TCRT5000 Reflective Optocoupler
₦300.00
The TCRT5000 Reflective Optocoupler is a versatile and reliable sensor module designed for detecting the presence of an object or surface. It combines an infrared emitter and phototransistor in a single package, making it ideal for applications requiring non-contact detection. This sensor is commonly used in line-following robots, object detection systems, and other automation projects.
Key Features:
- Reflective Sensor: Detects objects and surfaces using infrared light
- Compact Design: Small form factor for easy integration
- High Sensitivity: Accurate detection of reflective surfaces
- Low Power Consumption: Efficient performance in various applications
- Wide Operating Range: Capable of detecting objects over a range of distances
Technical Specifications:
- Emitter Type: Infrared LED
- Detector Type: Phototransistor
- Peak Emission Wavelength: 950 nm
- Operating Voltage: 5V
- Current Consumption: Typically 20 mA
- Sensing Distance: 1 mm to 25 mm (optimal range varies with surface reflectivity)
- Output Type: Digital
- Operating Temperature: -25°C to +85°C
- Dimensions: 10.2 mm x 5.8 mm x 7 mm (L x W x H)
Applications:
- Line-following robots
- Object detection systems
- Optical encoders
- Position sensing
- Automation projects
Usage:
- Connect the VCC pin to a 5V power supply.
- Connect the GND pin to the ground of the power supply.
- Connect the output pin to the input pin of a microcontroller or other digital input device.
- Position the sensor so that it faces the object or surface to be detected.
- The sensor will output a digital signal indicating the presence or absence of the object.
Caution:
- Avoid exposure to direct sunlight or strong ambient light to ensure accurate detection.
- Handle the sensor with care to avoid damage to the components.
- Ensure proper connections to avoid short circuits or incorrect readings.
Datasheet: For more detailed technical information, refer to the TCRT5000 Reflective Optocoupler Datasheet.
In stock
Reviews
There are no reviews yet.