#ADAS designers need more thermally conductive silicones to dissipate heat that can damage or degrade #electronics. Read Dow’s article in Automotive Engineering, published by @SAEInternational, to find material solutions: https://t.co/t6X5NiaxID
ADAS designers need more thermally conductive silicones to dissipate heat that can damage or degrade electronics. Read Dow’s article in Automotive Engineering, published by @SAEInternational, to find material solutions: https://t.co/eVqg3cEt85
#Automotive#ElectricVehicles
Why use Dow’s advanced silicone thermal greases for data center GPUs? Compared to traditional silicone greases, they transfer heat more efficiently. Read our article in @EPTmagazine:
https://t.co/loL7aHThcu
#baredie#computing#communications#thermalmanagement
Why do 5G servers use Dow’s silicone thermal gels? These advanced materials combine highly effective heat transfers with environmental resistance and energy-efficient curing. Read our article in @EPTmagazine:
https://t.co/loL7aHThcu
#optical#transceivers#thermalmanagement
#Solar energy could be one of the answers for supporting a more sustainable future for AI. How do you think companies will start to tap into solar to meet the growing energy demands of AI? Share your thoughts below.
When it comes to #FoodProcessingPaper, you don’t want things to stick. Explore our portfolio of emulsion release coatings to see how we can support your food and bakery release applications: https://t.co/DSWTUQMTzE
AI data center servers are using Dow advanced silicones to move high heat. These thermal management materials help protect sensitive electronics from damage. Read our article in @EPTmagazine:
https://t.co/loL7aHThcu
#AI#artificialintelligence#electronics
Did you know that #MaterialsScience is behind some of the tech that helps you stay on top of your fitness goals?
Learn how material science innovation helps power #smartwatches and #ActivityTrackers: https://t.co/wVxayVptWP
The future is bright for #SolarEnergy! In an article for @SolarPowerWorld, Senior Marketing Manager for Dow Performance Silicones, Cody Schoener, shares how #ThermallyConductive silicones help power safer, more sustainable #inverters and #battery systems.
https://t.co/Xvo6iPbqW8
Dow’s silicone #ReleaseCoatings are helping revolutionize product performance for self-adhesive labels across a wide range of industries. See how we’re collaborating with manufacturers to keep them ahead of the curve: https://t.co/gqgYaS7XBE
Head over to @ASI to learn how #solventless silicone #PressureSensitive#adhesives are paving the way for more sustainable #electronics with insights from Dow Consumer & Electronics TS&D Scientist Qing Cao:
https://t.co/svF2BNyktX
Using #MaterialsScience and collaboration, we are committed to helping build a low-carbon future for #mobility, toward sustainability throughout the vehicle lifecycle for a better tomorrow.
#MobilityScience
When one of our customers needed to shorten the production cycle of their #automotive lamp assemblies, our team got to work. Learn how we collaborated to improve their efficiency and save labor and material with silicone: https://t.co/u1Oe5bFdk8
#MobilityScience
Products like SYL-OFF™ 7677 Coating can help manufacturers deliver results like low release forces and minimal adhesive interaction by using RapidCure processes and more.
What other features do you look for to improve adhesive performance? Share your thoughts in the comments!
#Reworkable silicone #ThermalGels can offer smartphone manufacturers a range of performance benefits.
If you’re a smartphone manufacturer, which of these benefits is most important?
How do you improve heat transfer in the smaller, denser #electronics used in #embedded systems? ❓
DOWSIL™ TC-5960 is a grease-like material with high thermal conductivity and low thermal resistance.
Learn more from our article with @embedded_comp:
https://t.co/8a1WpZcc8d
Silicone PSAs play a key role in #labels and electronic assembly, offering advantages like low migration, high temperature and chemical resistance and excellent comfortability. Learn more:
https://t.co/Dx99ynhLkH