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3.0W/MK Efficient Thermal Conductivity Silicone Thermal Pads For Electronics Cooling

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3.0W/MK Efficient Thermal Conductivity Silicone Thermal Pads For Electronics Cooling

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Brand Name : Ziitek

Model Number : TIF300 Series

Certification : UL & RoHS

Place of Origin : China

MOQ : 1000pcs

Price : 0.1-10 USD/PCS

Payment Terms : T/T

Supply Ability : 1000000 pcs/month

Delivery Time : 3-5 work days

Packaging Details : 24*13*12cm cartons

Products name : 3.0W/MK Efficient Thermal Conductivity Silicone Thermal Pad For Electronics Cooling

Feature : Soft and compressible for low stress

Material : Ceramic filled silicone

Application : LED lighting

Thickness : Available in varies thivkness

keywords : Silicone Thermal Pads

Hardness : 27±5 shore 00

Thermal conductivity : 3.0W/mK

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3.0W/MK Efficient Thermal Conductivity Silicone Thermal Pads For Electronics Cooling

The TIF™300 Series tis a silicone based, thermally conductive gap pad. Its unreinforced construction allows additional compliancy. This product has low hardness is conformable and is electrically isolating. The low modulus characteristic of the product offers optimal thermal performance with the ease of handling.Heat can transmit to the metal housing or dissipation plate from the separate elements or even the entire PCB, which in effect enhances the efficiency and life-time of the heat-generating electronic components.

Features

> Good thermal conductive: 3.0W/mK
> Naturally tacky needing no further adhesive coating
> Soft and Compressible for low stress applications
> Available in varies thickness

Applications

> Cooling components to the chassis of frame
> High speed mass storage drives
> Heat Sinking Housing at LED-lit BLU in LCD
> LED TV and LED-lit lamps
> RDRAM memory modules
> Heat pipe thermal solutions
> Memory Modules
> Mass storage devices
> Automotive electronics

Typical Properties of TIF300 Series
Color Gray Visual
Construction Ceramic filled silicone elastomer **********
Thermal Conductivity 3.0W/mK ASTM D5470
Hardness 27±5 Shore 00 ASTM 2240
Specific Gravity 3.05 g/cm³ ASTM D297
Thickness range 0.020"~0.200"(0.5mm~5.0mm) ASTM D374
Dielectric Breakdown Voltage (T= 1mm above) ≥5500 VAC ASTM D149
Dielectric Constant 4.5 MHz ASTM D150
Volume Resistivity ≥1.0X10¹² Ohm-meter ASTM D257
Continuous Use Temp – 40 To 160℃ **********
Flame Rating 94 V0 UL E331100

Standard Thicknesses:

0.020" (0.51mm) 0.030" (0.76mm) 0.040" (1.02mm) 0.050" (1.27mm) 0.060" (1.52mm)

0.070" (1.78mm) 0.080" (2.03mm) 0.090" (2.29mm) 0.100" (2.54mm) 0.110" (2.79mm)

0.120" (3.05mm) 0.130" (3.30mm) 0.140" (3.56mm) 0.150" (3.81mm) 0.160" (4.06mm)

0.170" (4.32mm) 0.180" (4.57mm) 0.190" (4.83mm) 0.200" (5.08mm)
Consult the factory alternate thickness.


Standard Sheets Sizes:
8" x 16"(203mm x 406mm)
Individual die cut shapes can be supplied.


Peressure Sensitive Adhesive:
Request adhesive on one side with "A1" suffix.
Request adhesive on double side with "A2" suffix.


Reinforcement:
TIF™ series sheets type can add with fiberglass reinforced.

3.0W/MK Efficient Thermal Conductivity Silicone Thermal Pads For Electronics Cooling

Packaging Details & Lead time

The packaging of thermal pad

1. with PET film or foam-for protection

2. use Paper Card To Separate Each Layer

3. export carton inside and outside

4. meet with customers' requirement-customized

Lead Time :Quantity(Pieces):5000

Est. Time(days): To be negotiated

FAQ:

Q: Are you trading company or manufacturer ?

A: We are manufacturer in China.

Q: How long is your delivery time?

A: Generally it is 3-7 work days if the goods are in stock. or it is 7-10 work days if the goods are not in stock, it is according to quantity.

Q: Do you provide samples ? is it free or extra cost?

A: Yes, we could offer samples free of charge.


Product Tags:

heat conductive pad

      

gap filler pad

      

2.8W/MK Thermal Pad For LED Light

      
Quality 3.0W/MK Efficient Thermal Conductivity Silicone Thermal Pads For Electronics Cooling for sale

3.0W/MK Efficient Thermal Conductivity Silicone Thermal Pads For Electronics Cooling Images

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