Neodymium Disc - 10mm x 3mm
Product code: 20050
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Magnetic Product Description:
This rare earth disc has a diameter of 10mm and a height of 3mm. It has a magnetic flux reading of 3396 Gauss and a pull force of 1.96 kg. It is identified by the AMF magnet part number 20050.
Uses for our rare earth disc magnets:
Neodymium Discs are high energy producing magnets and are a cost-effective option when space is restricted or reduced size is important. Devices or apparatus that require these values are becoming more common in modern technologies like computer hardware and communications equipment. At less than 2gms in weight and able to hold almost 2 kgs, no other magnetic material can match its power to weight ratio and useful compact physical dimensions.
No FAQ available
NB: Ranges are indicative for product category, please check individual products for specic values within that range.
The most common coating for Neodymium magnets is Nickel + Copper + Nickel (Ni + Cu + Ni). This coating offers the magnet relatively good protection from corrosion and passive applications. If the magnet will be exposed to moisture or liquid then consider the use of an organic coating such as Epoxy. A hard wearing coating, Epoxy is suited to applications where the magnet will come under some friction or knocking.
Magnets are readily available in Blocks, Discs, Cylinders & Rings. AMF Magnetics specializes in the supply of short-run prototype magnets including Arc Segments, various magnetic orientations etc. If you need a magnet size that we don't carry in stock, submit a Design-a-Magnet enquiry for a quote on your custom magnet design.
Neodymium magnets are offered in several different grades. The first section N30-54 has an operating temperature of up to 80 degrees. Most of our stock only goes up to N38. The second section, denoted with the "M" prefix after the grade has an operating temperature 100 degrees. After this the grades are "H", "SH", "UH" & "EH". In order for the magnet to withstand a higher operating temperature, during production more of the raw material PrNd is incorporated as these elements have a naturally occurring resistance to high temperatures.
Magnetic Product Description:
This rare earth disc has a diameter of 10mm and a height of 3mm. It has a magnetic flux reading of 3396 Gauss and a pull force of 1.96 kg. It is identified by the AMF magnet part number 20050.
Uses for our rare earth disc magnets:
Neodymium Discs are high energy producing magnets and are a cost-effective option when space is restricted or reduced size is important. Devices or apparatus that require these values are becoming more common in modern technologies like computer hardware and communications equipment. At less than 2gms in weight and able to hold almost 2 kgs, no other magnetic material can match its power to weight ratio and useful compact physical dimensions.
No FAQ available
NB: Ranges are indicative for product category, please check individual products for specic values within that range.
The most common coating for Neodymium magnets is Nickel + Copper + Nickel (Ni + Cu + Ni). This coating offers the magnet relatively good protection from corrosion and passive applications. If the magnet will be exposed to moisture or liquid then consider the use of an organic coating such as Epoxy. A hard wearing coating, Epoxy is suited to applications where the magnet will come under some friction or knocking.
Magnets are readily available in Blocks, Discs, Cylinders & Rings. AMF Magnetics specializes in the supply of short-run prototype magnets including Arc Segments, various magnetic orientations etc. If you need a magnet size that we don't carry in stock, submit a Design-a-Magnet enquiry for a quote on your custom magnet design.
Neodymium magnets are offered in several different grades. The first section N30-54 has an operating temperature of up to 80 degrees. Most of our stock only goes up to N38. The second section, denoted with the "M" prefix after the grade has an operating temperature 100 degrees. After this the grades are "H", "SH", "UH" & "EH". In order for the magnet to withstand a higher operating temperature, during production more of the raw material PrNd is incorporated as these elements have a naturally occurring resistance to high temperatures.