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 Technical Datasheet DS47
power light source
LUXEON Warm White Emitter and Star
(R)
Introduction
LUXEON(R) warm white LEDs are the first to deliver the high quality light required by lighting designers and architects for interior and exterior applications. With a nominal correlated color temperature (CCT) of 3200K and a typical color rendering index (CRI Ra) of 90, LUXEON warm white light sources deliver light that is superior or equivalent to conventional light sources.
Features
3200K nominal CCT spectral output, complimentary color temperature to conventional indoor light sources Typical CRI Ra value of 90 with high R9 value, delivering supe rior color rendering compared to other solidstate light sources Highest flux per LED in the world Very long operating life (up to 100k hours) Low voltage DC operated Cool beam, safe to the touch Instant light (less than 100 ns) Fully dimmable No UV or IR in light beam Superior ESD protection
Warm white LUXEON is available in both Star and Emitter configura tions. The configuration and radiation pattern offerings provide design flexibility in a package that has already been field proven for reliability, durability and dependability.
Philips Lumileds revolutionary warm white technology is specifically designed to meet the needs of architects, designers, specifiers and ulti mately endusers and consumers.
Typical Applications
Hospitality lighting (retail / shop, restaurant and hotel) Museum lighting Display case / cabinet lighting Task / accent lighting Cove lighting Architectural detail / city beau tification Reading lights (car, bus, aircraft)
Mechanical Dimensions Luxeon Emitter LXHL BW03
Drawings not to scale
Notes: 1. The anode side of the device is denoted by a hole in the lead frame. Electrical insulation between the case and the board is required--slug of device is not electrically neutral. Do not electrically connect either the anode or cathode to the slug. 2. Drawings not to scale. 3. All dimensions are in millimeters. 4. All dimensions without tolerances are for reference only.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Mechanical Dimensions
LUXEON Star LXHL MWGC
Notes: 1. Slots in aluminumcore PCB for M3 or #4 mounting screw. 2. Electrical interconnection pads labeled on the aluminumcore PCB with "+" and "" to denote positive and negative, respec tively. All positive pads are interconnected, as are all negative pads, allowing for flexibility in array interconnection. 3. Electrical insulation between neighboring Stars is required--aluminum board is not electrically neutral. 4. Drawings not to scale. 5. All dimensions are in millimeters.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Mechanical Dimensions
Star/O LXHL NWG8
Notes: 1. Slots in aluminumcore PCB for M3 or #4 mounting screw. 2. Positive solder pad is indicated by a copper dot next to the pad on the aluminumcore PCB. 3. The collimator is molded from optical grade acrylic. Do not subject to temperatures greater than 75C, as plastic deforma tion may occur. Protect optic against exposure to solvents and adhesives that are not compatible with acrylic. 4. Drawings not to scale. 5. All dimensions are in millimeters.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Warm White Luxeon Part Number Matrix
Table 1.
Part Number LXHL BW03 LXHL MWGC LXHL NWG8
Beam Pattern Batwing Batwing Batwing
Configuration Emitter Star Star/O
Drive Current 350mA 350mA 350mA
Color Characteristics at 350mA, Junction Temperature, TJ = 25C
Table 2.
Part Number LXHL BW03 LXHL MWGC LXHL NWG8
Color Rendering Index RA Typ. 90[1] 90 90
[1] [1]
Color Temperature CCT Min. Typ. 2850 K 2850 K 2850 K 3300 K 3300 K 3300 K
[2]
Max. 3800 K 3800 K 3800 K
Notes for Table 2: 1. The typical R9 value for warm white LUXEON products is 70. 2. Correlated Color Temperature (CCT) 5% tester tolerance.
Flux Characteristics at 350mA, Junction Temperature, TJ = 25C
Table 3.
Part Number LXHL BW03 LXHL MWGC LXHL NWG8
Configuration Emitter Star Star/O
[2]
Radiation Pattern Batwing Batwing Collimated
Minimum Luminous Flux (lm) V
[1]
Typical Luminous Flux (lm) V
[2]
13.9 13.9 11.8
20 20 17
Notes for Table 3: 1. Minimum luminous flux or performance guaranteed within published operating conditions. Philips Lumileds maintains a tolerance of 10% on flux measurements. 2. The efficiency of collimating optics is approximately 85%. 3. LUXEON types with even higher luminous flux levels will become available in the future. Please consult your Philips Lumileds Authorized Distributor or Philips Lumileds sales representative for more information.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Flux Characteristics of 5500K LUXEON at 350mA, Junction Temperature, TJ = 25C
Table 4.
