Magnets
Neodymium, ceramic, pot, and magnetic assemblies for holding and sensing.
Also searched as: neodymium magnetsrare earth magnetspot magnetsmagnetic assemblies
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Mag-Mate Neodymium Disc Magnet
Diameter: 0.25 inchPull Force: 2.4 lbShape: DiscThickness: 0.125 inch
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Mag-Mate Neodymium Parallel 2-Pole Permanent Magnet
Diameter: 20 mmLength: 25 mmPull Force: 25.4 lb
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Neodymium Disc Magnet
Outside Diameter: 0.49 inchShape: DiscThickness: 0.105 inch
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Neodymium Magnet
Diameter: 2 inchHeight: 1 inchLength: 2 inchPull Force: 175.5 lbWidth: 2 inch
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Neodymium Magnet Disc
Diameter: 0.25 inchShape: DiscThickness: 0.125 inch
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Neodymium Magnet with 8-32 Male Thread
Diameter: 0.787 inchPull Force: 28 lbThickness: 0.285 inchThread: 8-32 Male
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Round Base Magnet
Diameter: 1.42 inchPull Strength: 16 lb
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Rubber Coated Neodymium Magnet
Diameter: 30.51 inchPull Force: 105 lbThickness: 0.335 inch
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Super Blue Round Base Neodymium Magnet
Diameter: 20.65 inchPull Force: 220 lbShape: Round BaseThickness: 0.40 inch
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Super Neodymium Disc Magnet
Diameter: 0.125 inchHeight: 0.125 inchPull: 1.2 lb
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Super Neodymium Disc Magnet
Diameter: 0.25 inchHeight: 0.25 inchPull Force: 4.9 lbShape: Disc
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Super Neodymium Disc Magnet
Diameter: 1 inchHeight: 0.5 inchPull Force: 38.9 lbShape: Disc
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ZONE FIXING POT MAGNET
Diameter: 12 mmThickness: 5 mm
About magnets
Magnets are components that produce a magnetic field, used for holding, sensing, and actuation in various mechanical and automation applications. The primary types include permanent magnets, such as Neodymium (NdFeB) and Ceramic (Ferrite) magnets, and magnetic assemblies. Neodymium magnets offer high magnetic strength (e.g., N35, N42, N52 grades) and are commonly used in compact designs, often with nickel, zinc, or epoxy coatings for corrosion resistance. Ceramic magnets are more cost-effective, exhibit good temperature stability, and are typically unplated. Pot magnets, a common assembly type, integrate a permanent magnet within a steel casing to direct and amplify the magnetic field, often featuring threaded studs, internal threads, or through-holes for mounting. Key selection parameters include pull force (in pounds or kilograms), operating temperature range, dimensions (diameter, thickness, height), and mounting configuration. Magnetic assemblies can also incorporate reed switches or Hall effect sensors for sensing applications, with specifications including switching voltage, current, and contact form.
How to choose
When selecting magnets, first determine the required pull force or holding strength for the application. Next, consider the operating temperature range; Neodymium magnets have lower maximum temperatures than Ceramic magnets. Third, evaluate the physical constraints and desired mounting method, which will dictate the magnet's dimensions and whether a pot magnet or a custom assembly is needed. Finally, assess environmental factors such as moisture or corrosive agents to choose an appropriate coating or material. Trade-offs exist between magnetic strength, temperature resistance, and cost.