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 PRODUCT DATA SHEET
PhlatLight(R) LED Illumination Products CBT-40 Series
Features
* Extremely high optical output: Over 310 Red Lumens
Over 725 Green lumens Over 150 Blue Lumens
* High thermal conductivity package - junction to heat sink
thermal resistance of only 1.8 C/W
* Photonic lattice technology for very high surface brightness
and uniform emission
* Large, monolithic chip with surface emitting area of 4 mm2 * High luminous efficacy * Lumen maintenance of greater than 70% after 60,000 hours * Environmentally friendly: RoHS compliant * Variable drive currents: less than 1 A through 10 A * Currently available in Red, Green and Blue; other colors to
follow
PhlatLight(R) LEDs, based on Photonic Lattice Technology, enable a new class of illumination applications.
Table of Contents
Technology Overview............................................ 2 Test Specifications............................................... 2 PhlatLight Bin Codes............................................. 3 Product Shipping and Labeling Information.................. 4 Optical and Electrical Characteristics ........................ 5 Flux and Spectral Characteristics vs. Temperature ........ 9 Lifetime and Lumen Maintenance ............................. 9 Spectral Characteristics......................................... 9 Radiation Patterns ..............................................10 Thermal Resistance .............................................10 Mechanical Dimensions.........................................11 Ordering Information ...........................................12
Applications
* Entertainment * Architectural Lighting * Medical Lighting * Spot Lighting * Fiber Coupled Illumination * Emergency Vehicle Lighting * Machine Vision * Projection Systems * Displays and Signage * General Illumination
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Last Update 3-10-09 PDS-001229 Rev 02
CBT-40
Product Datasheet
Technology Overview
PhlatLight LEDs benefit from a suite of innovations in the fields of chip technology, packaging, and thermal management. These breakthroughs allow illumination designers to achieve efficient light engine designs and deliver high brightness solutions.
PhlatLight Technology
The name PhlatLight is derived from Photonic Lattice. PhlatLight devices use photonic lattice patterns to extract more light from the LED chip, and to create radiation patterns that are collimated compared to typical Lambertian emitters. Optical collection efficiencies improve and optical designs become simplified with a more collimated light source. Photonic lattice technology creates true surface emission from the source, which enables large area LED chips with uniform brightness over the entire LED chip surface. The optical power and brightness produced by these large monolithic chips enable solutions which replace arc and halogen lamps where arrays of traditional high power LEDs cannot.
Reliability
Designed from the ground up, PhlatLight LEDs are one of the most reliable light sources in the world today. PhlatLight LEDs have passed a rigorous suite of environmental and mechanical stress tests, including mechanical shock, vibration, temperature cycling and humidity, and have been fully qualified for use in extreme high power and high current applications. With very low failure rates and median lifetimes that are well above 60,000 hours, PhlatLight LEDs are ready for the most demanding applications.
Environmental Benefits
PhlatLight LEDs help reduce power consumption and the amount of hazardous waste entering the environment. All PhlatLight products manufactured by Luminus are RoHS compliant and free of hazardous materials, including lead and mercury.
Packaging Technology
Thermal management is critical in high power LED applications. With a thermal resistance from junction to heat sink of 1.8 C/W, PhlatLight CBT-40 devices have the lowest thermal resistance of any LED on the market. This allows the LED to be driven at higher current densities while maintaining a low junction temperature, thereby resulting in brighter and longer lifetimes. The package is easy to use, and ready to be mounted in the lighting system.
Understanding PhlatLight Test Specifications
Every PhlatLight LED device is fully tested to ensure that it meets the high quality standards of Luminus' products.
Testing Temperature
PhlatLight LEDs are measured in such a way that the characteristics reported agree with how the devices will actually perform when incorporated into a system. This measurement is accomplished by mounting the devices on a 40 C heat sink and allowing the device to reach thermal equilibrium while fully powered. Only after the device reaches equilibrium are the measurements taken. This method of measurement ensures that PhlatLight LEDs perform in the field just as they are specified.
Multiple Operating Points (1.4 A, 5.9 A, 9.8 A)
The tables on the following pages provide typical optical and electrical characteristics. Since the LEDs can be operated over a wide range of drive conditions (currents from <1 A to 10 A, and duty cycle from <1% to 100%) multiple drive conditions are listed. PhlatLight CBT-40 devices are specified at 5.9 A. The values shown at 1.4 A and 9.8 A are for additional reference at other possible drive conditions.
