The OPB473P11 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 small, durable housing and is available in various packaging quantities to suit different application needs.
The OPB473P11 sensor has a standard 4-pin configuration: 1. VCC (Power supply) 2. GND (Ground) 3. Output (Digital signal output) 4. N/C (Not connected)
The OPB473P11 operates based on the principle of reflective sensing. It emits an infrared light beam and detects the reflection from an object within its sensing range. When an object is present, the sensor's output switches to indicate the detection.
The OPB473P11 sensor finds extensive applications in the following fields: 1. Industrial automation: Used for object detection in conveyor systems, robotic arms, and assembly lines. 2. Consumer electronics: Integrated into printers, copiers, and vending machines for paper jam detection and product counting. 3. Automotive: Employed in vehicle assembly plants for part presence verification and position sensing.
For users seeking alternative reflective object sensors, the following models can be considered: 1. TCRT5000 - Similar reflective sensor with adjustable potentiometer for sensitivity control. 2. GP2Y0A21YK - Longer-range reflective sensor with analog output for precise distance measurement. 3. EE-SX670 - Compact reflective sensor with built-in amplifier for noise immunity.
In conclusion, the OPB473P11 reflective object sensor offers reliable performance, compact design, and versatile applications, making it a valuable component in various electronic and industrial systems.
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What is OPB473P11?
How does OPB473P11 work?
What are the typical applications of OPB473P11?
What is the operating voltage range for OPB473P11?
What is the sensing distance of OPB473P11?
Can OPB473P11 be used in outdoor environments?
What is the output type of OPB473P11?
Is OPB473P11 sensitive to ambient light?
Can OPB473P11 be used for speed sensing applications?
What are some best practices for integrating OPB473P11 into a technical solution?