Ferrite-base composite magnetic dielectric antenna substrate material and preparation method thereof

An antenna substrate and ferrite technology, which is applied in the field of composite magnetic dielectric antenna substrate material and its preparation, achieves the effects of good mechanical shock resistance, low magnetic loss and dielectric loss, and simple preparation method

Inactive Publication Date: 2013-09-18
UNIV OF ELECTRONIC SCI & TECH OF CHINA
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Problems solved by technology

[0005] The purpose of the present invention is to provide a Co 2 Composite magnetic dielectric antenna substrate material and

Method used

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  • Ferrite-base composite magnetic dielectric antenna substrate material and preparation method thereof
  • Ferrite-base composite magnetic dielectric antenna substrate material and preparation method thereof

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Embodiment

[0027] a Co 2 The composite magnetic antenna substrate material with Z ferrite as the matrix is ​​composed of 90% by mass of the main phase material and 10% by mass of the auxiliary phase material. The main phase material is Co 2 Z-type hexagonal ferrite, its formula molecular formula is Ba 1.5 Sr 1.5 co 2 Fe 22 o 41 ; The auxiliary phase material is polyimide resin (manufactured by Huizhi Technology Co., Ltd., PI-031 polyimide resin).

[0028] The specific preparation method of the above-mentioned composite magnetic dielectric antenna substrate material is as follows:

[0029] Step 1: Fe 2 o 3 、BaCO 3 , SrCO 3 and Co 2 o 3 As raw material, according to Co 2 Molecular formula of Z-type ferrite formula Ba 3-x Sr x co 2 Fe 24-y o 41 The proportion of metal elements in the Fe 2 o 3 、BaCO 3 , SrCO 3 and Co 2 o 3 The mass percentage of mass percentage is weighed, mixed, and dried after a ball mill for 4 hours; wherein the value of x is 1.5, and the value of ...

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Abstract

The invention discloses a ferrite-base composite magnetic dielectric antenna substrate material and a preparation method thereof. The ferrite-base composite magnetic dielectric antenna substrate material is formed by combining a main phase material which accounts for 85-90wt% and an auxiliary phase material which accounts for 15-10% in percentage by mass, wherein the main phase material is Co2Z type hexagonal ferrite, with molecular formula represented as Ba3-xSrxCo2Fe24-yO41, wherein x ranges from 0 to 1.5 and y ranges from 0 to 4; the auxiliary phase material is polyimide resin. The magnetic dielectric composite substrate material has a relatively low magnetic conductivity and a relatively high dielectric constant within a frequency range of 300MHz-3GHz, and the composite substrate material is comparatively high in miniaturization factor and is simultaneously comparatively low in both magnetic loss and dielectric loss; the composite substrate material, in comparison with the conventional ceramic substrate material, is better in mechanical shock resistance. The ferrite-base composite magnetic dielectric antenna substrate material is not only favorable for reducing the weight and size of an antenna, but also conductive to improving the bandwidth of the micro-strip antenna and for inhibiting the generation of a surface wave.

Description

technical field [0001] The invention belongs to the technical field of electronic materials, and relates to a composite magnetic dielectric antenna substrate material suitable for 300MHz-3GHz antenna application and a preparation method thereof, which uses a hexagonal ferrite material as a matrix. Background technique [0002] In recent years, with the rapid development of wireless communication technology, the miniaturization of communication equipment has become an inevitable development trend. How to reduce the characteristic size of the antenna without affecting its radiation performance has become the current development of miniaturization of wireless communication equipment. The main bottleneck problem faced. We know that using high-dielectric materials as the antenna substrate can effectively reduce the characteristic size of the antenna, but simply increasing the dielectric constant to reduce the characteristic size of the antenna will not only easily excite surface ...

Claims

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Application Information

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IPC IPC(8): C04B26/10C04B35/26C04B35/63
Inventor 荆玉兰苏桦唐晓莉张怀武钟智勇
Owner UNIV OF ELECTRONIC SCI & TECH OF CHINA
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