Technical Document
Specifications
Brand
EclipseMagnet Type
Pot
Width/Diameter
6mm
Pull Force
1kg
Attachment Type
None
Length
20mm
Country of Origin
China
Product details
Neodymium Deep Pot Bi-Pole Magnets
The Rare Earth Magnets are the most recent of the magnetic materials developed and have been introduced because of the high flux magnetic field they produce. They were manufactured in commercial quantities in the early 1990's and replaced many of the applications which previously had been designed for Cast Alnico and Ferrite materials. Rare Earth magnets particularly the Neodymium Iron Boron grades max. energy product were 5 to 10 times stronger than the conventional Alnico and Ferrite grades. This enabled designers to reduce component size.
Minimising contact area with high strength
Manufactured from Rare Earth material giving high strength flux fields
Neodymium magnet in a cylindrical brass pot assembled with steel pole pieces to give a multi-pole ratio on the contact face
Multi-pole effect gives superior grip at the contact face ideal for clamping or lifting application
Shallow field circuit gives suitability for positioning jigs soldering fixtures etc
N35 grade nickel plated magnet material
These pots have a maximum operating temperature of 80°C
Applications:
Energy Engineering such as Wind Power generation
Computer Disc Drives
Magnet Separation
Magnetic Filtration
Loudspeaker Drive Units
Holding and Clamping
Work Holding
Instrumentation
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P.O.A.
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P.O.A.
1
Technical Document
Specifications
Brand
EclipseMagnet Type
Pot
Width/Diameter
6mm
Pull Force
1kg
Attachment Type
None
Length
20mm
Country of Origin
China
Product details
Neodymium Deep Pot Bi-Pole Magnets
The Rare Earth Magnets are the most recent of the magnetic materials developed and have been introduced because of the high flux magnetic field they produce. They were manufactured in commercial quantities in the early 1990's and replaced many of the applications which previously had been designed for Cast Alnico and Ferrite materials. Rare Earth magnets particularly the Neodymium Iron Boron grades max. energy product were 5 to 10 times stronger than the conventional Alnico and Ferrite grades. This enabled designers to reduce component size.
Minimising contact area with high strength
Manufactured from Rare Earth material giving high strength flux fields
Neodymium magnet in a cylindrical brass pot assembled with steel pole pieces to give a multi-pole ratio on the contact face
Multi-pole effect gives superior grip at the contact face ideal for clamping or lifting application
Shallow field circuit gives suitability for positioning jigs soldering fixtures etc
N35 grade nickel plated magnet material
These pots have a maximum operating temperature of 80°C
Applications:
Energy Engineering such as Wind Power generation
Computer Disc Drives
Magnet Separation
Magnetic Filtration
Loudspeaker Drive Units
Holding and Clamping
Work Holding
Instrumentation