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Eclipse Neodymium Magnet 15kg, Length 20mm, Width 16mm

RS tilauskoodi: 792-4521Tuotemerkki: EclipseValmistajan osanumero.: E754NEO
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Tekninen dokumentti

Tekniset tiedot

Merkki

Eclipse

Magnet Type

Pot

Width/Diameter

16mm

Pull Force

15kg

Attachment Type

None

Length

20mm

Alkuperämaa

China

Tuotetiedot

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.

Varastotiedot eivät ole tilapäisesti saatavilla.

€ 33,80

€ 33,80 2 kpl pussi (ilman ALV)

€ 42,42

€ 42,42 2 kpl pussi (Sis ALV:n)

Eclipse Neodymium Magnet 15kg, Length 20mm, Width 16mm

€ 33,80

€ 33,80 2 kpl pussi (ilman ALV)

€ 42,42

€ 42,42 2 kpl pussi (Sis ALV:n)

Eclipse Neodymium Magnet 15kg, Length 20mm, Width 16mm
Varastotiedot eivät ole tilapäisesti saatavilla.

Varastotiedot eivät ole tilapäisesti saatavilla.

Tarkista myöhemmin uudelleen.

MääräYksikköhinta
1 - 4€ 33,80
5 - 9€ 32,10
10 - 29€ 29,30
30+€ 27,30

Tekninen dokumentti

Tekniset tiedot

Merkki

Eclipse

Magnet Type

Pot

Width/Diameter

16mm

Pull Force

15kg

Attachment Type

None

Length

20mm

Alkuperämaa

China

Tuotetiedot

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.