Ferrite pot magnet threaded stud Ø32mm M4x8 | 8.0 kg | SAV
Ferrite pot magnet threaded stud Ø32mm M4x8 | 8.0 kg | SAV
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Ferrite pot magnet threaded stud Ø32mm M4x8 | 8.0 kg | SAV
Ferrite pot magnet threaded stud Ø32mm M4x8 | 8.0 kg | SAV

Ferrite pot magnet threaded stud Ø32mm M4x8 | 8.0 kg

Article number: SAV 240.08-MH8-32-1
€2.29
  • Diameter: 32 mm
  • Height: 7 mm
  • Threaded stud: M4
  • Holding force: 8.00 kg
  • Max. temp.: 200 °C

Powerful ferrite pot magnet in a zinc-plated steel housing with an integrated M4 threaded stud (8 mm).

Ideal for heat-resistant, cost-effective mounting in mechanical engineering, fixtures, and industrial assemblies.

Need higher quantities? Contact us!

Volume discounts

Quantity Unit price You Save
10 €2.23 €0.57
25 €2.18 €2.86
50 €2.06 €11.45
100 €1.95 €34.35

Technical Specifications

Feature Specification
Diameter (D) 32 mm
Height (H) 7 mm
Thread (M) M4
Stud height (L) 8 mm
Holding force 8.00 kg
Max. operating temperature 200 °C
Weight 30 g

Product Description & Industrial Application

Powerful ferrite pot magnet in a zinc-plated steel housing with an integrated M4 threaded stud (8 mm length). Highly suitable for reliable and cost-effective fastening in mechanical engineering, mold-making, and industrial assemblies.

This flat ferrite pot magnet (hard ferrite) is encased in a zinc-plated steel housing. The steel jacket concentrates and directs the magnetic flux straight to the contact surface, ensuring optimal clamping force on steel counter-surfaces. At the same time, the robust housing protects the ferrite core from mechanical impacts. Thanks to its specific material properties, this magnet provides excellent resistance to corrosion and chemical exposure.

Key Advantages:
High temperature resistance: Safely operational in demanding thermal environments up to 200 °C without losing magnetic performance.
Easy installation: Direct mechanical fastening and locking via the fixed M4 threaded stud and a nut.
Cost-effective & Durable: The ideal economic alternative to neodymium magnets when a solid holding force of 8.00 kg and high heat resistance are required.

le alternative to neodymium when a compact, reliable holding force of 4.00 kg is required.

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