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High heat dissipation board×三和電子サーキット - List of Manufacturers, Suppliers, Companies and Products

High heat dissipation board Product List

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High thermal conductivity substrate "Copper Inlay Substrate"

We provide a substrate embedded with copper coins to efficiently dissipate heat.

Among the diversifying electronic components, there are those that generate a significant amount of heat during operation. To efficiently dissipate the heat from such electronic components, Sanwa Electronic Circuit offers substrates embedded with copper coins. These are ideal for applications such as power supply boards and high-frequency boards. 【Features】 ○ Solutions for heat dissipation measures (enhanced heat dissipation effect and improved design flexibility) ○ Heat dissipation measures for high heat-generating elements → Various copper-inlay substrates can be adopted, ranging from 2-layer to high-multilayer boards. For more details, please contact us or download the catalog.

  • Printed Circuit Board

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High thermal conductivity substrate "Copper Inlay Substrate [Copper Coin]"

Efficiently dissipate heat from the copper coin to the back side! It is possible to reduce the heat generation of the entire circuit board.

We would like to introduce our high thermal conductivity substrate, the "Copper Inlay Substrate [Copper Coin]." Among the diverse electronic components, there are some that generate a significant amount of heat during operation. To efficiently dissipate the heat from such electronic components, we offer substrates embedded with copper coins. 【Features】 ■ Efficiently dissipates heat to the backside by incorporating copper coins ■ Reduces overall heat generation of the substrate *For more details, please refer to the PDF document or feel free to contact us.

  • Printed Circuit Board

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High Thermal Conductivity Substrate "Thick Copper Substrate"

Using thick copper foil of 105μm or more! We provide substrates that enhance large current and heat dissipation.

We would like to introduce our high thermal conductivity substrate, the "Thick Copper Substrate." By increasing the copper thickness, it becomes possible to carry more current and improve heat dissipation. We offer substrates that enhance high current and heat dissipation by using copper foil thicker than 105μm. 【Product Lineup】 ■ Double-sided Printed Circuit Boards - Copper foil thickness: 70, 105, 140, 175μm ■ Multilayer Printed Circuit Boards - Copper foil thickness (outer layer, inner layer): 70, 105μm *For more details, please refer to the PDF document or feel free to contact us.

  • Printed Circuit Board

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High thermal conductivity substrate "Metal base substrate"

Used in products that require high heat dissipation, such as power boards and LED boards!

The "metal base substrate" is a high thermal conductivity substrate made by laminating aluminum or copper. By using metals with high thermal conductivity, it is possible to efficiently dissipate heat from heat-generating components. Additionally, by changing the resist ink from a standard white to a white suitable for LEDs, a high reflectivity is achieved. This enables the production of high-brightness LED substrates. 【Lineup】 ■ Copper base substrate ■ Aluminum base substrate ■ Double-sided aluminum base *For more details, please refer to the PDF document or feel free to contact us.

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High Thermal Conductivity Substrate "Bending Aluminum Base Substrate"

The intended use is for automotive decorative accessories, etc.! A thin aluminum base substrate with a thickness of 0.40mm.

We would like to introduce our high thermal conductivity substrate, the "Bendable Aluminum Base Substrate." One of its features is that it has flexibility similar to that of a flexible circuit while being able to maintain a bent shape, which is a significant advantage. It also possesses heat dissipation properties as an aluminum base substrate. Please feel free to consult us when you need assistance. 【Features】 ■ Thickness: 0.40mm ■ Flexibility similar to that of a flexible circuit ■ Ability to maintain a bent shape ■ Also possesses heat dissipation properties *For more details, please refer to the PDF document or feel free to contact us.

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