Pot magnet Ø 32 mm, countersunk hole 5.5 mm | 34 kg hold. Neodymium
Pot magnet Ø 32 mm, countersunk hole 5.5 mm | 34 kg hold. Neodymium
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Pot magnet Ø 32 mm, countersunk hole 5.5 mm | 34 kg hold. Neodymium
Pot magnet Ø 32 mm, countersunk hole 5.5 mm | 34 kg hold. Neodymium

Pot magnet Ø 32 mm, countersunk hole 5.5 mm | 34 kg hold. Neodymium

Article number: SAV 240.38-MH38-232
€6.31
  • Diameter (D): 32 mm
  • Height (H): 7 mm
  • Countersunk hole (d1): 5.5 mm (d2: 11 mm)
  • Holding force: 31 kg (approx. 310 N)
  • Max. operating temp.: 80 °C
  • Tolerance: +0.1 / -0.1 mm

Extremely powerful industrial Neodymium pot magnet with a central through-countersunk borehole. Specifically engineered for heavy-duty mechanical mounting requiring a completely flush and unyielding M5 screw attachment. The steel housing maximizes magnetic force density.

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Technical specifications

Feature Specification
Diameter (D) 32 mm
Height (H) 7 mm
Hole diameter (d1) 5.5 mm
Countersunk diameter (d2) 11 mm
Holding force 31.00 kg
Max. operating temperature 80 °C
Weight 39 g

Product description & Industrial integration

This high-performance Neodymium pot magnet delivers an impressive holding force of 31 kg with an outer diameter of 32 mm. Thanks to its low profile height of just 7 mm, this heavy-duty magnetic assembly is the ultimate solution for demanding industrial applications in mechanical engineering, heavy exhibition stand construction, shipbuilding, and the automotive sector.

Guaranteed fit for series production:
Absolute precision is required for seamless and trouble-free integration into your CNC-controlled manufacturing setups. These mounting magnets are produced with a strict dimensional tolerance of +0.1 / -0.1 mm on both diameter and height, ensuring an exact fit inside your recesses or custom housing configurations.

Assembly advice:
The magnet can be secured with heavy-duty stability using a standard M5 countersunk screw (DIN 7991). Thanks to the generous 11 mm countersink, the screw head rests fully flush within the assembly. The surrounding zinc-plated steel pot protects the brittle Neodymium core from mechanical impact while directing the magnetic flux entirely onto the active pole face for maximum efficiency.

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