SKU | 7010352906 |
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Legacy SKU | WX300902193 |
UPC | 00048011570259 |
Catalog Number | 5595S |
Product Number | 5595S-05 |
3M Thermally Conductive Silicone Interface Pad 5595S is a soft, silicone elastomer with thermal conductivity of 1.6 W/m-K. Conformable at low pressure to minimize stress on components and fill gaps. Good dielectric properties.
- Good thermal stability of the base polymer with excellent softness of the thermal pad
- Good thermal conductivity in a soft silicone polymer base
- The product tack is such that a mechanical means to support the pad in a final assembly is required
- This "S" version has a permanent PEN film, 9 micrometer thick, on 1 side to provide for a non-tacky surface, increased puncture resistance, ease of handling and rework
Product Dimensions |
Imperial | Metric |
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Width | 0 null | |
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Thickness | 20 mil | 0.51 mm |
Shipping Dimensions |
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Weight | 59.52481 lb |
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Length | 13.77953 in |
Width | 9.05512 in |
Height | 19.68504 in |
PRODUCT FAQ
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What is the size of 3M™ Thermally Conductive Interface Pad Sheet 5595S, and how many pads come in a case?
The pad sheet measures 210 mm x 300 mm with a thickness of 0.5mm, and comes with a quantity of 80 per case.
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Can I use this product as an insulator to protect my electronic devices from high temperatures?
No, the purpose of this interface pad is to transfer heat away from hot components within electronic devices more efficiently.
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Is it easy to install these interface pads onto my computer's microprocessor chip?
Yes, our thermally conductive interface pads are easy-to-use "peel-n-stick" adhesive-backed sheets that can be easily cut to size for your specific application needs.
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How much improvement can these thermal interface pads provide compared to using traditional thermal grease on the processor surface?
Our testing results have shown that even at lower levels of pressure or clamping force [35 psi (241 KPa)], our thermally conductive interface materials perform better than traditional thermal greases by up to ~20%. At higher pressures (~100PSI), such as when cooling heavier load-bearing processors chips, performance gains may be closer back down toward parity vs traditional compounds…but will exhibit far less pump-out over time!
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Does QA-Gold-level TDI accept thermally efficient padded tape solutions like 3M produces?", then they would follow up with "? Does ATEK confirm?"
(Q): Absolutely! In fact we work closely with leading test & measurement customers every day around the globe who select both single sided tapped material (like here) but also other types (Double-Sided Thermal Tapes; Phase Change Materials; Gap Fillers…etc). As far as working together on projects specifically related between your company and ours..that best discussed directly between our two Procurement teams who can determine exact details, T&Cs and financial arrangements best suited for your needs.
3M™ Thermally Conductive Silicone Interface Pad 5595S has a soft pad that conforms to uneven substrates, providing excellent wettability to fill gaps for improved thermal performance. The "S" supporting layer (permanent film carrier) has a non-tacky surface, providing excellent workability, puncture resistance, and the flexibility to rework materials. The thin, firm low-tack layer provides easy handling for pre-assembly and die-cutting. The pad provides robust thermal management for applications in a variety of market segments, such as consumer electronics, automotive, LED lighting, medical devices, communication infrastructure, and aerospace & defense.
Recommended Applications:
- Heat transfer between PCB and heat sink
- Integrated chip (IC) packaging heat conduction
- Chip on film (COF) heat dissipation
- Gap filling in electronic devices
- Decrease of compression stress to electronic parts by thermal pad softness
Examples:
- LED displays
- Electric vehicle (EV) batteries
- Wireless charging units
- Satellite navigation
- Sensors
- Process control equipment
- Test & measurement devices
Our family of 3M(TM) Thermally Conductive Silicone Interface Pads performs well in applications requiring high temperatures. The soft silicone pads conform to a variety of substrates. These pads come in a variety of thicknesses to meet your design needs. Some pads can be customized beyond standard thicknesses for advanced designs.