Neodymium Block Magnets, N35, Plated
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Part # | L | W | T | Wt. (lbs) | Holding Force (lbs) | Specs | Price | Quantity | |
NEB35P252510 | .250 | .250 | .100 | .002 | 1.4 | Download | $0.90 | Add | |
NEB35P402010 | .400 | .200 | .100 | .002 | 1.8 | Download | $0.83 | Add | |
NEB35P755025 | .750 | .500 | .250 | .024 | 15.0 | Download | $10.12 | Add | |
NEB35P752534 | .750 | .250 | .340 | .018 | 7.0 | Download | $4.47 | Add | |
NEB35P752550 | .750 | .250 | .500 | .024 | 7.0 | Download | $17.15 | Add | |
NEB35P10010050 | 1.000 | 1.000 | .500 | .134 | 40.0 | Download | $36.45 | Add | |
NEB35P1004841 | 1.000 | .480 | .410 | .069 | 15.0 | Download | $14.80 | Add | |
NEB35P20020050 | 2.000 | 2.000 | .500 | .625 | 140.0 | Download | $56.69 | Add | |
NEB35P20010050 | 2.000 | 1.000 | .500 | .269 | 80.0 | Download | $42.09 | Add |
Part # | 1+ | 50+ | 101+ | 251+ | 501+ | 1001+ | Qty. | |
NEB35P252510 | $0.90 | $0.82 | $0.76 | $0.70 | $0.63 | $0.59 | Add | |
NEB35P402010 | $0.83 | $0.77 | $0.72 | $0.66 | $0.59 | $0.55 | Add | |
NEB35P755025 | $10.12 | $9.92 | $9.72 | $9.52 | $9.33 | $9.14 | Add | |
NEB35P752534 | $4.47 | $4.13 | $3.82 | $3.50 | $3.18 | $2.97 | Add | |
NEB35P752550 | $17.15 | $15.84 | $14.63 | $13.41 | $12.16 | $11.36 | Add | |
NEB35P10010050 | $36.45 | $33.68 | $31.11 | $28.51 | $25.87 | $24.14 | Add | |
NEB35P1004841 | $14.80 | $13.68 | $12.63 | $11.58 | $10.50 | $9.79 | Add | |
NEB35P20020050 | $56.69 | $52.38 | $48.38 | $44.35 | $40.23 | $37.54 | Add | |
NEB35P20010050 | $42.09 | $38.88 | $35.91 | $32.92 | $29.86 | $27.87 | Add |
High-Energy Magnets for Increased Holding Power for Reduced Size and Weight. Choose the power you need for your project. Call for technical advice. Click here to learn more about neodymium magnets and their uses.
- All Measurements are in inches (unless otherwise noted)
- Direction of Magnetization (DOM) is through the thickness unless noted
- Unless otherwise specified, magnets will be furnished in magnetized condition
- Holding forces are approximate. These are average values obtained under laboratory conditions. Size, shape, and material of the test piece may affect actual pull forces