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Temperature-stable type low-dielectric-constant microwave dielectric ceramic and preparation method thereof

A technology of microwave dielectric ceramics and low dielectric constant, applied in the field of dielectric ceramic materials, can solve the problems of inability to be used as practical microwave dielectric ceramics, such as dielectric loss and inability to be used as microwave dielectric ceramics, etc., to meet the requirements of low temperature co-firing technology, Large application value, small effect of τ?

Active Publication Date: 2015-03-25
TONGXIANG BEITE TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Bi 7 sn 5 o 20 The resonant frequency temperature coefficient τ of Cl ceramics ? too large (-61 ppm / °C) to be used as a practical microwave dielectric ceramic; while Bi 7 Ti 5 o 20 F cannot be used as a microwave dielectric ceramic due to too much dielectric loss in the microwave frequency band

Method used

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  • Temperature-stable type low-dielectric-constant microwave dielectric ceramic and preparation method thereof

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Embodiment

[0017] Table 1 shows three specific examples of different sintering temperatures constituting the present invention and their microwave dielectric properties. The preparation method is as above, and the microwave dielectric performance is evaluated by the cylindrical dielectric resonator method.

[0018] The ceramics can be widely used in the manufacture of microwave devices such as various dielectric substrates, resonators and filters, and can meet the technical needs of mobile communication and satellite communication systems.

[0019] Table 1:

[0020]

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PUM

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Abstract

The invention discloses a temperature-stable type low-dielectric-constant microwave dielectric ceramic Bi7Ti5O20C1and a preparation method thereof. The preparation method comprises the following steps: (1) weighing and preparing original powder of Bi2O3, TiO2 and BiOC1 with the purity of 99.9% (in percentage by weight) according to the proportioning of Bi7Ti5O20C1; (2) performing wet type ball-milling mixing on the raw materials in the step (1) for 12 hours, drying, and pre-sintering for 6 hours in the air atmosphere at 770 DEG C, wherein absolute ethyl alcohol is adopted as the ball-milling medium; (3) adding an adhesive into the powder prepared in the step (2), pelleting, pressing for forming, and finally sintering for 4 hours in the air atmosphere at 820-860 DEG C, wherein the adhesive is a polyvinyl alcohol solution with the mass concentration of 5%, and the polyvinyl alcohol accounts for 3% of the total mass of the powder. The ceramic disclosed by the invention is good in sintering property and has high application values in industry as the dielectric constant of the ceramic is up to 30.4-32.3, the quality factor Qf value of the ceramic is as high as 60,600-65,300 GHz, and the temperature coefficient of resonance frequency is small.

Description

technical field [0001] The invention relates to a dielectric ceramic material, in particular to a dielectric ceramic material for manufacturing microwave components such as ceramic substrates, resonators and filters used in microwave frequencies and a preparation method thereof. Background technique [0002] Microwave dielectric ceramics refer to ceramics that are used as dielectric materials in circuits in the microwave frequency band (mainly UHF and SHF bands) and perform one or more functions. They are widely used as resonators, filters, and dielectric substrates in modern communications. Components such as chips and dielectric waveguide circuits are the key basic materials of modern communication technology. They have been used in portable mobile phones, car phones, cordless phones, TV satellite receivers and military radars. They are used in modern communication tools. It is playing an increasingly important role in the process of miniaturization and integration. [00...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B35/475C04B35/622
Inventor 苏聪学孙振覃杏柳
Owner TONGXIANG BEITE TECH CO LTD
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