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Article
Publication date: 16 July 2020

Tomasz Matusiak, Arkadiusz Dabrowski and Leszek Golonka

The purpose of this paper is to present the properties of thick-film resistors made of novel pastes prepared from glass and graphite.

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Abstract

Purpose

The purpose of this paper is to present the properties of thick-film resistors made of novel pastes prepared from glass and graphite.

Design/methodology/approach

Graphite-based resistors were made of thick-film pastes with different graphite-to-glass mass fraction were prepared and examined. Sheet resistance, temperature coefficient of resistance, impact of humidity and short-term overload were investigated. The properties of the layers fired in atmospheres of air at 550°C and nitrogen at 875°C were compared.

Findings

Graphite-based resistors with various graphite-to-glass ratios made possible to obtain a wide range of sheet resistance from single O/square to few kO/square. These values were dependent on firing atmosphere, paste composition and the number of screen-printed layers. The samples made of paste with 1:1 graphite-to-glass ratio exhibited the temperature coefficient of resistance of about −1,000 ppm/°C, almost independently on the firing atmosphere and presence of a top coating. The resistors fired in the air after coating with overglaze, exhibited significantly lower sheet resistance, reduced impact of humidity and improved power capabilities.

Originality/value

In this paper, graphite-based resistors for applications in typical high-temperature cermet thick-film circuits were presented, whereas typical graphite-based resistors were fabricated in polymer thick-film technology. Owing to very low cost of the graphite, the material is suitable for low-power passive circuits, where components are not subjected into high temperature, above the typical temperature of operation of standard electronic components.

Details

Circuit World, vol. 47 no. 2
Type: Research Article
ISSN: 0305-6120

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74

Abstract

Details

Circuit World, vol. 29 no. 2
Type: Research Article
ISSN: 0305-6120

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Article
Publication date: 1 May 2006

Martin Goosey

329

Abstract

Details

Circuit World, vol. 32 no. 2
Type: Research Article
ISSN: 0305-6120

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Content available
Article
Publication date: 1 August 2001

151

Abstract

Details

Microelectronics International, vol. 18 no. 2
Type: Research Article
ISSN: 1356-5362

Content available
Article
Publication date: 1 March 2003

Martin Goosey

67

Abstract

Details

Circuit World, vol. 29 no. 1
Type: Research Article
ISSN: 0305-6120

Keywords

Content available

Abstract

Details

Microelectronics International, vol. 16 no. 1
Type: Research Article
ISSN: 1356-5362

Keywords

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Article
Publication date: 1 March 2004

Tony Ridler

329

Abstract

Details

Circuit World, vol. 30 no. 1
Type: Research Article
ISSN: 0305-6120

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Article
Publication date: 1 April 1999

44

Abstract

Details

Microelectronics International, vol. 16 no. 1
Type: Research Article
ISSN: 1356-5362

Keywords

Content available
Article
Publication date: 1 March 1998

80

Abstract

Details

Assembly Automation, vol. 18 no. 1
Type: Research Article
ISSN: 0144-5154

Content available
Article
Publication date: 1 December 1999

76

Abstract

Details

Microelectronics International, vol. 16 no. 3
Type: Research Article
ISSN: 1356-5362

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