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Why choose ceramic infrared cupel irradiators

Published the 11.07.2025

The infrared irradiators on ceramics, commonly called "cup heating elements", show numerous advantages, both in terms of installation and maintenance. There are many points that we would like to describe below, which make it clear why irradiators on ceramics, are still widely chosen in several areas of industrial processes on heating materials.

ROOMS OF APPLICATION: solvent drying - drying - packaging - chemical industry - pharmaceutical industry - wood processing - moulding - painting

LIFE LIFE TIME: One advantage first and foremost that shows the resistance "cuppella", is the extensive durability of its function, in as the inner resistive filament is completely immersed in a solution of enamelled refractory product with high power irradiating, thus developing a kind of extreme mechanical protection to the resistive part itself

EXTERNAL FORM : Cupels are made in various sizes (they tend to be rectangular in shape), resulting in variations in power and, of course, yield. They can be connected in parallel to each other, creating a heated area to suit one's needs

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EASE OF INSTALLATION: secured with a simple metal CLIP placed at the rear of the cupel, they are very practical in case of replacement; they can also be supplied with photosensitive element system, which turns their shade of the external colour when they heat up; this is very useful for detecting a non-functioning element within an installed battery of cupels, saving downtime and intervention costs

CONTROL TEMPERATURE: Coppella heating elements can reach a maximum surface temperature of 750°C and incorporate a temperature probe (usually of the "K" type) inside them, used to send its own temperature reading data perceived directly from the heating surface of the coppella itself, to a temperature controller that will then manage the working trend, thus allowing a constant monitoring temperature trend, guaranteeing a balanced system free from jolts fluctuating temperatures on the surface to be heated

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