Texas Instruments_TMAG5110B2AQDBVRQ1

Texas Instruments
TMAG5110B2AQDBVRQ1  
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Texas Instruments
TMAG5110B2AQDBVRQ1
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Texas Instruments-TMAG5110B2AQDBVRQ1-datasheets-2387212.pdf
TMAG5110-Q1
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    TMAG5110B2AQDBVRQ1 Description

    The TMAG5110B2AQDBVRQ1 is a magnetic sensor module developed by Texas Instruments. It is designed to provide accurate and reliable measurements of magnetic fields in various applications.

    Description:

    The TMAG5110B2AQDBVRQ1 is a highly integrated magnetic sensor module that combines a magnetoresistive sensor element with a low-noise amplifier, 12-bit ADC, and a microcontroller. It is available in a compact QFN package, making it easy to integrate into a wide range of applications.

    Features:

    • Highly accurate and reliable magnetic field measurements
    • Wide supply voltage range (2.7V to 5.5V)
    • I2C digital interface for easy integration with microcontrollers and other digital systems
    • Programmable gain and resolution settings
    • Onboard temperature compensation for improved accuracy
    • Low power consumption (typical current consumption of 2.5mA in continuous mode)
    • Robust and compact QFN package

    Applications:

    The TMAG5110B2AQDBVRQ1 is suitable for a wide range of applications that require accurate and reliable magnetic field measurements. Some of the key applications include:

    1. Current sensing: The TMAG5110B2AQDBVRQ1 can be used to measure the magnetic field generated by current flowing through a conductor, making it ideal for applications such as power management and energy monitoring.
    2. Angle measurement: By measuring the magnetic field generated by a rotating magnet, the TMAG5110B2AQDBVRQ1 can be used to determine the angle of rotation in applications such as motor control and position sensing.
    3. Navigation and guidance: The TMAG5110B2AQDBVRQ1 can be used to measure the Earth's magnetic field for navigation and guidance applications in drones, robots, and other autonomous vehicles.
    4. Proximity sensing: The TMAG5110B2AQDBVRQ1 can detect the presence of nearby magnetic objects, making it useful for applications such as door and window sensors, and electronic locks.

    Overall, the TMAG5110B2AQDBVRQ1 is a versatile and reliable magnetic sensor module that offers high accuracy and ease of integration in a wide range of applications.

    Tech Specifications

    Polarization
    Module/IC Classification
    PPAP
    Product Status
    Current - Output (Max)
    Automotive
    Supplier Package
    Package / Case
    Technology
    Voltage - Supply
    REACH Status
    Maximum Operating Supply Voltage (V)
    Typical Magnetic Sensor Hysteresis (Gs)
    EU RoHS
    Sensing Range
    Moisture Sensitivity Level (MSL)
    Operating Temperature
    Test Condition
    ECCN
    Supplier Temperature Grade
    Mounting Type
    Standard Package Name
    Pin Count
    Mounting
    Typical Operating Supply Voltage (V)
    HTSUS
    Package
    PCB changed
    Output Type
    HTS
    Maximum Magnetic Sensor Operating Point (Gs)
    ECCN (US)
    Current - Supply (Max)
    Magnetic Type
    Supplier Device Package
    Minimum Operating Temperature (°C)
    Maximum Operating Temperature (°C)
    Function
    Package Height
    Mfr
    Features
    RoHS Status
    Maximum Supply Current (uA)
    Package Length
    Typical Output Fall Time (us)
    Series
    Minimum Magnetic Sensor Release Point (Gs)
    Part Status
    Maximum Output Current (mA)
    Package Width
    Minimum Operating Supply Voltage (V)
    Mounting Style
    Release Point Min/Max (Brp)
    Termination Style
    Maximum Output Current
    RoHS
    Supply Voltage - Min
    Minimum Operating Temperature
    Operating Point Min/Max
    Operating Supply Current
    Moisture Sensitive
    Operating Supply Voltage
    Maximum Operating Temperature
    Supply Voltage - Max
    USHTS
    Output Voltage

    TMAG5110B2AQDBVRQ1 Documents

    Download datasheets and manufacturer documentation for TMAG5110B2AQDBVRQ1

    Ersa TMAG511x-Q1      
    Ersa TMAG511x 05/Jul/2022      

    Shopping Guide

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