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SmCo Disc Magnet 26DRE1608

[26DRE1608]
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Specifications
  • Grade: 26
  • Diameter (in): 0.250
  • Thickness (inch): 0.125
  • Approx. Pull: 1.75 lbs.

Grade 26 Samarium Cobalt Disc Magnet Product Details

  • This Grade 26 Samarium Cobalt Disc Magnet measures 1/4" diameter & 1/8" thickness (0.250" D x 0.125” THK) or (6.4 mm D x 3 mm THK) with an approximate pull force of 1.75 lbs (0.8 kg).

  • Sintered Samarium Cobalt magnets made with Sm2Co17 Grade 26 material, are built to perform well in high or very low temperature environments and do not typically require any surface treatments.

  • Item 26DRE1608 is axially magnetized through the thickness (THK).

  • The standard dimensional tolerance for this magnet is +/-0.004" on both diameter & thickness.

  • Commonly used for all types of industrial, aerospace, military & defense, and medical applications..

SmCo Safety Precautions
Please note that special safety precautions should be taken when handling & packaging this material.

  Total Order Minimum
*total minimum order (excluding shipping & tax if applicable) - Items can be combined to reach the minimum amount.


out of stock
Unfortunately, this item is temporarily out of stock and is on order.
The estimated delivery date is listed below and we apologize for the inconvenience.
Quantity:
Price Each: $5.87
Total Price: $5.87
This product will be in stock on Thursday, January 01, 2026.

Samarium Cobalt Disc Magnet Technical Data

26DRE1608 SmCo Dis Magnets Technical Data
Grade: 26
Standard Dimensional Tolerance: +/-0.004" on both Diameter (D) & Thickness (THK)
Magnetization: Axially Magnetized Through the Thickness (THK)
Br: 10,500 Gauss
BHmax: 26 MGOe
Hc: 9,200 Oersteds
Hci: 10,000 Oersteds
Max Operating Temperature: 662ºF/350ºC
Curie Temp: 825ºF/441ºC
Density (lb/in3): 0.300

Safety Precautions for Samarium Cobalt Magnets

SmCo magnets are hard, very brittle and high in magnetic strength. They can also snap together with great force, and chip or break if dropped. Therefore, they require careful handling and packing in order to prevent injuries or damages to the magnets.

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