Double Tube Quartz Infrared Lamps
Double tube quartz elements represent the forefront in infrared heating technology, designed to offer superior energy efficiency and precise temperature control in a wide range of industrial applications. These twin infrared lamps utilize high-purity quartz tubes that encapsulate resistive filaments, ensuring emission of short- or medium-wave infrared heat with rapid response and uniform distribution. Their dual quartz tube design not only maximizes the emission surface but also allows for higher power density in a compact space, making them the ideal solution for processes requiring intensive and focused heating. Double tube quartz infrared heaters are robust, durable, and capable of withstanding demanding operating environments, ensuring a long service life and consistent performance. Optimized for energy absorption by various materials, these double tube quartz elements are fundamental for improving production speed and quality while simultaneously reducing operational costs. Their versatility and adaptability make them indispensable in sectors such as automotive, printing, plastics processing, and textiles, where precision and efficiency are key to success.
Discover the power and reliability of our double tube infrared heating elements, an advanced solution for the most demanding heating needs. These innovative two-tube quartz infrared lamps are meticulously designed to provide instant and highly efficient heating, transforming electrical energy into infrared radiation that penetrates directly into the material, without heating the surrounding air. The double-tube configuration not only increases radiation intensity but also allows for greater flexibility in heating system design, facilitating integration into existing machinery or new projects. Manufactured with top-grade quartz, these elements are resistant to thermal and chemical shock, guaranteeing stable and safe performance even in the most adverse conditions. The ability to precisely focus infrared energy minimizes energy waste and accelerates process times, translating to greater productivity and significant savings. Ideal for drying, curing, preheating, and sterilization applications, our double tube quartz elements are the perfect choice for companies seeking to optimize their operations and reach new levels of efficiency and quality.
Double tube infrared heating elements offer a series of features and advantages that distinguish them in the market:
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High Energy Efficiency: Convert nearly 90% of electrical energy into infrared heat, minimizing losses and reducing energy consumption.
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Rapid Response: Reach maximum temperature in seconds, allowing for precise control and quick adaptation to process changes.
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Direct and Uniform Heating: Infrared radiation heats the object directly, not the air, ensuring homogeneous heat distribution and avoiding dust convection.
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Compact and Versatile Design: The twin quartz tube configuration allows for high power density in a reduced space, facilitating integration into various machines and systems.
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Long Service Life: Manufactured with high-quality quartz, they are resistant to corrosion, thermal shock, and vibrations, which prolongs their service life and reduces maintenance costs.
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Precise Temperature Control: Allow for fine adjustment of power and temperature, ideal for processes requiring high precision.
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Variety of Coatings: Available with reflective coatings (such as gold or white) to direct infrared energy towards the target, further improving efficiency.
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Environmentally Friendly: By not using fossil fuels and minimizing energy waste, they contribute to more sustainable processes.
Double tube quartz elements are available in a wide range of specifications to suit various industrial needs. Below are the key technical parameters and specific dimensions, including total length, heated length, and the quartz tube diameter. These measurements are crucial for correct integration and operation in industrial heating systems.
