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3M Thermally Conductive Acrylic Interface Pad 5500H

  • High thermal conductivity
  • Good softness and conformability even to non-flat IC surfaces and heat spreading blocks
  • Good flame retardant, UL 94 V-0 equivalent material
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3M Thermally Conductive Acrylic Interface Pad 5570N

  • Pads available in 0.5, 1.0, 1.5 and 2.0 mm
  • Soft for good conformability even to non-flat integrated circuit (IC) surfaces and heat spreading blocks
  • Little to no siloxane gas/oil bleeding that can cause electric connection failures
  • High pressure relaxation helps reduce pressure to electric components
  • Good electrical insulation properties
  • Slight tack allows easy pre-assembly
  • Good wetting performance for better thermal conductivity
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3M Thermally Conductive Acrylic Interface Pad 5589H

  • Good softness and conformability to non-flat surfaces
  • Excellent compressive stress relaxation
  • Non-silicone acrylic elastomer
  • Good dielectric performance
  • Good surface tack leads to low thermal resistance at surface
  • Thickness : 1.0 mm, 1.5 mm
  • Excellent durability for long term thermal conductivity and electric insulation stability
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3M Thermally Conductive Acrylic Interface Pad 5590H

• Good softness and conformability to non-flat surfaces.
• Excellent compressive stress relaxation.
• High thermal conductivity.
• UL94 V-O certified (File No. E176845).
• Good surface tack leads to low thermal resistance at surface.
• Non-silicone acrylic elastomer.
• Good dielectric performance.
• Excellent durability for long term thermal conductivity and electric insulation stability.

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3M Thermally Conductive Silicone Interface Pad 5300-SP

  • Single layer of silicone on polyimide carrier
  • No surface tack
  • Excellent heat stability
  • Various thickness availability
  • Dust Free (No contamination)
  • High mechanical properties (high tear strength)
  • High restoration force and no surface tack
  • Excellent electrical insulation properties
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3M Thermally Conductive Silicone Interface Pad 5516

  • Good thermal conductivity (3.1 w/m-k)
  • Good softness and is conformable at low pressure ( Shore 00 = 50)
  • Softness results in low stress on board components
  • Good dielectric properties
  • Slight tack allows pre-assembly. Good wettability for better thermal conductivity
  • UL 94 V-0
  • High temperature résistance
  • Tacky both sides
  • Thickness : 0.5 mm,1.0 mm, 1.5 mm, 2.0 mm, custom thickness
  • Larger sheet size is available
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3M Thermally Conductive Silicone Interface Pad 5516S

  • Good thermal conductivity (3.1 w/m-k)
  • Good softness and is conformable at low pressure ( Shore 00 =72)
  • Softness results in low stress on board components
  • Good dielectric properties
  • “S” version incorporates a thin polymeric film carrier for improved handling and a non-tacky surface for ease of rework
  • Slight tack allows pre-assembly. Good wettability for better thermal conductivity
  • UL 94 V-1
  • High temperature résistance
  • Tacky both sides
  • Thickness : 0.5 mm,1.0 mm, 1.5 mm, 2.0 mm, custom thickness
  • Larger sheet size is available
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3M Thermally Conductive Silicone Interface Pad 5519

  • Very high thermal conductivity (4.9 W/m-K)
  • Hardness :Shore 00 = 70
  • Good softness and conformability even to non-flat surfaces
  • Slight tack allows pre-assembly. Good wettability for better thermal conductivity
  • Good dielectric properties
  • UL 94 V-0
  • High temperature resistance
  • Tacky both sides
  • Thickness : 0.5 mm,1.0 mm, 1.5 mm, 2.0 mm, custom thickness
  • Larger sheet size is available
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3M Thermally Conductive Silicone Interface Pad 5549S

  • Very high thermal conductivity and good electrical insulation properties
  • Good softness and conformability even to non-flat surfaces
  • Thin polymeric film carrier supported on one side for good converting and handling properties
  • Slight tack allows pre-assembly
  • Good dielectric properties
  • Good wettability for better thermal conductivity
  • High temperature resistance
  • Tacky both sides
  • Larger sheet size is available
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3M Thermally Conductive Silicone Interface Pad 5583S

  • Good thermal stability of the base polymer with excellent softness of the thermal pad
  • Good thermal conductivity in a ultra soft silicone polymer base
  • The product tack is such that a mechanical means to support the pad in a final assembly is required
  • Thin PET film, 12 micrometer, carrier supported on one side for good converting and handling properties
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3M Thermally Conductive Silicone Interface Pad 5584

  • Good thermal stability of the base polymer with excellent softness of the thermal pad.
  • Good thermal conductivity in a soft silicone polymer base
  • The product tack is such that a mechanical means to support the pad in a final assembly is required
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3M Thermally Conductive Silicone Interface Pad 5586

• Good softness and conformability even to non-flat surfaces
• Good thermal conductivity
• Good electrical insulation properties
• Compression relaxation properties reduces pressure to electric components
• Slight tack allows pre-assembly
• Good wettability for improved and lower thermal resistance

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3M Thermally Conductive Silicone Interface Pad 5591

  • Good thermal stability of the base polymer with excellent softness of the thermal pad.
  • Good thermal conductivity in a ultra soft silicone polymer base.
  • The product tack is such that a mechanical means to support the pad in a final assembly is required.
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3M Thermally Conductive Silicone Interface Pad 5595

  • Good thermal stability of the base polymer with excellent softness of the thermal pad.
  • Good thermal conductivity in a soft silicone polymer base.
  • The product tack is such that a mechanical means to support the pad in a final assembly is required.
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3M Thermally Conductive Silicone Interface Pad 5595S

  • Good thermal stability of the base polymer with excellent softness of the thermal pad.
  • Good thermal conductivity in a soft silicone polymer base.
  • The product tack is such that a mechanical means to support the pad in a final assembly is required.
  • This "S" version has a permanent PEN film, 9 micrometer thick, on one side to provide for a non-tacky surface, increased puncture resistance, ease of handling and rework.