12mm x 6mm N52 Super Strong Round Magnets Rare Earth Crafts Fridge Magnets Specification:Dimensions: 12mm x 6mm thick Tolerances: ±0.2mm x ±0.2mm Plating/Coating: Ni-Cu-Ni (Nickel) Magnetization Direction: Axial (Poles on Flat Ends) Max Operating Temp: 176ºF (80ºC) Pull Force: approx. 11 lb (5 kg) Material...
20 Neodymium N52 block magnets. Dimensions are 1/2" x 3/8" x 1/4" and the poles are on the largest face side. Magnet-House Company Information: We have many years of experience working with high strength magnets and magnetic equipment. As a customer you can buy with...
Neodymium Cylinder Magnets. N52 grade rare earth magnets. 3/8" x 1/4"" or 10mm x 6.35 mm. Grate for hobby project....
20mm x 5mm N52 Super Strong Rare Earth Crafts Fridge Magnet Discs Specification:Dimensions: 20mm x 5mm thick Tolerances: ±0.1mm x ±0.1mm Plating/Coating: Ni-Cu-Ni (Nickel) Magnetization Direction: Axial (Poles on Flat Ends) Max Operating Temp: 176ºF (80ºC) Pull Force: Approx. 21.32 lb Material Features: N52 grade...
Material: Neodymium Magnet. Super strong Rare-Earth magnets - they are hard to break apart once they get stuck with each other. We respond within 24 hours of your request for information. Checkout instructions....
We are USA seller, Ship From USA! FREE SHIPPING FROM CALIFORNIA !!! Lot of brand new Tiny Neodymium Disc Magnets: (2mm x 1mm) -These magnets are incredibly strong for their small size and work great for crafts, repairs, hanging items on your fridge, etc...
10mm x 4mm (approx. 3/8"x5/32") N52 Super Strong Round Discs Rare Earth Magnets Specification:Dimensions: 10mm x 4mm thick (approx. 3/8" x 5/32" thick) Tolerances: ±0.2mm x ±0.2mm Plating/Coating: Ni-Cu-Ni (Nickel) Magnetization Direction: Axial (Poles on Flat Ends) Weight: 2.85 g (0.1oz) Max Operating Temp: 176ºF...
We are USA seller, Ship From USA! FREE SHIPPING FROM CALIFORNIA !!! N52 Strong Countersunk Ring Magnets 30 x 5mm Hole 5mm Rare Earth Neodymium ► Powerful Magnets: Our neodymium magnets are stronger than ferrite magnets, offering greater suction without losing magnetism over time. We...