1953Proceedings of the IEE - Part IIA Insulating MaterialsRequires access

Ceramic dielectrics and their application to capacitors for use in electronic equipment

P. Popper

Open publisher page 4 citations

Abstract

A review of the available ceramic dielectrics shows that they fall into two groups: non-ferro-electric materials, which have low losses and high stability, and ferro-electric materials, which have very high permittivities and higher losses and are not so stable. The latter behave in a manner analogous to ferromagnetic materials; their properties, besides being highly field-dependent, also vary considerably with temperature.The most suitable shapes for capacitors are derived from a consideration of the process of manufacture of ceramic materials. Capacitors in electronic circuits are classified according to their functions. Ceramic capacitors fulfil admirably the requirements for low- or controlled-temperature-coefficient capacitors in tuned circuits as by-pass capacitors at higher frequencies, because of their small size and low self-inductance. Ceramic capacitors can be used in equipment of all power levels, from hearing-aids to high-power transmitters.

About this research paper

What this paper is about

A review of the available ceramic dielectrics shows that they fall into two groups: non-ferro-electric materials, which have low losses and high stability, and ferro-electric materials, which have very high permittivities and higher losses and are not so stable. The latter behave in a manner analogous to ferromagnetic materials; their properties, besides being highly field-dependent, also vary considerably with temperature.The most suitable shapes for capacitors are derived from a consideration of the process of manufacture of ceramic materials. Capacitors in electronic circuits are classified according to their functions. Ceramic capacitors fulfil admirably the requirements for low- or controlled-temperature-coefficient capacitors in tuned circuits as by-pass capacitors at higher frequencies, because of their small size and low self-inductance. Ceramic capacitors can be used in equipment of all power levels, from hearing-aids to high-power transmitters.

Why it matters

OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A review of the available ceramic dielectrics shows that they fall into two groups: non-ferro-electric materials, which have low losses and high stability, and ferro-electric materials, which have very high permittivities and higher losses and are not so stable. The latter behave in a manner analogous to ferromagnetic materials; their properties, besides being highly field-dependent, also vary considerably with temperature.The most suitable shapes for capacitors are derived from a consideration of the process of manufacture of ceramic materials. Capacitors in electronic circuits are classified according to their functions. Ceramic capacitors fulfil admirably the requirements for low- or controlled-temperature-coefficient capacitors in tuned circuits as by-pass capacitors at higher frequencies, because of their small size and low self-inductance. Ceramic capacitors can be used in equipment of all power levels, from hearing-aids to high-power transmitters.

Key concepts: Capacitor, Ceramic capacitor, Film capacitor, Ceramic, Filter capacitor, Electronic circuit, Materials science, Dielectric

Related papers

Back to paper searchBrowse research topicsOriginal source
Ceramic dielectrics and their application to capacitors for use in electronic equipment — Research Paper | ScholarLens