SBAU419
November 2022
TMAG5170
Abstract
Trademarks
1
Introduction
1.1
Simulating Magnetic Fields
2
Supported Functions
2.1
Hinge
2.2
Linear Displacement
2.3
Joystick
2.4
Rotation
2.5
Static Position
3
Supported Magnets
3.1
Built-In Library of Materials
3.2
Magnet Shapes
3.2.1
Bar
3.2.2
Strip
3.2.3
Diametric Cylinder
3.2.4
Axial Cylinder
3.2.5
Diametric Ring
3.2.6
Axial Ring
3.2.7
Multi-Pole Ring (Radial)
3.2.8
Multi-pole Ring (Axial)
3.2.9
Sphere
4
Device Emulation
4.1
Device Types
4.1.1
Analog Linear
4.1.2
Digital Linear
4.1.3
Switch
4.1.4
Latch
5
Simulation Outputs
6
Additional Resources
7
References
7
References
Texas Instruments:
Head-on Linear Displacement Sensing Using Hall-Effect Sensors
Texas Instruments:
Absolute Angle Measurements for Rotational Motion Using Hall-Effect Sensors
Texas Instruments:
Brushless DC Motor Commutation Using Hall-Effect Sensors
Texas Instruments:
Measuring 3D Motion With Absolute Position Sensors
Texas Instruments:
Limit Detection for Tamper and End-of-Travel Detection Using Hall-Effect Sensors
Texas Instruments:
Tracking Slide-By Displacement with Linear Hall-Effect Sensors
Texas Instruments:
Using Hall-Effect Sensors For Contactless Rotary Encoding and Knob Applications
Texas Instruments:
Multi-State Position Selection Using Hall-Effect Sensors
Texas Instruments:
Two-State Selector Using Hall-Effect Sensors
Texas Instruments:
Incremental Rotary Encoders
Texas Instruments:
Transition Detection Using Hall-Effect Sensors
Texas Instruments:
Linear Hall-Effect Sensor Array Design
Texas Instruments:
Magnet Selection for Linear Position Applications
Designing Joysticks with Hall-effect Sensors
Texas Instruments:
Reducing Quadrature Error for Incremental Rotatry Encoding Using 2D Hall-effect Sensors
TIDA-060040
Texas Instruments:
Achieving Highest System Angle Sensing Accuracy