Product details

Type AMR angle sensor, Differential Outputs, Quadrature Interface type Sin/Cos Bandwidth (typ) (kHz) 100 Supply voltage (min) (V) 2.7 Supply voltage (max) (V) 5.5 Rating Automotive TI functional safety category Functional Safety-Compliant Operating temperature range (°C) -40 to 150
Type AMR angle sensor, Differential Outputs, Quadrature Interface type Sin/Cos Bandwidth (typ) (kHz) 100 Supply voltage (min) (V) 2.7 Supply voltage (max) (V) 5.5 Rating Automotive TI functional safety category Functional Safety-Compliant Operating temperature range (°C) -40 to 150
VSSOP (DGK) 8 14.7 mm² 3 x 4.9
  • AEC-Q100 qualified for automotive applications:
    • Temperature grade 0: –40°C to 150°C
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation to aid ISO 26262 system design up to ASIL B
  • High-accuracy, low angle error AMR sensor:
    • 0.1° (typical)
    • 0.4° (maximum across temperature at 3.3V)
    • 0.56° (maximum across temperature at 5.5V)
  • High-speed AMR angle sensor:
    • Ultra low latency < 2µs supports up to 100krpm
  • Low angle drift eliminates the need for calibration across temperatures
  • Sine and cosine differential ratiometric analog outputs
  • Supports differential-ended or single-ended applications
  • Wide operating magnetic field range: 20mT to 1T
  • Fast start-up time: < 40µs
  • Integrated Quadrant Detection using Hall sensors
    • Extends AMR angle range to 360°
    • Can be used for speed and direction
    • Open-drain digital outputs
  • Supply voltage range: 2.7V to 5.5V
  • AEC-Q100 qualified for automotive applications:
    • Temperature grade 0: –40°C to 150°C
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation to aid ISO 26262 system design up to ASIL B
  • High-accuracy, low angle error AMR sensor:
    • 0.1° (typical)
    • 0.4° (maximum across temperature at 3.3V)
    • 0.56° (maximum across temperature at 5.5V)
  • High-speed AMR angle sensor:
    • Ultra low latency < 2µs supports up to 100krpm
  • Low angle drift eliminates the need for calibration across temperatures
  • Sine and cosine differential ratiometric analog outputs
  • Supports differential-ended or single-ended applications
  • Wide operating magnetic field range: 20mT to 1T
  • Fast start-up time: < 40µs
  • Integrated Quadrant Detection using Hall sensors
    • Extends AMR angle range to 360°
    • Can be used for speed and direction
    • Open-drain digital outputs
  • Supply voltage range: 2.7V to 5.5V

The TMAG6180-Q1 is a high-precision angle sensor based on Anisotropic Magneto Resistive (AMR) technology. The device features integrated signal conditioning amplifiers and provides differential sine and cosine analog outputs related to the direction of the applied in-plane magnetic field. This device also features two independent Hall sensor outputs at X and Y axes that can be used to extend the angle range of the sensor to 360°.

The TMAG6180-Q1 features a wide operating magnetic field that enables flexible mechanical placements as well as low latency (1.6µs) outputs for high-speed applications like rotor position sensing. The device features ultra-low latency on the sine and cosine outputs to minimize latency related angle errors and is designed for high-speed applications like rotor position sensing up to 100krpm.

The TMAG6180-Q1 offers extensive diagnostics to support stringent functional safety automotive and industrial requirements. The device performs consistently across a wide ambient temperature range of –40°C to +150°C with minimal thermal drift and lifetime errors.

The TMAG6180-Q1 is a high-precision angle sensor based on Anisotropic Magneto Resistive (AMR) technology. The device features integrated signal conditioning amplifiers and provides differential sine and cosine analog outputs related to the direction of the applied in-plane magnetic field. This device also features two independent Hall sensor outputs at X and Y axes that can be used to extend the angle range of the sensor to 360°.

The TMAG6180-Q1 features a wide operating magnetic field that enables flexible mechanical placements as well as low latency (1.6µs) outputs for high-speed applications like rotor position sensing. The device features ultra-low latency on the sine and cosine outputs to minimize latency related angle errors and is designed for high-speed applications like rotor position sensing up to 100krpm.

The TMAG6180-Q1 offers extensive diagnostics to support stringent functional safety automotive and industrial requirements. The device performs consistently across a wide ambient temperature range of –40°C to +150°C with minimal thermal drift and lifetime errors.

