1.Dimensions: Customized / Produce according to your needs 2.Materials: NdFeB,Grade N35 to N52 (M,H,SH,UH,EH AH) 3.Plating/Coating: Nickel,Zinc,Epoxy and etc. 4.Magnetization direction: Axial magnetized,Diametrical magnetized and etc. 5.Max operating temp.: 80 to 220 degrees celsius Round NdFeB magnet have a wide range of applications. Even at a very small size,it is strong enough for many tasks. Tiny size like D3x1mm,D4x2mm magnet and etc. Middle size like D6x2mm,D10x1mm manget and etc. Big size like D50x30mm magnet and etc.
Block Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners), -magnetic separators
Ring Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners) -magnetic separators
Rectangular Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners), -magnetic separators
Round Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners) -magnetic separators
Ring Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners) -magnetic separators
Round Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners) -magnetic separators
Cylinder Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners) -magnetic separators
Arc Neodymium Magnet Neodymium magnet (NdFeB), commonly known as "rare earth" magnet, is a high-performance permanent magnet made of neodymium, iron and boron alloys. They are real permanent magnets and will not lose their magnetism unless heated to a temperature exceeding the maximum operating temperature rating or their protective coating is damaged. Characteristic: -Energy products may exceed 50mgoe -Low corrosion resistance Applications: -automotive -electronics (sensors, speakers, scanners) -medical (scanners) -magnetic separators
Block Neodymium Magnet 1.Dimensions: Customized / Produce according to your needs 2.Materials: NdFeB,Grade N35 to N52 (M,H,SH,UH,EH AH) 3.Plating/Coating: Nickel,Zinc,Epoxy and etc. 4.Magnetization direction: Through thickness,width,or length 5.Max operating temp.: 80 to 220 degrees celsius It can be very small block/cube,or it can be big block/bar and become a very powerful magnet.They are often used for industrial applications.
Laminated Magnet 1. Insulation layer thickness within 0.04mm. Insulation layers: 2-40 layers. 2. At normal temperature, the bonding strength of the insulation layer can reach more than 50Mpa. 3. The maximum operating temperature is 60-250 ℃. 4. Tolerance is within 0.05mm. 5. Each magnets are insulated from each other.
Laminated Magnet 1. Insulation layer thickness within 0.04mm. 2. At normal temperature, the bonding strength of the insulation layer can reach more than 50Mpa. 3. The maximum operating temperature can reach 200 ℃. 4. Tolerance is within 0.05mm. 5. Each magnets are insulated from each other.
Laminated Magnet 1. Insulation layer thickness within 0.04mm. 2. At normal temperature, the bonding strength of the insulation layer can reach more than 50Mpa. 3. The maximum operating temperature can reach 200 ℃. 4. Tolerance is within 0.05mm. 5. Each magnets are insulated from each other.