PD30ETP60NASA Allicdata Electronics
Allicdata Part #:

PD30ETP60NASA-ND

Manufacturer Part#:

PD30ETP60NASA

Price: $ 68.61
Product Category:

Sensors, Transducers

Manufacturer: Carlo Gavazzi Inc.
Short Description: SEN PHT PRR 6M NPN NO+NC
More Detail: N/A
DataSheet: PD30ETP60NASA datasheetPD30ETP60NASA Datasheet/PDF
Quantity: 1000
1 +: $ 62.37000
Stock 1000Can Ship Immediately
$ 68.61
Specifications
Series: --
Part Status: Active
Sensing Method: Retroreflective, Polarized
Sensing Distance: 236.2" (6m)
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: Red (625nm)
Adjustment Type: Adjustable, Potentiometer
Operating Temperature: -25°C ~ 60°C (TA)
Description

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Optical sensors are a vast group of devices used to collect information about light. These sensors can be used in a variety of applications, from displays to CCTV surveillance devices. One of the most popular types of optical sensors is the photoelectric, industrial, and NASA application field. This article will explain the working principle behind these sensors, as well as provide a few examples of how they are used.

PD30ETP60 Photoelectric

The PD30ETP60 photoelectric sensor, also known as a light-to-voltage sensor, measures the intensity of light entering a specific area. This sensor works by using a light sensitive resistor and an electrical current, which is used to measure the amount of light entering a certain zone. The electrical current is then used to create a voltage which can then be monitored. The PD30ETP60 photoelectric sensor is used in a variety of industries, such as medical equipment, automotive, industrial machinery, and consumer electronics.

Industrial Photoelectric Sensor

An industrial photoelectric sensor is designed to measure infrared radiation that is emitted from a particular area. This type of sensor is typically used in industrial applications, such as those that involve chemical, plastics, and metalworking processes. The industrial photoelectric sensor is used in these applications to measure and control the rate of production, or to monitor temperature and pressure. The industrial photoelectric sensor is capable of detecting changes in light that are outside the visible spectrum, which helps make it ideal for processes that require high levels of accuracy.

NASA Application Field

NASA has developed a specialized application field for the use of optical sensors. These sensors are used in a variety of space and planetary explorations. For example, they are used in Mars rover missions to collect data about soil composition and to conduct experiments that are not possible on Earth. Optical sensors are also used in the detection of meteorites, and to monitor and direct space debris.

Working Principle

The working principle behind optical sensors is based on a series of simple components. First, a light emitter emits photons which interact with a light detector. Then, based on the difference in light intensity or polarization, a signal is produced. This signal, essentially, is what is used to measure the light level of an area. Finally, this signal is processed by a signal processor, which allows the light intensity to be used for various applications.

The type of optical sensor, along with the type of light emitter, light detector, and signal processor will vary depending on the application. For example, a PD30ETP60 photoelectric sensor will use a light-sensitive resistor and electrical current to measure the light entering a certain area, while an industrial photoelectric sensor will use an infrared emitter and detector to measure temperature and pressure in an industrial environment.

Conclusion

Optical sensors are a versatile tool for collecting information about light. The PD30ETP60 photoelectric sensor, industrial photoelectric sensor, and NASA application field all fall under the same category and share the same working principle. By using the light emitter, light detector, and signal processor components, these sensors can measure the amount of light present in a given area, or detect changes in temperature and pressure. These sensors are most often used in medical equipment, automotive systems, industrial machinery, and consumer electronics.

The specific data is subject to PDF, and the above content is for reference

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