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[PDF] Modeling of Three-Axis Hall Effect Sensors Based on Integrated Magnetic Concentrator
In this paper, we develop computational model to analyze the magnetic concentrating effect of integrated magnetic concentrator (IMC) on surrounding external magnetic field. We present an IMC-based three-axis Hall sensor model that enables to measure both inclination angles and absolute strength of a random external magnetic field. An IMC
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What are Flux Concentrators and Clamping Blocks? | eldec LLC
By definition, a magnetic flux concentrator is a piece of ferrous material, such as steel, that is used to direct or intensify magnetic flux towards a surface. They are ideal for manipulating the field due to their magnetic properties. eldec uses two different types of flux concentrators based on the application.
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:Magnetic FieldsMagnetic Flux ConcentratorPublish Year:2009 · Three dimensional (3D) magnetic flux concentrators (FC) based on 7000-Å-thick Co 86 Zr 5 Nb 9 films were optimized for increased sensitivity in hybrid flux guide
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· This paper presents the efficiency analysis of magnetic flux concentrator attached to the core of fluxgate sensor made of amorphous alloy ribbon. Simulations were carried out using open-source software toolchain covering Netgen, Elmer FEM, and ParaView. The results indicate that the increase of the length of the core significantly
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Flux Concentrator-an overview | ScienceDirect Topics
Flux Concentrator. Flux concentrators: the flux concentrators channel the magnetic flux, partially shielding the elements below and redirecting the flux toward the vessel or the other winding and thus increasing efficiency and power factor. From: Encyclopedia of Electrical and Electronic Power Engineering, 2023. Add to Mendeley.
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· High-frequency power electronic converters require lossless, accurate, and isolated current measurement. High-frequency currents through a printed circuit board (PCB) trace generate nonuniform magnetic field around the trace. The nonuniform magnetic fields can be normalized by means of magnetic field concentrators (MCONs) using
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Great enhancement of energy harvesting properties of piezoelectric/magnet composites by the employment of magnetic concentrator
This paper presents a specific design of magnetic energy harvester based on a piezoelectric/magnet composite and a magnetic concentrator. With the employment of concentrator, the energy harvesting properties have been greatly improved, which is theoretically analyzed and experimentally demonstrated with the 35 times power
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· The concentrator was cooled at the center of a superconducting magnet with liquid helium. By increasing the external field to 1.00 T, a magnetic flux density of 3.20 T was obtained at the center of the concentrator. At an
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· The proclivity t owards magnetic flux concentrators is because of the following reasons [14, p. 373], [15]. • It improves the overall efficiency of the induction welding process
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· and experimentally demonstrate a strong, 4.74-time enhancement of the DC magnetic field by our meta-material magnetic concentrator. We also demonstrate that a simplified structure with only HPF
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Hall Current Sensor IC with Integrated Co-based Alloy Thin Film Magnetic Concentrator
This work deals with a cobalt-based alloy thin film magnetic concentrator (MC) which is fully integrated on a Hall sensor integrated circuit (IC) developed in the 0.35 μm Bipolar CMOS DMOS (BCD) technology on 8” silicon wafer. An amorphous magnetic film with a thickness of 1μm, coercitive field Hc<10A/m and saturation magnetization (μ0MS
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· Researches on the magnetic amplification characteristics of the MFC by finite element method have been reported. P. M. Drljača investigated the tradeoff between the amplification and saturation of different shaped MFCs. 21 X. Sun studied the impact of geometry and material property on the magnetic gain of the MFCs. 22 Also, M. Mansour
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· Magnetic flux concentrators (also called flux intensifiers, diverters, or controllers) are made from high-permeability, low-power-loss materials. They are routinely used in induction heat treating applications
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· Being able to increase the sensitivity of magnetoresistive sensors, by orders of magnitude, provides a route toward challenging detection levels, and opens the way for new applications. This paper describes a novel architecture of magnetic flux concentrators to achieve an improved guiding efficiency, combining materials with
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Optimal Design of Magnetic Flux Concentrators in Induction
Abstract: Magnetic flux concentrators (MFCs) are widely used in induction heating systems for concentration, shielding or redistribution of the magnetic field. They provide an
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Magnetic Concentrator Separator at Best Price in India
Laboratory Davis Tube Magnetic Separator, 364 lb. ₹ 1,00,000/ Piece Get Latest Price. Diameter of Glass Tube: 50mm. Weight: 364 lb. Determine magnetic separation characteristics of ores and check plant concentrate and tailing quality. The Davis Tube Tester Model EDT is an indispensable.
