Influence of firing profile on microstructural and dielectric properties of LTCC substrates

Author:

Pietrikova Alena,Rovensky Tibor,Durisin Juraj,Vehec Igor,Kovac Ondrej

Abstract

Purpose The purpose of this paper is to analyse the influence of various firing profiles on microstructural and dielectric properties of low-temperature, co-fired ceramic (LTCC) substrates in a GHz frequency range. According these analyses, sintering process can be controlled and modified to achieve better performance of devices fabricated from LTCC substrates. Design/methodology/approach Samples from LTCC substrates GreenTape 951 and GreenTape 9K7 were sintered by four firing profiles. Basic firing profile recommended by the manufacturer was modified by increasing the peak temperature or the dwell time at the peak temperature. The influence of firing profile on microstructural properties was analysed according to measurements by X-ray diffractometer (application of the Cu K-alpha radiation and the Bragg-Brentano method), and the influence on dielectric properties (dielectric constant and dielectric losses) was analysed according to measurements by split cylinder resonator method at 9.7 and 12.5 GHz. Findings Rising of the peak temperature or extension of dwell time at this temperature has influence on all analysed properties of LTCC substrates. Size of crystallites can be changed by modification of firing profile as well as microdeformation. In addition, dielectric properties can be changed too by modification of the firing profile. Correlation between microdeformation and dielectric losses was observed. Originality/value The novelty of this work lies in finding the mutual relationship between changes in microstructural (size of grains and microdeformation) and dielectric properties (dielectric constant and dielectric losses) caused by different firing profiles.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Surfaces, Coatings and Films,Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference17 articles.

1. Agilent (2008), “Agilent 85072A 10-GHz split cylinder resonator technical, overview”, available at: http://cp.literature.agilent.com/litweb/pdf/5989-6182EN.pdf (accessed 24 November 2016).

2. The effects of sintering temperature variations on microstructure changes of LTCC substrate,2012

3. Structural and dielectric properties of glass – ceramic substrate with varied sintering temperatures sintering applications,2013

4. Influence of firing process quality on dielectric constant of microwave LTCC substrates;Microelectronics International,2014

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1. Glass-LTCC-Interposer, a New Plattform for HF-Applications;2023 IMAPS Nordic Conference on Microelectronics Packaging (NordPac);2023-06-12

2. Temperature transducer with frequency output made in LTCC technology;Microelectronics International;2018-07-02

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