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Magnetic Grades

FERRITE MAGNETS FOR INDUSTRIAL APPLICATIONS

GUK Magnetics supplies ferrite magnets made to specification for applications where reliable magnetic performance and cost control are more important than maximum magnetic strength.

What we support:
● Wide grade selection
● Blocks, rings, discs, arcs and custom shapes
● Axial, diametric and multipole magnetisation options
● High-volume and repeat production requirements
● Can be supplied both isotropically & anisotropically.
● Practical advice on strength, geometry and operating environment

Built for demanding production use:
Ferrite magnets offer a strong balance of durability, availability and value, making them suitable for applications where rare earth magnets may be unnecessary or uneconomical.

From specification to supply:
Whether you have a drawing, an existing part or a defined magnetic requirement, we supply ferrite magnets aligned with your application and production needs.

FERRITE MAGNETS FOR INDUSTRIAL APPLICATIONS

FERRITE MAGNETS MANUFACTURED TO YOUR APPLICATION REQUIREMENTS

Wide Range of Grades & Dimensions

Wide Range of Grades & Dimensions

We supply ferrite magnets in common grades such as Y30, Y33, Y35, and Y40, across blocks, discs, rings, segments, and custom geometries - supporting both standard formats and application-specific designs.

ISO 9001 CERTIFIED

ISO 9001 CERTIFIED

All Ferrite magnets are supplied to controlled specifications and manufactured using approved processes, ensuring consistent quality and repeatable performance across production and repeat orders.

PRACTICAL TECHNICAL SUPPORT

PRACTICAL TECHNICAL SUPPORT

Our experts provide straightforward technical input on grade selection, magnetisation direction, tolerances, and coatings, ensuring the magnet supplied performs as intended in service.

Cost-Effective for Production Volumes

Cost-Effective for Production Volumes

Ferrite magnets are often chosen for high-volume and cost-sensitive applications, offering excellent value where space constraints are less critical than with rare-earth materials.

Custom magnet configurations

Custom magnet configurations

Where standard formats aren’t suitable, we support custom dimensions, magnetisation patterns, and assemblies - supplying magnets tailored to your specific application and installation requirements.

Reliable delivery & supply

Reliable delivery & supply

We focus on realistic lead times, clear delivery expectations, and repeatable supply - helping customers plan with confidence and avoid unexpected disruption.

Ferrite Magnetic Grades

ABCDEFGHIJK
GradeEquivalentRemanenceCoercivityMax Energy Product
Max Working Temp.
BrHcbHcj(BH)maxTwmax
mTKGskA/mkOeKA/mkOekj/m³MGOe°C
XM10TY10T200-2352.0-2.35128-1601.61-2.01210-2802.64-3.526.4-9.60.8-1.2250
XM25Y25360-4003.6-4.0135-1701.70-2.14140-2001.76-2.5122.5-28.02.8-3.5
XM30BHY30BH380-4003.8-4.0223-2352.80-2.95231-2452.90-3.0827.0-30.03.4-3.8
XM20H-1Y30h-1380-4003.8-4.0230-2752.89-3.46235-2902.95-3.6427.0-32.53.4-4.1
XM30H-2Y30H-2395-4153.95-4.15275-3003.46-3.77310-3353.90-4.2127.0-32.03.4-4.0
XM33Y33410-4304.1-4.3220-2502.76-3.14225-2552.83-3.2031.5-35.04.0-4.4
XM33HY33H410-4304.1-4.3250-2703.14-3.39250-2753.14-3.4631.5-35.04.0-4.4
XM35Y35400-4404.0-4.4176-2242.22-2.8180-2302.26-2.8930.3-33.43.8-4.2
XM4350420-4404.2-4.4294-3263.7-4.1386-4104.85-5.1533.4-36.64.2-4.6
XM4545440-4604.4-4.6318-3504.0-4.4347-3704.35-4.6536.6-39.84.6-5.0
XM4636450-4704.5-4.7255-2793.2-3.5275-2993.45-3.7538.3-41.54.8-5.2
XM4654TDK FB12H450-4704.5-4.7330-3604.15-4.45415-4455.25-5.5539.8-43.05.0-5.4
XM4748TDK FB12B460-4804.6-4.8328-3524.15-4.4368-3924.65-4.9541.5-44.75.2-5.6

Ferrite Magnets: Key Design & Application Considerations

Ferrite magnets have relatively low magnetic properties compared to other permanent magnet materials, but offer a strong energy-product-to-cost ratio. As a ceramic material, ferrite does not rust, making it an excellent choice around water or corrosive environments. It is typically used uncoated in applications where space constraints are less critical and stable performance is sufficient.

Ferrite magnets perform poorly under temperature extremes and, due to their sintered ceramic structure, are mechanically brittle. Where higher performance, compact geometry, or elevated temperature stability are critical, rare-earth materials are generally more appropriate.

Ferrite Magnets: Key Design & Application Considerations

FAQs

Our dedicated team is always ready to assist you with any additional questions or requirements you may have.

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