The OPB840L51 is a photo interrupter sensor designed for use in various electronic and mechanical applications. This optoelectronic device belongs to the category of sensors and is commonly used for detecting the presence or absence of an object. Its characteristics include high sensitivity, compact packaging, and reliable performance. The sensor is typically packaged individually and is available in varying quantities to suit different application needs.
The OPB840L51 features a standard 4-pin configuration: 1. VCC (Power Supply) 2. GND (Ground) 3. Signal Output 4. N/C (Not Connected)
The OPB840L51 operates based on the interruption of the infrared light beam between the emitter and detector components. When an object enters the sensing area, it obstructs the light beam, causing the phototransistor to switch its output state, indicating the presence of the object.
The OPB840L51 finds extensive use in various applications, including: - Object detection in industrial automation systems - Paper detection in printers and copiers - Position sensing in robotics and machinery - Proximity sensing in consumer electronics
For applications requiring similar functionality, alternative models to consider include: - OPB9000: Offers longer sensing distance and improved ambient light rejection - TCST2103: Provides a compact surface-mount package with similar sensing capabilities - EE-SX670: Features a slotted optical switch design for precise object detection
In conclusion, the OPB840L51 is a versatile photo interrupter sensor with high sensitivity and reliable performance, making it suitable for a wide range of electronic and mechanical applications.
Word Count: 311
Sure, here are 10 common questions and answers related to the application of OPB840L51 in technical solutions:
What is the operating voltage range of OPB840L51?
What is the typical output current of OPB840L51?
What is the typical sensing distance of OPB840L51?
Can OPB840L51 be used for object detection in industrial automation applications?
Is OPB840L51 suitable for use in harsh environments?
What is the typical rise/fall time of OPB840L51?
Can OPB840L51 be used in reflective sensing applications?
Does OPB840L51 have built-in protection against reverse polarity?
What is the typical ambient temperature range for OPB840L51?
Can OPB840L51 be used in battery-powered devices?
These questions and answers cover various aspects of the OPB840L51 sensor and its application in technical solutions. If you have any more specific questions, feel free to ask!