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P+F sensor NCN4-12GM35-N0-V1 Suzhou

NegotiableUpdate on 05/14
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Overview

The P+F sensor NCN4-12GM35-N0-V1 Suzhou $r $nP+F sensor is a sensor that uses optoelectronic devices as conversion elements. It can be used to detect non electric quantities that directly cause changes in light intensity, such as light intensity, illuminance, radiation temperature measurement, gas composition analysis, etc; It can also be used to detect other non electric quantities that can be converted into changes in light quantity, such as part diameter, surface roughness, strain, displacement, vibration, velocity, acceleration, as well as recognition of object shape and working status. Optoelectronic sensors have the characteristics of non-contact, fast response, and reliable performance, so they are widely used in industrial automation devices and robots

Product Details

P+F sensor NCN4-12GM35-N0-V1 Suzhou


P+F sensors are sensors that use optoelectronic devices as conversion elements. It can be used to detect non electric quantities that directly cause changes in light intensity, such as light intensity, illuminance, radiation temperature measurement, gas composition analysis, etc; It can also be used to detect other non electric quantities that can be converted into changes in light quantity, such as part diameter, surface roughness, strain, displacement, vibration, velocity, acceleration, as well as recognition of object shape and working status. Optoelectronic sensors are widely used in industrial automation devices and robots due to their non-contact, fast response, and reliable performance. In recent years, new optoelectronic devices have emerged continuously, especially the birth of CCD image sensors, which has opened up a new page for the further application of P+F sensors.


The main function of P+F sensor is:

People must rely on sensory organs in order to obtain information from the outside world. However, relying solely on people's own sensory organs is far from sufficient for studying natural phenomena, laws, and production activities. To adapt to this situation, sensors are needed. Therefore, it can be said that sensors are an extension of human facial features, also known as electrical features.

With the arrival of the new technological revolution, the world has entered the information age. In the process of utilizing information, the first thing to solve is to obtain accurate and reliable information, and sensors are the main way and means to obtain information in the natural and production fields.

In modern industrial production, especially in automated production processes, various sensors are used to monitor and control various parameters in the production process, so that the equipment can work in normal or optimal state and achieve good product quality. Therefore, it can be said that without numerous excellent sensors, modern production loses its foundation.

In basic discipline research, sensors have a more prominent position. The development of modern science and technology has entered many new fields: for example, at the macro level, we need to observe the vast universe of thousands of light years, at the micro level, we need to observe the particle world as small as FM, vertically, we need to observe the evolution of celestial bodies for hundreds of thousands of years, and even the instantaneous reactions as short as s. In addition, various extreme technology research has emerged that plays an important role in deepening material understanding, exploring new energy, new materials, etc., such as ultra-high temperature, ultra-low temperature, ultra-high pressure, ultra-high vacuum, strong magnetic field, ultra weak magnetic field, etc. Obviously, it is impossible to obtain a large amount of information that cannot be directly obtained by human senses without suitable sensors. Many obstacles in basic scientific research lie in the difficulty of obtaining object information, and the emergence of new mechanisms and high-sensitivity detection sensors often leads to breakthroughs in this field. The development of some sensors is often the result of interdisciplinary research.

Sensors have already penetrated into a wide range of fields such as industrial production, space development, ocean exploration, environmental protection, resource investigation, medical diagnosis, biotechnology, and even cultural relic protection. It can be said without exaggeration that almost every modern project, from the vast space, to the vast ocean, to various complex engineering systems, cannot do without various sensors.

It can be seen that the important role of sensor technology in developing the economy and promoting social progress is very obvious. Countries around the world attach great importance to the development of this field. I believe that in the near future, sensor technology will make a leap forward and reach a new level commensurate with its important position.


The main features of P+F sensors are:

The characteristics of P+F sensors include miniaturization, digitization, intelligence, multifunctionality, systematization, and networking. It not only promotes the transformation and upgrading of traditional industries, but also has the potential to establish new industries, thus becoming a new economic growth point in the 21st century. Miniaturization is based on Micro Electro Mechanical Systems (MEMS) technology and has been successfully applied to silicon devices to make silicon pressure sensors.


P+F sensor NCN4-12GM35-N0-V1 Suzhou

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Partial models of P+F sensors:

P+F sensor UB800-18GM40A-I-V1

P+F sensor UB2000-30GM-H3

P+F sensor UC2000-30GM-E6R2-T-V15

P+F sensor UB500-F54-I-V15

P+F sensor UB2000-F54-E4-V15

P+F sensor UB1000-18GM75-E4-V15

P+F sensor UB800-18GM40A-E5-V1

P+F sensor UB500-G18GM75-I-V15

P+F sensor UB1000-18GM75-U-V15

P+F sensor UB4000-30GM-H3-V1

P+F sensor UB4000-30GM-E5-V15

P+F sensor UB500-30GM-E4-V15

P+F sensor UC2000-30GM-E6R2-V15

P+F sensor UB1000-18/GM75-E7-V15

P+F sensor UC4000-30GM-IUR2-V15

P+F sensor UC2000-30GM-E7R2-T-V15

P+F sensor UC4000-30GM-E6R2-V15

P+F sensor UB6000-30GM-E4-V15

P+F sensor UB2000-30GM-H3-V1

P+F sensor UB4000-30GM-E4-V15

P+F sensor UB1000-18GM75-E6-V15

P+F sensor UB500-18GM75-E4-V15

P+F sensor UB6000-30GM-E5-V15

P+F sensor UC2000-30GM-IUR2-T-V15

P+F sensor UC4000-30GM-E7R2-V15

P+F sensor UB500-F54-U-V15

P+F sensor UB2000-30GM-E5-V15

P+F sensor UB800-18GM40A-U-V1

P+F sensor UB500-18GM75-E5-V15

P+F sensor UB500-18GM75-E6-V15

P+F sensor UB1000-18GM75-I-V15

P+F sensor UB2000-F54-H3-V1

P+F sensor UC1000-30GM-UYR2-K-V15

P+F sensor UB1000-18GM75-E5-V15

P+F sensor UB2000-30GM-E4-V15

P+F sensor UB500-30GM-E5-V15

P+F sensor UC2000-30GM-E7R2-V15

P+F sensor UB2000-F54-E5-V15

P+F sensor UB500-18GM75-U-V15

P+F sensor UC6000-30GM-E7R2-V15

P+F sensor UB2000-F54-U-V15

P+F sensor UB2000-F54-I-V15

P+F sensor UC1000-30GM-E6R2-K-V15

P+F sensor UB500-18GM75-E7-V15

P+F sensor UC6000-30GM-IUR2-V15

P+F sensor UC6000-30GM-E6R2-15

P+F sensor UC2000-30GM-IUR2-V15