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DFRobot

DFRobot Self-powered Wireless Switch (433Mhz)

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AI Summary
Bluetooth and NRF Modules for everyday users

The DFRobot Self-powered Wireless Switch (433Mhz) by DFRobot is a value-for-money bluetooth and nrf modules designed for everyday users. It features Item Type: DFRobot Module and Switch/Button: Yes.

wireless convenience
₹1,265
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Total: ₹1,265
Buying tip: A well-rounded choice at a fair price. Recommended for most buyers.
Estimated delivery: 17 Aug31 Aug
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Quick Specs

Item Type: DFRobot Module
Switch/Button: Yes
Operating Frequecy: 433Mhz
Transmission Rate (kbps): 10kbps
Encoding Format: EV1527
Output Power (W): 13dBm

Ideal For

Electronics projectsArduino / Raspberry Pi buildsPrototyping
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SKU: robu-1283765Category: Bluetooth and NRF Modules

About This Product

The DFRobot Self-powered Wireless Switch (433Mhz) by DFRobot is a value-for-money bluetooth and nrf modules designed for everyday users. It delivers reliable performance at an accessible price.

Key Specifications

  • Item Type: DFRobot Module
  • Switch/Button: Yes
  • Operating Frequecy: 433Mhz — smooth, flicker-free operation
  • Transmission Rate (kbps): 10kbps
  • Encoding Format: EV1527
  • Output Power (W): 13dBm
  • Modulation Method: OOK
  • Power Generation Energy: 600uJ

Why Buy from Pricio?

Pricio sources this product directly, cutting out multiple middlemen. Every order includes free shipping, a 15-day return policy, and secure payment via Razorpay.

In life, remote controllers can be seen everywhere, and most of them are inseparable from the battery. However, we often encounter problems when using the battery, for instance, it is troublesome to replace the battery, batteries are easy to corrode in a humid environment, or the waste batteries may cause serious environmental pollution. Do you know that wireless remote control can actually work without batteries! This self-powered wireless switch from DFRobot can send signals wirelessly without installing a battery. The switch is composed of a micro-generator and a 433Mhz radio frequency circuit. Based on the principle of electromagnetic induction, the micro generator converts the kinetic energy of the press into electrical energy that will be rectified and stored by the RF circuit later, by which a signal can be transmitted wirelessly. It is suitable as a maintenance-free switch for long-term monitoring of changes in the state of pressing, collision, etc., such as making wireless doorbells, pagers, food ordering devices, wall switches, etc. A receiver is required when using this product. It is recommended to use it with our official Gravity: Digital Wireless Switch Receiver (433MHz), or other receivers that support EV1527 decoding format and 10Kbps decoding rate. Connection Diagram: Applications:
  • Wireless doorbells
  • Pagers
  • Food ordering devices
  • Wall switches

Features:

  1. No battery needed, maintenance-free
  2. Wireless signal, wiring-free
  3. RF signal, strong penetration
  4. Onboard 4-position DIP switch, adjustable 15 states
  5. 1 million sets of random address codes
  6. The lifetime of 100,000 presses
  7. Press Frequency: no more than 4 times per second, continuously rapid press will cause energy accumulation that cannot be consumed in time, and eventually burn the chip
  8. Distance Test Condition: Straighten the wire antenna of the transmitting module, and for the receiving module, use [Gravity: Digital wireless switch receiver(433MHz)]

Useful Links:


Package Includes:

1 x DFRobot Self-powered Wireless Switch (433Mhz)

Setup Guide

1
Identify the pins
Locate VCC (power), GND (ground), and data pins (SDA/SCL for I2C, MOSI/MISO for SPI, or TX/RX for UART). Refer to the pinout diagram on the product page.
2
Wire to your microcontroller
Connect VCC to 3.3V or 5V (check the module spec), GND to GND, and data pins to the appropriate GPIO pins on your Arduino or Raspberry Pi.
3
Install libraries
In Arduino IDE, go to Sketch → Include Library → Manage Libraries and search for the sensor library. Install the recommended version.
4
Upload example sketch
Open File → Examples → [library name] → Basic Example. Upload to your board and open Serial Monitor to view output.
5
Calibrate if needed
Some sensors (temperature, humidity, distance) may need a short warm-up period or calibration. Run the calibration sketch if provided.