High-Temperature Resistant Magnets

High-Temperature Magnets, engineered to withstand extreme heat, deliver unparalleled performance in demanding environments. Perfect for use in aerospace, automotive, and industrial applications, they ensure consistent and reliable operation even under intense thermal conditions. With exceptional durability and precision, these magnets are indispensable in cutting-edge manufacturing, scientific research, and high-performance machinery. Discover the ultimate solution for heat-resilient strength and efficiency with Magnet Store's High-Temperature Magnets

Shop High-Temperature Resistant Magnets

Shop High-Temperature Resistant Magnets

Discover Magnet Store's premium high-temperature resistant magnets, engineered for demanding environments where standard magnets fail. Ideal for professional applications such as industrial machinery, automotive systems, and scientific equipment exposed to extreme heat. These magnets are perfect for tasks requiring reliable performance under high-temperature conditions.

Shape

Diameter / Width

Height

Pull Force (KG)

Coating

Max Temperature

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High Tempreture Magnets FAQs

How do I choose a magnet grade for high temperatures?

Match the grade suffix to your maximum working temperature, then confirm it against the datasheet for the exact part.

Neodymium grades carry a letter suffix showing how well they resist demagnetisation as they heat up: no suffix is the standard rating, then M, H, SH, UH and EH climb progressively. In this category that means N54H magnets are rated to 120°C and N52SH magnets to 150°C. For anything hotter, see samarium cobalt below.

What do the letters after a neodymium grade mean?

The number is magnetic strength and the letter is heat resistance, and the two trade off against each other.

N54H pairs a very high strength number with the H temperature rating, while N52SH gives up a little strength for the higher SH rating. That is why N52SH is rated 30°C hotter than N54H despite carrying the lower number. Our neodymium magnet grades guide sets out the full range.

When should I use samarium cobalt instead of neodymium?

Choose samarium cobalt when your application runs above roughly 150°C, or where corrosion resistance matters.

Our Sm2Co17 magnets are rated to 350°C. They deliver less pull force than a neodymium magnet of the same size, so expect to size up when you switch.

Is the maximum temperature a fixed limit?

No. The figure on each product is a guide for typical use.

The temperature a magnet actually tolerates also depends on its shape and the magnetic circuit it sits in. A thin magnet in open air will lose performance sooner than a thicker one in a closed steel circuit. If your application runs close to the limit, tell us the operating conditions and we will advise.

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