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Antistatic bag. The construction material is a polyethylene compounded with antistatic material. Available in two thicknesses. The surface resistivity of the outer layer is 1x10E9 Ω/cm² and the inner is in the range of 1x10E10
to 1x10E11 Ω/cm². Static decay tests show a reduction from 5KV to 0V occurs in <2s.
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MB-1 @ 0.1mm
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Conductive bags. Material used is polyethylene compounded with a conductive material. The surface resistivity is in the range of 1x10E3 to 1x10E5 Ω/cm². Available in two thickness. Static decay tests
show a reduction from 5KV to 0V occurs in <0.5s
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MB-2 @ 0.08mm
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Static Prevention bags. Material used is polyethylene film coated with conductive material. The thickness is 0.1mm. The surface resistivity, in the outer layer is in the range of 1x10E5 to 1x10E6 Ω/cm²
and on the inner is in between 1x10E10 to 1x10E11 Ω/cm². Static decay tests show from 5KV to 0V in <1s
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MB-3 @0.09mm
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Static shielding bags. Their construction materials is a mix as follow: Top layer - dissipative protective coating. The second layer - polyester film. Third layer - metal. Inner layer - antistatic polyethylene film. The
surface resistivity of the outer layer is 1x10E8 Ω/cm², the metallic layer is ~50 Ω/cm² and the inner layer 1x10E10 Ω/cm². Material thickness is: the polyester film is ~0.015mm,
metallic layer is ~100microns and the polyethylene film ~0.08mm. Hence the total thickness is ~0.1mm. Static decay tests show from 5KV to 0V in <0.1s.
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MB-4 @0.1mm
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Antistatic bubble sheets and bubble bags. Available in 1 or 2 layers. The construction material is a polyethylene and antistatic compound. The surface resistivity is 1x10E9 Ω/cm². Static decay tests show from 5KV to
0V in <2s. The single layer bag has the one layer built to the interior and the bubbles facing to the outside, the double layer one has the bubbles sandwiched in between two layers.
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MB-5 @ 1 layer
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MB-5 @ 2 layers
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Antistatic/conductive bubble sheet & bags. Antistatic/conductive polyethylene film laminated. Construction in 3 layers. The surface resistivity of the outer layer is in the range of 1x10E4 to 1x10E5 Ω/cm²
and the inner is ~1x10E10 Ω/cm². Static decay tests show from 5KV to 0V in <0.1s
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MB-6 @0.1mm
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