UVT-200-UVC 

Technical Specifications

Intended Use: UVC-germicidal and TOC reduction, photolysis operations in labs for surface disinfection, UV emitter based on quartz halogen, plasma arc operation in laboratory, and commercial/industrial curing processes.

Dimensions: 145mm x 190mm x 325mm.

Aperture: 90 mm diameter. Shielded by high-temperature UVC transmitting quartz panel.

Operation: The lamp can be oriented at any angle for operation.

UV Intensity: At 25mm from the outer quartz shield:

  • 265 miliWatts/cm2 in the 320nm to 410nm range peak 340nm and 365nm;
  • 44 MED in the 280nm to 320nm range;
  • 9200 microW/cm2 at 254nm-Germicidal.

Reflector Type: Parabolic glass with dichroic coating to reduce IR emissions.

Lamp Size: 240 Watt.

Power Input: 120 VAC, 60 Hz, 2.1 Amp.

Power Inlet: EMC filtration at power inlet with 2 Amp double fuses.

Power Cord: Standard IEC grounded, 120 volts AC, 15 Amp.

Lamp Life: 4000 hours at continuous run, 2000 hours at intermittent run at 25% UV output loss at the lamp end life.

Features:

  • 105°C thermal shutdown on components upon any cooling system failure along with over-current fusing at the entry;
  • All-anodized, aluminium-finned body allows for convection cooling;
  • Handle facilitates moving and positioning;
  • Unit can be easily mounted on a vertical stand;
  • Internal fan cooling for continuous run with a fan delay relay.

Regulatory Approvals: Conforms to CSA/NRTL/ANSI standards UL1431 as well manufactured according to ISO 13485 quality controls. Manufactured in Canada by Tanses Technologies Inc.

Caution:

  • Do not spray any liquid based atomizers while the cooling fan is on. Any atomized spray may damage the extremely hot lamp while the cooling air circulates around the lamp envelope.
  • Do not use in the vicinity of any explosive powder or sprayed flammable liquids due to its high ignition voltage and high lamp temperature of 950°C.
  • Wear eye protection. UV radiation may damage eyes and may cause serious skin burns in a short time. Long-term exposure may result in DNA mutation.

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