|
No. |
Voltage (V) |
Power (W) |
Quartz Tube (mm) |
Total Length (TL) (mm) |
Heated Length (HL) (mm) |
Reflector |
Structure |
UVIR No. |
Hereaus No. |
|---|---|---|---|---|---|---|---|---|---|
|
1 |
55 |
400 |
11x23 |
115 |
50 |
Gold |
B |
THG100151 |
45130750 |
|
2 |
480 |
10000 |
11x23 |
1860 |
1780 |
Gold |
C |
THG100185 |
45130753 |
|
3 |
240 |
2000 |
11x23 |
320 |
255 |
Gold |
B |
THG100171 |
45132045 |
|
4 |
240 |
2000 |
11x23 |
370 |
305 |
Gold |
B |
THG100172 |
45132827 |
|
5 |
240 |
1500 |
11x23 |
255 |
190 |
Gold |
B |
THG100168 |
80002677 |
|
6 |
115 |
1100 |
11x23 |
205 |
140 |
Gold |
B |
THG100158 |
80009069 |
|
7 |
240 |
3400 |
11x23 |
510 |
430 |
Gold |
C |
THG100174 |
80009073 |
|
8 |
115 |
450 |
11x23 |
70 |
25 |
Gold |
B |
THG100153 |
80010767 |
|
9 |
480 |
6000 |
15x33 |
1120 |
1000 |
Gold |
B |
THG100184 |
80042199 |
|
10 |
120 |
1180 |
11x23 |
250 |
150 |
White |
B |
THW100035 |
80046737 |
|
11 |
240 |
2750 |
11x23 |
450 |
350 |
White |
B |
THW100047 |
80046754 |
|
12 |
480 |
5510 |
11x23 |
800 |
700 |
White |
B |
THW100057 |
80046755 |
|
13 |
115 |
600 |
11x23 |
145 |
80 |
Gold |
B |
THG100028 |
09751713 |
|
14 |
230 |
1500 |
11x23 |
300 |
200 |
Gold |
B |
THG100163 |
09751751 |
|
15 |
230 |
1200 |
11x23 |
405 |
340 |
Gold |
B |
THG100087 |
09751741 |
|
16 |
400 |
3000 |
11x23 |
600 |
500 |
Gold |
B |
THG100175 |
09751740 |
|
17 |
230 |
3000 |
11x23 |
650 |
500 |
Gold |
C |
THG100165 |
09751761 |
|
18 |
230 |
4200 |
11x23 |
850 |
700 |
Gold |
C |
THG100166 |
09751765 |
|
19 |
400 |
6000 |
11x23 |
1150 |
1000 |
Gold |
C |
THG100180 |
09751760 |
|
20 |
400 |
7000 |
11x23 |
1450 |
1300 |
Gold |
C |
THG100464 |
09751731 |
|
21 |
400 |
3000 |
11x23 |
1100 |
1000 |
Gold |
A |
THG100176 |
09751720 |
|
22 |
240 |
3400 |
11x23 |
510 |
430 |
Gold |
C |
THG100174 |
80009073 |
|
23 |
115 |
450 |
11x23 |
70 |
25 |
Gold |
B |
THG100153 |
80010767 |
|
24 |
480 |
6000 |
15x33 |
1120 |
1000 |
Gold |
B |
THG100184 |
80042199 |
Double tube quartz elements and twin infrared lamps are widely used in various industries due to their efficiency and precision. Some of their key applications include:
-
Automotive Industry: Drying of paints and coatings, curing of adhesives and plastics, preheating of components.
-
Plastics Processing: Thermoforming, plastic welding, heating of sheets and extrusion.
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Printing and Packaging: Drying of inks in screen, offset, and digital printing processes, curing of varnishes and adhesives.
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Textile Industry: Drying of fabrics, dye fixation, preheating for lamination.
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Food Processing: Heating, cooking, roasting, and sterilization of food products.
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Electronics Industry: Curing of electronic components, drying of printed circuit boards.
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Glass and Ceramics Manufacturing: Preheating, drying, and curing of materials.
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Comfort Heating: Heating of interior and exterior spaces in commercial and industrial applications.
We understand that each industrial application has unique requirements. Therefore, we offer a custom manufacturing service for our double tube quartz elements. If the standard parameters do not perfectly fit your needs, our team of experts is available to design and produce twin infrared lamps with customized specifications for voltage, power, total length, heated length, reflector type, and terminal configuration. Contact us to discuss your specific requirements, and we will provide an infrared heating solution optimized for your process, guaranteeing maximum efficiency and performance. Our goal is to offer double tube quartz infrared heaters that integrate seamlessly into your system, improving productivity and reducing long-term operational costs.
FAQ
How long do quartz infrared lamps take to heat up?
One of the greatest advantages of twin infrared lamps is their instant thermal response. Unlike ceramic or metal heaters that require preheating, these elements reach their maximum operating temperature within 1 to 3 seconds.
This immediate "on and off" capability allows for massive energy savings, as heat is only generated when the material is passing through the production line. Furthermore, in case of an emergency machine stop, cooling is equally fast, preventing the material (such as plastic or paper) from being burned or damaged by residual heat.











