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The YFR gold reflector twin-tube infrared lamp combines a twin-bore quartz structure with a reflective coating that directs useful infrared energy toward the process side. It is intended for industrial heating systems that require directional radiant output and a mechanically stable emitter format.
This product can be configured for fast medium-wave heating requirements, but the final wavelength class and electrical design must be confirmed for the actual model. Length, heated zone, voltage, power, reflector angle, end connection and mounting orientation are selected according to the machine and material.

The twin-tube quartz profile provides two parallel channels within one emitter body. Depending on the selected construction, these channels accommodate the heating element and supporting arrangement while giving the lamp a broader structural section than a single round tube.
A gold reflector is applied to a defined part of the tube circumference. The reflector reduces radiation toward the rear of the lamp and directs more useful energy toward the workpiece. Reflector angle and orientation are therefore important: an incorrectly positioned coating can send heat away from the intended zone.
| Project item | Information to confirm | Design impact |
|---|---|---|
| Heating process | Material, target result, line speed and working distance | Guides wavelength, power density and emitter layout. |
| Emitter dimensions | Total length, heated length, twin-tube section and mounting span | Ensures fit and correct heated coverage. |
| Electrical data | Voltage, power, phase arrangement and control method | Matches the lamp to the machine power system. |
| Reflector | Gold coating length, angle and heating direction | Defines the directional radiation pattern. |
| Termination | Ceramic ends, clips, cable, connector and cable direction | Matches the holder and installation space. |
| Operating environment | Airflow, cooling, contamination and mounting orientation | Supports suitable installation and service life. |
Gold reflector twin-tube emitters can be evaluated for coating and adhesive drying, printing and converting lines, plastics processing, textile treatment, component preheating and custom ovens. Directional radiation is particularly useful when the rear of the lamp should receive less heat or when several emitters are arranged across a defined working width.
The lamp should be selected as part of the complete heating system. Reflector geometry, distance, control and ventilation can affect process results as much as the nominal electrical rating.
For a replacement, provide an undamaged sample or dimensioned drawing whenever possible. Include the original lamp code, voltage, power, overall length, heated length, twin-tube dimensions, reflector position, both end connections and cable details. Mark the side that faces the product so the reflector orientation can be checked.
For a new module, send the material, heated area, line speed or exposure time, installation space and control method. YFR can review the emitter arrangement together with the surrounding reflector or module.
View YFR infrared heating lamps or replacement IR lamps for additional emitter structures.
Contact YFR for a gold reflector twin-tube lamp evaluation. Final wavelength, reflector, dimensional and electrical details will be confirmed before production.
