Dongguan Ziitek Electronic Materials & Technology Ltd.
                                                                                                           
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Since 2006
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Highly Efficient Thermal Conductivity 1.2W/MK Silicone Thermal Pads For Laptop Heat Insulation Materials

Price Negotiable
Price: Negotiation
MOQ: 1000pcs
Delivery Time: 3-5work days
Brand: ZIITEK
Product Description

Highly Efficient Thermal Conductivity 1.2W/MK Silicone Thermal Pads For Laptop Heat Insulation Materials

 

Products description

 

The TIF®100-12-66U thermally conductive interface materials are applied to fill the air gaps between the heating elements and the heat dissipation fins or the metal base.Their flexibility and elasticity make them suited to coat very uneven surfaces.Heat can transmit to the metal housing or dissipation plate from the heating elements or even the entire PCB, which effecitly enhances the efficiency and life-time of the heat-generating electronic components.

 

Features:


> Good thermal conductive :1.2W/mK
> Moldability for complex parts
> Soft and compressible for low stress applications
> Naturally tacky needing no further adhesive coating
> Available in varies thicknesses


Applications:


> Cooling components to the chassis of frame  
>  High speed mass storage drives
> Heat Sinking Housing at LED-lit BLU in LCD
> LCD TV and LED-lit lamps
> RDRAM memory modules 
> Micro heat pipe thermal solutions 
> Automotive engine control units
> Telecommunication hardware
> CPU
> Memory Modules
> Mass storage devices
> Automotive electronics
> Set top boxes

 

Typical Properties of TIF®100-12-66U Series
Property Value Test method
Color Green Visual
Construction & Compostion Ceramic filled silicone elastomer ******
Density(g/cm³) 2.0 ASTM D792
Thickness Range(inch/mm) 0.010~0.020 0.030~0.200 ASTM D374
(0.25~0.50) (0.75~5.00)
Hardness 65 Shore 00 27 Shore 00 ASTM 2240
Recommended Operating Temperature -40 to 200℃ ******
Breakdown Voltage(V/mm) ≥5500 ASTM D149
Dielectric Constant 4.0 MHz ASTM D150
Volume Resistivity >1.0X1012 Ohm-meter ASTM D257
Flame rating V-0 UL 94 (E331100)
Thermal conductivity 1.2 W/m-K ASTM D5470
1.2 W/m-K ISO22007

 

Product Specifications


Standard Thickness: 0.010" (0.25 mm)~0.200" (5.00 mm) with increments of 0.010" (0.25 mm)
Standard Size: 16"×16" (406 mmX406 mm)

 

Component Codes:
Reinforcement Fabric: FG (Fiberglass).
Coating Options: NS1 (Non-adhesive treatment),
DC1 (Single-sided hardening).
Adhesive Options: A1/A2 (Single-sided/Double-sided adhesive).


The TIF® series is available in custom shapes and various forms.
For other thicknesses or more information, please contact us.

 

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

 
Company Profile

 

Dongguan Ziitek Electronic Material Technology Co., Ltd. was established in 2006. Is a high-tech enterprise specializing in the research, development, production and sales of thermal interface materials. We mainly produce: heat-conducting joint filler, low melting point thermal interface materials, heat-conducting insulator, heat-conducting adhesive tape, heat-conducting interface pad and heat-conducting grease, heat-conducting plastic, silicone rubber, silicone rubber foam, etc. We adhere to the business philosophy of "survival by quality, development by quality", and continue to provide the most efficient and best service for new and old customers with excellent quality in the spirit of rigor, pragmatism and innovation.

 

Certifications:

ISO9001:2015

ISO14001: 2004 IATF16949:2016

IECQ QC 080000:2017

UL

 

Independent R&D team

 

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Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Dongguan Ziitek Electronic Materials & Technology Ltd.
Location No.12 Xiju Road,, Hengli Township, 523465 Dongguan City
Contact Person Dana Dai

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