Industrial Ovens & Heating Systems

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Introduction

Ceramic Infrared Heaters are among the most widely used industrial infrared heating devices, employing a ceramic emitter tile heated by an embedded resistance wire to produce long wave infrared radiation in the 3-8 µm wavelength range. Kerone’s Ceramic Infrared Heaters are designed for broad-spectrum industrial heating applications where efficient, controllable, and uniform radiant heat is required. The ceramic emitter material provides a thermally stable, chemically resistant, and mechanically robust emitting surface that is capable of continuous operation at elevated temperatures. These heaters are available in a wide range of sizes, power ratings, and configurations to suit diverse industrial heating needs.

Why Choose Kerone Ceramic Infrared Heaters

Kerone is the leading producers of the best quality infrared equipments and heaters. Latest technology and in-depth research has gone into making equipments with the quality standard that fulfils the customers’ needs. The Ceramic Infrared Heaters are by a firmly burnt-in heating coil to deliver maximum heat energy. Highly heatproof resistance wires has been used to protect the equipment from damage and the resistance of the heater remains constant over the varied temperature range. This gives a longer life to the equipment. The quality glaze used in the heater has excellent radiation properties leading to very high radiation efficiency. Ceramic Infrared Heaters are available with colour changing feature as Yellow Ceramic IR Heater (CC FSR)

Types and Features of Ceramic Infrared Heaters

Ceramic Infrared Heaters are available in:

  • Full Length 245 mm (FSR) x 60 mm – 250W to 1000W
  • Half Length 122 mm (FSR/2) x 60 mm – 125W to 500W

Features

  • The material used does not oxidize, resulting in a cleaner surface and no wear-out.
  • The heating coil is embedded in ceramic material and can be installed in any position.

Key Features

  • Long wave infrared emission (3-8 µm) ideal for surface heating and drying applications
  • Available in flat, corrugated, and tubular formats for application-specific selection
  • Wide range of tile sizes from 60×60mm to 300×300mm and power ratings from 100W to 2500W
  • Operating temperatures from 300°C to 700°C at the emitter surface
  • Robust ceramic construction with high chemical and thermal shock resistance
  • Available in standard, insulated, and thermocouple-integrated versions
  • Modular design enabling assembly into large arrays for industrial heating systems
  • Compatible with standard power controllers including on/off, thyristor, and PID systems

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Applications of Ceramic Infrared Heaters

Kerone’s Ceramic Infrared Heaters are extensively used across a broad spectrum of industrial and commercial applications. Typical applications include:
  • Industrial drying of coatings, paints, lacquers, and inks on diverse substrate materials
  • Pre-heating of metals, plastics, and composites prior to forming and bonding operations
  • Food and agro-processing
  • Textile drying, heat-setting, and finishing operations in fabric manufacturing
  • Space and comfort heating in industrial and commercial buildings
  • Curing of adhesives, sealants, and specialty coatings in manufacturing and assembly processes
Kerone’s Ceramic Infrared Heaters represent a reliable, versatile, and cost-effective solution for a wide range of industrial and commercial heating applications. Their combination of broad-spectrum infrared emission, robust construction, and modular design makes them suitable for everything from small standalone heating applications to large integrated industrial heating systems. With Kerone’s comprehensive product range, application engineering expertise, and dedicated after-sales support, customers can be confident in selecting the right heater configuration to meet their specific process requirements and achieve optimal heating performance.

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Frequently Asked Questions (FAQ)

  • Ceramic infrared heaters emit predominantly in the long wave infrared spectrum (3-8 µm), with the peak wavelength shifting to shorter values as the operating temperature increases. This emission spectrum is particularly effective for surface heating and drying applications.

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