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 2
CBT-40
Product Datasheet
PhlatLight CBT-40 Bins
PhlatLight LEDs are specified for luminous flux and wavelength at a drive current of 5.9 A (1.5 A/mm2) and placed into one of the following luminous flux (FF) and wavelength (WW) bins:
Blue Bins
DH DG
250 200
Green Bins
CH CG
1200 940 775 640 500 400 325 510 515 520 525 530 535 540 545
Luminous Flux (lumens)
DF DE DD DC DB
Luminous Flux (lumens)
450 455 460 465 470 475
160 120 90 70 50
CF CE CD CC CB
B4
B5
B6
B7
B8
B9
G2
G3
G4
G5
G6
G7
G8
G9
Wavelength (nm)
Wavelength (nm)
Red Bins
BH BG
425 350 275 215 165 120 90 611 615 619 623 627 631 635
Luminous Flux (lumens)
BF BE BD BC BB
R2
R3
R4
R5
R6
R7
R8
Wavelength (nm)
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 3
CBT-40
Product Datasheet
PhlatLight Product Shipping and Labeling Information
All PhlatLight products are packaged and labeled with their respective bin as outlined in the tables on page 3. Modules are packaged in trays of 10, with each package only containing one bin. The part number designation is as follows:
CBT
Product Family CBT: Chip on Board
40
Chip Area 40: 4 mm2
X
Color R: Red G: Green B: Blue
C21
Package Configuration C21: 16 x 26.5 mm board
FF
Flux Bin See page 3 for bins
WW
Wavelength Bin See page 3 for bins
Example: The part number CBT-40-R-C21-BF-R4 refers to a red, CBT-40 module, with a flux range of 275 - 350 lumens and a wavelength range of 619 nm to 623 nm. Note: Some flux and wavelength bins may have limited availability. Application specific bin kits, consisting of multiple bins, may be available. For ordering information, please refer to page 12 and reference the PhlatLight Binning and Labeling document.
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 4
CBT-40
Product Datasheet
Reference Optical and Electrical Characteristics (Theat sink = 40 C)1
Red
Drive Condition2 Parameter Current Density Symbol j VF min Forward Voltage VF VF max Luminous Flux5 Radiometric Flux Luminous Efficacy Dominant Wavelength Peak Wavelength Color Saturation FWHM Chromaticity Coordinates7,8
6
1.4 A Continuous
5.9 A Continuous Values4
9.8A Pulsed 50% D.F.3 Unit 2.5 A/mm2 V 2.8 V V 420 2.3 18 623 629 1.00 20 0.702 0.298 lm W lm/W nm nm nm -
0.35
1.5 1.9
2.2
2.5 3.0
V typ r d p 1/2 x y
70 0.4 26 622 625 1.00 16 0.695 0.305
12
270 1.6 20 623 628 1.00 19 0.699 0.301
500 450 400 350 v (lm) 300 250 200 150 100 50 0 0 3 6 I F (A) 9 12 CW Pulsed
9
IF (A)
6
3
0 0 0.5 1 1.5 VF (V) 2 2.5 3
Yellow squares indicate reference drive conditions
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 5
CBT-40
Product Datasheet
Reference Optical and Electrical Characteristics (Theat sink = 40 C)1
Green
Drive Condition2 Parameter Current Density Symbol j VFmin Forward Voltage VF VFmax Luminous Flux5 Radiometric Flux Luminous Efficacy Dominant Wavelength Peak Wavelength Color Saturation FWHM Chromaticity Coordinates7,8
6
1.4 A Continuous
5.9 A Continuous Values4
9.8 A Pulsed 50% D.F.3 Unit 2.5 A/mm2 V 5.0 V V 930 1.9 21 525 521 0.79 40 0.161 0.722 lm W lm/W nm nm nm -
0.35
1.5 3.8
3.6
4.5 5.3
V r d p 1/2 x y
240 0.5 55 535 530 0.91 35 0.205 0.740
650 1.2 28 528 524 0.83 39 0.175 0.730
1200 1000 800 v (lm) 600 400
CW Pulsed
12
9 IF (A)
6
3
200 0 0 3 6 I F (A) 9 12
0 0 1 2 3 VF (V) 4 5 6
Yellow squares indicate reference drive conditions
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 6
CBT-40
Product Datasheet
Reference Optical and Electrical Characteristics (Theat sink = 40 C)1
Blue
