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1 pcs 50W WATT HIGH POWER WHITE LED 3500 Lumen

$170.19
     
 
 
 
FEATURES:
  • New !
  • In excellent condition
  • Long lasting (Last up to 100000hours)
  • Low Power Consumption
  • Intensely Bright
  • Low Forward Voltage Operated
  • Instant Light (Less than 100ns)
  • More Energy efficient than Incandescent and most Halogen Lamps
  • High ESD Protection (More than 3KV)
  • No UV
 
SPECIFICATIONS:
  • Source Material:InGaN !
  • Emitting Colour: 50W WATT HIGH POWER WHITE LED
  • LENS Type:Water clear
  • Color Temperature: Min:6000K Max:7000K
  • Luminous Intensity-MCD: Min: 3200 Lumens Max: 3800 Lumens
  • Reverse Voltage:5.0 V
  • DC Forward Voltage: Typical: 23 V Max: 25V
  • DC Forward Current: Typical: 2100mA Max: 2450mA
  • Viewing Angle:160 degree
  • Lead Soldering Temp:260°C for 5 seconds
  • Intensely Bright
  • Size of led: 40mm X 46mm
  • led emitter size: 21.5mm X 21.5mm
 
 Viewing Angel:160 Degree
     
 
     
 
 
 

1.All dimensions in mm tolerance is 0.2mm unless otherwise noted.

2.An epoxy meniscus may extend about 1.5mm down the lead.

3.Burr around bottom of epoxy may be 0.5mm max.

 
 
  • Absolute Maximum Ratings at Ta=25°C
 
 
Items Symbol Absolute maximum Rating Unit
MAX Power Dissipation PD 60 W
Forward Current(DC) IF 2100 mA
Peak Forward Current* IFP 2450 mA
Reverse Voltage VR 5 V
Operation Temperature Topr -40~85
Storage Temperature Tstg -10~100
Lead Soldering Temperature Tsol Max.260°C for 5 sec Max. (3mm from the base of the epoxy bulb)
 
  *Pulse width≦0.1msec duty≦1/10  
 
  • Electrical/Optical Characteristics at Ta=25°C
 
 
Items Symbol Condition Min. Typ. Max. Unit
Forward Dissipation VF IF=2100mA 21 23 25 V
Reverse Current(DC) IR VR=5V / / 100 uA
Dominant Wavelength X IF=2100mA 0.3 / 0.34 /
Y IF=2100mA 0.3 / 0.34 /
Luminous Intensity IV IF=2100mA 3200 / 3800 Lumens
50% Power Angle △θ IF=2100mA 140 / 160 deg
 
     

Add to Cart:

  • Model: 474
  • 1000000 Units in Stock

Qty Discounts New Price
1-2
$170.19
3+
$153.33

This product was added to our catalog on Monday 22 June, 2009.

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