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Premium Soft 2.6W Silicone Thermal Pad Self Adhesive Thermal Filler Pad For Advanced Cooling Needs

Categories Silicone Thermal Pad
Brand Name: Ziitek
Model Number: TIF560BS
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
Product ame: Premium Soft 2.6W Silicone Thermal Pad Self Adhesive Thermal Filler Pad For Advanced Cooling Needs
Application: Advanced Cooling Needs
Thickness: 1.5mmT
Specific Gravity: 3.0g/cc
Dielectric Breakdown Voltage: >5500 VAC
Thermal conductivity: 2.6W/m-K
Color: Blue
Keywords: Silicone Thermal Pad
Hardness: 13 Shore 00
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  • Product Details
  • Company Profile

Premium Soft 2.6W Silicone Thermal Pad Self Adhesive Thermal Filler Pad For Advanced Cooling Needs

Premium Soft 2.6W Silicone Thermal Pad Self Adhesive Thermal Filler Pad For Advanced Cooling Needs


Company Profile


With a wide range, good quality, reasonable prices and stylish designs, Ziitek thermal conductive interface materials are extensively used in Mainboards, VGA cards, Notebooks, DDR&DDR2 products, CD-ROM ,LCD TV, PDP products, Server Power products, Down lamps, Spotlights, Street lamps, Daylight lamps, LED Server Power products and others.


Certifications:

ISO9001:2015

ISO14001: 2004 IATF16949:2016

IECQ QC 080000:2017

UL


Products Description


The TIF560BS Series thermal silicone pad is a product with both performance and economy. It is a unique thermal pad with low oil permeability, low thermal resistance, high softness and high compliance.It can work stably at -45℃~200℃ and meet the requirement of UL94V0.


Features
> Good thermal conductive: 2.6W/mK
> Moldability for complex parts
> Broad range of hardnesses available
> Moldability for complex parts
> Outstanding thermal performance


Applications
> Monitoring the Power Box
> AD-DC Power Adapters
> Rainproof LED Power
> Waterproof LED Power
> SMD LED module
> ​LED Flesible strip, LED bar
> ​LED Panel Light
> ​LED floor light
> ​Routers
> ​Medical Devices
> ​Auditioning electronic products
> ​unmanned aerial vehicle(UAV)


Key attributes


Typical Properties of TIFTM560BS Series
ColorBlueVisual
ConstructionCeramic filled silicone elastomer**********
Thermal Conductivity2.6W/mKASTM D5470
Hardness13 Shore 00ASTM 2240
Specific Gravity3.0 g/ccASTM D297
Thickness range1.5mmASTM D374
Dielectric Breakdown Voltage (T= 1mm above)>5500 VACASTM D149
Dielectric Constant5.0MHzASTM D150
Volume Resistivity2.0X1013 Ohm-meterASTM D257
Continuous Use Temp– 45To 200℃**********
Outgassing (TML)0.45%ASTM E595
Flame Rating94-V0UL E331100

Product Specification
Product Thicknesses: 0.020-inch to 0.200-inch (0.5mm to 5.0mm)

Product Sizes: 8" x 16"(203mm x406mm)
Individual dieoutshapesand andcustomthicknesscanbesupplied.Peasecontactusforconfirming

TIF™ series Individual die cut shapes can be supplied.


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 do I place an order?

A:1. Click the "Sent messages" button to continue with the process.

2. Fill out the message form by entering a subject line, and message to us.

This message should include any questions you might have about the products as well as your purchase requests.

3. Click the "Send" button when you are finished to complete the process and send your message to us

4. We will reply you as soon as possible with Email or online

Q: How do I request customized samples?

A: To request samples, you can leave us message on website, or just contact us by send email or call us.


Q: What's the thermal conductivity test method given on the data sheet ?

A: All the data in the sheet are actual tested.Hot Disk and ASTM D5470 are utilized to test the thermal conductivity.

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