The OPB882N51Z is a reflective object sensor designed for use in various applications. This sensor falls under the category of optoelectronics and is commonly used for detecting the presence or absence of objects, as well as for position sensing. Its characteristics include high sensitivity, compact size, and reliable performance. The sensor is typically packaged individually and comes with essential components for easy integration into different systems.
The OPB882N51Z features a standard 4-pin configuration: 1. VCC (Power Supply) 2. GND (Ground) 3. Output 4. N/C (Not Connected)
The OPB882N51Z operates based on the principle of reflective sensing. It emits an infrared light beam and detects the reflection from nearby objects. When an object is present within the sensing range, the sensor's output changes, indicating the object's presence.
The OPB882N51Z is suitable for a wide range of applications, including: - Object detection in automated machinery - Position sensing in robotics and industrial equipment - Proximity sensing in consumer electronics - Presence detection in security systems
OPB9000
TCRT5000
In conclusion, the OPB882N51Z reflective object sensor offers high sensitivity and reliable performance, making it suitable for diverse applications. 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 various electronic systems.
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Sure, here are 10 common questions and answers related to the application of OPB882N51Z in technical solutions:
What is the operating voltage range for OPB882N51Z?
What is the typical output current of OPB882N51Z?
What is the typical sensing distance of OPB882N51Z?
Can OPB882N51Z be used for object detection in industrial automation applications?
Is OPB882N51Z suitable for use in harsh environments?
What is the typical rise and fall time of OPB882N51Z?
Can OPB882N51Z be used for speed and position sensing in robotics?
Does OPB882N51Z have built-in protection against reverse polarity?
What is the ambient operating temperature range for OPB882N51Z?
Can OPB882N51Z be used in conjunction with microcontrollers for digital signal processing?
I hope these questions and answers provide a good overview of the application of OPB882N51Z in technical solutions. Let me know if you need further information!