SKU: DRFC-2123
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Micro NRF24L01+ Power Enhanced 2.4GHz RF Transceiver Module

₹83.00 (Inclusive of all taxes)
Out of Stock

The Micro NRF24L01+ Power Enhanced RF Transceiver Module is a compact 2.4GHz ISM band module based on the Nordic Semiconductor nRF24L01+ chipset, designed for low-power, high-data-rate wireless communication in DIY drone telemetry and control systems.

Features

  • Enhanced power performance with +7dBm transmit output for extended range.
  • Ultra-low power consumption suitable for battery-powered drone telemetry links.
  • High-speed SPI interface for easy integration with flight controllers like Arduino, STM32, or Raspberry Pi.
  • Operates on a wide 1.9V to 3.6V supply, compatible with 3.3V logic systems.
  • Compact 22mm x 13mm footprint for integration into space-constrained drone builds.

Out of stock

Description

This module integrates a complete 2.4GHz RF transceiver, synthesizer, and baseband logic onto a single micro board. It provides a robust physical layer for implementing custom wireless protocols, offering a practical solution for adding telemetry, remote control, or sensor data links to UAV projects. The enhanced power amplifier improves link reliability in open areas compared to standard NRF24L01+ modules.

Designed for the 2.4GHz ISM band, it supports data rates up to 2Mbps with a receiving sensitivity of ≤-90dBm. Its low-voltage operation and SPI control make it a versatile choice for developers building custom drone communication systems, RC model accessories, or IoT sensor networks.

Key Features

  • Based on the Nordic Semiconductor Semiconductor nRF24L01+ enhanced power variant IC.
  • 2.4GHz ISM band operation with GFSK modulation.
  • High-speed 2Mbps RF data rate for low-latency communication.
  • Integrated power amplifier for improved transmission range up to 250 meters line-of-sight.
  • Ultra-low power shutdown and standby modes for power-sensitive applications.
  • 125 selectable RF channels for multi-node network configurations.
  • Hardware CRC and automatic packet handling for robust data integrity.
  • Compact SMD design with castellated edges for easy PCB mounting.

Applications

  • DIY drone telemetry systems for transmitting flight data (voltage, GPS) to a ground station.
  • Custom long-range RC control links for experimental UAVs or model aircraft.
  • Wireless sensor networks for drone-based environmental monitoring.
  • Add-on module for flight controllers (e.g., Pixhawk, Matek) requiring auxiliary data links.
  • Prototyping and development of bespoke drone communication protocols.

Technical Specifications

ModelMicro NRF24L01+ Power Enhanced
Operating Frequency2.4GHz ISM Band
Supply Voltage1.9V - 3.6V
I/O Voltage0V - 3.3V / 5V Tolerant
Transmit Power+7dBm
Receive Sensitivity≤ -90dBm
Max Data Rate2 Mbps
InterfaceSPI
Dimensions (L x W)22mm x 13mm
Module WeightApprox. 2g

Frequently Asked Questions

What is the maximum communication range of this enhanced NRF24L01+ module?

In open, line-of-sight conditions with proper antennas, the module can achieve ranges up to approximately 250 meters. The actual range is highly dependent on antenna selection, environmental interference, and data rate settings. The integrated power amplifier provides a +7dBm output, significantly improving link budget over standard versions.

How do I interface this module with a flight controller like a Pixhawk or STM32?

The module communicates via a standard 4-wire SPI interface (CSN, SCK, MOSI, MISO). You will need to connect these pins to available SPI ports on your flight controller and provide a stable 3.3V power supply. Software libraries like RF24 are commonly used to handle the protocol, requiring custom coding on the flight controller and ground station to implement your specific telemetry or control scheme.

Can this module be used with 5V logic microcontrollers like some Arduinos?

Yes, the module's I/O pins are 5V tolerant, meaning they can safely receive signals from a 5V logic device. However, the module itself must be powered strictly between 1.9V and 3.6V, typically 3.3V. When using a 5V Arduino, you must use a separate 3.3V regulator for the module's VCC and ensure the Arduino's logic pins are configured for 5V output.

What is the power consumption during transmission and reception?

The module features ultra-low power consumption. In active transmission mode at +7dBm output, current draw is typically around 11.5mA. In active receive mode, it draws approximately 12.5mA. It supports power-down and standby modes which reduce current to the microamp range, making it suitable for battery-powered drone applications where power management is critical.

Package Includes

  • 1 x Micro NRF24L01+ Power Enhanced 2.4GHz RF Transceiver Module

Additional Information

Weight 0.02 kg
Dimensions 2.2 × 1.3 cm