S-5742NBL1I-Y3N3U Allicdata Electronics
Allicdata Part #:

S-5742NBL1I-Y3N3U-ND

Manufacturer Part#:

S-5742NBL1I-Y3N3U

Price: $ 0.41
Product Category:

Sensors, Transducers

Manufacturer: ABLIC U.S.A. Inc.
Short Description: BIPOLAR HALL EFFECT LATCH
More Detail: Digital Switch Bipolar Switch Open Drain Hall Effe...
DataSheet: S-5742NBL1I-Y3N3U datasheetS-5742NBL1I-Y3N3U Datasheet/PDF
Quantity: 1000
2000 +: $ 0.36590
Stock 1000Can Ship Immediately
$ 0.41
Specifications
Series: S-5742I
Part Status: Active
Function: Bipolar Switch
Technology: Hall Effect
Polarization: Either
Sensing Range: 3.3mT Trip, -3.3mT Release
Test Condition: 25°C
Voltage - Supply: 3.5 V ~ 26 V
Current - Supply (Max): 4mA
Current - Output (Max): 20mA
Output Type: Open Drain
Features: --
Operating Temperature: -40°C ~ 85°C (TA)
Package / Case: TO-226-3, TO-92-3 Short Body (Formed Leads)
Supplier Device Package: TO-92S
Description

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The S-5742NBL1I-Y3N3U is a part of the S-5742 Series of magnetic sensors - switches. It is an example of a solid-state magnetic sensor, which utilizes an integrated circuit developed by Panasonic in order to detect changes in external magnetic fields and actuate a switch. Such devices are mainly used in a variety of electronic circuits, and primarily employed in consumer, automotive, and industrial applications.

The S-5742NBL1I-Y3N3U magnetic sensor is comprised of an integrated circuit, a magnetic pin, and a sensing element. The integrated chip has two parts, a logic circuit and a switching circuit. The switching circuit contains two hall elements, which measure changes in the external magnetic field. The logic circuit then switches on or off based on the hall element measurements. The magnetic pin serves as the sensing element, and is sensitive to both ferromagnetic materials such as iron, as well as in ferrimagnetic materials such as rare-earth elements.

The primary application of the S-5742NBL1I-Y3N3U is as a Hall effect sensor, which is an integrated circuit that detects changes in magnetic field strength and converts this into an electronic signal output. It can be used as a low-power, low-cost alternative to mechanical switches, potentiometers, or relays. It is often used in consumer products, cars, and industrial machines.

As an example, the S-5742NBL1I-Y3N3U can be used to measure the speed and direction of a car\'s wheel rotation. The Hall effect sensor can then be connected to electronic circuits, such as microcontrollers, which can then provide feedback or make decisions based on the measurements. Additionally, the hall effect sensor can detect changes in position, torque, and rotational speed in order to control motors and provide feedback.

Additionally, the S-5742NBL1I-Y3N3U can be used as a proximity switch. The device can detect and actuate a switch when a magnet is in close proximity to its sensing element. This application can be used for point of sale systems, where the device can be triggered as a customer approaches and upon completion of a transaction; it can also be used as a security feature to detect the presence of a magnet, to unlock doors or activate alarms.

The S-5742NBL1I-Y3N3U has a wide variety of potential applications thanks to its low cost and versatility. Its primary advantage is its ability to sense changes in external magnetic fields without the use of a mechanical switch. This makes it ideal for applications where size and weight are at a premium, as well as for applications that require minimal power consumption.

In conclusion, the S-5742NBL1I-Y3N3U magnetic sensor - switch is a cost-effective, low-power solution to a wide variety of applications. Its sensing element is sensitive to both ferromagnetic materials and ferrimagnetic materials, allowing it to be used in a variety of applications such as Hall effect sensors, proximity switches, and position and rotational speed sensing. The S-5742NBL1I-Y3N3U is a versatile and cost-effective switch for a range of consumer, automotive, and industrial applications.

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

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