Download View video with transcript Video
Request more information

Functional safety information such as failure modes, effects and diagnostic analysis (FMEDA), safety analysis reports and safety manuals are available. Request now

Similar products you might be interested in

open-in-new Compare alternates
Same functionality with different pin-out to the compared device
TMAG6181-Q1 ACTIVE Automotive high-precision analog AMR angle sensor with integrated turns counter Does not have capability for 360 degrees of rotation, but does have a turns counter
Similar functionality to the compared device
TMAG5170-Q1 ACTIVE Automotive, high-precision linear 3D Hall-effect sensor with serial peripheral interface 3D sensor that can be configured to also provide sin/cos information through SPI interface with 0.25 degrees of resolution

Technical documentation

star =Top documentation for this product selected by TI
No results found. Please clear your search and try again.
View all 18
Top documentation Type Title Format options Date
* Data sheet TMAG6180-Q1 Automotive High-Precision Analog AMR 360° Angle Sensor datasheet (Rev. A) PDF | HTML 12 Mar 2024
Analog Design Journal 在馬達控制中選擇位置感測器 PDF | HTML 10 Jul 2025
Analog Design Journal 모터 컨트롤의 위치 센서 선택 PDF | HTML 10 Jul 2025
Analog Design Journal Choosing a position sensor in motor control PDF | HTML 27 Jun 2025
Application note Automotive Door Handle Design with Position Sensors PDF | HTML 10 Apr 2024
White paper 位置感測器如何在汽車與工業應用中實現創新 (Rev. A) PDF | HTML 22 Mar 2024
White paper 위치 센서가 차량용 및 산업용 애플리케이션의 혁신을 구현하는 방법 (Rev. A) PDF | HTML 22 Mar 2024
Application brief Entwicklung eines Positionserfassungssystems mit einem AMR-Winkelsensor PDF | HTML 19 Mar 2024
Technical article AMR 각도 센서로 위치 감지 시스템 설계 PDF | HTML 13 Mar 2024
Application brief 利用 AMR 角度感測器設計位置感測系統 PDF | HTML 13 Mar 2024
White paper How Position Sensors Enable Innovation in Automotive and Industrial Applications (Rev. A) PDF | HTML 08 Mar 2024
Technical article Designing a Position Sensing System With an AMR Angle Sensor PDF | HTML 26 Feb 2024
Application brief Introduction to TI Magnetic Sense Simulator Features PDF | HTML 05 Dec 2023
Application note Calibration of AMR Angle Sensors PDF | HTML 04 Dec 2023
User guide Texas Instruments' Magnetic Sense Simulator User's Guide PDF | HTML 04 Dec 2023
Application brief Automotive Door Handle Module Using Hall, Inductive and Capacitive Sensors PDF | HTML 29 Nov 2023
Application brief eBike Position Sensor Functions PDF | HTML 17 May 2023
Certificate TMAG6180-6181EVM EU RoHS Declaration of Conformity (DoC) 16 Mar 2023

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

TMAG6180-6181EVM — TMAG6180 and TMAG6181 evaluation module with differential sine and cosine analog outputs

The TMAG6180-6181EVM evaluation module (EVM) is a convenient platform to evaluate performance of the AMR sensors TMAG6180 and TMAG6181 for rotary position sensing. These devices offer differential sine and cosine analog outputs which may be used for high speed angle measurements. The TMAG6180 (...)

User guide: PDF | HTML
Not available on TI.com
GUI for evaluation module (EVM)

TMAG6180-6181EVM-GUI GUI for TMAG6180-6181EVM

TMAG6180-6181EVM-GUI allows users to capture and plot output data from either TMAG6180-Q1 or TMAG6181-Q1
Supported products & hardware

Supported products & hardware

Simulation tool

TI-MAGNETIC-SENSE-SIMULATOR TI Magnetic sensing simulation tool

The TI-MAGNETIC-SENSE-SIMULATOR (TIMSS) webtool estimates magnetic flux density and TI magnetic sensor outputs for magnetic position sensing systems. Select from our portfolio of magnetic sensors to thoroughly emulate electro-mechanical performance of your design. The tool supports various magnet (...)
Supported products & hardware

Supported products & hardware

Reference designs

TIDA-010947 — High-resolution, low-latency, compact absolute angle encoder reference design with AMR sensor

This reference design demonstrates a small form factor, absolute, single-turn, magnetic rotary angle encoder circuit design using a high-precision analog AMR 360° angle sensor with sine and cosine differential ratio metric analog outputs and integrated quadrant detection using Hall sensors. The (...)
Design guide: PDF
Package Pins CAD symbols, footprints & 3D models
VSSOP (DGK) 8 Ultra Librarian

Ordering & quality

Information included:
  • RoHS
  • REACH
  • Device marking
  • Lead finish/Ball material
  • MSL rating/Peak reflow
  • MTBF/FIT estimates
  • Material content
  • Qualification summary
  • Ongoing reliability monitoring
Information included:
  • Fab location
  • Assembly location

Recommended products may have parameters, evaluation modules or reference designs related to this TI product.

Support & training

TI E2E™ forums with technical support from TI engineers

Content is provided "as is" by TI and community contributors and does not constitute TI specifications. See terms of use.

If you have questions about quality, packaging or ordering TI products, see TI support. ​​​​​​​​​​​​​​

Videos