| Image | Part Number | Description / PDF | Quantity | Rfq |
|---|---|---|---|---|
|
3M |
THERM PAD 300MMX210MM WHITE |
0 |
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|
3M |
THERM PAD 5MX50MM |
0 |
|
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|
3M |
THERM PAD 5MX12.7MM |
0 |
|
|
|
3M |
THERM PAD 20MX240MM GRAY |
0 |
|
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|
3M |
THERM PAD 20MX400MM GRAY |
0 |
|
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|
3M |
THERM PAD 1MX400MM |
0 |
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|
3M |
THERMALLY CONDUCTIVE INTERFACE T |
0 |
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|
3M |
THERM PAD 1MX200MM |
0 |
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3M |
THERM PAD 1MX100MM |
0 |
|
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|
3M |
THERM COND PAD 2.0MM 155MMX210MM |
0 |
|
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|
3M |
THERM PAD GRAY |
0 |
|
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|
3M |
THERM PAD 5MX19.05MM |
0 |
|
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|
3M |
THERM PAD 5MX25.4MM |
0 |
|
|
|
5519S 210 MM X 155 MM X 1.0 MM 3M |
THERM PAD 210MMX155MM WHITE |
0 |
|
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|
3M |
THERM COND PAD 1.0MM 155MMX210MM |
0 |
|
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|
3M |
THERMALLY CONDUCTIVE ACRYLIC INT |
0 |
|
Thermal pads and sheets are thermally conductive materials used to transfer heat away from electronic components to heat sinks or ambient environments. They fill air gaps between uneven surfaces, improving thermal efficiency. These materials are critical in modern electronics, automotive systems, and industrial equipment to prevent overheating, enhance reliability, and ensure compliance with safety standards.
| Type | Functional Features | Application Examples |
|---|---|---|
| Silicone-Based Pads | High flexibility, low compression force, dielectric insulation | Smartphones, laptops, LED lighting |
| Non-Silicone Pads | Lower cost, reduced silicone oil migration | Power supplies, industrial controls |
| Phase Change Materials (PCM) | Softening at operational temperatures for better contact | CPUs, GPUs, servers |
| Metal-Backed Pads | Aluminum/copper reinforcement for structural support | EV battery packs, high-power lasers |
| Graphite Sheets | Ultra-thin, anisotropic heat spreading | 5G base stations, wearable devices |
Typical thermal pads consist of:
| Parameter | Importance |
|---|---|
| Thermal Conductivity (W/m K) | Measures heat transfer efficiency (ASTM D5470) |
| Thickness (mm) | Impacts contact resistance and compression force |
| Operating Temperature Range ( C) | Determines material stability under thermal stress |
| Hardness (Shore 00) | Affects conformability to surfaces |
| Adhesion Strength (N/mm ) | Critical for mechanical fixation |
| Electrical Insulation (kV/mm) | Essential for high-voltage applications |
Major industries include:
| Manufacturer | Representative Product | Key Specification |
|---|---|---|
| Laird Performance Materials | THERM-A-GAP GEL 15 | 15 W/m K, 0.5mm thickness |
| Bergquist (Henkel) | Gap Pad 1500S | Silicone-free, 8.0 W/m K |
| 3M | 5595 PCM | Phase change at 55 C, 12 W/m K |
| Fujipoly | SARCON Matrix MG | Metal-gel hybrid, 20 W/m K |
| Momentive | TSE 3045 | Graphite sheet, 400 W/m K (in-plane) |
Key considerations:
Emerging trends include: