Allicdata Part #: | 296-49171-2-ND |
Manufacturer Part#: |
DRV5032FDDMRT |
Price: | $ 0.00 |
Product Category: | Sensors, Transducers |
Manufacturer: | Texas Instruments |
Short Description: | ULTRA-LOW POWER 1.65V TO 5.5V HA |
More Detail: | Digital Switch Unipolar Switch Push-Pull Hall Effe... |
DataSheet: | DRV5032FDDMRT Datasheet/PDF |
Quantity: | 1500 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Function: | Unipolar Switch |
Technology: | Hall Effect |
Polarization: | Either |
Sensing Range: | ±4.8mT Trip, ±3mT Release |
Test Condition: | -- |
Voltage - Supply: | 1.65 V ~ 5.5 V |
Current - Supply (Max): | 2.7mA |
Current - Output (Max): | 5mA |
Output Type: | Push-Pull |
Features: | -- |
Operating Temperature: | -40°C ~ 85°C |
Package / Case: | 4-XFDFN Exposed Pad |
Supplier Device Package: | 4-X2SON (1.1x1.4) |
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Magnetic sensors and switches (also called solid state switches, or Magnetic Solid State) are a type of sensor that utilizes the variability in the magnetism at different ranges of sensors to detect the presence of metallic objects. The DRV5032FDDMRT is an example of such a device. It has a wide range of applications and can be used in a variety of sensing applications, such as proximity sensing, material handling, position sensing, and many more. In this article, we will discuss the application field and the working principle of the DRV5032FDDMRT.
The DRV5032FDDMRT is a fully integrated Hall effect switch. It is a low power and low voltage device capable of detecting a magnetic object while consuming very little power. The device can detect magnetic fields generated by a metallic object from a range of 0.2mT to 0.4 mT with a sensing range of up to 10cm. This makes it ideal for applications like material detection on conveyor belts, and other similar sensing applications.
The DRV5032FDDMRT is a digital Hall effect sensor, meaning that it produces a digital output signal. It is powered through a 3.3V power source which can either come from an external source or from the on board power supply. Unlike analog Hall effect sensors, which require calibration and complicated programming, the DRV5032FDDMRT is programmed and calibrated by the user with the software provided along with the device. This makes it extremely easy to use and configurable for applications with different sensing ranges.
Since the DRV5032FDDMRT is a digital sensor, it has several advantages over analog sensors. For example, it is more immune to interference from environmental factors. Additionally, the device has a robust design, with the ability to survive in temperatures up to 125ºC. This makes it perfect for many industrial applications, as well as for automotive applications.
To understand how the DRV5032FDDMRT works, it is important to understand the two main components of the device which are the Hall Effect IC and the integrated magnetometer. The Hall Effect IC is a transducer that converts the magnetic field detected by the sensors into a digital signal. This signal is then used to send a signal to the external device for sensing purposes. The integrated magnetometer uses the sensors to measure changes in the magnetic field. This allows the device to sense the presence and proximity of a metallic object, and then send the corresponding signal back to the device.
The main benefit of the DRV5032FDDMRT is its ability to detect metallic objects even in challenging environments. This includes applications in automotive, industrial, and consumer scenarios. The device is able to continuously monitor an area for a constant magnetic field, and then send an appropriate signal back to the external device. This makes it ideal for applications in which safety is paramount, such as in automotive applications.
In summary, the DRV5032FDDMRT is an ideal magnetic sensor for a variety of sensing applications. It has a wide range of applications and is fairly easy to use. It is also robust and able to survive in harsh environments. This makes the device an ideal choice for sensing applications in automotive, industrial, and consumer scenarios.
The specific data is subject to PDF, and the above content is for reference
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