Sil-Pad® 900-S Series, Pads, Sheets

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16
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Adhesive
Thermal Resistivity
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Sil-Pad® 900-S
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ImageProduct DetailPriceAvailabilityECAD ModelShapeColorMaterialAdhesiveUsageSeriesTypeOutlineThicknessBacking, CarrierThermal ResistivityThermal Conductivity
SP900S-0.009-00-54
THERM PAD 19.05MMX12.7MM PINK
1+
$0.7859
5+
$0.7423
10+
$0.6986
Quantity
33,740 Available
Can ship immediately
Ships from: HK
PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
-
TO-220
Sil-Pad® 900-S
Pad, Sheet
19.05mm x 12.70mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-AC-62
THERM PAD 19.05MMX12.7MM W/ADH
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Quantity
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PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
Adhesive - One Side
TO-220
Sil-Pad® 900-S
Pad, Sheet
19.05mm x 12.70mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-58
THERM PAD 19.05MMX12.7MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
-
TO-220
Sil-Pad® 900-S
Pad, Sheet
19.05mm x 12.70mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-104
THERM PAD 25.4MMX19.05MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
-
TO-218, TO-220, TO-247
Sil-Pad® 900-S
Pad, Sheet
25.40mm x 19.05mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-AC-58
THERM PAD 19.05MMX12.7MM W/ADH
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
Adhesive - One Side
TO-220
Sil-Pad® 900-S
Pad, Sheet
19.05mm x 12.70mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-AC-1212
THERM PAD 304.8MMX304.8MM W/ADH
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Quantity
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PCB Symbol, Footprint & 3D Model
Square
Pink
Silicone Rubber
Adhesive - One Side
-
Sil-Pad® 900-S
Pad, Sheet
304.80mm x 304.80mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-43
THERM PAD 19.05MMX12.7MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
-
TO-220
Sil-Pad® 900-S
Pad, Sheet
19.05mm x 12.70mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-90
THERM PAD 21.84MMX18.8MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
-
TO-218, TO-220, TO-247
Sil-Pad® 900-S
Pad, Sheet
21.84mm x 18.80mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-114
THERM PAD 24MMX21.01MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
-
TO-218, TO-220, TO-247
Sil-Pad® 900-S
Pad, Sheet
24.00mm x 21.01mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-02
THERM PAD 45.21X31.75MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rhombus
Pink
Silicone Rubber
-
TO-3
Sil-Pad® 900-S
Pad, Sheet
45.21mm x 31.75mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-105
THERM PAD 36.83X21.29MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
-
SIP
Sil-Pad® 900-S
Pad, Sheet
36.83mm x 21.29mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-05
THERM PAD 41.91X28.96MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Rhombus
Pink
Silicone Rubber
-
TO-3
Sil-Pad® 900-S
Pad, Sheet
41.91mm x 28.96mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-AC-54
THERM PAD 19.05MMX12.7MM W/ADH
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Rectangular
Pink
Silicone Rubber
Adhesive - One Side
TO-220
Sil-Pad® 900-S
Pad, Sheet
19.05mm x 12.70mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-25
THERM PAD 25.4MMX6.6MM PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Round
Pink
Silicone Rubber
-
DO-5
Sil-Pad® 900-S
Pad, Sheet
25.40mm x 6.60mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-AC-05
THERM PAD 41.91X28.96MM W/ADH
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Rhombus
Pink
Silicone Rubber
Adhesive - One Side
TO-3
Sil-Pad® 900-S
Pad, Sheet
41.91mm x 28.96mm
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K
SP900S-0.009-00-12
THERM PAD 6.35MM DIA PINK
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Quantity
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PCB Symbol, Footprint & 3D Model
Round
Pink
Silicone Rubber
-
TO-18
Sil-Pad® 900-S
Pad, Sheet
6.35mm Dia
0.0090" (0.229mm)
Fiberglass
0.61°C/W
1.6W/m-K

About  Pads, Sheets

Thermal interface pads and thermal interface materials are designed to provide heat transfer between components and heatsinks. They are made from a variety of different materials and thicknesses, which determine their thermal conductivity and/or resistance. Some thermal interface pads and materials are coated on one or both sides with an adhesive to help maintain contact with the surfaces they are applied to. The main purpose of these thermal interface materials is to fill in small gaps and irregular shapes that exist between components and heatsinks. These imperfections slow down heat transfer, causing the component temperature to rise and decreasing performance. By filling these gaps, thermal interface pads and materials can enhance the efficiency of the interface's heat transfer, resulting in more effective heat dissipation. Thermal interface pads and materials can be made from a variety of materials such as silicon-based compounds, lubricant-like substances, phase-change materials, and synthetic graphite sheets. Each material has its unique combination of thermal properties, such as thermal conductivity and thermal resistance, which determine its effectiveness in promoting heat transfer. Thickness is also a critical factor that affects the thermal performance of thermal interface pads and materials. Thinner pads and materials typically offer lower thermal resistance and better thermal conductivity, while thicker pads and materials may have other advantages, such as better adaptability and less susceptibility to surface roughness. Some thermal interface pads and materials come with adhesive coatings, which serve several purposes. They enhance the contact between the thermal interface pad or material and the surfaces it is applied to, ensuring optimal heat transfer. Adhesives also help maintain the mechanical stability of the thermal interface pad or material, preventing displacement or separation caused by vibration or other external factors. In summary, thermal interface pads, thermal interface materials, and similar materials aim to improve heat transfer efficiency between components and heatsinks by filling in micro-imperfections. They use different materials and thicknesses, where each material provides specific thermal properties. Adhesive coatings help maintain contact and stability. By using thermal interface pads, thermal interface materials, and similar materials, significant improvements in overall thermal management in electronic devices can be achieved, resulting in improved performance, reliability, and lifespan.