The OPB991L55 is a reflective object sensor that belongs to the category of optoelectronic devices. It is commonly used for detecting the presence or absence of objects, and it possesses characteristics such as high sensitivity, compact size, and reliable performance. The sensor is typically packaged in a durable housing, and it is available in various packaging quantities to suit different application requirements.
The OPB991L55 sensor has a standard pin configuration with three pins: 1. VCC (Voltage Supply) 2. GND (Ground) 3. OUT (Digital Output)
The OPB991L55 operates based on the principle of reflective sensing. It emits an infrared light beam and detects the reflection from the object in front of it. When an object is present within its sensing range, the sensor's output changes, indicating the object's presence.
The OPB991L55 sensor finds extensive use in various applications, including: - Automated assembly lines for object detection - Robotics for proximity sensing - Industrial machinery for part presence verification
Some alternative models to the OPB991L55 sensor include: - TCRT5000 - A similar reflective object sensor with adjustable sensitivity - QRE1113 - A reflective sensor with analog output for distance measurement - GP2Y0A21YK - Infrared proximity sensor with longer sensing range
In conclusion, the OPB991L55 reflective object sensor offers high sensitivity and reliable performance, making it suitable for diverse applications in automation and robotics. While it has limitations in sensing distance and susceptibility to ambient light interference, its compact design and functional features make it a valuable component in many electronic systems.
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What is OPB991L55?
What are the key features of OPB991L55?
How does OPB991L55 work?
What are the typical applications of OPB991L55?
What is the operating voltage range of OPB991L55?
Can OPB991L55 be used in outdoor environments?
What is the sensing distance of OPB991L55?
Does OPB991L55 require any calibration before use?
Is OPB991L55 resistant to environmental factors such as dust and moisture?
Are there any special considerations for integrating OPB991L55 into a technical solution?