M13 Allicdata Electronics
Allicdata Part #:

374-1097-ND

Manufacturer Part#:

M13

Price: $ 2.37
Product Category:

Sensors, Transducers

Manufacturer: Standex-Meder Electronics
Short Description: ACTUATOR MAGNET FLANGE MNT
More Detail: N/A
DataSheet: M13 datasheetM13 Datasheet/PDF
Quantity: 746
1 +: $ 2.15460
5 +: $ 1.99836
10 +: $ 1.66005
25 +: $ 1.38348
50 +: $ 1.22976
100 +: $ 1.16827
500 +: $ 0.98381
1000 +: $ 0.92232
5000 +: $ 0.86083
Stock 746Can Ship Immediately
$ 2.37
Specifications
Series: M13
Part Status: Active
For Use With/Related Products: MK13
Housing Material: Polybutylene Terephthalate (PBT)
Material - Magnet: Alnico 5 (AlNiCo)
Package / Case: Flange Mount
Size: 0.906" L x 0.547" W x 0.232" H (23.0mm x 13.9mm x 5.90mm)
Operating Temperature: 70°C (TA)
Description

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

M13 application field and working principle is an important topic within the field of Magnets - Sensor Matched. This paper will discuss the key elements of M13 such as their application field and working principle.

In general, an M13 sensor is a powerful application of magnetic force and effective matching between magnets and sensor. The M13 sensor works to detect any change in the magnetic field by measuring the distance between two magnets. The sensors are commonly used in industrial and consumer applciations because of their ability to measure a wide range of magnetic field intensities.

In terms of the application field of M13 sensors, these magnetic sensing devices can be applied in automotive, aerospace, medical, and industrial fields. Sensor matching technology may be used to optimize the operating conditions of each sensor. It works to improve the quality and accuracy of each sensor’s readings. In particular, it helps to reduce interference from ambient magnetic fields or other sources.

The working principle for the M13 sensor revolves around the measurement of the distance between two magnets. The two magnets are placed in a closed loop configuration, allowing the distance between the two to be measured. When a change in the magnetic field occurs, the distance between the magnets is measured and the reading transmitted to the sensor. This reading can then be used to analyze the effects of the magnetic field as well as to determine its intensity.

The M13 sensor also takes advantage of its size and power to detect any changes in the magnetic field in a variety of situations. The sensors are incredibly compact and efficient, making them an ideal choice for industrial and consumer applications. For example, M13 sensors are widely used in automotive systems and can measure the temperature of automotive components quickly, accurately, and accurately.

M13 sensors also provide an efficient and reliable way of detecting the presence of electromagnetic fields. By tuning the loop configuration of the M13 sensors, it is possible to monitor and detect sudden changes in the magnetic field. This is particularly useful in environments such as power distribution grids.

Finally, M13 sensors provide a cost effective and efficient way to measure the strength of the magnetic field in an area. This data can then be used to identify potential power outages or any other anomalies in the area.

To conclude, M13 application field and working principle is a crucial part of Magnets - Sensor Matched. M13 sensors are used in numerous applications, from automotive to aerospace, medical to industrial fields. These powerful sensors can detect any change in the magnetic field as well as measure the intensity of the field. The sensors are highly efficient and low cost devices, allowing them to be used for a variety of industrial and consumer applications.

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

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