Allicdata Part #: | 296-40043-2-ND |
Manufacturer Part#: |
DRV5013BCEDBZRQ1 |
Price: | $ 0.00 |
Product Category: | Sensors, Transducers |
Manufacturer: | Texas Instruments |
Short Description: | MAGNETIC SWITCH LATCH SOT23-3 |
More Detail: | Digital Switch Latch Open Drain Hall Effect SOT-23... |
DataSheet: | DRV5013BCEDBZRQ1 Datasheet/PDF |
Quantity: | 1000 |
Specifications
Series: | Automotive, AEC-Q100 |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Function: | Latch |
Technology: | Hall Effect |
Polarization: | South Pole |
Sensing Range: | 18mT Trip, -18mT Release |
Test Condition: | -40°C ~ 150°C |
Voltage - Supply: | 2.7 V ~ 38 V |
Current - Supply (Max): | 2.7mA (Typ) |
Current - Output (Max): | 30mA |
Output Type: | Open Drain |
Features: | Temperature Compensated |
Operating Temperature: | -40°C ~ 150°C (TA) |
Package / Case: | TO-236-3, SC-59, SOT-23-3 |
Supplier Device Package: | SOT-23-3 |
Description
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DRV5013BCEDBZRQ1 Application Field and Working Principle
Magnetic sensors switches are devices used to detect the presence of an externally applied magnetic field. The DRV5013BCEDBZRQ1 is a solid state magnetic switch designed for a range of applications, including motor speed sensing, lamp protection, and HVAC systems. This article will provide an overview of the DRV5013BCEDBZRQ1 application field and the working principle behind it.
Application Field
The DRV5013BCEDBZRQ1 is a solid state magnetic switch that can be used in a range of applications. It has the ability to sense the presence of an externally applied magnetic field, and then act as a switch, providing either an on/off signal or a multiplexed signal. This makes it suitable for applications such as motor speed sensing, lamp protection, and HVAC systems.
In motor speed sensing applications, the DRV5013BCEDBZRQ1 can be used to detect the speed of a motor by sensing the rotational speed of a magnetically coupled rotor. This allows the motor to be monitored, and any potential over-speed conditions can be detected and dealt with accordingly.
The DRV5013BCEDBZRQ1 can also be used in lamp protection applications, where it can be used to detect the presence of a bulb in a lamp. This allows the user to quickly and easily detect if a bulb has failed, and safely switch off the power to the lamp in question.
Finally, the DRV5013BCEDBZRQ1 can be used in HVAC systems, where its ability to sense the presence of externally applied magnetic fields can be used to detect when certain motors are running. This can be used to improve the efficiency of the system, as it can automatically switch off the power to the motor when no longer required.
Working Principle
The DRV5013BCEDBZRQ1 is a solid state magnetic switch, and it works by sensing the presence of an externally applied magnetic field. The device has an integrated Hall-effect sensor, which is sensitive to magnetic fields. The Hall-effect sensor is connected to an amplifier circuit, which amplifies the signal from the sensor and outputs it as either an on/off signal or as a multiplexed signal.
The device also has an integrated switch circuit, which disconnects the magnetic field sensor from the amplifier circuit when the magnetic field reaches a certain strength. This ensures that the device is not affected by weak magnetic fields, which could potentially cause it to misbehave.
The DRV5013BCEDBZRQ1 is designed to be used in a variety of applications, where its ability to detect the presence of an externally applied magnetic field can be utilized. The device is relatively simple to use, and its integrated switch circuit prevents it from being affected by weak magnetic fields.
Magnetic sensors switches are devices used to detect the presence of an externally applied magnetic field. The DRV5013BCEDBZRQ1 is a solid state magnetic switch designed for a range of applications, including motor speed sensing, lamp protection, and HVAC systems. This article will provide an overview of the DRV5013BCEDBZRQ1 application field and the working principle behind it.
Application Field
The DRV5013BCEDBZRQ1 is a solid state magnetic switch that can be used in a range of applications. It has the ability to sense the presence of an externally applied magnetic field, and then act as a switch, providing either an on/off signal or a multiplexed signal. This makes it suitable for applications such as motor speed sensing, lamp protection, and HVAC systems.
In motor speed sensing applications, the DRV5013BCEDBZRQ1 can be used to detect the speed of a motor by sensing the rotational speed of a magnetically coupled rotor. This allows the motor to be monitored, and any potential over-speed conditions can be detected and dealt with accordingly.
The DRV5013BCEDBZRQ1 can also be used in lamp protection applications, where it can be used to detect the presence of a bulb in a lamp. This allows the user to quickly and easily detect if a bulb has failed, and safely switch off the power to the lamp in question.
Finally, the DRV5013BCEDBZRQ1 can be used in HVAC systems, where its ability to sense the presence of externally applied magnetic fields can be used to detect when certain motors are running. This can be used to improve the efficiency of the system, as it can automatically switch off the power to the motor when no longer required.
Working Principle
The DRV5013BCEDBZRQ1 is a solid state magnetic switch, and it works by sensing the presence of an externally applied magnetic field. The device has an integrated Hall-effect sensor, which is sensitive to magnetic fields. The Hall-effect sensor is connected to an amplifier circuit, which amplifies the signal from the sensor and outputs it as either an on/off signal or as a multiplexed signal.
The device also has an integrated switch circuit, which disconnects the magnetic field sensor from the amplifier circuit when the magnetic field reaches a certain strength. This ensures that the device is not affected by weak magnetic fields, which could potentially cause it to misbehave.
The DRV5013BCEDBZRQ1 is designed to be used in a variety of applications, where its ability to detect the presence of an externally applied magnetic field can be utilized. The device is relatively simple to use, and its integrated switch circuit prevents it from being affected by weak magnetic fields.
The specific data is subject to PDF, and the above content is for reference
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