Ushio 1001300 QIH144-1200/S IR Heater Lamp

Ushio 1001300 QIH144-1200/S IR Heater Lamp
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1200 Watt - 144 Volt - T3 Bulb Type - MS Base - 2500K - (QIH) Quartz - Infrared - Heater

These high-efficiency lamps are able to transfer large amounts of heat while maintaining absolute controllability. Quartz tubes are best used for radiant applications that need instant on, instant off, such as heat sensitive materials that may have to linger in a heat source. USHIO’s quartz lamps are the best choice where precise high wattage density is necessary for high speed production processes while maintaining even heat controlled zones.

IR Lamp Advantages:

• High Efficiency: Up to 95% of Energy Converted to IR Radiation
• Long Life: Typically Greater Than 5,000 Hours
• Fast Response: Typically < 1 Sec. to Reach 90% Output
• Output Maintenance: Typically <10% Drop in Output Over Life
• Variable Power Control
• Reliability: High Quality Parts and Stringent Processes Used to Produce a Superior Product

SPECIFICATIONS:

  • Energy Used: 500 watts
  • Average Lifetime: 5000 hours
  • Volts: 120
  • Bulb Type: T3
  • Filament Type: C-6
  • Length: 8.7 in
  • Width: 4 in
  • Color / Finish: Warm White
  • Color Temperature: 2,500K 

      

Industrial IR Heater Lamp Applications:

Graphic Arts:

IR bulbs are ideal for drying ink for graphic arts and silkscreen presses when printing on surfaces such as paper or textiles. With short and medium wavelengths, with wattages ranging from 375W to 6000W and the flexibility to customize lamps, USHIO’s graphic art lamps are repeatedly chosen for their quality.

Semiconductor:

Precise temperature and heating zones are required in the semiconductor industry. The  IR lamps provide a precisely controlled IR source that can meet the stringent needs of the semiconductor industry.

Solar Simulation:

The IR lamps are used in the solar simulation industry to mimic
the sun’s spectral output in the IR region. The combination of visible light and IR
light allows research of the complete affect of the sun on materials and testing
of solar panel efficiencies.

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