Eneflux Armtek Magnetics, Inc. Ceramic 1 - Standard DISC MAGNETS CM-0219

Description
Hard Ferrite or Ceramic magnets are the most popular permanent magnets available today. They are made form a combination of either Barium or Strontium Ferrite and Iron Oxide, and exhibit a high degree of coercive strength, making them more resistant to demagnetization. They are a low-cost solution to an endless list of magnetic applications. Hard Ferrite/Ceramic magnets can be produced with either isotropic or anisotropic properties. The most common grades are C1, C5, and C8. C1 material exhibits the lowest energy product, however it is isotropic - indicating that it can be magnetized in any direction. It should be noted that slightly more magnetic strength will be realized when parts are magnetized through the pressing (usually the shortest) dimension. Grades 5 and 8 Ceramic materials are anisotropic, and must therefore be magnetized in the manufactured dimension. They exhibit high levels of magnetic force than do Ceramic 1 materials. Hard Ferrite magnets have excellent corrosion resistance and have normal operating capabilities between -40°C and +250°C. . At very low temperatures there is a risk of permanent demagnetization in magnet systems with low working points.
Description
Hard Ferrite or Ceramic magnets are the most popular permanent magnets available today. They are made form a combination of either Barium or Strontium Ferrite and Iron Oxide, and exhibit a high degree of coercive strength, making them more resistant to demagnetization. They are a low-cost solution to an endless list of magnetic applications. Hard Ferrite/Ceramic magnets can be produced with either isotropic or anisotropic properties. The most common grades are C1, C5, and C8. C1 material exhibits the lowest energy product, however it is isotropic - indicating that it can be magnetized in any direction. It should be noted that slightly more magnetic strength will be realized when parts are magnetized through the pressing (usually the shortest) dimension. Grades 5 and 8 Ceramic materials are anisotropic, and must therefore be magnetized in the manufactured dimension. They exhibit high levels of magnetic force than do Ceramic 1 materials. Hard Ferrite magnets have excellent corrosion resistance and have normal operating capabilities between -40°C and +250°C. . At very low temperatures there is a risk of permanent demagnetization in magnet systems with low working points.

Suppliers

Company
Product
Description
Supplier Links
Ceramic 1 - Standard DISC MAGNETS - CM-0219 - Eneflux Armtek Magnetics, Inc.
Medford, NY, USA
Ceramic 1 - Standard DISC MAGNETS
CM-0219
Ceramic 1 - Standard DISC MAGNETS CM-0219
Hard Ferrite or Ceramic magnets are the most popular permanent magnets available today. They are made form a combination of either Barium or Strontium Ferrite and Iron Oxide, and exhibit a high degree of coercive strength, making them more resistant to demagnetization. They are a low-cost solution to an endless list of magnetic applications. Hard Ferrite/Ceramic magnets can be produced with either isotropic or anisotropic properties. The most common grades are C1, C5, and C8. C1 material exhibits the lowest energy product, however it is isotropic - indicating that it can be magnetized in any direction. It should be noted that slightly more magnetic strength will be realized when parts are magnetized through the pressing (usually the shortest) dimension. Grades 5 and 8 Ceramic materials are anisotropic, and must therefore be magnetized in the manufactured dimension. They exhibit high levels of magnetic force than do Ceramic 1 materials. Hard Ferrite magnets have excellent corrosion resistance and have normal operating capabilities between -40°C and +250°C. . At very low temperatures there is a risk of permanent demagnetization in magnet systems with low working points.

Hard Ferrite or Ceramic magnets are the most popular permanent magnets available today. They are made form a combination of either Barium or Strontium Ferrite and Iron Oxide, and exhibit a high degree of coercive strength, making them more resistant to demagnetization. They are a low-cost solution to an endless list of magnetic applications.
Hard Ferrite/Ceramic magnets can be produced with either isotropic or anisotropic properties. The most common grades are C1, C5, and C8. C1 material exhibits the lowest energy product, however it is isotropic - indicating that it can be magnetized in any direction. It should be noted that slightly more magnetic strength will be realized when parts are magnetized through the pressing (usually the shortest) dimension.
Grades 5 and 8 Ceramic materials are anisotropic, and must therefore be magnetized in the manufactured dimension. They exhibit high levels of magnetic force than do Ceramic 1 materials.
Hard Ferrite magnets have excellent corrosion resistance and have normal operating capabilities between -40°C and +250°C. . At very low temperatures there is a risk of permanent demagnetization in magnet systems with low working points.

Supplier's Site

Technical Specifications

  Eneflux Armtek Magnetics, Inc.
Product Category Industrial Magnets
Product Number CM-0219
Product Name Ceramic 1 - Standard DISC MAGNETS
Industrial Magnets Individual Magnets
Unlock Full Specs
to access all available technical data

Similar Products

Magnets - 107916 - RS Components, Ltd.
RS Components, Ltd.
Specs
Holding Force 6.62 lbs (3 kg)
Width 4.86 inch (124 mm)
Length 2.64 inch (67 mm)
View Details
FeCrCo Magnet - FeCrCO - Essen Magnetics Pty Ltd
Essen Magnetics Pty Ltd
Specs
Industrial Magnets Bulk Magnet Materials
Material Iron-Chromium-Cobalt
Manufacturing Method Cast
View Details
Electromagnets - EM-4V and EM-7V - Lake Shore Cryotronics, Inc.
Lake Shore Cryotronics, Inc.
Specs
Width 30.98 inch (787 mm)
Length 35 inch (889 mm)
Thickness / Height 20.75 to 30.31 inch (527 to 770 mm)
View Details
Neodymium Iron Boron Magnets -  - Arnold Magnetic Technologies
Arnold Magnetic Technologies
Specs
Industrial Magnets Bulk Magnet Materials
Material Neodymium Iron Boron
Manufacturing Method Sintered
View Details