Part Number LXHL BW02 LXHL PW01 LXHL DW01 LXHL MWEC LXHL MW1D LXHL FW1C LXHL NWE8 LXHL MWEA LXHL MW1B
[1] [1] [1] [1] [1] [1] [1] [1] [1]
Color Temperature 5500 K 5500 K 5500 K 5500 K 5500 K 5500 K 5500 K 5500 K 5500 K
Configuration Emitter Emitter Emitter Star Star Star Star/O
[2]
Radiation Pattern Batwing Lambertian Side Emitting Batwing Lambertian Side Emitting Collimated Batwing Lambertian
Typical Luminous Flux (lm) V
[2]
45 45 40.5 45 45 40.5 38 45 45
Star/C Star/C
Notes for Table 4: 1. 5500K LUXEON product data shown for reference only. For more detailed information on these products please consult Technical Data Sheets DS23 and DS25 for Star and Emitter products, respectively. 2. The efficiency of collimating optics is approximately 85%. 3. LUXEON types with even higher luminous flux levels will become available in the future. Please consult your Philips Lumileds Authorized Distributor or Philips Lumileds sales representative for more information.
Optical Characteristics at 350mA, Junction Temperature, TJ = 25C
Table 5.
Part Number LXHL BW03 LXHL MWGC LXHL NWG8
Configuration Emitter Star Star/O
Total Included Angle [1] (degree) 0.90V 110 110 25
Viewing Angle (degree) 2 1/2 110 110 10
[2]
Typical Candela on Axis [3] (cd) N/A N/A 200
Notes for Table 5: 1. Total angle at which 90% of total luminous flux is captured. 2. 1/2 is the off axis angle from lamp centerline where the luminous intensity is 1/2 of the peak value. 3. Typical Candela value listed for collimated Star/O product only. 4. All products built with Indium Gallium Nitride (InGaN).
Electrical Characteristics at 350mA, Junction Temperature, TJ = 25C
Table 6.
Part Number LXHL BW03
Forward Voltage VF [1] (V) Min. Typ. Max. 2.79 3.42 3.99
Dynamic Resistance ( ) R D 1.0
[2]
Temperature Coefficient of Forward Voltage [3] (mV/C) VF / TJ 2.0
Thermal Resistance, Junction to Case (C/W) RJ C 15
Notes for Table 6: 1. Philips Lumileds maintains a tolerance of 0.06V on forward voltage measurements. 2. Dynamic resistance is the inverse of the slope in linear forward voltage model for LEDs. See Figures 3a and 3b. 3. Measured between 25C TJ 110C at IF = 350mA.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Electrical Characteristics at 350mA, Junction Temperature, TJ = 25C, Continued
Table 7.
Part Number LXHL MWGC LXHL NWG8
Forward Voltage VF [1] (V) Min. Typ. Max. 2.79 2.79 3.42 3.42 3.99 3.99
Dynamic Resistance ( ) R D 1.0 1.0
[2]
Temperature Coefficient of Forward Voltage [3] (mV/C) VF / TJ 2.0 2.0
Thermal Resistance, Junction to Case (C/W) RJ B 20 20
Notes for Table 7: 1. Philips Lumileds maintains a tolerance of 0.06V on forward voltage measurements. 2. Dynamic resistance is the inverse of the slope in linear forward voltage model for LEDs. See Figures 3a and 3b. 3. Measured between 25C TJ 110C at IF = 350mA.
Absolute Maximum Ratings
Table 8.
Emitter
350 500 350
Parameter DC Forward Current (mA)
[1]
LXHL BW03
Peak Pulsed Forward Current (mA) Average Forward Current (mA) ESD Sensitivity
[2]
16,000V HBM 120 40 to +120
[3]
LED Junction Temperature (C) Storage Temperature (C) Soldering Temperature (C)
260 for 5 seconds max
Absolute Maximum Ratings
Table 9.
Star Products
LXHL NWG8 350 500 350 16,000V HBM 120 105 40 to +75
Parameter DC Forward Current (mA)
[1]
LXHL MWGC 350 500 350 16,000V HBM 120
[4] [5]
Peak Pulsed Forward Current (mA) Average Forward Current (mA) ESD Sensitivity
[2]
LED Junction Temperature (C) AluminumCore PCB Temperature (C) Storage & Operating Temperature (C)
105 40 to +105
Notes for Tables 8 & 9: 1. Proper current derating must be observed to maintain junction temperature below the maximum. For more information, consult the LUXEON Design Guide, available upon request. 2. LEDs are not designed to be driven in reverse bias. Please consult Philips Lumileds application brief AB11 for further information. 3. Measured at leads, during lead soldering and slug attach, body temperature must not exceed 120C. LUXEON emitters cannot be soldered by general IR or Vaporphase reflow, nor by wave soldering. Lead soldering is limited to selective heating of the leads, such as by hotbar reflow, fiber focussed IR, or hand soldering. The package back plane (slug) may not be attached by soldering, but rather with a thermally conductive adhesive. Electrical insulation between the slug and the board is required. Please consult Philips Lumileds Application Brief AB10 on LUXEON Emitter Assembly Information for further details on assembly methods. 4. Allowable MCPCB temperature to avoid exceeding maximum junction temperature at maximum Vf limit based on thermal resistance of Star assembly. 5. A reduction in maximum storage and operating temperature is required due to the acrylic optic.
