Neodymium Disc Magnet - 12.7mm x 0.79mm | N52

Product code: D-D12.7H0.79-N52

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Neodymium Disc Magnet - 12.7mm x 0.79mm | N52

Product Code D-D12.7H0.79-N52
Pull Force* 644 g
Weight 3 gm
Style Neodymium Disc
Gauss 918
Grade N52
Coating Nickel (Ni)
Direction of Magnetisation Through height
Dimensions Height:0.79mm, Diameter:12.7mm
*Measured against up to 10mm mild steel.
Neodymium Disc Magnet - 12.7mm x 0.79mm | N52

Magnetic Product Description:

This rare earth disc has a diameter of 12.7mm and a height of 0.79mm. It has a magnetic flux reading of 918 Gauss and a pull force of 644 grams. It is identified by the AMF magnet part number D-D12.7H0.79-N52.


Uses for our rare earth disc magnets:

These strong Neodymium disc magnets are made from heavy duty N52 grade Neodymium material, the highest grade of magnet available. Although these are small magnets they are super strong due to the powerful magnetic material used in their production. The thin profile combined with the small diameter makes these permanent magnets ideal for fitting into confined spaces. They can also be used in multiples, allowing the user to adjust the strong magnets to your needs. Many of our customers use these magnets to stick to the reverse side of advertising materials, calendars or signage as these extremely strong magnets provide superior heavy duty hold compared to magnetic patches or tape. If you are after a professional finish these small magnets are a fantastic choice. Commonly found in a huge array of electrical products and equipment, these Neodymium rare earth magnets are critical components in all sorts of modern products. This Neodymium disc magnet is nickel-coated on the outside and this silvery finish offers a neat and modern look to any product or design.

Neodymium Disc Magnet - 12.7mm x 0.79mm | N52 (D-D12.7H0.79-N52)

Grade
N52 N/A
Max Operating Temperature °C
<=80 N/A
Remanence Br(T)
1.43-1.8 N/A
Remanence Br(kGs)
14.3-14.8 N/A
Coercivity bHc(kA/m)
>=876 N/A
Coercivity bHc(Oe)
>=11 N/A
Intrinsic Coercivity iHc(kA/m)
>=960 N/A
Intrinsic Coercivity iHc(Oe)
>=12 N/A
Max Energy Product(BH)max(KJ/m)
390-422 N/A
Max Energy Product(BH)max(MGOe)
49-53 N/A
Grade N52 N/A
Max Operating Temperature °C <=80 N/A
Remanence Br(T) 1.43-1.8 N/A
Remanence Br(kGs) 14.3-14.8 N/A
Coercivity bHc(kA/m) >=876 N/A
Coercivity bHc(Oe) >=11 N/A
Intrinsic Coercivity iHc(kA/m) >=960 N/A
Intrinsic Coercivity iHc(Oe) >=12 N/A
Max Energy Product(BH)max(KJ/m) 390-422 N/A
Max Energy Product(BH)max(MGOe) 49-53 N/A
Neodymium Disc Magnet - 12.7mm x 0.79mm | N52

Magnetic Product Description:

This rare earth disc has a diameter of 12.7mm and a height of 0.79mm. It has a magnetic flux reading of 918 Gauss and a pull force of 644 grams. It is identified by the AMF magnet part number D-D12.7H0.79-N52.


Uses for our rare earth disc magnets:

These strong Neodymium disc magnets are made from heavy duty N52 grade Neodymium material, the highest grade of magnet available. Although these are small magnets they are super strong due to the powerful magnetic material used in their production. The thin profile combined with the small diameter makes these permanent magnets ideal for fitting into confined spaces. They can also be used in multiples, allowing the user to adjust the strong magnets to your needs. Many of our customers use these magnets to stick to the reverse side of advertising materials, calendars or signage as these extremely strong magnets provide superior heavy duty hold compared to magnetic patches or tape. If you are after a professional finish these small magnets are a fantastic choice. Commonly found in a huge array of electrical products and equipment, these Neodymium rare earth magnets are critical components in all sorts of modern products. This Neodymium disc magnet is nickel-coated on the outside and this silvery finish offers a neat and modern look to any product or design.

Neodymium Disc Magnet - 12.7mm x 0.79mm | N52 (D-D12.7H0.79-N52)

Grade
N52 N/A
Max Operating Temperature °C
<=80 N/A
Remanence Br(T)
1.43-1.8 N/A
Remanence Br(kGs)
14.3-14.8 N/A
Coercivity bHc(kA/m)
>=876 N/A
Coercivity bHc(Oe)
>=11 N/A
Intrinsic Coercivity iHc(kA/m)
>=960 N/A
Intrinsic Coercivity iHc(Oe)
>=12 N/A
Max Energy Product(BH)max(KJ/m)
390-422 N/A
Max Energy Product(BH)max(MGOe)
49-53 N/A
Grade N52 N/A
Max Operating Temperature °C <=80 N/A
Remanence Br(T) 1.43-1.8 N/A
Remanence Br(kGs) 14.3-14.8 N/A
Coercivity bHc(kA/m) >=876 N/A
Coercivity bHc(Oe) >=11 N/A
Intrinsic Coercivity iHc(kA/m) >=960 N/A
Intrinsic Coercivity iHc(Oe) >=12 N/A
Max Energy Product(BH)max(KJ/m) 390-422 N/A
Max Energy Product(BH)max(MGOe) 49-53 N/A