
Neodymium Cylinder Magnet
Neodymium magnets are a combination of Neodymium, Iron, and Boron which extremely strong for their size.
Neodymium Cylinder Magnet
Neodymium magnets are a combination of Neodymium, Iron, and Boron which extremely strong for their size. Cylinder magnet is also referred to as Neodymium rod magnet. It is similar with Neodymium disc magnet that Neodymium cylinder magnet is measured according to the diameter (D) and length (L), where the length is equal to or exceeds the diameter. The higher L/D ratio enables the axially magnetized Neodymium cylinder magnets have higher gauss value and making it well suitable for activating hall sensor and reed switch. In addition, Neodymium cylinder magnet with higher L/D ratio can also generate much stronger pull force from the relatively small magnetic pole area and exhibit superior temperature stability. Other representative application of Neodymium cylinder magnet includes magnetic bead separation rack and some holding applications.

Magnetisation Direction of Neodymium Cylinder Magnet
Magnetisation | Axially Magnetized | Diametrically Magnetized | 2-Poles Magnetized | multi-Poles On the face | Multi-Poles parallel | Multi-Poles diameter |
Sketch Map | ||||||
Magnetisation Direction |
1. Magnetized through depth
2. Axially magnetized
3. Magnetized through diameter*
4. Axially magnetized in segments
5. Radially
magnetized
6. Multi-pole magnetized in segments on the face
7. Multi-pole magnetized in segments on outside diameter*
8. Multi-pole magnetized in segments on inside diameter*
9. Magnetized laterally on the face
All
available for magnet is isotropic or anisotropic except*
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