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Nanocrystalline magnetic ring


The newly designed leakage-current protection core replaces permalloy with materials that feature high magnetic permeability, low coercivity, and low losses. It is highly sensitive to even the slightest leakage currents while also demonstrating excellent resistance to high-current surges. Additionally, it boasts outstanding thermal stability and can operate reliably in ambient temperatures ranging from -25°C to 100°C. Consequently, this new type of magnetic ring can be widely used in leakage-current protective switches.

Amorphous/Nanocrystalline Core (for Residual Current Devices)


The newly designed leakage current protection magnetic core replaces traditional materials with a Permalloy alloy that boasts high magnetic permeability, low coercivity, and low losses. Our high-performance magnetic core is exceptionally sensitive to even the slightest leakage currents, while also demonstrating outstanding resistance to high-current surges and remarkable thermal stability, enabling reliable operation in ambient temperatures ranging from -25°C to 100°C. Consequently, this superior magnetic ring is ideally suited for use in leakage current protective switches.

High-saturation magnetic induction core


The newly designed leakage-current protection core replaces permalloy with materials that feature high magnetic permeability, low coercivity, and low losses. It is highly sensitive to even the slightest leakage currents while also demonstrating excellent resistance to high-current surges. Additionally, it boasts outstanding thermal stability and can operate reliably in ambient temperatures ranging from -25°C to 100°C. Consequently, this versatile magnetic core can be widely used in leakage-current protective switches.

High-performance magnetic core


The newly designed leakage-current protection magnetic core replaces traditional materials with a Permalloy alloy that boasts high magnetic permeability, low coercivity, and low losses. Our high-performance magnetic core is exceptionally sensitive to even the slightest leakage currents, while also demonstrating outstanding resistance to high-current surges and remarkable thermal stability, enabling reliable operation in ambient temperatures ranging from -25°C to 100°C. Consequently, this superior magnetic ring is ideally suited for use in leakage-current protective switches.

High-permeability magnetic ring


The newly designed leakage-current protection core replaces permalloy with a material that boasts high magnetic permeability, low coercivity, and low losses. It is exceptionally sensitive to even the tiniest leakage currents while also demonstrating outstanding resistance to high-current surges. Additionally, it features excellent thermal stability, enabling reliable operation in ambient temperatures ranging from -25°C to 100°C. Consequently, this versatile magnetic core can be widely used in leakage-current protective switches.

High-permeability magnetic core


The newly designed leakage-current protection core replaces traditional materials with a permalloy—a material featuring high magnetic permeability, low coercivity, and low loss. This core is exceptionally sensitive to even the slightest leakage currents, while also demonstrating outstanding resistance to high-current surges and excellent thermal stability, enabling reliable operation in ambient temperatures ranging from -25°C to 100°C. Consequently, this product can be widely applied in the field of leakage-current protective switches.

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