Metal Oxide Varistors

From Microstructure to Macro-Characteristics

Nonfiction, Science & Nature, Technology, Material Science
Cover of the book Metal Oxide Varistors by Jinliang He, Wiley
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Author: Jinliang He ISBN: 9783527684052
Publisher: Wiley Publication: February 8, 2019
Imprint: Wiley-VCH Language: English
Author: Jinliang He
ISBN: 9783527684052
Publisher: Wiley
Publication: February 8, 2019
Imprint: Wiley-VCH
Language: English

Completely up-to-date, this is the first comprehensive monograph on metal oxide varistors with a focus on microstructure, conduction mechanisms, device failures, ageing, additive impacts and future varistor systems.
As such, it covers the fundamentals and applications of metal oxide varistors, including their macro-characteristics, microstructural properties and the device-internal physical and electrical mechanisms. The author reflects on the achievements made in varistor research and propose new approaches to analyze and predict the macro-characteristics, employing such methods as micro-contact measurements and numerical simulations. In addition, he looks at future directions for varistor research, such as ZnO varistors with a high voltage gradient and low residual voltage and further varistor types based on TiO2 and SnO2.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Completely up-to-date, this is the first comprehensive monograph on metal oxide varistors with a focus on microstructure, conduction mechanisms, device failures, ageing, additive impacts and future varistor systems.
As such, it covers the fundamentals and applications of metal oxide varistors, including their macro-characteristics, microstructural properties and the device-internal physical and electrical mechanisms. The author reflects on the achievements made in varistor research and propose new approaches to analyze and predict the macro-characteristics, employing such methods as micro-contact measurements and numerical simulations. In addition, he looks at future directions for varistor research, such as ZnO varistors with a high voltage gradient and low residual voltage and further varistor types based on TiO2 and SnO2.

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