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DRV5032FADBZT

DRV5032FADBZT

Obsolete
Texas Instruments

LOW-POWER (5HZ, <1ΜA) LOW-VOLTAGE (UP TO 5.5V) SWITCH

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DRV5032FADBZT

DRV5032FADBZT

Obsolete
Texas Instruments

LOW-POWER (5HZ, <1ΜA) LOW-VOLTAGE (UP TO 5.5V) SWITCH

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Description

General part information

DRV5032 Series

The DRV5032 device is an ultra-low-power digital-switch Hall effect sensor, designed for the most compact and battery-sensitive systems. The device is offered in multiple magnetic thresholds, sampling rates, output drivers, and packages to accommodate various applications.

When the applied magnetic flux density exceeds the BOP threshold, the device outputs a low voltage. The output stays low until the flux density decreases to less than BRP, and then the output either drives a high voltage or becomes high impedance, depending on the device version. By incorporating an internal oscillator, the device samples the magnetic field and updates the output at a rate of 80Hz, 20Hz or 5Hz for the lowest current consumption. Omnipolar and unipolar magnetic responses are available.

The device operates from a VCC range of 1.65V to 5.5V, and is packaged in a standard SOT-23, TO-92 and small X2SON.

Technical Specifications

Parameters and characteristics for this part

SpecificationDRV5032FADBZT
Current - Output (Max)5 mA
Current - Supply (Max)3.5 µA
FeaturesSleep Mode
FunctionOmnipolar Switch
Mounting TypeSurface Mount
Operating Temperature (Max)85 °C
Operating Temperature (Min)-40 °C
Output TypePush-Pull
Package / CaseTO-236-3, SOT-23-3, SC-59
Package NameSOT-23-3
PolarizationNorth Pole, South Pole
Sensing Range (Release)1.5 mT
Sensing Range (Trip)3 mT
TechnologyHall Effect
Test Condition77 °F
Voltage - Supply (Maximum)5.5 V
Voltage - Supply (Minimum)1.65 V

Pricing

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CAD

3D models and CAD resources for this part

Documents

Technical documentation and resources

Introduction to Hall-Effect Sensors (Rev. B)
Reed Switch Replacement with TI's Hall-effect and Linear 3D Hall-effect Sensors
DRV5032-SOLAR-EVM User's Guide
HALL-ADAPTER-EVM User's Guide (Rev. C)
5 common Hall-effect sensor myths
Hall-Effect Sensors in Low-Power Applications (Rev. B)
Design Considerations & Measurement Results, Mechanical Hall-Effect Flow Meters
Protect battery-powered tools in harsh environments with Hall effect sensors
Introduction to TI Magnetic Sense Simulator Features
Limit Detection for Tamper and End-of-Travel Detection Using Hall-Effect Sensors (Rev. A)
Position Sensing in Electronic Smart Locks Using Hall-Effect Sensors (Rev. A)
Texas Instruments' Magnetic Sense Simulator User's Guide
Hall-Effect Sensors in Vacuum Robots
How Hall-Effect Sensors are Used in Electronic Smart Locks (Rev. A)
Transition Detection Using Hall-Effect Sensors (Rev. A)
Achieve greater precision, reliability with magnetic sensing technology
Multi-State Position Selection Using Hall-Effect Sensors
Designing Single and Multiple Position Switches Using TI Hall Effect Sensors
Designing With Hall-Effect Sensors for Rotary Flow Meter Applications
Why current and magnetic sensing matters for wireless earbud design
DRV5032 Ultra-Low-Power Digital-Switch Hall Effect Sensor datasheet (Rev. H)
Understanding tamper detection sensors
HMI Rocker Switch With Hall-Effect Switches
Two-State Selector Using Hall-Effect Sensors
Door and Window Sensor Evaluation Platform Introduction and Performance Overview
How to optimize building and home automation designs for energy efficiency
You can be an electromechanical engineer
    DRV5032FADBZT | Texas Instruments | Zenode.ai