59135-2-U-04-F Allicdata Electronics
Allicdata Part #:

F11460-ND

Manufacturer Part#:

59135-2-U-04-F

Price: $ 7.01
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 Pro...
DataSheet: 59135-2-U-04-F datasheet59135-2-U-04-F Datasheet/PDF
Quantity: 500
1 +: $ 6.37560
5 +: $ 5.59188
10 +: $ 5.03244
25 +: $ 4.47300
50 +: $ 4.13759
100 +: $ 3.57840
500 +: $ 3.35475
1000 +: $ 3.13110
Stock 500Can Ship Immediately
$ 7.01
Specifications
Series: 59135
Part Status: Active
Output Type: SPST-NO
Type: Reed Switch
Actuator Material: Magnet
Termination Style: Wire Leads
Voltage - Supply: --
Must Operate: --
Must Release: --
Operating Temperature: -20°C ~ 105°C (TA)
Package / Case: Probe
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

The 59135-2-U-04-F Magnetic Sensor is a modernized device that can be utilized for a variety of applications. It is part of the Magnetic Sensor category of devices and the Position, Proximity, Speed module. The 59135-2-U-04-F Magnetic Sensor is a field-effect device and contains a Hall effect sensor as its core component. This Hall effect sensor has a variety of characteristics that make it suitable for a variety of applications.

In terms of applications, the 59135-2-U-04-F Magnetic Sensor can be used in a variety of situations. For example, it can be used in a variety of control systems that rely on magnetic fields to measure position and speed, as well as proximity. The sensor is also used in medical devices to measure blood flow, as well as to track the orientation and motion of a person or object. Additionally, the sensor can be used in mechanical systems to monitor the vibration levels of rotating parts.

In terms of its operation, the 59135-2-U-04-F Magnetic Sensor works by relying on the Hall effect. The Hall effect is based on the fact that electrical current is impacted by the presence of a magnetic field. The 59135-2-U-04-F Magnetic Sensor utilizes this principle by utilizing a Hall effect sensor to measure the magnetic field around it. This data is then passed through an amplifier and a signal processing system. The signal is then transmitted to the desired point.

From the system’s perspective, the 59135-2-U-04-F Magnetic Sensor operates as a voltage-driven device and is connected to an external power source. Upon receiving the power, the device activates the Hall effect sensor and takes measurement readings. These readings are then passed to an amplifier and then processed by a controller in order to produce an output signal. Depending on the application, this output signal can be used to control an actuator or to provide feedback for further processing.

The 59135-2-U-04-F Magnetic Sensor has several advantages over traditional devices. For example, it is cost-effective and relatively easy to install and maintain. The sensor also offers high precision accuracy for a variety of applications. Additionally, since the device utilizes the Hall effect, the sensor is highly resistant to temperature fluctuations, making it suitable for external environments.

When it comes to the design of the 59135-2-U-04-F Magnetic Sensor, the device is highly compact and lightweight. This makes it ideal for a wide variety of applications. Additionally, since the device is voltage-driven, it offers increased sensitivity and is capable of detecting even the slightest changes in applied magnetic fields.

Overall, the 59135-2-U-04-F Magnetic Sensor is an excellent device for a variety of applications requiring the detection of magnetic fields. It offers many advantages over traditional sensors, including its resistance to temperature variations and its high precision accuracy. Its ease of installation and maintenance also make the device more attractive to users. As such, the 59135-2-U-04-F Magnetic Sensor is an excellent choice for those needing to measure magnetic fields in various applications.

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

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