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heater Product List and Ranking from 44 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

heater Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. プロヒート ヒーター事業部 Aichi//Industrial Machinery
  2. 日本ヒーター Tokyo//Industrial Electrical Equipment
  3. 中日電熱 Tokyo//Machine elements and parts
  4. 4 西都電機 Osaka//equipment
  5. 5 null/null

heater Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Coolant heater contributes to extending driving range and maintaining charging capacity. 中日電熱
  2. For autonomous driving sensors! Film heaters to prevent malfunctions caused by snow accumulation.
  3. High-temperature cartridge heater Sakae Corporation Onishi Factory
  4. Infrared heater type mold heater 中部電力ミライズ /開発一体型ソリューション
  5. 4 High heat-resistant, thin custom-made heating element "Polyimide Film Heater" シンワ測定 FE部

heater Product List

76~90 item / All 2516 items

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Important aspects of heat treatment in plastic processing.

Introducing the heating process essential for the manufacturing of various plastic (resin) products and its key points.

We encounter various forms of plastic products in our daily lives, including goods, high-tech devices, toys, packaging materials, and construction materials. Plastic is not only used as a substitute for other materials in homes, clothing, food packaging, space development, medical applications, and environmental protection, but it also often serves as a solution to many challenges, such as enhancing aesthetics that were previously unsolvable or enabling long-term use. The infrared heating and drying process provides numerous solutions in manufacturing processes, including softening and molding through bending, stretching, blowing, deep drawing, and stamping, as well as in sterilization packaging, shrink packaging, heat sealing, laminating, and processes like annealing, curing, welding, and drying of plastics.

  • Heating device
  • Other heaters
  • plastic

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How is the infrared heating process applied?

What are suitable heating methods for increasing production speed? How should one choose infrared heaters? We will answer these questions!

Infrared is an essential heat source used in over 2,500 production sites. Its outstanding controllability and ability to efficiently irradiate high energy density only to the target heating area are significant features, allowing for the establishment of diverse processes and system designs. Heraeus is a manufacturer of industrial special light sources covering the wavelength range from vacuum ultraviolet to mid-wavelength infrared. We regularly handle infrared heating. We are currently offering a technical catalog and case studies explaining the technology using plastic processing as an example. [Contents] ■ Wavelengths of infrared ■ Types of infrared heaters ■ Applications of infrared heating processes in plastics, etc.

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  • Other heaters
  • Heating device

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When heating is required for plastic processing.

What methods can increase production speed through heating? How should one choose an infrared heater? We will answer such questions!

Infrared is an essential heat source used in over 2,500 production sites. Its outstanding controllability and ability to efficiently irradiate high energy density only to the target heating area are significant features, allowing for the establishment of diverse processes and system designs. Excelsius is a manufacturer of industrial special light sources covering the wavelength range from vacuum ultraviolet to mid-wavelength infrared. We regularly handle infrared heating. We are currently offering a technical catalog and case studies explaining the technology, using plastic processing as an example. [Contents] ■ Wavelengths of infrared ■ Types of infrared heaters ■ Applications of infrared heating processes in plastics, etc.

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  • #3キャンペーン画像?.jpg
  • Other heaters
  • Heating device

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Case Study of Infrared Heater Utilization: High-Temperature Heating of Aluminum Alloy Using Infrared

Even high-reflectivity aluminum alloys can withstand heating at 400 to 600°C! Contributes to energy savings with a tact process.

Aluminum alloys are hot-stamped and molded, but it is necessary to continuously heat the steel plate before molding. Aluminum alloys have a high reflectivity, but infrared technology allows for uniform heating in open spaces. The "water-cooled high-output infrared unit" can accommodate a wide range of metals, from thin to heavy, and allows for fine control according to individual materials. 【Features of the High-Output Infrared System】 ■ Capable of heating steel plates (t=0.8mm) to 900°C in under 15 seconds ■ Adopts a staggered pitch arrangement of infrared heaters, enabling uniform heating that prevents temperature unevenness ■ Allows for heating processes in open spaces, independent of ambient temperature ■ By using a fast-start infrared heater system, it is possible to shorten process time ■ Can reduce installation space *For more details, please refer to the related links or feel free to contact us.

  • Heating device

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Case study of infrared heater utilization: Preheating of molds

Increase production efficiency! Achieve reduced preheating time for heavy objects and energy savings.