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· In this paper, we develop computational model to analyze the magnetic concentrating effect of integrated magnetic concentrator (IMC) on surrounding external magnetic field. We present an IMC-based
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· Findings. It has been found that there is dependence of the output signal (proportional to the magnetic flux density) of Hall effect based current sensor with both closed- and open-core magnetic concentrators on the position of the current carrying conductor. Distribution of the magnetic flux density and dependencies of its value in the
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DynaMag™-2 Magnet-Thermo Fisher Scientific
The DynaMag™-2 magnet combines a strong magnetic attraction for efficient separations in standard microcentrifuge tubes with a flexible and smart ergonomic design. • Optimal working volume: 10–2,000 μL. • Holds up to 16 standard 1.5–2 mL microcentrifuge tubes in numbered spaces. • Good control and visibility of your sample.
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MPC™-6 (Magnetic Particle Concentrator)-Thermo Fisher
The MPC™-6 (Magnetic Particle Concentrator) holds six tubes with variable diameters (10–30 mm). Optimal working volume: 5–15 mL. Magnetic particle concentrators are designed to obtain optimal binding of Dynabeads™ with targets (e.g., cells, proteins, and nucleic acids). For Research Use Only. Not for use in diagnostic procedures
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Belt-Type Permanent Magnetic Concentrator For Sponge Iron
With a contemporary design, this magnetic separator holds high applications in sponge iron industries. These industries involve the segregation of Belt-Type Permanent Magnetic Concentrator For Sponge Iron Industries | With a contemporary design, this magnetic separator holds high applications in sponge iron industries.
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· This paper demonstrates a novel resonant magnetic sensor that utilizes a concentrator to obtain a large magnetic-field gradient. A silicon-cantilevered resonator, with a 10-µm-diameter magnetic particle on the tip, is placed between two asymmetric permalloy plates, which function as the concentrator; one of the plates has a narrow tip,
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Flux Concentrator-an overview | ScienceDirect Topics
The magnetic flux concentrator forms a magnetic path to channel the coil's main magnetic flux in a well-defined area outside the coil, preventing or dramatically reducing
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· Going beyond the limits of transformation-optics-related concentrators, their advantages could be combined with the magnetic properties arising when reducing the dimensions of ferromagnets. This would allow us to potentially obtain devices capable of enhancing the concentration of magnetic fields in order to improve the magnetic
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Hall sensors with integrated magnetic flux concentrators
A SOI CMOS Hall effect sensor architecture for high temperature applications (up to 300/spl deg/C) L. Portmann H. Ballan M. Declercq. Engineering, Physics. Proceedings of IEEE Sensors. 2002. The design of a 5 V fully integrated magnetic sensor able to operate up to 270/spl deg/C is presented.
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A magnetic concentrator, made from textured dysprosium,
Ferromagnetic polycrystalline dysprosium cores made from a rod-billet by hydropressing were used in concentrators to contribute up to 7.6 T in the gap between two conical end pieces. In each end piece the plane of easy magnetization is inclined at an angle to the central axis of the concentrator. Because of its magnetic characteristics a
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· For the purpose of this section, we may completely neglect the magnetic saturation and the hysteresis effects in the ferromagnetic material used for a magnetic concentrator. Recall the boundary condition for the inclinations of the flux density vector B at the interface between two media with the permeabilities μ 1 and μ 2 [5]: (1) tg α 1 tg α
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· To improve the sensitivity of the magnetic tunnel junction(MTJ)sensor, a novel architecture for a double-gap magnetic flux concentrator (MFC) was studied theoretically and experimentally in this paper. The three-dimensional finite element model of magnetic flux was established to optimize the magnetic field amplification factor, with
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· In this paper, we develop computational model to analyze the magnetic concentrating effect of integrated magnetic concentrator (IMC) on surrounding external magnetic field. We present an IMC-based three-axis Hall sensor model that enables to measure both inclination angles and absolute strength of a random external magnetic
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· The magnetic flux concentrator is made of a thick ferromagnetic layer bonded on the CMOS wafer. The CMOS part of the system contains two or more conventional Hall elements positioned under the
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