Product Details
Place of Origin: Vietnam
Brand Name: Ziitek
Certification: RoHS
Model Number: TIF100-30-15U
Payment & Shipping Terms
Minimum Order Quantity: 1000pcs
Price: 0.1-10 USD/PCS
Packaging Details: 24*13*12cm cartons
Delivery Time: 3-5 work days
Payment Terms: T/T
Supply Ability: 100000pcs/day
Products Name: |
Custom Thermal Pad 3.0W/MK Electrically Insulating Thermal Pad For EV Battery Energy Storage And BMS |
Density: |
3.0g/cm³ |
Materials: |
Ceramic Filled Silicone Elastomer |
Application: |
EV Battery Energy Storage And BMS |
Sample: |
Sample Free |
Flame Rating: |
94-V0 |
Hardness: |
65/27 Shore 00 |
Keywords: |
Thermal Pad |
Color: |
Purple |
Thermal Conductivity: |
3.0W/mK |
Products Name: |
Custom Thermal Pad 3.0W/MK Electrically Insulating Thermal Pad For EV Battery Energy Storage And BMS |
Density: |
3.0g/cm³ |
Materials: |
Ceramic Filled Silicone Elastomer |
Application: |
EV Battery Energy Storage And BMS |
Sample: |
Sample Free |
Flame Rating: |
94-V0 |
Hardness: |
65/27 Shore 00 |
Keywords: |
Thermal Pad |
Color: |
Purple |
Thermal Conductivity: |
3.0W/mK |
Custom Thermal Pad 3.0W/MK Electrically Insulating Thermal Pad For EV Battery Energy Storage And BMS
Product descriptions
TIF®100-30-15U Series is an ultra-soft thermal interface material designed specifically to protect precision components that are extremely sensitive to mechanical stress. This product combines high thermal conductivity with exceptional gel-level softness,achieving a perfectly low-stress fit. It is suitable for addressing issues such as large tolerances, uneven surfaces, and the susceptibility of precision components to mechanical damage in high-precision assemblies.
Features
> Good thermal conductivity
> Good softness and fillability
> Self-adhesive without the need for additional surface adhesive
> Good insulation performance
Applications
> Automotive engine control units
> Telecommunication hardware
> Handheld portable electronics
> Semiconductor automated test equipment (ATE)
> Auditioning electronic products
> Unmanned aerial vehicle(UAV)
> Photovoltaic
> Signal communication
> New energy vehicle
> Motherboard chip
> Radiator
> AI Processors AI Servers
> EV Battery Energy Storage And BMS
| Typical Properties of TIF®100-30-15U Series | |||
| Property | Value | Test method | |
| Color | Purple | Visual | |
| Construction | Ceramic filled silicone elastomer | - | |
| Density(g/cm³) | 3.0 | 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 (Shore 00) | 65 | 27 | ASTM 2240 |
| Recommended Operating Temperature | -40 to 200℃ | - | |
| Breakdown Strength (V/mm) | ≥5500 | ASTM D149 | |
| Dielectric Constant @1MHz | 7.0 | ASTM D150 | |
| Volume Resistivity(Ohm-meter) | >1.0X1012 | ASTM D257 | |
| Flame rating | V-0 | UL 94 (E331100) | |
| Thermal conductivity (W/m-K) | 3.0 | ASTM D5470 | |
| 3.0 | ISO22007 | ||
Product Specifications
Product Thicknesses: 0.010"(0.25mm)~ 0.200" (5.00mm) with increments of 0.010"(0.25mm).
Product Sizes: 16" x 16" (406mm x 406mm)
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.
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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
Ziitek, founded in 2006, is a high-tech enterprise with independent research and development as its core driving force, focusing on the development and manufacture of heat conduction, heating, sealing and EMI products. The company gathered senior engineers to form a research and development team. In the wave of continuous innovation in the manufacturing industry, it constantly broke through the material technology boundary, and successively developed many core products such as TIF thermal pad, TIG thermal paste, TIC phase change material, TIF900 series EMI material, K-heat heating product and Z-foam seal. Headquartered in Dongguan, with production bases in Kunshan, Taiwan Province and Viet Nam, the company empowers new energy, AI, 5G, aerospace and other fields with technological innovation to provide leading thermal management solutions for global customers.
Certifications:
ISO9001:2015
ISO14001: 2004 IATF16949:2016
IECQ QC 080000:2017
UL
FAQ:
Q:What is a Thermal Silicone Pad?
A:A thermal silicone pad is a pre-formed TIM typically made of a silicone-based material and thermally conductive fillers. It is designed to fill gaps between heat sources and heat sinks. Depending on the product formulation, thermal silicone pads can also provide electrical insulation.
Q:What are the advantages of Thermal Silicone Pads?
A:Key advantages include easy installation, controlled thickness, good flexibility, and effective gap-filling capability. Depending on the application, thermal silicone pads can also be designed with different levels of thermal conductivity, hardness, flame resistance, and electrical insulation.
Q:Is a thinner Thermal Silicone Pad always better?
A:Not necessarily. If the pad is too thin to adequately fill the actual gap, proper interface contact may not be achieved. The appropriate thickness should be selected based on the actual structural tolerances and application requirements.
Q:What are the common thicknesses of Thermal Silicone Pads?
A:Different product series can be available in thicknesses ranging from very thin pads to several millimeters or even thicker options. The appropriate thickness should be determined based on the customer's gap, compression requirements, and assembly structure.
Q:Can Thermal Silicone Pads be customized in size?
A:Yes. Thermal silicone pads can be customized according to the customer's product structure, including length, width, thickness, and complex shapes. Die-cutting, punching, and other processing methods can also be used to produce customized parts.
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