AMS22S5A1BHAFL116 Allicdata Electronics
Allicdata Part #:

AMS22S5A1BHAFL116-ND

Manufacturer Part#:

AMS22S5A1BHAFL116

Price: $ 32.78
Product Category:

Sensors, Transducers

Manufacturer: Bourns Inc.
Short Description: ROTARY NON-CONTACT ANALOG SENSOR
More Detail: Hall Effect Sensor Rotary Position Flatted Shaft S...
DataSheet: AMS22S5A1BHAFL116 datasheetAMS22S5A1BHAFL116 Datasheet/PDF
Quantity: 1000
1 +: $ 29.79900
5 +: $ 28.44450
10 +: $ 25.73550
25 +: $ 23.70390
50 +: $ 20.99480
100 +: $ 20.31750
Stock 1000Can Ship Immediately
$ 32.78
Specifications
Series: AMS22S
Part Status: Active
For Measuring: Rotary Position
Technology: Hall Effect
Rotation Angle - Electrical, Mechanical: 10° ~ 160°, Continuous
Linear Range: --
Output: Analog Voltage
Output Signal: Counterclockwise Increase
Actuator Type: Flatted Shaft
Linearity: ±0.5%
Resistance Tolerance: --
Voltage - Supply: 5V
Mounting Type: Panel Mount
Termination Style: Solder Lug
Operating Temperature: -40°C ~ 125°C
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

Position sensors, like the AMS22S5A1BHAFL116, are used in a wide variety of applications to measure position and accurately record the position of a system component or element. This position sensing technology is used in a variety of industries from automotive and aerospace to industrial, medical, and consumer products. Position sensors are often used to measure linear or angle position with varying degrees of accuracy.

The AMS22S5A1BHAFL116 sensor is a magnetic encoder for the differential line code interpolation system that is used in industrial applications, such as in assembly robots, in rolling mills, or in automotive applications. The sensor uses a combination of alternating magnetic fields and flux modulation to measure position, providing high levels of accuracy and reliability. The AMS22S5A1BHAFL116 is a three-wire device and is commonly used in applications such as motor control and robotic algorithms.

The working principle of the AMS22S5A1BHAFL116 position sensor is based on the fact that the magnet field interacts with a magnetic field. The sensor uses two perpendicularly disposed Flux Gate Magnetometers to sense the magnetic flux in two orthogonal directions. The magnetometer is made of an inductive loop and a pair of excitation coils generating two magnetic fields in orthogonal directions. As the target passes in front of the magnetometer, the magnetic flux generated by the field-generating coils produces an imbalance in the flux signals which is detected by the differential line code interpolator.

This imbalance is then converted by the interpolator into a digital signal that is sent to the system processor. The processor then calculates the actual position of the target based on the values collected from the differential line code. This position data can then be used in applications such as motor control or robotics to provide accurate and precise positioning of the target.

This data can also be used to provide feedback and assistance to operators in order to improve the accuracy and safety of operations. For example, the data could be used to stop a motor if it travels outside of the predetermined operating range, determined by the measured position. This can be used in applications such as machine tools for increased safety.

The AMS22S5A1BHAFL116 is one of the most reliable and accurate position sensors on the market. Its working principle is highly dependable and proven to provide accurate and repeatable results in industrial and consumer applications. This makes it an excellent choice for applications in automation, robotics, and motor control.

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

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