For casting molds, it is particularly necessary to protect the molds before casting and improve yield. Therefore, the preheating process of the molds becomes important, but challenges such as reducing the process time, energy conservation, uniform heating, improving the working environment, and temperature control are significant issues. Even for heating heavy objects, infrared can be used, and the infrared heating process can enhance production efficiency. Based on the experience gained from being introduced in various industries as an infrared heater manufacturer, Excellitas proposes a heating process for heavy objects that creates efficiency. *For more details, please refer to the related links or feel free to contact us.*

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  • Heating device
  • Electric furnace
  • Other heating equipment

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Case study of infrared heater application: Thermal welding of plastics

Supports high melting point materials and low viscosity substances! The realization of an efficient process eliminates the need for large equipment zones.

Automotive parts such as intake manifolds, ventilation device components, brake fluid tanks, and cleaning fluid tanks require airtightness and pressure resistance. Infrared welding can perform welding without applying vibration, making it suitable for delicate welds, such as products that have been pre-assembled before welding. In addition to maintaining high pressure resistance and high mechanical strength even with thick materials, it can accommodate 3D shapes tailored to the heating area and achieve uniform heating. 【Features of Infrared Thermal Welding】 ■ Clean ■ Non-contact heating ■ High welding strength ■ Adaptability to special shapes ■ Wide range of compatible materials ■ Automation and efficiency of the process *For more details, please refer to the related links or feel free to contact us.

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  • Heating device

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Application of infrared heating in plastic processing

Can be heated without contact! The process can be automated even for deburring complex-shaped workpieces.

Infrared technology is used for optimizing various processes in the plastic industry, such as deburring of handles, welding of containers, embossing of film sheets, and molding of PET bottles. With a flexible design that allows for the proper placement of infrared heaters, it is possible to heat objects with complex shapes. Since it can switch ON/OFF in seconds, it not only saves energy but also improves process efficiency. 【Features of Infrared Heaters】 ■ Can heat non-contact in a few seconds ■ Can be adapted to the shape of the product ■ Can automate processes such as deburring, welding, and activation of adhesives ■ Expected reduction in process time, smaller installation area, and energy savings *For more details, please refer to the related links or feel free to contact us.

  • Heating device
  • Other heaters

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Case studies of infrared heater utilization: embossing and laminating processes.

Heating through non-contact means eliminates the need for media! Significantly improves line speed and system operability.

For sturdy sheets like wide sheets or flooring materials, it is necessary to heat them uniformly all the way to both ends. The infrared system can be designed to heat the entire surface uniformly and quickly. Heat can be installed before the press machine or embossing gap. This contributes to energy savings, cost reduction, and improved product finish quality. 【Features of Infrared Heating】 ■ Heating without contact, eliminating the need for a medium ■ Heating of plastic surfaces in just a few seconds ■ Achieving uniform heating through system design tailored to the equipment ■ Contributing to energy-saving effects by selecting the heating target area *For more details, please refer to the related links or feel free to contact us.

  • Heating device
  • Other heaters
  • Resin processing machine

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Case studies of infrared heater utilization for heating and drying building materials and construction materials.

Effective utilization of thermal energy is possible! It can accurately heat materials in shapes such as cylindrical or flat plates.

Building materials include exterior wall and cladding materials such as wall materials, roofing materials, waterproof systems, and drainage channels, as well as interior wall and finishing materials like wallpaper and flooring, which require efficient manufacturing processes. Infrared heaters efficiently and uniformly transmit infrared light energy to the target object. Additionally, short-wavelength infrared heaters and carbon infrared heaters have a quick startup time of just a few seconds, allowing for precise control of the heating and drying processes. Moreover, because convection losses are kept extremely low, there is no waste of energy during processes such as embossing, laminating, and adhesive drying. **Features of the Infrared Heating and Drying Process** - No deformation of resin or metal products during the heating and drying process - Infrared heaters can be accurately positioned in the gaps of embossed surfaces - Thermal energy can be effectively utilized - Infrared heaters can accurately heat materials in cylindrical or flat shapes *For more details, please refer to the related links or feel free to contact us.*

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  • Heating device
  • Electric furnace

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Case study of infrared heater utilization: Layered manufacturing of powder materials in 3D printing.

