AMS22U5A1BHARL133 Allicdata Electronics
Allicdata Part #:

AMS22U5A1BHARL133-ND

Manufacturer Part#:

AMS22U5A1BHARL133

Price: $ 38.81
Product Category:

Sensors, Transducers

Manufacturer: Bourns Inc.
Short Description: ROTARY NON-CONTACT ANALOG SENSOR
More Detail: Hall Effect Sensor Rotary Position Round Shaft Sol...
DataSheet: AMS22U5A1BHARL133 datasheetAMS22U5A1BHARL133 Datasheet/PDF
Quantity: 1000
1 +: $ 35.28000
5 +: $ 33.51600
10 +: $ 30.87000
25 +: $ 27.34200
50 +: $ 26.46000
100 +: $ 25.57800
Stock 1000Can Ship Immediately
$ 38.81
Specifications
Series: AMS22U
Part Status: Active
For Measuring: Rotary Position
Technology: Hall Effect
Rotation Angle - Electrical, Mechanical: 10° ~ 330°, Continuous
Linear Range: --
Output: Analog Voltage
Output Signal: Counterclockwise Increase
Actuator Type: Round Shaft
Linearity: ±0.5%
Resistance Tolerance: --
Voltage - Supply: 5V
Mounting Type: Panel Mount
Termination Style: Solder Lug
Operating Temperature: -40°C ~ 125°C
Description

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The AMS22U5A1BHARL133 is a position sensor of the angle and linear position measuring type. This type of sensor is used to measure the angle of rotation, position, or linear motion of a range of objects, including rotary actuators, motors, linear actuators, and other moving components. The AMS22U5A1BHARL133 is an absolute position sensor. This means that it does not require an initial reference point. Instead, it tracks and measures motion from any point of origin, providing accurate measurements and feedback.

The AMS22U5A1BHARL133 is an electronic digital sensor that uses Hall effect sensing technology to measure rotary and linear motion. The Hall effect is the generation of an electric current across a conductor, when exposed to a magnetic field. The basic principle of the Hall effect is that when a magnetic field is applied perpendicular to a conductor, a voltage is generated across the conductor in proportion to the strength of the magnetic field.

This type of sensor consists of two main parts; a Hall element and a magnet. The Hall element is a thin layer of semi-conductor material, which is exposed to the magnetic field. The output from the Hall element is an electrical AC signal, which is proportional to the motion, position, or angle of rotation. The magnet is attached to the object that is being measured and serves to generate the magnetic field. As the magnet moves, the strength of the magnetic field varies, and so the signal output by the Hall element changes. This change in signal is an accurate representation of the motion of the object that contains the magnet which is being measured.

The AMS22U5A1BHARL133 uses a Single Element Hall Technique which features a rectangular shaped magnet, a Hall sensing device and a central printed circuit board (PCB). This technique allows for an accurate output signal over a wide range of movement and has significantly improved traction and repeatability. In addition, the design of the PCB ensures that the Hall element is protected from dirt and other contaminants as well as providing increased robustness for electrical noise.

The AMS22U5A1BHARL133 has a wide range of applications. It is suitable for use in automotive, aerospace, medical, and agricultural industries. In automotive applications, this sensor can be used for actuation of throttle control and fuel system management. In aerospace, it can be used for stabilizing and precise positioning of guidance systems. In medical applications, it may be used in medical robotics and Artificial Intelligence (AI), for precise motion control. Lastly, in agricultural applications, it can be used for accurate and reliable counting of crop yields.

To conclude, the AMS22U5A1BHARL133 is an angle and linear position measuring sensor, which utilizes Hall effect sensing technology to measure rotary and linear motion with accuracy and precision. Its wide range of applications makes it an invaluable tool in various industries, from automotive and aerospace to medical and agricultural. Its robust design and Single Element Hall Technique ensures reliable performance even in extreme conditions and environments.

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

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