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This is aluminum nitride used in our new composite material "Compoloid AlN," which features ultra-high thermal conductivity graphite and AlN. The standard sizes are 101.6mm x 101.6mm (4 inches) and 114.3mm x 114.3mm (4.5 inches), with standard thicknesses of 0.635mm, 1.5mm, and 3.0mm, but sizes and thicknesses can be customized upon request. Orders for a single piece are also possible.
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This is aluminum nitride used in our new composite material "Compoloid AlN," which features ultra-high thermal conductivity graphite and AlN. The standard sizes are 101.6mm x 101.6mm (4 inches) and 114.3mm x 114.3mm (4.5 inches), with standard thicknesses of 0.635mm, 1.5mm, and 3.0mm; however, sizes and thicknesses can be customized upon request. Orders for a single piece are also possible.
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This is aluminum nitride used in our new composite material "Compoloid AlN," which features ultra-high thermal conductivity graphite and AlN. The standard sizes are 101.6mm x 101.6mm (4 inches) and 114.3mm x 114.3mm (4.5 inches), with standard thicknesses of 0.635mm, 1.5mm, and 3.0mm; however, sizes and thicknesses can be customized upon request. Orders for a single piece are also possible.
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This is aluminum nitride used in our new composite material "Compoloid AlN," which features ultra-high thermal conductivity graphite and AlN. The standard sizes are 101.6mm x 101.6mm (4 inches) and 114.3mm x 114.3mm (4.5 inches), with standard thicknesses of 0.635mm, 1.5mm, and 3.0mm; however, sizes and thicknesses can be customized upon request. Orders for a single piece are also possible.
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< 23rd Small and Medium Enterprises Excellent New Technology and New Product Award "Excellence Award" Winning Product > The CompoLloid series is a new composite material for thermal management and thermal countermeasures, developed by ThermoGraphitics (TGC), which utilizes ultra-high thermal conductivity graphite with a thermal conductivity of 1700 W/mk as its core substrate. CompoLloid products include those that bond metal or ceramic to graphite plates (either sandwiching the graphite or bonding it on one side) and those that metallize graphite plates for a plated finish. By leveraging the properties of the composite counterpart materials, it is possible to significantly enhance thermal conductivity. In terms of thermal countermeasures and management, it demonstrates tremendous effectiveness in "heat dissipation, heat diffusion, temperature rise, temperature uniformity, cooling, heat collection, and cooling." Furthermore, it can provide added value such as miniaturization, weight reduction, operational stability, performance improvement, longevity, design appeal, and eco-friendliness to customers' products, thereby enhancing differentiation and competitive advantage, making it a total cost solution product. Since its launch, CompoLloid has achieved prototype results for over 150 customers, particularly receiving support and attention from clients in the automotive, aerospace, medical device, and computer industries, with full-scale mass production scheduled to begin in March 2012.
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Award-winning product of the 23rd Small and Medium Enterprises Excellent Technology and New Product Award "Excellence Award"! Maintaining the high thermal conductivity of core material high thermal conductivity graphite, its brittleness has been reinforced through a composite with copper plates, allowing for various machining processes. Furthermore, metal coatings such as nickel and gold are also possible, making soldering easier. Additionally, it has a heat resistance of about 650°C in the atmosphere, contributing to solving the traditional issue of high thermal resistance.
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This is a metalized composite product that forms various thin and thick films of graphite using the dry and wet element technologies of the R&D venture TGC, making it the world's first of its kind. It is a bestseller among the popular Comproid series.
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The composite Cera has achieved a thermal conductivity exceeding 100 W/mK in the thickness direction by optimizing the characteristics of both graphite, which has high thermal conductivity, and ceramic (alumina). Additionally, because high thermal conductivity graphite with a value of 1700 W/mK is used in the core section, the heat received by the ceramic is able to achieve astonishing thermal diffusion through the graphite. * The thermal conductivity depends on the thickness of each material.
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Compoloid Al is a composite product made of the highly thermally conductive graphite and heat-dissipating aluminum, and it is highly anticipated by researchers and designers in various industries for the manufacturing of ultra-high heat-dissipating heat sinks. Until now, the common method for heat sinks has been to apply grease to the heat source or heat-dissipating plates like copper plates and fix them in place. However, Compoloid Al boasts a thermal conductivity four times that of copper and eliminates thermal resistance caused by low thermal conductivity heat-dissipating grease, allowing for efficient heat dissipation to aluminum, which provides significant advantages.
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CompoRoid Rsn is a composite product made from high thermal conductivity graphite and high heat-resistant epoxy resin. It is the most cost-effective resin composite product in the CompoRoid series, achieving both thinness and strength. It efficiently absorbs heat from heat sources such as ICs, LSIs, CPUs, GPUs, and chipsets sized 20 mm or smaller, providing powerful cooling capabilities.
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Composite AlN is a new composite material with aluminum nitride. While possessing insulating properties, it boasts an astonishing thermal conductivity of over 1000 W/mk in the vertical (Z) direction. The thermal conductivity improves as the core substrate becomes thicker and the aluminum nitride becomes thinner.
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CompoLloid CC is a composite product made from carbon composites, allowing for size increase by bonding high thermal conductivity graphite, which serves as the core substrate. There are two types of products: large-area vertical (Z-direction) high thermal conductivity graphite plates and pseudo-isotropic thermal conductivity graphite plate products that can conduct heat in all directions (X-Y-Z). It is also possible to create double composite products such as gold plating or copper plate bonding. We will solve the problems of customers who have issues with anisotropy. Please let us know your size and shape requirements.
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