks or educational projects. Seeed Studio 102010710
No product available!
IoT module with the STM32WLE5JC chip, which connects the microcontroller with the ARM Cortex-M4 core and the LoRa SX126X module. There is a Grove connector on the board. Seeed Studio 113020091
Core1262-HF is an advanced LoRa module operating in the 850–930 MHz band, combining high energy efficiency, strong transmission power, and interference resistance. With support for LoRa/LoRaWAN standards and available development resources, it is ideal for use in industrial automation, smart home systems, and Sub-GHz IoT projects.
Shield with RFM95W 915 MHz system for LoRa/LoRaWAN communication, designed for Arduino boards. SHIELD-LORA-RFM Citron
Expansion board with LoRaWAN SX1303 and GNSS L76B dedicated to the Raspberry Pi. The kit includes the 868M antenna, GPS and cables. Waveshare SX1303 868M LoRaWAN Gateway HAT
No product available!
A communication module based on the Raspberry Pi RP2040 microcontroller, designed for data transmission in the 868 MHz band. It supports point-to-point LoRa and LoRaWAN operation, offering long range and low power consumption. The board is equipped with six Crowtail interfaces, an integrated battery charging circuit, and the ability to be powered by a solar panel. Compatibility with the Arduino IDE and MicroPython makes it an ideal platform for building IoT nodes, weather stations, and environmental monitoring systems. Elecrow RA-08H LoRaWan Node
Versatile ESP32 module with LoRa and Wi-Fi support, designed for monitoring people flow and creating mesh networks in difficult conditions, such as in areas cut off from the network. The device can detect Wi-Fi and Bluetooth signals, allowing estimation of the number of mobile devices in the environment without recording MAC addresses, which protects privacy. The module offers low power consumption, data storage on SD card and data transfer via LoRa WAN or MQTT, making it a reliable and self-sufficient solution for emergency communication. modTTGO LoRa32 v2.1
No product available!
A compact IoT device that combines an ESP32S3 processor with a Wio-SX1262 LoRa module, enabling communication distances of up to 5 km in the 868–915 MHz band. With support for LoRaWAN, 2.4 GHz Wi-Fi, Bluetooth 5.0, and expansion options for GNSS and sensors, it is a versatile solution for IoT gateways and nodes. Seeed Studio 113110064
No product available!
Expansion board with LoRaWAN SX1302 and GNSS L76B dedicated to the Raspberry Pi. The kit includes the 868M antenna, GPS and cables. Waveshare SX1302 868M LoRaWAN Gateway HAT
No product available!
LoRa module operating at 433 MHz based on the SX1262 chip. It allows to realize long-range wireless data transmission. Waveshare Core1262-LF
No product available!
Open source USB dongle that allows you to work with the LoRa network. It allows you to communicate with a range of up to 5 km and has a built-in 1.14-inch LCD display. SB Components 23011
LoRa radio module with 433 MHz operating frequency. Communication takes place via the SPI serial interface. It is supplied with the voltage of 3.3 V