PRODUCTS
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Infrared Lamp Types
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Industrial Infrared Drying
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Glass Cutting IR Lamp
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Plastic/Bottle Blowing Industry IR Lamp
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Photovoltaic Industry IR Lamp
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Paper Drying Quartz Infrared Lamp
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The application of infrared drying on tissue paper machines can improve the lateral moisture unevenness of the paper web, reduce the fluctuation by half, and increase the output by 5-10%.
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Replacement For Heidelberg IR
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Replacement For Heraeus IR
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Replacement For KBA IR
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Replacement For KOMORI IR
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Replacement For Roland IR
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Replacement For Grafix IR Strahler
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Leather Textiles Drying IR Lamps
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Powder Coating Drying IR Lamps
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Film Laminating Twin Tube Infrared Lamp
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Moisture Drying IR Lamp
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Fabric Embossing Heating IR Lamps
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Food Pre-Heating and Drying IR Lamp
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Other Applications Infrared Lamp
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Hot IR Lamps
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IR Lamp 10W-2000W
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115V 600W 145mm Twin Tube Gold Reflector Infrared Emitter
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220V 1000W Rapido Tungsten Quartz Infrared Lamp
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235V 1000W 357mm 13195Z/98 Infrared IR Lamp
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230V 1500W 300mm Infrared Heat Lamp
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380V 1500W Twin Tube Medium Wave Moisture Drying Infrared Element Heat Lamp
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235V 2000W 13168Z/98 Infrared IR Lamp
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220V 2000W 950MM Infrared Heating Tubes For Blow Molding
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230V 2000W 511mm Gold Reflector Infrared Heat Lamp
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IR Lamp 2100W-4000W
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235V 2600W 580mm Film Laminating Infrared Lamp
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400V 3000W IR Lamp Replacement Sidel Blowing
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400V 3000W 600mm Twin Tube IR Emitter
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480V 3650W 1050mm Halogen Heating Infrared Lamp For Semiconductor
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400V 3700W Fast Response Medium Wave Quartz Infrared Radiator Lamp
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415V 3750W Medium Wave 1600mm Infrared Heater Tube
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400V 4KW Infrared Heater Lamps Replacement Toshiba JHC 400V 4000W 700BfH
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Fabric Embossing 4000W 2000mm Infrared Lights Heating Lamp
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IR Heat Lamp 4100W-6000W
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400V 4100W 1400MM Coating Drying Quartz Infrared Heater Tube
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415V 4200W 1125mm Twin Tube Quartz IR Lamp
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480V 4200W 850mm Infrared IR Heat Lamp
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400V 4500W 790mm Industrial PET Material Crystallization Heating IR Lamps
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400V 4800W 2720mm Infrared Heat Lamp For Glass Cutting
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500V 5900W 3840mm Twin Tube IR Lamp For Bottero Glass Cutting
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400V 5900W 2380MM Infrared Emitter Lamp For Laminated Glass Cutter
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400V 6000W 2120mm Medium Wave Quartz Infrared Heater For Glass Substrate
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IR Heat Lamp 6100W-10000W
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400V 6100W 1160mm Replacement KBA L0863735 Carbon Infrared Element
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220V 6400W 1600MM Carbon Infrared Emitter For Leather Curing
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380V 7500W 2600mm Medium Wave Quartz Infrared Heater Lamp
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400V 9000W 1500mm Oven Drying Twin Tube Infrared Heat Emitter
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400V 9800W 2250mm Quartz IR Lamp For Industry Film Laminating
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700V 9800W 4820mm Laminated Glass Cutting Twin Tube IR Heat Lamp
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400V 10000W 2020mm Replace Heraeus 834094 Twin Tube IR Lamp
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Quartz IR Lamp 10.1KW-20KW
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700V 10300W 3920mm Infrared Lamp For LISEC Glass Cutting Machine
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400V 12000W Rapid Medium Wave Twin Tube Infrared Emitter IR Radiator Lamp
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400V 14000W 3500mm Medium Wave Quartz Twin Tube IR Lamp
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16000W Heating IR Twin Tube IR Lamp For INTERMAC 6200mm Glass Cutting Table
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380V 20000W 1900mm Fast Response Infrared Heat Bulb
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Infrared Heater Modules
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SCR Power Controller
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IR Applications & News
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Heating Ovens
400V 3000W 600MM Twin Tube Infrared Heater Lamp Replacement Heraeus 09751340 Fast Response Infrared Emitter
- Detail
Quartz Infrared Heater Lamps -The better effective matching heaters for industry heating!

Practice has proven that quartz infrared heaters are superior to other traditional heating sources, such as magnesium peroxide tubes, silicon carbide plates, direct heating resistance strips, steam, gas, ceramics, or other metal heaters. The advantage of quartz infrared heater is that it can quickly heat up, release a large amount of infrared radiation, and accurately use it in the production process of the heated object.
For a successful heating process, matching the infrared radiator with product characteristics such as wavelength, shape, color, thickness, power output, etc. is crucial. Radiation that precisely matches the absorption characteristics of the product can be quickly converted into thermal energy on the product. Compared with hot air heating, quartz infrared radiators have lower energy consumption, higher production efficiency, smaller footprint, and more obvious heating effects. Such as infrared preheating and tenter setting processes in continuous pad dyeing.
The heating, drying, and shaping heating of various fabrics need to follow the principle of optimal spectral matching.



The amount of radiation reaching the fabric is not equal to the actual heat absorbed by the fabric, because some is reflected and some is transmitted through the fabric. Therefore, the more the fabric absorbs and the less it reflects and transmits, the higher the absorption rate. Different textiles, when the radiation wavelength is 3μm, all materials show strong absorption bands, and the reflection at the wavelength of 1.3μm is as high as 70%. The transmission intensity of infrared light with different dominant wavelengths in a single layer of fabric increases with the increase of the dominant wavelength, and the transmission ability weakens to varying degrees. Factors that affect the transmittance include the square meter weight, tissue structure, coverage coefficient and fiber material of the fabric.
For infrared radiation heating, the basic particles that constitute matter, electrons, atoms or molecules, are constantly moving - vibrating or rotating - even in the ground state. These movements have their own natural frequencies. If the vibration number transmitted by infrared rays is equal to the natural frequency of the basic particle, a situation similar to the resonance motion in vibrationology will occur. The particle will absorb the infrared energy and further intensify the motion.

That is to say, the molecules and atoms of substances that are sensitive to infrared rays can absorb infrared rays that are equivalent to their own natural frequencies. Not only do they undergo transitions in rotational energy levels, they also expand the range of various motions centered on the equilibrium position. From a micro perspective, particle motion is enhanced and the internal energy of particles increases; From a macro perspective, it refers to the increase in temperature of an object. If the frequency difference between the two is large, the infrared ray will not be absorbed but may be reflected or passed through. It can be seen that the absorption rate of radiant heat by fabrics is closely related to the spectrum, and a reasonable effective spectrum section of infrared heating radiation should be established to achieve the best match with heated products.
For fabrics or other heated materials, it is required that the infrared energy will cause strong resonance absorption and be converted into heat as soon as it enters the surface layer, then it is called effective best matching.



Product name: Quartz Infrared Radiation Emitter/Infrared Lamp Part number: EDIRTB40-30-600 Rated voltage: 400V Rated power: 3000W Total length: 600mm Tube diameter: 23×11mm or 33×15mm Reflector: Gold Burning postion: Horizontal Replacement: Heraeus 09751340 

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