Neodymium Rectangular Pot Magnet with Countersunk Holes - 100mm (L) x 13.5mm (W) x 5mm (H)
Neodymium Rectangular Pot Magnet with Countersunk Holes - 100mm (L) x 13.5mm (W) x 5mm (H)
Available in stock
This rectangular pot magnet measures 100mm in length, 13.5mm in width, and 5mm in height, featuring two countersunk holes with diameters of 3.3mm and 6.5mm. It provides a strong pull force of 36kg for reliable holding power.
This neodymium rectangular pot magnet is encased within a chrome-plated steel channel that shields the magnet from everyday wear and damage. It measures 100mm long, 13.5mm wide, and 5mm high, featuring two countersunk holes with diameters ranging from 3.3mm to 6.5mm. 
Combining versatility and functionality, these rectangular pot magnets feature a countersunk hole on the north pole and provide strong adhesion to steel surfaces. They are ideal for mounting, home improvement, and DIY projects including tool holders.r. A popular use for these magnets is as cabinet door or shower door catchers.
| Product Code | L | L1 | W | H | D1 | D2 | Weight | Pull Force | 
| AMFYPSNI10 | 10mm | 5mm | 13.5mm | 5mm | 3.3mm | 6.5mm | 4.5g | 4kg | 
| AMFYPSNI20 | 20mm | 10mm | 13.5mm | 5mm | 3.3mm | 6.5mm | 9.2g | 8kg | 
| AMFYPSNI40 | 40mm | 30mm | 13.5mm | 5mm | 3.3mm | 6.5mm | 18.4g | 17kg | 
| AMFYPSNI60 | 60mm | 50mm | 13.5mm | 5mm | 3.3mm | 6.5mm | 27.9g | 30kg | 
| AMFYPSNI80 | 80mm | 70mm | 13.5mm | 5mm | 3.3mm | 6.5mm | 37.8g | 33kg | 
| AMFYPSNI100 | 100mm | 90mm | 13.5mm | 5mm | 3.3mm | 6.5mm | 47.8g | 36kg | 
| AMFYPSNI120 | 120mm | 110mm | 13.5mm | 5mm | 3.3mm | 6.5mm | 56g | 40kg | 
    
      
      
        Pull Force Information
      
    
  Pull Force Information
Pull force refers to the maximum holding strength of a magnet. Measured in kilograms, it represents the amount of weight a magnet can support when attached to 10mm thick mild steel, with full, flat, and direct surface-to-surface contact.
A magnet's pull force can be affected by several factors, including its orientation (horizontal vs. vertical) and the presence of any air gaps between the magnet and the surface it’s attached to.
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