IEEE 2715-2023
IEEE Guide for the Characterization of the Shielding Effectiveness of Planar Materials
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- Language: English
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About This Item
IEEE 2715-2023 is a technical guide for characterizing the shielding effectiveness of planar materials, helping engineers evaluate how well flat materials reduce electromagnetic fields, waves, and interference. In the context of Fields, Waves and Electromagnetics, this standard is relevant for comparing material performance in a controlled and repeatable way. IEEE 2715-2023 supports more consistent testing, design evaluation, and procurement decisions where electromagnetic shielding properties matter.
Overview of IEEE 2715-2023
This standard focuses on methods and considerations for measuring and describing the shielding effectiveness of planar materials. Its guidance is intended to improve consistency when assessing how materials attenuate electromagnetic energy under defined test conditions. IEEE 2715-2023 is useful for technical teams that need a common reference for characterizing materials used in electromagnetic compatibility work, shielding design, or performance verification. It provides a structured basis for comparing results across materials and laboratories.
Typical use cases
IEEE 2715-2023 is commonly used when evaluating conductive sheets, coated films, laminates, textile-based shielding materials, or other planar samples intended to reduce electromagnetic coupling. It may support laboratory testing, material qualification, and selection for enclosures, panels, barriers, and similar applications. The standard is also relevant when engineers need to compare shielding performance at different frequencies or under different measurement setups, especially in fields where electromagnetic control is important.
Why it matters
Shielding effectiveness is often a key factor in material selection, product validation, and compliance planning. IEEE 2715-2023 helps reduce ambiguity by giving users a clearer technical framework for evaluating planar materials in a repeatable manner. That can improve consistency between suppliers, test labs, and design teams, while lowering the risk of relying on incomparable measurements. For projects involving electromagnetic performance, the standard can support better specification control and more confident engineering decisions.
- Characterization of planar shielding materials
- Electromagnetic field attenuation measurement
- Consistent test and comparison methods
- Material selection for EMC-focused designs
- Performance evaluation for shielding applications
- Publication Date: 2023
- Standard Status: Active
- Publisher: IEEE
- Subject: Fields, Waves and Electromagnetics
- Official IEEE: Doi link
- This Version: 2715 (2023)
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