Belarus
Manufacturer/ Producer
Belarus
Made of high-alumina chamotte containing 65 to 72% Aluminum oxide. Sintered high-alumina ceramics' high thermal conductivity allows obtaining the most uniform temperature across the radiation surface, providing uniform and high-quality radiant heating. These elements are often used in thermoforming machines, drying chambers, infrared tunnels and panels, heating and drying equipment, and various commercial heaters. Estimated service life at least 8,000 - 10,000 hours of non-stop operation. Maximun temperature 750°C. Comply with all international standards and are interchangeable with all known brands (FTE/FSR/FSF/HTC/HTE).
Request for a quoteBelarus
Made of high-alumina chamotte containing 65 to 72% Aluminum oxide. Sintered high-alumina ceramics' high thermal conductivity allows obtaining the most uniform temperature across the radiation surface, providing uniform and high-quality radiant heating. These elements are often used in thermoforming machines, drying chambers, infrared tunnels and panels, heating and drying equipment, and various commercial heaters. Estimated service life at least 8,000 - 10,000 hours of non-stop operation. Maximun temperature 750°C. Comply with all international standards and are interchangeable with all known brands (FTE/FSR/FSF/HTC/HTE).
Request for a quoteBelarus
Made of high-alumina chamotte containing 65 to 72% Aluminum oxide. Sintered high-alumina ceramics' high thermal conductivity allows obtaining the most uniform temperature across the radiation surface, providing uniform and high-quality radiant heating. These elements are often used in thermoforming machines, drying chambers, infrared tunnels and panels, heating and drying equipment, and various commercial heaters. Estimated service life at least 8,000 - 10,000 hours of non-stop operation. Maximun temperature 750°C. Comply with all international standards and are interchangeable with all known brands (FTE/FSR/FSF/HTC/HTE).
Request for a quoteBelarus
Made of high-alumina chamotte containing 65 to 72% Aluminum oxide. Sintered high-alumina ceramics' high thermal conductivity allows obtaining the most uniform temperature across the radiation surface, providing uniform and high-quality radiant heating. These elements are often used in thermoforming machines, drying chambers, infrared tunnels and panels, heating and drying equipment, and various commercial heaters. Estimated service life at least 8,000 - 10,000 hours of non-stop operation. Maximun temperature 750°C. Comply with all international standards and are interchangeable with all known brands (FTE/FSR/FSF/HTC/HTE).
Request for a quoteEurolinia produces infrared heaters: ceramic and quartz heaters, systems and equipment for industrial and household heating. The range of products by Eurolinia includes: •Infrared heating elements. •Household and commercial infrared heaters. •Industrial tunnel infrared ovens for process heating, coating, thermoforming, drying, vulcanizing and other applications that require rapid and precise heating. •Equipment and tools for temperature measurement and control. •Silicone, ribbon, micathermic, and ceramic ribbon heaters. The company develops and manufactures industrial heating systems and residential heaters, provides services, and shares its expertise with customers all over the world. Its scientific laboratory carries out R&D and tests new products. The company's manufacturing facilities are certified to ISO 9001, CE, and ensure the implementation of projects with a high degree of localization. Eurolinia is a part of the Nomacon-Eurolinia group of companies established in 1993 as a company for the production of innovative infrared heating equipment, diesel fuel heaters, heat-conducting materials, medical equipment. Eurolinia’s products are exported to 47 countries worldwide, while the sales territory keeps expanding and the customers from more and more countries are getting interested in the company's development and products. The company is searching for agents all over the world! THINK. INNOVATE. INFRARED.
Germany
Temperature measuring strips, for example, are stuck to components that heat up under load. The measuring strip shows the maximum temperature reached after the component has cooled down. This means that the maximum temperature of the component can be read off quickly and inexpensively.
Request for a quoteGermany
Technichal data: Accuracy ± 3°C at -50°C to 20°C ± 1% or 1°C at 20°C to 500°C ± 1.5% or 2°C at 500°C to 1,000°C ± 2% at 1,000°C to 1,850°C Reproducibility ± 1.5°C at -50°C to 20°C ± 0.5% or ± 0.5°C at 20 °C to 1,000 °C ± 1% at 1,000°C to 1,850 °C Optical resolution (D:S): 75:1 Smallest measurement spot: 18 mm @ 1,350 mm Temperature range: -50°C to +1,850°C Reaction time: < 150 ms Spectral sensivity: 8 ~ 14 µm Laser class: Klasse 2 (II) Wavelength: 630 ~ 670 nm Power: <1 mW Display: LCD, monochrome Temperature range (contact-temperature sensor): 50°C to +300°C Accuracy (contact-temperature sensor): ±1,5% or ± 3°C Reproducibility (contact-temperature sensor): ± 1,5% Operating conditions (operation): 0°C to 50°C, 10% to 90% RH Operating conditions (storage): -10°C to 60°C, < 80% RH (non-condensing) Power supply (internal): 9 V IEC 6LR61 Power supply (external): via USB
Request for a quoteItaly
Most industrial process temperature control units work through the pressure exerted on the water of the process utilities: this is convenient in most “standard” cases, given the higher efficiency developed by the system. However, some critical process issues can make this type of operation difficult: this is the case of machines that leak fluids, or with leakage, and that it is not convenient to maintain on the spot. In such cases, it is therefore useful to work with a vacuum temperature control unit, which sucks in utility water. FTT PD water thermoregulators are flexible and effective systems, which can work under either pressure or vacuum depending on the peculiarities of the system. Any fluid losses are therefore minimized during operations. A simplicity of operation is also ensured by the touch-screen panel, also found on other Frigofluid temperature controllers. Models with an increased pump are also available for users characterized by high pressure drops.
Request for a quoteItaly
Often the main critical issue for molding industries is not achieving the temperatures needed for their processes, but maintaining them over time. Hence the usefulness of temperature control units that not only send the fluids needed to do the job up to temperature, but are capable of subsequent self-tuning. This is the way FTT DC water temperature controllers operate, which wrap direct cooling to stabilize fluid grades after the desired temperature has been reached. This requires integration with a source of cooled water: a simple well or a chiller or cooling system (chiller or dry cooler). Our engineers are available to determine which cooling solution is the most effective and economical. Not only that. The management of these successive heating-cooling steps is easier when done with a touch screen: a feature with which FTT DC temperature controllers are equipped. Units in the FTT category are specially designed to condition molds.
Request for a quoteCreate one request and get multiple quotes form verified suppliers.