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akaturk Academic measurement

OpenAlex topic

Magnetic Field Sensors Techniques

This page lists works and academicians tagged with an OpenAlex topic. It is not a YÖKSİS primary or secondary field.

OpenAlex 360 works 6 author topics

Works

360 works

  1. YÖKSİS OpenAlex 84.8%

    Recent spatially resolved measurements of the electrostatic-potential variation across a Hall bar in strong magnetic fields, which revealed a clear correlation between current-carrying strips and incompressible strips expected near the edges of the Hall bar, cannot be understood on the basis of existing equilibrium th…

  2. OpenAlex top 10% OpenAlex 96.7%

    Bismuth nano-Hall sensors with dimensions ∼50 nm × 50 nm were fabricated using a combination of optical lithography and focused ion beam milling. The Hall coefficient, series resistance and optimum magnetic field sensitivity of the sensors were 4 × 10 -4 Ω/G, 9.1 kΩ and 0.8 G/√Hz, respectively. A 50 nm nano-Bi Hall se…

  3. YÖKSİS SJR Q1 JCR Q2 OpenAlex 88.3%

    Abstract The advantages of planar Hall effect (PHE) sensors—their thermal stability, very low detection limits, and high sensitivities—have supported a wide range of advanced applications such as nano-Tesla (nT) magnetometers, current sensing, or low magnetic moment detection in lab-on-a-chip devices. In this review w…

  4. YÖKSİS SJR Q2 JCR Q4 OpenAlex top 10% OpenAlex 96.2%

    Abstract This article introduces a novel web‐based DC motor laboratory, called NeTRe‐LAB, to support teaching electrical machines. The NeTRe‐LAB includes favorable animations to facilitate understanding characteristics of the DC motor, interactive DC motor models for instructive simulations, and web‐based experiments…

  5. OpenAlex top 10% OpenAlex 96.3%

    Abstract This article introduces a novel web‐based DC motor laboratory, called NeTRe‐LAB, to support teaching electrical machines. The NeTRe‐LAB includes favorable animations to facilitate understanding characteristics of the DC motor, interactive DC motor models for instructive simulations, and web‐based experiments…

  6. YÖKSİS SJR Q2 JCR Q4 OpenAlex top 10% OpenAlex 96.3%

    Abstract This article introduces a novel web‐based DC motor laboratory, called NeTRe‐LAB, to support teaching electrical machines. The NeTRe‐LAB includes favorable animations to facilitate understanding characteristics of the DC motor, interactive DC motor models for instructive simulations, and web‐based experiments…

  7. YÖKSİS SJR Q1 JCR Q1 OpenAlex top 10% OpenAlex 92.5%

    A two-axis microelectromechanical systems micromirror actuator is developed for retinal scanning display and imaging applications. The device operation makes use of magnetostatic torque produced by the combination of a flux generating custom-made high-frequency electrocoil and the NiFe layer deposited on the movable p…

  8. YÖKSİS SJR Q1 JCR Q1 OpenAlex top 10% OpenAlex 92.2%

    A two-axis microelectromechanical systems micromirror actuator is developed for retinal scanning display and imaging applications. The device operation makes use of magnetostatic torque produced by the combination of a flux generating custom-made high-frequency electrocoil and the NiFe layer deposited on the movable p…

  9. YÖKSİS SJR Q1 JCR Q2 OpenAlex 83.2%

    The main objective of this paper is to develop a linear actuator for an accurate position control with a high force-to-mass ratio. A novel configuration is developed that has a double-sided NdFeB stator and a printed-circuit moving armature. A design methodology is presented, which is based upon the finite-element met…

  10. YÖKSİS SJR Q1 JCR Q2 OpenAlex top 10% OpenAlex 95.6%

    No abstract yet.

  11. YÖKSİS SJR Q1 JCR Q2 OpenAlex top 10% OpenAlex 95.6%

    No abstract yet.

  12. YÖKSİS OpenAlex 73.9%

    A system for detecting magnetic fields in the femtotesla range at low frequencies is developed, including the antenna, transformer, and amplifier. Each component is described with relevant tradeoffs which allow a large variety of receivers to be easily designed for any magnetic field sensing in the very low frequency…

Academicians

6 academicians