Neodymium Disc Magnet - 5mm x 2mm | N50
Product code: D-D5H2-N50
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Neodymium Disc Magnet - 5mm x 2mm | N50
Product Code
D-D5H2-N50
Pull Force*
557g
Weight
1 gm
Style
Rare Earth Disc magnet
Gauss
4527
Grade
N50
Coating
Nickel (NiCuNi)
Direction of Magnetisation
Axially magnetised
Dimensions
Height:2mm, Diameter:5mm
Neodymium Disc Magnet Description:
This Neodymium Rare Earth Magnetic Disc has a diameter of 5mm and a height of 2mm. Although tiny, powerful Rare Earth magnetic material makes this magnet extremely strong. It has a magnetic flux reading of 4527 Gauss and a pull force of 557g. It is identified by the AMF magnet part number D-D5H2-N50 .
Neodymium Disc Magnet - 5mm x 2mm | N50 (D-D5H2-N50)
| Grade | |
|---|---|
| N38 | N/A |
| Max Operating Temperature °C | |
| <=80 | N/A |
| Remanence Br(T) | |
| 1.23-1.3 | N/A |
| Remanence Br(kGs) | |
| 12.3-13 | N/A |
| Coercivity bHc(kA/m) | |
| >=859 | N/A |
| Coercivity bHc(Oe) | |
| >=10.8 | N/A |
| Intrinsic Coercivity iHc(kA/m) | |
| >=955 | N/A |
| Intrinsic Coercivity iHc(Oe) | |
| >=12 | N/A |
| Max Energy Product(BH)max(KJ/m) | |
| 286-318 | N/A |
| Max Energy Product(BH)max(MGOe) | |
| 36-40 | N/A |
| Grade | N38 | N/A |
| Max Operating Temperature °C | <=80 | N/A |
| Remanence Br(T) | 1.23-1.3 | N/A |
| Remanence Br(kGs) | 12.3-13 | N/A |
| Coercivity bHc(kA/m) | >=859 | N/A |
| Coercivity bHc(Oe) | >=10.8 | N/A |
| Intrinsic Coercivity iHc(kA/m) | >=955 | N/A |
| Intrinsic Coercivity iHc(Oe) | >=12 | N/A |
| Max Energy Product(BH)max(KJ/m) | 286-318 | N/A |
| Max Energy Product(BH)max(MGOe) | 36-40 | N/A |
Neodymium Disc Magnet Description:
This Neodymium Rare Earth Magnetic Disc has a diameter of 5mm and a height of 2mm. Although tiny, powerful Rare Earth magnetic material makes this magnet extremely strong. It has a magnetic flux reading of 4527 Gauss and a pull force of 557g. It is identified by the AMF magnet part number D-D5H2-N50 .
Neodymium Disc Magnet - 5mm x 2mm | N50 (D-D5H2-N50)
| Grade | |
|---|---|
| N38 | N/A |
| Max Operating Temperature °C | |
| <=80 | N/A |
| Remanence Br(T) | |
| 1.23-1.3 | N/A |
| Remanence Br(kGs) | |
| 12.3-13 | N/A |
| Coercivity bHc(kA/m) | |
| >=859 | N/A |
| Coercivity bHc(Oe) | |
| >=10.8 | N/A |
| Intrinsic Coercivity iHc(kA/m) | |
| >=955 | N/A |
| Intrinsic Coercivity iHc(Oe) | |
| >=12 | N/A |
| Max Energy Product(BH)max(KJ/m) | |
| 286-318 | N/A |
| Max Energy Product(BH)max(MGOe) | |
| 36-40 | N/A |
| Grade | N38 | N/A |
| Max Operating Temperature °C | <=80 | N/A |
| Remanence Br(T) | 1.23-1.3 | N/A |
| Remanence Br(kGs) | 12.3-13 | N/A |
| Coercivity bHc(kA/m) | >=859 | N/A |
| Coercivity bHc(Oe) | >=10.8 | N/A |
| Intrinsic Coercivity iHc(kA/m) | >=955 | N/A |
| Intrinsic Coercivity iHc(Oe) | >=12 | N/A |
| Max Energy Product(BH)max(KJ/m) | 286-318 | N/A |
| Max Energy Product(BH)max(MGOe) | 36-40 | N/A |