Neodymium Rod Magnet (Cylinder) 6 x 20 mm N48, 1.8 kg Pull
- Size Ø 6 x 20 mm
- Grade N48
- Material Neodymium (NdFeB)
Volume prices (excl. VAT)
| Quantity | Price per piece | You save |
|---|---|---|
| 1–9 (your quantity) | €1.07 | List price |
| 10–49 (your quantity) | €0.97 | −10% |
| 50–199 (your quantity) | €0.86 | −20% |
| 200+ (your quantity) | €0.75 | −30% |
Mix & match: quantities of all products in your cart count towards the tier. The discount is applied automatically in the cart.
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In stock, ships within 1 working day from Belgium
- Free shipping from €50 excl. VAT
- VAT-free invoicing for EU businesses
- Shipped from Belgium, own stock
- 14-day returns for consumers
Description
The Rod magnet 6 x 20 mm is a high-quality neodymium magnet that excels in strength and versatility. This product is ideal for both professional use and creative applications and DIY projects. Magnetic rod 6 x 20 mm, N48, holding force 1.8 kg Thanks to the combination of durability, strong pull force and compact size, the 6 x 20 mm Rod magnet is perfect for model making, electronics, workshops and innovative projects. A reliable choice for anyone looking for a strong and durable magnet.
Shipping, VAT & returns
Free shipping from €50 excl. VAT. Orders are packed and shipped from our own stock in Belgium. Prices are shown excl. VAT with the incl. 21% BE VAT price below; the VAT for your order is calculated at checkout. EU businesses with a valid VAT number are invoiced VAT-free (reverse charge). Consumers can return items within 14 days.
Safety
Neodymium magnets are very strong. Keep them away from pacemakers, electronics and magnetic cards, wear gloves with larger sizes and keep small magnets away from children.
Technical data
Specifications
| Shape | Rod (cylinder) |
|---|---|
| Dimensions | Ø 6 x 20 mm |
| Material | Neodymium (NdFeB) |
| Grade | N48 |
| Magnetisation | Axial (through height) |
| Pull force | 1.8 kg |
| Max. operating temperature | 80 °C |
| Coating | Nickel (Ni-Cu-Ni) |
| Shipping weight | 4 g |
Nominal values. Real holding force depends on steel thickness, surface, air gap and direction of pull.