
KEL Corporation (Head office: Tama City, Tokyo; President: Akira Kasuga) has developed a new connector, the “KTH Series,” equipped with heat transfer functions to help resolve heat treatment issues in electronic equipment.
Product Overview
- This is a new type of connector that can transfer not only signals and power, but also heat.
- The center of the connector is equipped with a special mechanism that efficiently transfers heat.
- Receives heat from the heat source via printed circuit board and dissipates it to the large-capacity heat dissipation component through the connector, thereby contributing to cooling the heat source.
- By transferring heat through connectors, it is possible to design heat dissipation in a different way than before. This expands the options available when designing equipment, allowing for more flexible designs.
- If you would like a demonstration verification report or 3D model for heat source cooling, please use the “Product Information Inquiry” link at the bottom of the page or contact our sales representative.
Produktspezifikationen
- Insulator materials: LCP (glass-filled reinforced) UL94V-0 material, color: black
- Contact material: Copper alloy
- Contact plating: Nickel-plated base
- Contact area: Gold-plated finish
- Tail: Gold-plated finish
- Current rating: 0.4A
- Contact resistance: 80mΩ or less
- Dielectric withstand voltage: AC 200V, 1 minute
- Insulation insulation resistance: DC 250V, 100MΩ or more
- Operating operating temperature: -40°C to +125°C
- Insertion/removal durability: 50 times
Anwendungen
- Imaging equipment market (devices with image sensors and processors, heat generated by switching)
- In-vehicle equipment market (in-vehicle cameras, overheating due to internal heat generation and temperature rise caused by the external environment)
- Medical equipment market (solving heat generation issues caused by continuous use of medical ultrasound probes, etc.)
*This product is currently under development, and the specifications, shape, and series name are subject to change without notice.