59010-1-S-05-E Allicdata Electronics
Allicdata Part #:

59010-1-S-05-E-ND

Manufacturer Part#:

59010-1-S-05-E

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer: Littelfuse Inc.
Short Description: SENSOR REED SW SPST-NO W LEADS
More Detail: Magnetic Reed Switch Magnet SPST-NO Wire Leads wit...
DataSheet: 59010-1-S-05-E datasheet59010-1-S-05-E Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 59010
Part Status: Obsolete
Output Type: SPST-NO
Type: Reed Switch
Actuator Material: Magnet
Termination Style: Wire Leads with Connector
Voltage - Supply: --
Must Operate: 6.00mm
Must Release: --
Operating Temperature: -40°C ~ 85°C (TA)
Package / Case: Probe
Description

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Introduction

59010-1-S-05-E is a magnetic position, proximity, and speed (module) sensor. This sensor is a single-channel, non-contact, analog magnetic sensor. It is designed to detect the presence of a magnetic field in a range of industrial applications. It is a high-precision, linear, and low-power sensor that is used in a variety of applications. It is suitable for use in position and maximum or minimum speed measurements, and for detecting the presence of magnetic objects, such as magnets, relays, and relays. This sensor is designed to be used in the presence of strong but moderate magnetic fields, such as those found in power plants, transformers, and other industrial applications.

Application Field

The 59010-1-S-05-E magnetic position, proximity, and speed (module) sensor can be used in various industrial applications including:
  • Power plants
  • Transformers
  • Antenna driving systems
  • Robotic applications
  • Position and speed measurement
  • Detection of permanent magnets
  • Industrial automation
The 59010-1-S-05-E is a versatile and versatile sensor that can be used in a variety of industrial applications. It is a robust and reliable sensor that is designed to be used in harsh environments. It is a high-precision linear and low-power sensor that can be used to detect the presence of a small magnet in a variety of applications. In addition, it is a reliable and robust alternative for those applications where permanent magnets are difficult or expensive to detect, such as in antenna driving systems.

Working Principle

The 59010-1-S-05-E magnetic position, proximity, and speed (module) sensor has a unique working principle that is based on the magnetic field detection. The sensor works by detecting the presence of a magnetic field. It is a non-contact sensor that operates on the principle of a Hall effect sensor. The sensor is basically a small coil wound around a conductive core. When a magnetic field is detected, it creates a small electric field in the core. This electric field is then used to detect the presence of a small magnet or a large magnetic field. This small electric field is then used to measure the position of the magnet or the magnetic field.

In addition, this sensor is capable of detecting the maximum and minimum speeds of a magnet. This is done by detecting the presence of a magnetic field and then measuring the speed of the magnet. The working principle of this sensor is based on the Hall effect. The Hall effect is a fundamental physical phenomenon in which a voltage potential is generated in an electrical conductor when a magnetic field is applied to it. The Hall effect is used in many applications, such as the measurement of the motion of a magnet, as well as in the detection of the presence of a magnetic field.

Conclusion

The 59010-1-S-05-E magnetic position, proximity, and speed (module) sensor is a versatile and reliable sensor used in a variety of industrial applications. It is a non-contact, analog magnetic sensor designed to detect the presence of a magnetic field in a wide range of industrial applications. This sensor is capable of detecting the presence of a small magnet or a large magnetic field and can be used to measure the position of a magnet or the speed of a magnet. The working principle of this sensor is based on the Hall effect, a fundamental physical phenomenon in which a voltage potential is generated in an electrical conductor when a magnetic field is applied to it.

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

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