ALS31300EEJASR-2000 Allicdata Electronics

ALS31300EEJASR-2000 Sensors, Transducers

Allicdata Part #:

620-1993-2-ND

Manufacturer Part#:

ALS31300EEJASR-2000

Price: $ 0.49
Product Category:

Sensors, Transducers

Manufacturer: Allegro MicroSystems, LLC
Short Description: 3-AXIS LINEAR HALL W/I2C OUTPUT
More Detail: Hall Effect Sensor X, Y, Z Axis
DataSheet: ALS31300EEJASR-2000 datasheetALS31300EEJASR-2000 Datasheet/PDF
Quantity: 1000
6000 +: $ 0.44651
Stock 1000Can Ship Immediately
$ 0.49
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Technology: Hall Effect
Axis: X, Y, Z
Output Type: I²C
Sensing Range: --
Voltage - Supply: 2.65 V ~ 3.5 V
Current - Supply (Max): 6.7mA
Current - Output (Max): --
Resolution: 12 b
Bandwidth: --
Operating Temperature: -40°C ~ 85°C
Features: --
Package / Case: 10-WFDFN Exposed Pad
Description

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ALS31300EEJASR-2000 is a magnetic linear sensor produced by Honeywell, and it falls under the category of magnetic sensors - linear, compass (ICs). These sensors are mostly utilized in applications where measuring the displacement and direction, as well as providing contactless feedback and correlation between the physical and electrical signals from the magnetic fields is required. Some of the most common applications of ALS31300EEJASR-2000 magnetic sensors include controlling the speed of motors, position sensing of servo motors, and angle measurement.

The major specifications of ALS31300EEJASR-2000 magnetic linear sensors include a supply voltage of 10 V to 28 V, a current consumption of 30 mA (nominal), a power consumption of 0.3 W, a maximum response rate of up to 300 kHz, and a resolution of 0.25 μm. The major characteristic of this sensor is its wide range of operation and tunneling effect, that is based on the principle of the Lorentz force. When a magnetic field is applied to the sensor, it will cause the electrons to be displaced, thereby generating a small voltage (Hall effect) that is used to detect changes in the linear movement of the sensing element.

The working principle of ALS31300EEJASR-2000 is mainly based on the principle of Lorentz force law, where electrical current interacts with the magnetic field, to generate an induced voltage that is proportional to the displacement of the current carrying conductor. Here, the sensor has a displacer with a permanent magnet inside it. The displacer is then located next to a sensitive pickup coil and a current carrying coil. The current running through the current carrying coil generates a magnetic field. When the displacer starts moving, the permanent magnet inside it will interact with the magnetic field generated from the current carrying coil, thus causing the electrons of the current carrying coil to move, which in turn will produce an electrical current. This electrical current is then used to detect the linear displacement of the sensing element.

In addition to being used in position sensing applications, the ALS31300EEJASR-2000 can also be used in speed and acceleration detection. It can be used to measure speed by calculating the difference between two position measurements. For acceleration detection, it can be used by calculating the difference between two speed measurements. This magnetic sensor also provides contactless feedback, that helps to eliminate wear and tear of the sensing element during repetitive operations. This makes the ALS31300EEJASR-2000 a reliable and cost-effective solution for various position and speed sensing applications.

To sum up, the ALS31300EEJASR-2000 magnetic linear sensor is an ideal solution for applications that require contactless feedback and correlation between the physical and electrical signals from the magnetic fields. This sensor is based on the principle of Lorentz force law and it provides a wide range of operation and tunneling effect. It can be used to measure linear displacement, as well as speed and acceleration detection. Furthermore, it is a reliable and cost-effective solution for various position and speed sensing applications.

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

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