Skip to content
FREE SHIPPING On Orders Over $50
CONTACT US Talk To An Expert
SAME DAY DISPATCH Before 11:30am ET
7,500+ REVIEWS 99% Recommended
Basket
Basket Oh No! Your basket is empty
Contact Us

Please fill out the following form to contact us:

N42 Neodymium Rod Magnet - 3/16 in. dia x 13/16 in. thick - 2.42lbs Pull
N42 Neodymium Rod Magnet - 3/16 in. dia x 13/16 in. thick - 2.42lbs Pull
N42 Neodymium Rod Magnet - 3/16 in. dia x 13/16 in. thick - 2.42lbs PullN42 Neodymium Rod Magnet - 3/16 in. dia x 13/16 in. thick - 2.42lbs PullN42 Neodymium Rod Magnet - 3/16 in. dia x 13/16 in. thick - 2.42lbs Pull

N42 Neodymium Rod Magnet - 3/16 in. dia x 13/16 in. thick - 2.42lbs Pull

Code: F344-10

*Measurements have been rounded to the nearest fraction inch - please check the product description for specific measurements.*

These small but high-performance Neodymium (N42) cylindrical rod magnets generate incredible magnetism from a small pole area.

Choose Pack Size:
$20.40
In Stock
Load Swiper
next day
NEXT DAY DELIVERY
available to the uk
standard
STANDARD DELIVERY
From £2.25 + VAT.
100% secure
100% SECURE
Online ordering.
Ask A Question

Please fill out the following form to Ask a Question about this product:

Email A Friend

Please fill out the following form to Tell a Friend about this product:

  • 5mm diameter x 20mm thick.
  • 0.2 in. diameter x 0.79 in. thick.
  • +/-0.1mm (0.0004 in.) tolerance.
  • Each magnet's north and south pole are on opposite 5mm (0.19 in.) circular faces.
  • Each magnet can support a steel weight of up to 1.1kg (2.43lbs) vertically from the magnetic face when in flush contact with a mild steel surface.
  • Excellent resistance to demagnetisation.
  • Coated with three layers of nickel, copper and nickel to reduce corrosion and provide a smooth and clean finish.

Our 5mm (0.2 in.) diameter Neodymium rod magnets produce an astonishing 1.1kg (2.43lbs) pull for a relatively small and affordable magnet. They have many uses in engineering, manufacturing and technology where small size and maximum strength are required. What's more, because of their resistance to demagnetisation they are ideal for creating a shock-absorbing or damping effect when used to repel other magnets.

What's Popular