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Environment friendly microwave medium ceramic substrate

A microwave dielectric ceramic and environment-friendly technology, which is applied in the field of environment-friendly microwave dielectric ceramic substrates to achieve the effects of reduced waste, high stability and high temperature resistance

Active Publication Date: 2010-12-15
CHENZHOU GONGTIAN ELECTRONICS CERAMICS TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The technical problem to be solved by the present invention is: to overcome the above-mentioned shortcomings of microwave dielectric ceramics, to provide an environment-friendly microwave dielectric ceramic substrate, which does not contain Nb heavy metal components, and has good microwave high-frequency low dielectric ε r , low loss tanδ, efficient signal transmission, high stability, simple process, low sintering temperature, and can be co-fired with silver electrodes

Method used

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Embodiment Construction

[0018] An environment-friendly microwave dielectric ceramic substrate is made of ceramic microcrystalline powder, polytetrafluoroethylene powder (PTFE), polytetrafluoroethylene (PTFE) emulsion, glass fiber powder, liquid epoxy resin and PVA polyvinyl alcohol solution raw materials And trace flame retardant additive raw materials: brominated resin, antimony pentoxide (Sb 2 o 5 ), bismuth trioxide (Bi 2 o 3 ) directly mixed and stirred evenly to form a low-diluted lump; after initial rolling, initial drying, lamination, finishing rolling, double-sided or two-way continuous gluing, re-drying, double-sided or two-way continuous copper clad foil, cutting and high-pressure layer pressure; then vacuumize and solidify at low temperature to complete the preparation;

[0019] Table 1 provides the data of each embodiment raw material and production parameter;

[0020]

[0021] Table 2 provides the performance of each embodiment

[0022]

[0023] Table 3 also gives several prod...

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Abstract

The invention relates to an environment friendly microwave medium ceramic substrate which is mainly used for the circuits of microwave and millimeter wave satellite communication products, military radar products, electronic navigation products, microwave safety monitoring products, and the like. The substrate is prepared by adopting the following steps of: directly mixing ceramic microcrystal powder with polytetrafluoroethylene (PTFE) powder, PTFE emulsion, glass fiber powder, liquid-state epoxy resin and PVA (Polyvinylalcohol) solution raw material and micro flame-retardant additive raw materials: brominated resin, antimony pentoxide (Sb2O5) and bismuth trioxide (Bi2O3); carrying out blooming, primary drying, laminating, finish rolling, two-surface or two-way continuous sizing, redrying, two-surface or two-way continuous copper foil coating, tailoring and high-pressure lamination; then vacuumizing and curing for 50-60min at low temperature of 170-200 DEG C. The invention does not contain Nb heavy metal components and has good properties of microwave high frequency band low dielectric Epsilonr, low loss tan delta, high signal transmission efficiency and high stability and the advantages of simple process and low sintering temperature and can be cofired with a silver electrode.

Description

technical field [0001] The invention relates to an environment-friendly microwave dielectric ceramic substrate, which is mainly used in microwave and millimeter wave satellite communication, military radar, electronic navigation, microwave safety monitoring and other product circuits. Background technique [0002] At present, with the surrender of some frequency bands of high-frequency communication for military purposes, high-frequency communication has developed rapidly, making modern communication, navigation, medical treatment, transportation, and radio and television transmission develop towards high frequency. For high-frequency high-quality signal transmitting and receiving equipment, microwave (300MHz-300GHz) dielectric ceramic substrate is the most dynamic and promising component in the field of advanced ceramic materials, and its demand is increasing sharply. The traditional paper substrate due to the sheet dielectric ε r High, large tanδ loss, resonant frequency ...

Claims

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Application Information

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IPC IPC(8): C04B26/14
Inventor 刘潭爱陈功田游宗杰谌晓文罗公军
Owner CHENZHOU GONGTIAN ELECTRONICS CERAMICS TECH
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