PF50 series photoelectric sensor is the best sell model, the product with integrated molding process can be used both indoor and outdoor. The product with aspheric optical lens can eliminate light interference effectively , Free voltage10-30V DC & 12-240V DC/AC for selecting which can meet different demands of customers.
This Series includes through beam type, Retro-reflective type, diffused type, for reflective type there are infrared light and laser for selecting .
PF50 series photoelectric sensor is mainly used to automatic doors, intelligent parking, turnstile gates , boom barrier for people and vehicle protection .
Main Features
PF50R-AR Photoelectric Sensor Features::
1. Ultra-long 8-meter detecting distance
2. Red laser positioning is a convenient, high precision
3. IP67-rated waterproof housing
4. Light/dark through the model selection
5. With short circuit protection and reverse polarity protection
Laser light source is easy to align. Built-in polarizer design for easy detection of highly reflective objects
Product application: mainly used for industrial high-speed doors
PF50R Photoelectric Sensor Features:
1. 7-meter detecting distance
2. Free voltage 10-30V DC & 12-240V DC/AC for selecting which can meet different demands of customers.
3. IP67-rated waterproof housing
4. Aspheric optical lens can eliminate light interference effectively
5. With short circuit protection and reverse polarity protection
Square housing design with visible status indicators
Larger light spot for more sensitive object detection.
PF50D Photoelectric Sensor Features:
1.1.5-meter detecting distance
2.One-piece design, protection grade IP67
3.Reverse polarity protection facility
4.Simple and convenient installation
5.Optional LIGHT ON/DARK ON
PF50T Photoelectric Sensor Features:
1.Through beam type, 10m/18m/25m/50m detecting distance
2.High reliability, can work normally in harsh environments
3.Stable and reliable in a robust housing
4.Integral package, protection rating IP67
What is Photoelectric Sensor?
Photoelectric Sensor is a general term for sensors that use a photoelectric device as a conversion element. It first converts the non-electrical quantity to be measured into a change in the quantity of light (intensity, frequency or wavelength, phase, polarization state of light), and then converts the corresponding quantity of light into an electrical quantity by means of a photoelectric device. Photoelectric sensors can be used to measure changes in the amount of light directly caused by other non-electric quantities, such as light intensity, light illuminance, radiation temperature measurement, gas composition analysis, etc.; can also be used to measure changes in the amount of light can be converted to other non-electric quantities, such as the diameter of the part, the surface roughness, strain, displacement, vibration, speed, acceleration, as well as the shape of the object, the identification of the working condition.
Optical modulation technology is commonly used in photoelectric sensors. The so-called "modulation" is the transmission of the signal (information) of the object of study through a carrier. Therefore, the optical commissioning process is to carry the information signal superimposed on the carrier light wave, the device to complete this process is called a modulator. The modulator enables the parameters of the carrier lightwave to vary with the applied signal. The demodulation process of light is usually the carrier wave of light carried by the signal is converted into light intensity changes, and then detected by the photoelectric device. Optical modulation techniques include optical intensity modulation, optical frequency or wavelength modulation, optical phase modulation and optical polarization state modulation. Among them, optical intensity modulation is the most commonly used modulation technique.
Application
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