RCWL 0516 Microwave Radar Sensor Human Sensor Body Sensor Module Induction Switch Module Output 3.3V – KSH 400 at HIMA STORES Mombasa – Top quality modules. Best electronics in Kenya. Shop now for Arduino, ESP32, sensors and IoT devices.

RCWL 0516 Microwave Radar Sensor Human Sensor Body Sensor Module Induction Switch Module Output 3.3V

SKU: HMJ556 Category: Modules
KSH 400.00
In Stock
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Product Description

RCWL-0516 Microwave Radar Motion Sensor Module

High-Sensitivity Human Body Detection Module for Arduino

The RCWL-0516 is a microwave radar sensor module using Doppler radar technology to detect human movement through walls and other obstacles. It provides a digital output for simple integration with Arduino and other microcontrollers.

Detects Movement Through NonMetallic Surfaces Sees through walls, wood, plastic, and glass
Wide 3.3V to 5V Operation - Compatible with 3.3V and 5V logic systems
Operating voltage: 4.5V to 5V for most modules, with some 3.3V variants available .
Detection range: 3 to 7 meters (adjustable via onboard potentiometer) .
Unlike PIR sensors, this module requires no warm-up time and is not affected by heat sources .

Key Features

+Microwave Doppler Technology - Detects movement by sensing frequency changes in reflected radar waves .

+PIR Replacement - Better sensitivity and coverage angle compared to standard PIR sensors .

+Adjustable Sensitivity - Onboard potentiometer for setting detection range .

+Onboard LEDs - Power and trigger indicators provide immediate feedback .

= Applications =

  1. Smart lighting and automatic switches .
  2. Security systems and motion-activated alarms .
  3. Intelligent home automation .
  4. Long-distance human detection projects (such as in hallways) .
High Sensitivity - Detects motion through many materials and in complete darkness .
Versatile and Reliable - A great alternative to PIR sensors.

√ Works with Arduino, ESP32, and other 3.3V/5V logic boards .

√ Simple 3-pin interface: VCC, GND, OUT .

√ Repeatable trigger mode keeps output active while motion persists .