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4.7 MHz Thermal Conductive Pads Moldability For Complex Parts For LED TV

    Buy cheap 4.7 MHz Thermal Conductive Pads Moldability For Complex Parts For LED TV from wholesalers
     
    Buy cheap 4.7 MHz Thermal Conductive Pads Moldability For Complex Parts For LED TV from wholesalers
    • Buy cheap 4.7 MHz Thermal Conductive Pads Moldability For Complex Parts For LED TV from wholesalers
    • Buy cheap 4.7 MHz Thermal Conductive Pads Moldability For Complex Parts For LED TV from wholesalers

    4.7 MHz Thermal Conductive Pads Moldability For Complex Parts For LED TV

    Ask Lasest Price
    Brand Name : ZIITEK
    Model Number : TIF1160N-50-10F thermal pad
    Certification : UL and RoHs
    Price : negotiation
    Supply Ability : 100000pcs/day
    Delivery Time : 3-5 work days
    • Product Details
    • Company Profile

    4.7 MHz Thermal Conductive Pads Moldability For Complex Parts For LED TV

    4.7 MHz Conductive Pads Moldability for Complex Parts for LED TV


    The TIF1160N-50-10F 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 -40℃~160℃ and meet the requirement of UL94V0.


    TIF100N-40-10F-Specification-sheet.pdf


    Features

    > Good thermal conductive: 5.0 W/mK

    >Thickness: 4.0mmT

    >hardness:55±5 shore 00

    >Colour: Gray

    >Moldability for complex parts
    >Soft and compressible for low stress applications
    >Naturally tacky needing no further adhesive coating


    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

    >Micro heat pipe thermal solutions


    Typical Properties of TIF1160N-50-10F Series
    Color
    Gray
    Visual
    Composite Thickness
    Thermal Impedance@10psi
    (℃-in²/W)
    Construction &
    Compostion
    Ceramic filled silicone elastomer
    ***
    10mils / 0.254 mm
    0.16
    20mils / 0.508 mm
    0.20

    Specific gravity

    2.1 g/cm3

    ASTM D297
    30mils / 0.762 mm
    0.31
    40mils / 1.016 mm
    0.36
    Thickness
    4.0mmT
    ***
    50mils / 1.270 mm
    0.42
    60mils / 1.524 mm
    0.48
    Hardness

    55±5 Shore 00

    ASTM 2240
    70mils / 1.778 mm
    0.53
    80mils / 2.032 mm
    0.63
    Thermal conductivity
    5.0W/mk
    ISO22007-2.2
    90mils / 2.286 mm
    0.73
    100mils / 2.540 mm
    0.81
    Continuos Use Temp
    -40 to 160℃
    ***
    110mils / 2.794 mm
    0.86
    120mils / 3.048 mm
    0.93
    Dielectric Breakdown Voltage
    >5500 VAC
    ASTM D149
    130mils / 3.302mm
    1.00
    140mils /3.556 mm
    1.08
    Dielectric Constant

    4.7 MHz

    ASTM D150
    150mils / 3.810 mm
    1.13
    160mils / 4.064 mm
    1.20
    Volume Resistivity
    1.0X1012
    Ohm-cm
    ASTM D257
    170mils / 4.318 mm
    1.24
    180mils / 4.572 mm
    1.32
    Fire rating
    94 V0
    equivalent
    UL
    190mils / 4.826 mm
    1.41
    200mils / 5.080 mm
    1.52
    Thermal conductivity

    5.0 W/m-K
    ASTM D5470
    Visua l/ ASTM D751
    ASTM D5470


    Company Profile

    With professional R&D capabilities and over 18 year experiences in thermal interface material industry, Ziitek company own many unique formulations which are our core technologies and advantages. Our goal is to provide quality & competitive products to our customers worldwide aiming for long-term business cooperation.


    Certifications:

    ISO9001:2015

    ISO14001: 2004 IATF16949:2016

    IECQ QC 080000:2017

    UL



    FAQ:

    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.

    Q: How to find a right thermal conductivity for my applications

    A: It depends on the watts of power source , ability of heat dissipation. Please tell us your detailed applications and the power, so we can recommend most suitable thermal conductive materials.

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