Allicdata Part #: | PD30ETD02NAWE-ND |
Manufacturer Part#: |
PD30ETD02NAWE |
Price: | $ 68.61 |
Product Category: | Sensors, Transducers |
Manufacturer: | Carlo Gavazzi Inc. |
Short Description: | SEN PHT DR 0.2M NPN NO+NC |
More Detail: | N/A |
DataSheet: | PD30ETD02NAWE Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 62.37000 |
Series: | -- |
Part Status: | Active |
Sensing Method: | Reflective, Diffuse |
Sensing Distance: | 7.874" (200mm) |
Voltage - Supply: | 10 V ~ 30 V |
Response Time: | 500µs |
Output Configuration: | NPN |
Connection Method: | Cable |
Ingress Protection: | IP68, IP69K |
Cable Length: | 78.740" (2000.00mm) |
Light Source: | Infrared (617nm) |
Adjustment Type: | Adjustable, Potentiometer |
Operating Temperature: | -25°C ~ 60°C (TA) |
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Optical sensors have a wide range of applications across many industries, including from healthcare to industrial to energy. One of the key types of optical sensors is the Photoelectric Sensor, which is used for detecting objects. PD30ETD02NAWE is a type of Photoelectric Sensor within the Industrial range of products. This article will discuss the application field and working principle of PD30ETD02NAWE.
Application Field
PD30ETD02NAWE is used for sensing of objects which are solid or liquid. The sensor is employed in equipment that has to identify objects automatically. It has been designed to cover a range of industry and application needs and can be used in different environments. The applications where PD30ETD02NAWE is widely used include the following:
- Manufacturing Processes
- Food and Beverage Industries
- Packaging Industries
- Automotive Industries
- Textile Industries
- Electronic Industries
- Chemical Industries
- Pharmaceutical Industries
- Oil and Gas Industries
- Healthcare Industries
Working Principle
The main working principle of PD30ETD02NAWE is light reflection. It consists of a light-emitting diode and a photosensitive receiver. The diode is activated when the receiver senses an object. The receiver will detect the amount of light reflected from the object and also the intensity of the light. The amount of light reflected by the object is then translated into an electrical signal.
PD30ETD02NAWE has been designed to use two detection methods: simultaneous and sequential. The simultaneous detection method utilizes two light beams that are transmitted simultaneously. The amount of light reflected from the object is then compared to the initial light emitted by the diode and translated into an electrical signal. Whereas, the sequential detection method utilizes signal strength providing excellent noise immunity. This makes the modem suitable for detecting bifurcated objects in a production line.
PD30ETD02NAWE offers a wide range of operating ranges, from long-range detection to short-range detection. It is also equipped with a built-in amplifier which enables the device to detect objects from a farther distance. Moreover, PD30ETD02NAWE requires minimal setup allowing for easy installation and integration into production lines.
In addition, the Photoelectric Sensor is equipped with an adjustable sensitivity knob which allows for easy adjustment of the sensor’s detection range. This can be used to improve the accuracy and consistency of the sensor’s performance in different applications and environments. Moreover, the device is also equipped with overvoltage and overload protection which ensures its long-term stability and reliability.
Conclusion
PD30ETD02NAWE is an industrial type of photoelectric sensor which is used for detecting objects. It offers a wide range of applications, from manufacturing processes to the healthcare industry. The main working principle of the device is light reflection, utilizing two different detection methods, simultaneous and sequential. It is also equipped with adjustable sensitivity knob, as well as an overload and overvoltage protection for improved stability and reliability of the device. This makes the device a suitable solution for object identification and detection in different industrial environments.
The specific data is subject to PDF, and the above content is for reference
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