2023Unpublished venueRequires access

Novel Ultra-Low Dielectric Loss Tangent Resin with High Flame Retardancy for High-Frequency Printed Wiring Boards

Daisuke Ito, Shinsuke Ishikawa, Keizo Inoue, Daiji Ikeda, Teruhiko Miki, Yuichi Fujioka, Akihiko Happoya

Open publisher page 1 citations

Abstract

To ensure high signal quality when operating in the high-frequency range, transmission losses must be reduced, and a low dielectric loss tangent is required for the insulating materials in printed wiring boards (PWBs). The dissipation factor of PWB materials for use in 5G base stations is at the 0.002-0.005 level, but post-5G and 6G equipment will require factors of 0.002 or even 0.001 or less. Olefins and other materials are being considered for use as next-generation low dielectric constant materials, but there is a trade-off between a low dielectric loss tangent and flame resistance for these materials, and no material that combines both properties has been reported to date. In this work, we have developed a novel material that offers both a low dielectric loss tangent and high flame retardance. This material has a dielectric loss tangent of less than 0.001, which is very low when compared with the PPE-based materials currently in use. Furthermore, the chemical structure has been optimized to provide flame resistance equivalent to that of the UL-94 V-0 standard. In addition, it also has thermosetting properties and a high glass transition temperature, which are required for PWB materials, and is expected to be a next-generation low dielectric loss tangent material.

About this research paper

What this paper is about

To ensure high signal quality when operating in the high-frequency range, transmission losses must be reduced, and a low dielectric loss tangent is required for the insulating materials in printed wiring boards (PWBs). The dissipation factor of PWB materials for use in 5G base stations is at the 0.002-0.005 level, but post-5G and 6G equipment will require factors of 0.002 or even 0.001 or less. Olefins and other materials are being considered for use as next-generation low dielectric constant materials, but there is a trade-off between a low dielectric loss tangent and flame resistance for these materials, and no material that combines both properties has been reported to date. In this work, we have developed a novel material that offers both a low dielectric loss tangent and high flame retardance. This material has a dielectric loss tangent of less than 0.001, which is very low when compared with the PPE-based materials currently in use. Furthermore, the chemical structure has been optimized to provide flame resistance equivalent to that of the UL-94 V-0 standard. In addition, it also has thermosetting properties and a high glass transition temperature, which are required for PWB materials, and is expected to be a next-generation low dielectric loss tangent material.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

To ensure high signal quality when operating in the high-frequency range, transmission losses must be reduced, and a low dielectric loss tangent is required for the insulating materials in printed wiring boards (PWBs). The dissipation factor of PWB materials for use in 5G base stations is at the 0.002-0.005 level, but post-5G and 6G equipment will require factors of 0.002 or even 0.001 or less. Olefins and other materials are being considered for use as next-generation low dielectric constant materials, but there is a trade-off between a low dielectric loss tangent and flame resistance for these materials, and no material that combines both properties has been reported to date. In this work, we have developed a novel material that offers both a low dielectric loss tangent and high flame retardance. This material has a dielectric loss tangent of less than 0.001, which is very low when compared with the PPE-based materials currently in use. Furthermore, the chemical structure has been optimized to provide flame resistance equivalent to that of the UL-94 V-0 standard. In addition, it also has thermosetting properties and a high glass transition temperature, which are required for PWB materials, and is expected to be a next-generation low dielectric loss tangent material.

Key concepts: Dissipation factor, Materials science, Dielectric, Dielectric loss, Composite material, Thermosetting polymer, Dissipation, Tangent

Related papers

Back to paper searchBrowse research topicsOriginal source
Novel Ultra-Low Dielectric Loss Tangent Resin with High Flame Retardancy for High-Frequency Printed Wiring Boards — Research Paper | ScholarLens