LUXEON Warm White Emitter & Star DS47 (7/06) 7
Light Output Characteristics
Figure 1. Relative Light Output vs. Junction Temperature.
Wavelength Characteristics, TJ = 25C
Figure 2a. White Color Spectrum of Typical Warm White Part, Integrated Measurement.
Figure 2b. White Color Spectrum of Typical 5500K White Part, Integrated Measurement. Data shown for reference only. For more detailed information on these products please consult Technical Data Sheets DS23 and DS25 for Star and Emitter products, respectively.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Forward Current Characteristics, TJ = 25C
Note: Driving these high power devices at currents less than the test conditions may produce unpredictable results and may be subject to variation in performance. Pulse width modulation (PWM) is recommended for dimming effects.
Figure 3a. Forward Current vs. Forward Voltage.
Figure 3b. Relative Luminous Flux vs. Forward Current at TJ = 25C Maintained.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Current Derating Curves
Note: Driving these high power devices at currents less than the test conditions may produce unpredictable results and may be subject to variation in performance. Pulse width modulation is recommended for dimming effects.
Figure 4a. Maximum Forward Current vs. Ambient Temperature. Derating based on TJMAX = 120C. Applicable for LXHLBW03 and LXHLMWGC.
Figure 4b. Maximum Forward Current vs. Ambient Temperature. Derating based on TJMAX = 120C and TAMBIENT MAX = 75C for LXHLNWG8.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Representative Spatial Radiation Pattern
Note: For more detailed technical information regarding Luxeon radiation patterns, please consult your Philips Lumileds Authorized Distributor or Philips Lumileds sales representative.
Batwing Radiation Pattern
Figure 5. Typical Representative Spatial Radiation Pattern for LXHLBW03 and LXHLMWGC.
Radiation Pattern (with optics)
Figure 6. Typical Representative Spatial Radiation Pattern for LXHLNWG8.
Average Lumen Maintenance Characteristics
Lifetime for solidstate lighting devices (LEDs) is typically defined in terms of lumen maintenance--the percentage of initial light output remaining after a specified period of time. Philips Lumileds projects that LUXEON products will deliver on average 70% lumen maintenance at 50,000 hours of operation. This performance is based on independent test data, Philips Lumileds histor ical data from tests run on similar material systems, and internal LUXEON reliability testing. This projection is based on constant current 350 mA operation with junction temperature maintained at or below 90C. Observation of design limits included in this data sheet is required in order to achieve this projected lumen maintenance.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Emitter Reel Packaging
Notes: 1. LUXEON emitters should be picked up by the body (not the lens) during placement. The inner diameter of the pickup collet should be greater than or equal to 6.5 mm. Please consult Philips Lumileds Application Brief AB10 on LUXEON Emitter Assembly Information for further details on assembly methods. 2. Drawings not to scale. 3. All dimensions are in millimeters. 4. All dimensions without tolerances are for reference only.
LUXEON Warm White Emitter & Star DS47 (7/06)
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Company Information
LUXEON(R), SuperFlux and SnapLED are developed, manufactured and marketed by Philips Lumileds Lighting Company. Philips Lumileds is a world class supplier of Light Emitting Diodes (LEDs) producing billions of LEDs annually. Philips Lumileds is a fully integrated supplier, producing core LED material in all three base colors (Red, Green, Blue) and White. Philips Lumileds has R&D centers in San Jose, California and in The Netherlands and production capabilities in San Jose and Penang, Malaysia. Founded in 1999, Philips Lumileds is the high flux LED technology leader and is dedicated to bridging the gap between solid state LED technology and the lighting world. Philips Lumileds technology, LEDs and systems are enabling new applica tions and markets in the lighting world.
www.luxeon.com www.lumiledsfuture.com
Philips Lumileds may make process or materials changes affecting the perform ance or other characteristics of our products. These products supplied after such changes will continue to meet published specifications, but may not be identical to products supplied as samples or under prior orders.
For technical assistance or the location of your nearest sales office contact any of the following: North America:
+1 888 589 3662 or askluxeon@futureelectronics.com
Europe:
00 800 443 88 873 or
luxeon.europe@futureelectronics.com
(c)2006 Philips Lumileds Lighting Company. All rights reserved. Product specifications are subject to change without notice. Luxeon is a registered trademark of the Philips Lumileds Lighting Company in the United States and other countries.
Asia:
800 5864 5337 or lumileds.asia@futureelectronics.com


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