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AMR Magnetic Sensor Working Principle Explained; Murata Video

29.12.2021

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    Electron microscope images show the precise atom-by-atom structure of a barium titanate (BaTiO3) thin film sandwiched between layers of strontium ruthenate (SrRuO3) metal to make a tiny capacitor. (Credit: Lane Martin/Berkeley Lab)

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    Effects of Harsh Environmental Conditions on Film Capacitors

    Waveguides and Transmission Lines Explained

    Electron microscope images show the precise atom-by-atom structure of a barium titanate (BaTiO3) thin film sandwiched between layers of strontium ruthenate (SrRuO3) metal to make a tiny capacitor. (Credit: Lane Martin/Berkeley Lab)

    Researchers Developed BaTiO3 Ultrathin Ceramic Capacitors for Microchips

    Common-mode Choke Parameters Explained; WE Webinar

    Bourns Releases Power Line Communication (PLC) Transformers

    Murata to Begin Closed-loop Recycling of PET Film Used at MLCC Production

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    Effects of Harsh Environmental Conditions on Film Capacitors

    Common-mode Choke Parameters Explained; WE Webinar

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    NTC Thermistor in Fire Alarm Application LTSpice Simulation

    MLCC Ageing; Samsung Video

    Vishay NTC Thermistor LTspice Simulation for PID Optimization; Vishay Webinar

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AMR Magnetic Sensor Working Principle Explained; Murata Video

29.12.2021
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This video from Murata explains the resistance change when magnetic element detects the magnetic field and working principle of AMR magnetic sensor.

Source: Murata Electronics

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