Product details

Type Ratiometric bipolar Sensitivity (typ) (mV/mT) 15 Accuracy (%) 15 Bandwidth (kHz) 15 Output 0.2 V to Vcc Supply voltage (min) (V) 1.65 Supply voltage (max) (V) 3.6 Rating Catalog Operating temperature range (°C) -40 to 125
Type Ratiometric bipolar Sensitivity (typ) (mV/mT) 15 Accuracy (%) 15 Bandwidth (kHz) 15 Output 0.2 V to Vcc Supply voltage (min) (V) 1.65 Supply voltage (max) (V) 3.6 Rating Catalog Operating temperature range (°C) -40 to 125
X2SON (DMR) 4 1.54 mm² 1.4 x 1.1
  • Industry-leading low power:
    • Supply voltage, V CC: 1.65 V – 3.6 V
    • Shutdown current: < 20 nA (1.8 V at 25°C)
    • Active current: 2 mA (1.8 V at 25°C)
    • Average current: <10 µA at 100-Hz duty cycling
  • Dedicated enable pin
  • Fast power-on time: < 25 µs
  • Ratiometric analog output proportional to V CC
  • High impedance output during shutdown mode
  • Low-noise output with ±1-mA drive
  • Bipolar sensitivity option to support both positive and negative magnetic fields
  • Magnetic sensitivity range options:
    • A1: ±20-mT Range
    • A2: ±40-mT Range
    • A3: ±80-mT Range
    • A4: ±160-mT Range
  • Sensitivity compensation to support temperature drift of Neodymium magnet
  • Ultra-small X2SON 4-pin package: 1.54 mm 2

  • Wide operating temperature range: –40°C to 125°C
  • Industry-leading low power:
    • Supply voltage, V CC: 1.65 V – 3.6 V
    • Shutdown current: < 20 nA (1.8 V at 25°C)
    • Active current: 2 mA (1.8 V at 25°C)
    • Average current: <10 µA at 100-Hz duty cycling
  • Dedicated enable pin
  • Fast power-on time: < 25 µs
  • Ratiometric analog output proportional to V CC
  • High impedance output during shutdown mode
  • Low-noise output with ±1-mA drive
  • Bipolar sensitivity option to support both positive and negative magnetic fields
  • Magnetic sensitivity range options:
    • A1: ±20-mT Range
    • A2: ±40-mT Range
    • A3: ±80-mT Range
    • A4: ±160-mT Range
  • Sensitivity compensation to support temperature drift of Neodymium magnet
  • Ultra-small X2SON 4-pin package: 1.54 mm 2

  • Wide operating temperature range: –40°C to 125°C

The TMAG5253 is a low-power linear Hall effect sensor that responds proportionally to magnetic flux density. The device features an enable pin to enter ultra-low power (nA) shutdown mode. The TMAG5253 features a fast start-up time (< 25 µs) designed for low-power position sensing applications. The device is available in an industry-leading 1.54-mm 2 ultra-small footprint for space-constrained applications. The device has a wide supply range and can operate from 1.65 V to 3.6 V.

Magnetic flux perpendicular to the top of the package is sensed by the device and the TMAG5253 is available in bipolar sensitivity polarity option, where the north and south magnetic poles produce unique output voltages. The output changes linearly with the applied magnetic flux density, and four sensitivity options enable maximal output voltage swing based on the required sensing range.

The device uses a ratiometric architecture that can eliminate error from V CC tolerance when the external analog-to-digital converter (ADC) uses the same V CC for its reference. Additionally, the device features magnet temperature compensation to counteract the magnetic sensitivity drifts across a wide –40°C to 125°C temperature range. The device also features the ability to place the output in a high impedance state during shutdown mode. This enables multiple devices to be connected to a single ADC.

The TMAG5253 is a low-power linear Hall effect sensor that responds proportionally to magnetic flux density. The device features an enable pin to enter ultra-low power (nA) shutdown mode. The TMAG5253 features a fast start-up time (< 25 µs) designed for low-power position sensing applications. The device is available in an industry-leading 1.54-mm 2 ultra-small footprint for space-constrained applications. The device has a wide supply range and can operate from 1.65 V to 3.6 V.

Magnetic flux perpendicular to the top of the package is sensed by the device and the TMAG5253 is available in bipolar sensitivity polarity option, where the north and south magnetic poles produce unique output voltages. The output changes linearly with the applied magnetic flux density, and four sensitivity options enable maximal output voltage swing based on the required sensing range.

The device uses a ratiometric architecture that can eliminate error from V CC tolerance when the external analog-to-digital converter (ADC) uses the same V CC for its reference. Additionally, the device features magnet temperature compensation to counteract the magnetic sensitivity drifts across a wide –40°C to 125°C temperature range. The device also features the ability to place the output in a high impedance state during shutdown mode. This enables multiple devices to be connected to a single ADC.

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Technical documentation

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Type Title Date
* Data sheet TMAG5253 Low-Power Linear Hall Effect Sensor With EN Pin in Ultra-Small Package datasheet PDF | HTML 10 May 2023
User guide Joystick and Lever Design With Hall-Effect Sensors PDF | HTML 01 Jun 2023
Application note Gaming Trigger With Hall-Effect Sensors PDF | HTML 31 May 2023
Application note Low Power Design Using Hall-Effect Sensors PDF | HTML 26 May 2023
Certificate TMAG5253EVM EU RoHS Declaration of Conformity (DoC) 31 Aug 2022
Technical article What is a Hall-effect sensor? 17 May 2021

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Evaluation board

HALL-ADAPTER-EVM — Hall sensor breakout adapter evaluation module

Speed up your switch, latch and linear Hall sensor prototyping and testing with the HALL-ADAPTER-EVM, which provides a fast, easy and inexpensive way to interface with small ICs. You can connect any supported Hall sensor using the included Samtec terminal strips or wire them directly to existing (...)
User guide: PDF | HTML
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X2SON (DMR) 4 View options

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