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Phone: 1-800-706-1345.
Email: sales@marineelectrocontrols.com

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T8LED Tube Material:
Body Housing Ends Light Source Circuit Board Adapter
Clear PC ABS+Aliminum 5mm LED FR4 PCB Non-insulated
switch driver
T8LED Tube Color Temperature Range
Warm White Pure White Cool White Daylight White
2700-3800K 5000-6500K 700-8500K 3800-5000K
Specification Features
Dimensions: 30mm×600/1200/1500mm
Housing: High Strength Plastic Transparent PC
Operating Temperature: -20°C to 60°C(-4°F to 132°F)
LED source life: 50,000 hours
Power Input: AC 100V--240V
Power Consumpion: 9W.12W.15 W.18W
Frequency: 50Hz/60Hz
Light Distribution: Wide angle distribution
T8LED Tube and Regular Fluorescent Light Comparison
Light Source Pure White LED Cool White Fluorescent
Power Consumption 18W 40W
Life-Span 50,000h 6,000h
UV Radiation No Yes
Color Uaripus Single
Ra 80% Plus Round 30%
Color Temperature Option Three kinds of choice
Working Temperature 50 120
Ballast No Yes
Starter No Yes
Operating Frequency No Flickering 50-60Hz
Light-on time 0.4S 3S-5S
Color Purity High Low
T8LED Tube Series
Power Consumption LED Quantity Dimension Input Voltage Working Frequency Power Ratio
6W 69 3Dx600mm 100-240V 50HZ-60HZ 0.9
9W 144 3Dx600mm
12W 192 3Dx1200mm
15W 240 3Dx1200mm
18W 288 3Dx1200mm
18W 288 3Dx1500mm
T8LED Fluorescent Tube Illumination Test Fixed Point Standard

Unit:mm

Can light on LED fluorescent tube by connect by any two pins.


Why Switch To LED?
Facts about Florescent Lights and Mercury
All Florescent Lamps and Tubes Should Be Recycled or Disposed as Hazardous Waste

All fluorscent lamps and tubes must be recycled, or taked to a household hazardous waste disposal facility, a universal waste handler (e.g., storage facility or broker), or an authorized recycling facility.

When mercury-containing lamps or tubes are placed in the trash and collected for disposal, the lamps or tubes are broken and mercury is released into the environment. Mercury vapors from broken lamps or tubes can be absorbed through the lunges into the bloodstream. People who are particularly close to the breakage are especially at risk. Mercury from broken lamps and tubes can also be washed by rain water into waterways.

LED TUBES      Environmentally Friendly
  NO BALLAST REQUIRED!

The widespread adoption of LED lighting could have a dramatic impact on energy consumption and carbon emissions associated with electricity generation, since about one-third of all electrical power consumed in the United States is from lighting.

LED light bulbs are four times more efficient than conventional incandescent lights and because the contain no mercury are more environmentally friendly than compact fluorescent bulbs. LEDs are also longer lasting than conventional lighting, lasting as long as 15 years before burning out.

LED technology has the potential of replacing all incandescent and compact fluorescent bulbs, which would have dramatic energy and environmental ramifications.

Conventional Lighting

Power = 36watts.
Power for 1 day = 432.00 watt hours.
Power for 1 year = 152 kWh.
Ballast Power = 18watts.
Power for 1 day = 216 watt hours.
Power for 1 year = 76kWh.
Total power for 1 year = 228.03kWh.
Total cost @ $0.18kWh = $41.045.
Total labor for 1 year = 5 minutes.
Total power for 10 years = 2280.3kWh.
Total cost @ $0.18 kWh = $410.405.
Total labor for 10 years = 50 minutes.

Now if you had 2000 Fluorescent Tubes you would use in one year a total of 456,060kWh. If electricity rates stayed at $0.18kWh you would be paying near to $82,090.80 to power these lights for one year. In one year to power 2000 tubes a total of 14,077kg of black coal will need to be burnt.

This will release around 42,231kg of carbon dioxide, 74.60kg of sulphur dioxide and 39.40kg of nitrogen oxides. There is also a factor of 10,000 minutes labor that has to be taken into account.

Ten years you would be looking at figures of 4,560,600kWh and $820,908.00.

The total amount of coal burnt to power these for ten years would be 140,770kg and produce 422,310kg of carbon dioxide, 746.0kg of sulphur dioxide and 394.0kg of nitrogen oxides.

Labor time will be around 100,000 minutes.

LED Tube replacements

Power = 15 watts.
Power for 1 day = 180 watt hours.
No ballast required.
Total Power for 1 year = 65.52 kWh.
Total cost @ $0.18kWh = $11.79.
Total labor time 1 year = 15 min.
Total Power for 10 years = 655.20kWh.
Total cost @ $0.18kWh = $117.936.
Total labor time = 15min.


Now if you had 2000 LED Tubes the amount of power you would use would be 131,040kWh and would cost you $23,587.00. This equates to the burning of around 4,044.05kg of black coal. This would release close to 14,200kg of carbon dioxide, 21.43 kg of sulphur dioxide and 11.32kg of nitrogen oxides.

Total labor for this amount of lights would be around 30,000 minutes to disconnect ballasts and replace tubes.

For ten years the figures would be 1,310,400kWh with a cost of $235,872.00. The total amount of coal that would be burnt is close to 40,445.00kg.

This would release 142,330kg of carbon dioxide, 214.45kg of sulphur dioxide and 110.35kg of nitrogen oxides. You will not need to change tubes at all so labor time is still around 30,000 minutes.

  • Built with dedicated LED driver with PWM constant current supply to ensure longer operating life and to minimize brightness deterioration due to over-driven, unlike many other designs where only normal rectifier and simple RC circuit is employed.
  • Any individual LED failure will not cause other LEDs in working condition to black out. This is an added advantage over other designs.
  • Direct plug-in replacement for conventional T8 Fluorescent tube i.e. with electrical or magnetic ballast and starter. Not that it does not need such ballast and starter to operate, and normally its performance should not be affected, if left intact. However, for these models with HB LEDs and higher power factor value, it is recommended to bypass the magnetic ballast if there is negative impact on PF value or blinking.
  • Not recomended for fixtures with electronic ballast/starter due to much higher voltage. The internal wiring of such fixture must be reconnected to have the electronic ballast/starter removed.
  • Brightness can be controlled by external dimmer.

Installation method for replacement Inductive ballast tube light.

   

1. Fix on LED replacement tube
2. Take off starter and ballast
3. Plug and play and light on LED tube

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