Always possible to maintain consistent heating conditions and a stable process! Contributes to improving production quality.

Preheating the powder layer during the manufacturing stage is a crucial key, and ensuring a stable temperature just before the sintering process contributes to improvements in quality and production speed. In addition to the type of powder materials used, the thermal distribution within the chamber is also an important factor. Infrared heaters uniformly heat the powder layer without contact. Short-wavelength and carbon medium-wavelength infrared heaters are highly responsive and can be easily controlled in accordance with the temperatures measured by radiation thermometers or thermal view devices. 【Design of the Infrared Heating Process】 ■ Simulation support for the preheating process ■ Unit compatibility for installation space ■ Design of appropriate cooling units ■ Proposal for zone control *For more details, please refer to the related links or feel free to contact us.

  • Heating device

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Case studies of infrared heater utilization: Heating in the medical field

Usable in clean rooms and under vacuum! Introducing the use of infrared in medical supplies.

Infrared heating enables non-contact welding of filters and is used for the thermal shrinkage of shrink film on tubes. It allows for the easy melting and removal of unwanted burrs from injection-molded plastic materials. Another advantage of infrared is its ability to partially heat edges, corners, and very small parts without heating areas outside the product's heating zone. 【Applications of Infrared in Medical Supplies】 ■ Infrared heating technology for plastic processing - thermal welding, molding, burr removal ■ Prevention of glass ampoule breakage using infrared furnaces ■ Efficient drying and finishing of paper and non-woven fabrics with infrared *For more details, please refer to the related links or feel free to contact us.

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  • Heating device

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Case study on the use of infrared heaters: Preventing filter freezing.

Not only does it help with efficient freeze prevention and energy saving, but it can also be incorporated into filtration systems!

When the filter freezes, only a small amount of air can pass through, so it is necessary to either throttle the gas turbine or turn off the switch, requiring measures to prevent freezing. Our infrared heating system prevents the intake filters of gas power and gas compression modules from freezing during the cold season. Not only does it contribute to efficient freezing prevention and energy savings, but it can also be integrated into filtration systems. [Case Studies] - Infrared technology that helps maintain pressure in natural gas distribution networks - Freezing prevention measures for combined cycle power plants using infrared - Prevention of freezing in gas turbine intake filters utilizing infrared heaters *For more details, please refer to the related links or feel free to contact us.

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  • Heating device

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Case studies of infrared heater applications: Heating and drying of textiles (fibers) and non-woven fabrics.

Reduce energy consumption! It can quickly transfer heat to the target object with high output.

There are various heating and drying processes involved in the manufacturing and processing of textiles. Coatings applied to textiles (fibers) and non-woven fabrics need to be dried as quickly as possible, and expensive, high-performance textiles must be manufactured to even higher finishing quality standards. Infrared heaters can quickly transfer heat to the target object with high output. Therefore, they contribute to reducing energy consumption, increasing production speed, and lowering production costs. *For more details, please refer to the related links or feel free to contact us.*

  • Heating device
  • Other heaters

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Useful Infrared Heating Technology Series: Types of Infrared Heaters and How to Choose Them

A book that helps you understand infrared heaters suitable for your company's heating and drying processes! A technical document that carefully explains the differences between types of infrared heaters and how to choose them!

The "Infrared Heating Technology Series" is a series of technical documents related to infrared technology, published by Excelsius Noble Light Japan (formerly Heraeus Noblelight), which deals with industrial special light sources covering the wavelength range from vacuum ultraviolet to medium-wavelength infrared. It explains various types of heating. There are many types of industrial infrared heaters, but their varieties and differences are surprisingly not well known, and many people seem to think that any infrared heater is the same! This document carefully explains the types, differences, and characteristics of infrared heaters, providing useful information to consider when selecting an infrared heater. [Contents (excerpt)] ■ Are all infrared heaters the same? ■ What kind of infrared heater is suitable for your heating and drying process? *For more details, please refer to the PDF document or feel free to contact us.

  • Other heaters

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CCH-700 Cleaning Heater (For CMS Only)

By using a dedicated heater to burn the ceramic sleeve, we incinerate the adhered dross and perform cleaning.

Dimensions: 170mm(W) x 247mm(D) x 167mm(H) Heater: 135W Power Supply: AC85~264V

  • Soldering Equipment

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