Thermal - Pads, Sheets

Image Part Number Description / PDF Quantity Rfq
EYG-A121810P

EYG-A121810P

Panasonic

THERM PAD 180MMX115MM W/ADH GRAY

0

EYG-A121810B

EYG-A121810B

Panasonic

THERM PAD 180MMX115MM W/ADH GRAY

0

EYG-N0912QB4P

EYG-N0912QB4P

Panasonic

THERM PAD 115MMX90MM W/ADH WHITE

0

EYG-E0912XC6F

EYG-E0912XC6F

Panasonic

THERM PAD 115MMX90MM W/ADH GRAY

0

EYG-A091210P

EYG-A091210P

Panasonic

THERM PAD 115MMX90MM W/ADH GRAY

0

EYG-A060910P

EYG-A060910P

Panasonic

THERM PAD 90MMX60MM W/ADH GRAY

0

EYG-A091210B

EYG-A091210B

Panasonic

THERM PAD 115MMX90MM W/ADH GRAY

0

EYG-M060910SS

EYG-M060910SS

Panasonic

THERM PAD 90MMX60MM GRAY

0

EYG-M091210SS

EYG-M091210SS

Panasonic

THERM PAD 115MMX90MM GRAY

0

EYG-M121810SS

EYG-M121810SS

Panasonic

THERM PAD 180MMX115MM GRAY

0

EYG-A121810A

EYG-A121810A

Panasonic

THERM PAD 180MMX115MM W/ADH GRAY

0

EYG-A121803S

EYG-A121803S

Panasonic

THERM PAD 180MMX115MM W/ADH GRAY

0

EYG-N0912QB3S

EYG-N0912QB3S

Panasonic

THERM PAD 115MMX90MM W/ADH WHITE

0

EYG-N0912QB4S

EYG-N0912QB4S

Panasonic

THERM PAD 115MMX90MM W/ADH WHITE

0

EYG-S0202AFAA

EYG-S0202AFAA

Panasonic

THERM PAD 20MMX20MM GRAY

0

EYG-A121802V

EYG-A121802V

Panasonic

A-V TYPE, 17UM, 115X180MM

0

EYG-A091202KV

EYG-A091202KV

Panasonic

THERMAL SHEET PGS 90MMX115MM

0

EYG-A091210K

EYG-A091210K

Panasonic

THERMAL SHEET PGS 90MMX115MM

0

EYG-A091202V

EYG-A091202V

Panasonic

A-V TYPE, 17UM, 90X115MM

0

EYG-A121802KV

EYG-A121802KV

Panasonic

THERMAL SHEET PGS 115X180MM

0

Thermal - Pads, Sheets

1. Overview

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.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Silicone-Based PadsHigh flexibility, low compression force, dielectric insulationSmartphones, laptops, LED lighting
Non-Silicone PadsLower cost, reduced silicone oil migrationPower supplies, industrial controls
Phase Change Materials (PCM)Softening at operational temperatures for better contactCPUs, GPUs, servers
Metal-Backed PadsAluminum/copper reinforcement for structural supportEV battery packs, high-power lasers
Graphite SheetsUltra-thin, anisotropic heat spreading5G base stations, wearable devices

3. Structure and Composition

Typical thermal pads consist of:

  • Base Material: Silicone rubber (standard), polyurethane (low-cost), or epoxy (rigid)
  • Filler: Aluminum oxide, boron nitride, or silver-coated particles for thermal conductivity
  • Adhesive Layers: Pressure-sensitive acrylic or silicone adhesives (optional)
  • Reinforcement: Fiberglass mesh or metal foils for mechanical stability

4. Key Technical Parameters

ParameterImportance
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

5. Application Fields

Major industries include:

  • Consumer Electronics: Mobile phones (e.g., Samsung Galaxy series), tablets, gaming consoles
  • Automotive: EV battery thermal management (Tesla Model 3), powertrain inverters
  • Telecom: 5G base stations (Huawei AAU modules), optical transceivers
  • Industrial: CNC machines, medical imaging equipment
  • Aerospace: Avionics cooling systems

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Specification
Laird Performance MaterialsTHERM-A-GAP GEL 1515 W/m K, 0.5mm thickness
Bergquist (Henkel)Gap Pad 1500SSilicone-free, 8.0 W/m K
3M5595 PCMPhase change at 55 C, 12 W/m K
FujipolySARCON Matrix MGMetal-gel hybrid, 20 W/m K
MomentiveTSE 3045Graphite sheet, 400 W/m K (in-plane)

7. Selection Guidelines

Key considerations:

  • Thermal Requirements: Calculate required thermal conductivity based on power dissipation (using Fourier's Law)
  • Mechanical Constraints: Evaluate hardness-thickness trade-offs for housing clearance
  • Environmental Factors: Check temperature/chemical resistance for outdoor/automotive use
  • Cost Optimization: Balance performance vs. budget (e.g., graphite sheets cost 30% more than silicone pads)
  • Regulatory Compliance: Ensure RoHS/REACH certification for EU markets

8. Industry Trends

Emerging trends include:

  • Ultra-Thin Materials: 0.1mm graphite sheets for foldable devices
  • High-Conductivity Composites: Boron nitride nanotube-enhanced pads (30+ W/m K)
  • Smart Thermal Interfaces: Electro-responsive materials with tunable conductivity
  • Green Manufacturing: Water-based silicone formulations reducing VOC emissions
  • Integrated Solutions: Combination pads with embedded temperature sensors

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