The TMAG5170 is a high-precision linear 3D Hall-effect sensor designed for a wide range of industrial and personal electronics applications. The high level of integration offers flexibility and ...
Here’s a guide to evaluating and using the latest generation of 3D magnetic sensors, which offer a higher-accuracy alternative to existing 1D Hall-effect sensors. Linear magnetic sensing is becoming ...
PLANO, Texas--(BUSINESS WIRE)-- Diodes Incorporated (Nasdaq: DIOD) today introduces its first automotive-compliant* 3D linear Hall effect sensor. The AH4930Q detects the magnetic field in the X, Y, ...
The AH4930Q detects the magnetic field in the X, Y, and Z directions, allowing for more reliable and high-precision contactless rotary motion and proximity detection. Applications include rotary and ...
Allegro MicroSystems, LLC introduces a new linear, Hall-effect sensor IC specifically designed for applications that require medium accuracy in a very small package. Allegro’s A1304 is a factory ...
Every once in a while we stumble across something so simple yet so clever that we just have to call it out. This custom linear Hall effect sensor is a perfect example of this. By way of backstory, ...
DALLAS, Oct. 12, 2021 /PRNewswire/ -- Texas Instruments (TI) (Nasdaq: TXN) today introduced the industry's most accurate 3D Hall-effect position sensor. With the TMAG5170, engineers can achieve ...
The A1357 device is a high precision, programmable two-wire Hall-effect linear sensor IC with a pulse width modulated (PWM) current. The A1357 device converts an analog signal from its internal Hall ...
2001 - PACE Award Winner Micronas GmbH What: Linear Hall effect sensors Judge's Citation: How positions, levels, locations, and changes are sensed and measured in real time within automotive systems ...
Sponsored by Texas Instruments: The emergence of sensor fusion, which involves advanced MCUs and motor control among other technologies, promises to suffuse intelligent mobile autonomous robots into ...
Results that may be inaccessible to you are currently showing.
Hide inaccessible results