Hardware RequiredArduino Uno with USB Cable 1SG-90 Servo Motor 1Obstacle Avoidance Sensor Module 29v Battery -1Battery with DC jack -1Breadboard 830 pt -1Jumper wire (Male to Male) - 40 pcsJumper wire (Male to Female)- 40 pcs IntroductionIn this project, w
Security Policy (Protecting Your Data, Ensuring Your Safety)
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Return Policy (60 day easy Return)In this project, we have used this module for movement of certain parts or robotic components.
Arduino IDE 1.8.5 (programmable platform for Arduino)
Click To Download: https://www.arduino.cc/en/Main/Software
The IR Obstacle Avoidance Sensor works by sending infrared light when the infrared light is reflected and received by the receiver your autonomous vehicle will stop. The sensor has a potentiometer which can be adjusted to change the detection distance.
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Connector |
JR and FP connector |
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Cable Length |
25 cm |
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Operating System |
NO load ; : 0.12 sec / 60 degree (4.8V), 0.10 sec / 60 degree (6.0V) |
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Stall Torque (4.8 V) |
1.6kg/cm |
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Temperature |
-30~60’C |
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Dead band width |
5 us |
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Working Voltage |
3.5~6V |
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Dimension |
1.26 in x 1.18 in x 0.47 in (3.2 cm x 3 cm x 1.2 cm) |
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Weight |
4.73 oz (134 g) |
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Motor Type |
3 pole |
NOTE: Please adjust the sensitivity by the potentiometer over the module so that it can show a better result.
Click to download the code: https://drive.google.com/open?id=1Gv4l6H76nWt07tUEJO_E0J181nh1r2rO
Welcome to the Arduino Based project which consists of Servo Motor and Obstacle Avoidance Module. The basic working principle of Obstacle avoidance module is being described here. This Infrared Obstacle Avoidance Sensor returns a signal when it detects an object in range. The range of the sensor is around 2-40 cm is distance. It operates at 3.5 to 5V around 20 milliamps. Infrared obstacle avoidance sensor is designed to detect obstacles or the difference in reflective services. One application is to help a wheeled robot avoid obstacles with a sensor to react to adjustable distance settings. This device has an infrared transmitter and receiver that forms the sensor pair. The transmitter LED emits a certain frequency of infrared, which the receiver LED will detect. The receiving LED will detect some of the signal back and will trigger the digital on/off signal pin when a specific threshold distance has been detected. This way we can also control the movement of various robotic parts attached with the circuit.
Most boards will have 2 potentiometers, one of which is to adjust how sensitive the sensor is. You can use it to adjust the distance from the object at which the sensor detects it. Typically, the other potentiometer, which changes the transmitter IR frequency is not adjusted.
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