Cree XPE - QuadPod 4-Up Royal-Blue High Power LED

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  • 24mm MCPCB
  • 4 Cree XP-E Royal Blue diodes
  • Forward Voltage: 12.8V @ 350mA

Product Details

2000mW @ 350mA Lambertian Radiation Pattern
1000mA - Max Drive Current Cree XPE Part# XPEROY-L1-0000-00901
12.8Vf - Typ. Forward Voltage @ 350mA Cree XPE Part# XPEROY-L1-0000-00901


Description

The 4-Up QuadPod LED uses your choice of either the Luxeon Rebel or Cree XP-E, XT-E, XP-G or XP-G2 Emitters. The High Power LEDs are re-flowed, in-series, onto a Round 24mm Metal Core Printed Circuit Board (MCPCB). We also offer the Carclo Quad Optic that fits onto the board.



Technical Documentation

Flux Characteristics for Cree XP-E:
Color CCT Min. CCT Max. Group Min. Flux Order Code
Cool White 5,000K 10,000K Q4 100 XPEWHT-L1-0000-00C01
Outdoor White 4,000K 5,300K Q3 93.9 XPEWHT-01-0000-00BC2
Neutral White 3,700K 5,000K Q3 93.9 XPEWHT-L1-0000-00BE4
Warm-White 2,600K 3,700K P3 73.9 XPEWHT-L1-0000-008E7
Royal Blue 450nm 465nm 15 425 XPEROY-L1-0000-00A01
Blue 465nm 485nm J 23.5 XPEBLU-L1-0000-00W01
Green 520nm 535nm Q4 100 XPEGRN-L1-0000-00C01
Amber 585nm 595nm N4 62.0 XPEAMB-L1-0000-00601
Red-Orange 610nm 620nm P3 73.9 XPERDO-L1-0000-00801
Red 620nm 630nm N3 56.8 XPERED-L1-0000-00501

Notes for Table

  • Cree maintains a tolerance of +/- 7% on flux and power measurements.
  • Typical CRI for Cool White & Neutral White (3,700 K â€" 10,000 K CCT) is 75.
  • Typical CRI for Outdoor White (4,000 K - 5,300 K CCT) is 70.
  • Typical CRI for Warm White (2,600 K â€" 3,700 K CCT) is 80.
  • Cree maintains a tolerance of +/- 7% on flux and power measurements.


Characteristics:
Characteristics Unit Min. Typical Max.
Thermal Resistance, junction to solder point - white, royal blue, blue °C/W 9
Thermal Resistance, junction to solder point - green °C/W 15
Thermal Resistance, junction to solder point - amber, red, red-orange °C/W 10
Viewing Angle (FWHM) - white degrees 115
Viewing Angle (FWHM) - royal blue, blue, green, red, red-orange, amber degrees 130
Temperature coefficient of voltage - white mV/°C -4.0
Temperature coefficient of voltage - royal blue, blue mV/°C -3.3
Temperature coefficient of voltage - green mV/°C -3.8
Temperature coefficient of voltage - red-orange, red mV/°C -1.8
Temperature coefficient of voltage - amber mV/°C -1.2
ESD Classification (HBM per Mil-Std-883D) Class 2
DC Forward Current - white, royal blue, blue, green mA 1000
DC Forward Current - red-orange, red mA 700
DC Forward Current - amber mA 500
Reverse Voltage V 5
Forward Voltage (@ 350 mA) - royal blue, blue, white V 3.2 3.9
Forward voltage (@ 350 mA) - green V 3.4 3.9
Forward voltage (@ 350 mA) - red-orange, red, amber V 2.1 2.5
Forward voltage (@ 500 mA) - amber V 2.3
Forward voltage (@ 700 mA) - white V 3.4
Forward voltage (@ 700 mA) - red-orange, red V 2.3
Forward Voltage (@ 1000 mA) - green V 3.8
Forward Voltage (@ 1000 mA) - white, royal blue, blue V 3.5
LED Junction Temperature °C 150

Notes for Table

  • The increase of maximum forward current to 1000 mA for XLamp XP-E White is retroactive and applies to all XLamp XP-E White LEDs produced by Cree. This increase is the result of more extensive testing that was performed after the initial product launch.


Important Information

Average Lumen Maintenance CharacteristicsBased on internal long-term reliability testing, Cree projects royal blue, blue, green and white XLamp XP-E LEDs to maintain an average of 70% lumen maintenance after 50,000 hours, provided the LED junction temperature is maintained at or below 135°C and the LED is operated with a constant current of up to 700 mA.

Cree currently recommends a maximum drive current of 700 mA for XLamp XP-E white in designs seeking the ENERGY STAR* 35,000 hour lifetime rating (≥ 94.1% luminous flux @ 6000 hours) or 25,000 hour lifetime rating (≥ 91.8% luminous flux @ 6000 hours).

Please read the XLamp Long-Term Lumen Maintenance application note for more details on Cree’s lumen maintenance testing and forecasting. Please read the XLamp Thermal Management application note for details on how thermal design, ambient temperature, and drive current affect the LED junction temperature.

* These lifetime ratings are based on the current ENERGY STAR Solid State Lighting Luminaires V1.1 (December 12, 2008) and ENERGY STAR Integral LED Lamps V1.0 (December 3, 2009) lumen maintenance criteria.



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