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IR Sensor Array of 8
₹500.00 Original price was: ₹500.00.₹400.00Current price is: ₹400.00. inc. GST
- 8 IR Sensors with High Range
- Operating voltage: 3.3 to 5V
- Current supply: 100mA
- Output format: 8 digital I/O compatible signal
- Optimal sensing distance: 3 mm.
- Maximum recommended sensing distance: 6 mm
- Distance between each IR Sensor: 15mm
- Analog and Digital Output pins
- Potentiometer to adjust the sensitivity of the individual sensors
- Applications Line Follower Robots Object Array Sensing
- No analogue to digital conversion requires
- Improved sensitivity over voltage-divider analogue output
- Parallel reading of multiple sensors is possible
- Quality FR4 grade PCB for best performance.
- Dimension: 74.93mm x 12.7mm x 3.175mm
Out of stock
The IR Sensor Array of 8 consists of 8 IR LED/phototransistor pairs mounted on a 0.375″ pitch. These sensors are a great detector for a line-following robot. All the LED s in the module are connected in series to halve the current consumption. And an IC allows the LEDs to turn off for additional sensing or power-savings options. Each sensor generates separate digital I/O as well as Analog Output also. The module was designed as a perfect carrier for eight IR emitter and receiver (photoresistor/photodiodes) pairs evenly spaced at a distance of 15mm intervals. Thus used as a general-purpose proximity IR or reflectance sensor.
Each phototransistor equipped with a pull-up resistor in the module forms a voltage divider and produces an analogue voltage output between 0 to 5V as the function of the reflectance sensor. The lower the output voltage greater will be the reflection. Even though all the LED s are paired, the output is independent of each other. The LEDs in the module are controlled by MOSFET with a gate normally pulled high that allows LEDs to turn off by setting the MOSFET gate at low voltage. An onboard potentiometer in the sensor allows adjusting the sensitivity of the individual sensors. It will be advantageous if we turn OFF the LED for limiting power consumption when the sensors are not in use or for varying the effective brightness of the LEDs through PWM control.
APPLICATION
- Line following robot
- DIY electronics and robotics projects

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