Allicdata Part #: | 365-1871-ND |
Manufacturer Part#: |
OPR5005 |
Price: | $ 2.43 |
Product Category: | Sensors, Transducers |
Manufacturer: | TT Electronics/Optek Technology |
Short Description: | SENSR OPTO TRANS 5.08MM REFL SMD |
More Detail: | Reflective Optical Sensor 0.050" (1.27mm) 4-SMD, N... |
DataSheet: | OPR5005 Datasheet/PDF |
Quantity: | 900 |
1 +: | $ 2.21130 |
100 +: | $ 2.12146 |
250 +: | $ 2.04186 |
500 +: | $ 1.96894 |
1000 +: | $ 1.89602 |
2500 +: | $ 1.82972 |
Series: | -- |
Packaging: | Tray |
Part Status: | Active |
Sensing Distance: | 0.050" (1.27mm) |
Sensing Method: | Reflective |
Voltage - Collector Emitter Breakdown (Max): | 30V |
Current - Collector (Ic) (Max): | 25mA |
Current - DC Forward (If) (Max): | 50mA |
Output Type: | Phototransistor |
Response Time: | -- |
Mounting Type: | Surface Mount |
Package / Case: | 4-SMD, No Lead |
Operating Temperature: | -55°C ~ 125°C |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Analog output reflective optical sensors are a type of sensor often used in applications requiring precise detection. One such sensor, the OPR5005, is specially designed to provide analog output. This article explains how and why these optical sensors are utilized, as well as a breakdown of the OPR5005\'s application field and working principle.
Analog output reflective optical sensors are useful when attempting to accurately convert a physical or analog event into a digital signal. By measuring the amount of reflected light from a surface, these sensors are able to provide output in the form of a linear analog voltage or current. This output is based on the amount of light reflected off of the target, making it highly accurate when used appropriately.
The OPR5005 is an analog output reflective optical sensor that is specifically designed to provide accurate output for applications requiring reliable measurements. It contains a CdS cell that is capable of detecting reflected light from a distance of up to 1 metre, making it ideal for applications where it is difficult to directly access the target. Additionally, its output can be adjusted using trimpot technology, allowing for smooth transition between different reflecting surfaces and allowing users to fine-tune the output accuracy and response time.
In terms of its application field, the OPR5005 is suitable for a wide range of applications involving detection and measurement. Its linear analog output makes it ideal for applications such as speed and distance measurement, position and motion detection, as well as automation and control. In addition, it is also suitable for robotics, surgical tool orientation and facial recognition applications, due to its high accuracy and high speed output. Overall, its versatile output and ability to detect from a distance make it suitable for many different types of applications.
The working principle behind the OPR5005 optical sensor is relatively straightforward. Its CdS cell is responsible for detecting the amount of light reflected off a target surface. This light is then converted into a linear analog voltage or current, which is then sent to the user. The amount of reflected light detected is adjusted based on the distance of the sensor to the target and the trimpot settings. This allows for a wide range of output settings and a reliable response time.
In conclusion, analog output reflective optical sensors are commonly used for detection and measurement applications requiring reliable results. The OPR5005 optical sensor is a clear example of this, capable of providing linear analog output from up to a metre away. Its applications range from distance and speed measurement to automation and facial recognition, while its working principle is based on the amount of light reflected off of a target surface. As such, it is a versatile and reliable optical sensor that is well suited to a variety of applications demanding accurate measurements.
The specific data is subject to PDF, and the above content is for reference
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