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Toshiba's New Magnetic Material Greatly Improves Motor Energy Conversion  Efficiency -Reducing energy loss, and suitable for train drive systems,  automobiles, robots and other applications requiring high reliability.  Expected to contribute to realization
Toshiba's New Magnetic Material Greatly Improves Motor Energy Conversion Efficiency -Reducing energy loss, and suitable for train drive systems, automobiles, robots and other applications requiring high reliability. Expected to contribute to realization

Metrology of magnetic losses in electrical steel sheets for high-efficiency  energy conversion - Project Details - EURAMET
Metrology of magnetic losses in electrical steel sheets for high-efficiency energy conversion - Project Details - EURAMET

Control of magnetic loss tangent of hexaferrite for advanced radio  frequency antenna applications: Journal of Applied Physics: Vol 113, No 7
Control of magnetic loss tangent of hexaferrite for advanced radio frequency antenna applications: Journal of Applied Physics: Vol 113, No 7

Magnetic Losses
Magnetic Losses

Comprehensive understanding of magnetic hyperthermia for improving  antitumor therapeutic efficacy
Comprehensive understanding of magnetic hyperthermia for improving antitumor therapeutic efficacy

Research topics | Ultra-low Core Loss Magnetic Material Technology Area
Research topics | Ultra-low Core Loss Magnetic Material Technology Area

Toshiba's New Magnetic Material Greatly Improves Motor Energy Conversion  Efficiency -Reducing energy loss, and suitable for train drive systems,  automobiles, robots and other applications requiring high reliability.  Expected to contribute to realization
Toshiba's New Magnetic Material Greatly Improves Motor Energy Conversion Efficiency -Reducing energy loss, and suitable for train drive systems, automobiles, robots and other applications requiring high reliability. Expected to contribute to realization

Synergistic engineering of dielectric and magnetic losses in M-Co/RGO  nanocomposites for use in high-performance microwave absorption - Materials  Chemistry Frontiers (RSC Publishing)
Synergistic engineering of dielectric and magnetic losses in M-Co/RGO nanocomposites for use in high-performance microwave absorption - Materials Chemistry Frontiers (RSC Publishing)

Electronics | Free Full-Text | Magnetic Loss Analysis in Coaxial Magnetic  Gears | HTML
Electronics | Free Full-Text | Magnetic Loss Analysis in Coaxial Magnetic Gears | HTML

Hyperthermic effects of dissipative structures of magnetic nanoparticles in  large alternating magnetic fields | Scientific Reports
Hyperthermic effects of dissipative structures of magnetic nanoparticles in large alternating magnetic fields | Scientific Reports

9. B-H curve, Hysteresis loss, B-H curve, eddy-current loss, and K-factor  transformers · Myung Bae
9. B-H curve, Hysteresis loss, B-H curve, eddy-current loss, and K-factor transformers · Myung Bae

JAC022] Analysis of the Eddy Current in the Magnet of an IPM Motor |  Simulation Technology for Electromechanical Design : JMAG
JAC022] Analysis of the Eddy Current in the Magnet of an IPM Motor | Simulation Technology for Electromechanical Design : JMAG

Loss estimation of magnetic gears | SpringerLink
Loss estimation of magnetic gears | SpringerLink

Micromachines | Free Full-Text | Power Losses Models for Magnetic Cores: A  Review | HTML
Micromachines | Free Full-Text | Power Losses Models for Magnetic Cores: A Review | HTML

Evolution of dielectric loss-dominated electromagnetic patterns in magnetic  absorbers for enhanced microwave absorption performances | SpringerLink
Evolution of dielectric loss-dominated electromagnetic patterns in magnetic absorbers for enhanced microwave absorption performances | SpringerLink

Fujitsu Develops Design Technology Using AI for Magnetic Material  Geometries - Fujitsu Global
Fujitsu Develops Design Technology Using AI for Magnetic Material Geometries - Fujitsu Global

Hysteresis and eddy current losses of magnetic material by Epstein frame  method-novel approach | Semantic Scholar
Hysteresis and eddy current losses of magnetic material by Epstein frame method-novel approach | Semantic Scholar

Calculated magnetic and dielectric loss tangent of... | Download Scientific  Diagram
Calculated magnetic and dielectric loss tangent of... | Download Scientific Diagram

Modeling losses in magnetic components - Power Electronic Tips
Modeling losses in magnetic components - Power Electronic Tips

Magnetic loss factor at 300 MHz and resistivity of the samples with... |  Download Scientific Diagram
Magnetic loss factor at 300 MHz and resistivity of the samples with... | Download Scientific Diagram

Magnetic Loss - an overview | ScienceDirect Topics
Magnetic Loss - an overview | ScienceDirect Topics

Balancing Dielectric Loss and Magnetic Loss in Fe–NiS2/NiS/PVDF Composites  toward Strong Microwave Reflection Loss | ACS Applied Materials & Interfaces
Balancing Dielectric Loss and Magnetic Loss in Fe–NiS2/NiS/PVDF Composites toward Strong Microwave Reflection Loss | ACS Applied Materials & Interfaces

Hysteresis Loss and Eddy Current Loss: What's the Difference?
Hysteresis Loss and Eddy Current Loss: What's the Difference?

Significant promotion of porous architecture and magnetic Fe 3 O 4 NPs  inside honeycomb-like carbonaceous composites for enhanced microwave  absorption ... - RSC Advances (RSC Publishing) DOI:10.1039/C8RA00913A
Significant promotion of porous architecture and magnetic Fe 3 O 4 NPs inside honeycomb-like carbonaceous composites for enhanced microwave absorption ... - RSC Advances (RSC Publishing) DOI:10.1039/C8RA00913A