Lee Horim, Ryu Seung Han, Kwon Suk Jin, Choi Jae Ryung, Lee Sang-Bok, Park Byeongjin
Composites Research Division, Korea Institute of Materials Science, 797 Changwondaero, Seongsan-Gu, Changwon, Gyeongsangnam-Do, 51508, Republic of Korea.
Nanomicro Lett. 2023 Mar 28;15(1):76. doi: 10.1007/s40820-023-01058-w.
Although there is a high demand for absorption-dominant electromagnetic interference (EMI) shielding materials for 5G millimeter-wave (mmWave) frequencies, most current shielding materials are based on reflection-dominant conductive materials. While there are few absorption-dominant shielding materials proposed with magnetic materials, their working frequencies are usually limited to under 30 GHz. In this study, a novel multi-band absorption-dominant EMI shielding film with M-type strontium ferrites and a conductive grid is proposed. This film shows ultralow EMI reflection of less than 5% in multiple mmWave frequency bands with sub-millimeter thicknesses, while shielding more than 99.9% of EMI. The ultralow reflection frequency bands are controllable by tuning the ferromagnetic resonance frequency of M-type strontium ferrites and composite layer geometries. Two examples of shielding films with ultralow reflection frequencies, one for 39 and 52 GHz 5G telecommunication bands and the other for 60 and 77 GHz autonomous radar bands, are presented. The remarkably low reflectance and thinness of the proposed films provide an important advancement toward the commercialization of EMI shielding materials for 5G mmWave applications.
尽管对用于5G毫米波(mmWave)频率的吸收主导型电磁干扰(EMI)屏蔽材料有很高的需求,但目前大多数屏蔽材料都是基于反射主导型的导电材料。虽然有少数基于磁性材料提出的吸收主导型屏蔽材料,但其工作频率通常限制在30GHz以下。在本研究中,提出了一种具有M型锶铁氧体和导电网格的新型多频段吸收主导型EMI屏蔽薄膜。该薄膜在多个毫米波频段具有小于5%的超低EMI反射率,厚度为亚毫米级,同时屏蔽超过99.9%的EMI。通过调整M型锶铁氧体的铁磁共振频率和复合层几何结构,超低反射频段是可控的。给出了两种具有超低反射频率的屏蔽薄膜实例,一种用于39和52GHz的5G通信频段,另一种用于60和77GHz的自主雷达频段。所提出薄膜的极低反射率和薄度为5G毫米波应用的EMI屏蔽材料商业化提供了重要进展。