Drive Condition2 Parameter Current Density Symbol j VFmin Forward Voltage VF VFmax Luminous Flux5 Radiometric Flux Luminous Efficacy Dominant Wavelength Peak Wavelength Color Saturation FWHM Chromaticity Coordinates7,8
6
1.4 A Continuous
5.9 A Continuous Values4
9.8 A Pulsed 50% D.F.3 Unit 2.5 A/mm2 V 4.7 V V 160 3.7 5 462 460 0.99 27 0.142 0.038 lm W lm/W nm nm nm -
0.35
1.5 3.6
3.4
4.2 5.3
V r d p 1/2 x y
40 0.9 11 464 459 0.99 22 0.142 0.036
110 2.2 6 464 460 0.99 25 0.142 0.038
200
CW Pulsed
12
150 v (lm) IF (A)
9
100
6
50
3
0 0 3 6 I F (A) 9 12
0 0 1 2 VF (V) 3 4 5
Yellow squares indicate reference drive conditions
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 7
CBT-40
Product Datasheet
Reference Optical and Electrical Characteristics (Theat sink = 40 C)1 Common Characteristics
Symbol
Emitting Area Emitting Area Dimensions Dynamic Resistance Thermal Coefficient of Photometric Flux Thermal Coefficient of Radiometric Flux Thermal Coefficient of Junction Voltage dyn
Red
4 2.09x1.87 0.08 -0.96 -0.52 -1.3
Green
4 2.09x1.87 0.12 -0.18 -0.20 -4.6
Blue
4 2.09x1.87 0.10 -0.007 -0.17 -3.5
Unit
mm2 mmxmm %/C %/C mV/C
Absolute Maximum Ratings
Symbol
Maximum Current9 Maximum Junction Temperature10 Storage Temperature Range Tjmax
Red
12 125 -40/+100
Green
12 150 -40/+100
Blue
12 150 -40/+100
Unit
A C C11
Note 1: Note 2:
All ratings are based on operation with a constant heat sink temperature Ths =40C. See Thermal Resistance section for Ths definition. Listed drive conditions are typical for common applications. PhlatLight devices can be driven at currents ranging from <1 A to 12 A and at duty cycles ranging from 1% to 100%. Drive current and duty cycle should be adjusted as necessary to maintain the junction temperature desired to meet application lifetime requirements
t
Note 3: Note 4:
Current Density of 2.5 A/mm2. Rated at 50% duty cycle and Pulsed operation frequency of f>360Hz;
t DC = -T T
Unless otherwise noted, values listed are typical. Devices are production tested and specified at 5.9 A. Values at 1.4 A and 9.8 A are for reference only. Note 5: Total flux from emitting area at listed dominant wavelength. Reported performance is included to show trends for a selected power level. For specific minimum and maximum values, use bin tables. For product roadmap and future performance of devices, contact Luminus. Note 6: Minimum and Maximum Dominant Wavelengths are based on typical values +/- 5nm for Red, +/- 8nm for Green and +/- 6nm for Blue. Note 7: In CIE 1931 chromaticity diagram coordinates, normalized to X+Y+Z=1. Note 8: For reference only. Note 9: Luminus PhlatLight LEDs are designed for operation to an absolute maximum current as specified above. Product lifetime data is specified at recommended forward drive currents. Sustained operation at or beyond absolute maximum currents will result in a reduction of device life ime compared to recommended forward drive currents. Actual device lifetimes will also depend on junction temperature. Refer to the lifetime derating curves for further information. In pulsed operation, rise time from 10-90% of forward current should be larger than 0.5 microseconds. Note 10: Lifetime dependent on LED junction temperature. Input power and thermal system must be properly managed to ensure lifetime. See charts on pg 7 for further information. Note 11: Special design considerations must be observed for operation under 1 A. Please contact Luminus for further information. Note 12: Caution must be taken not to stare at the light emitted from these LEDs. Under special circumstances, the high intensity could damage the eye.
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 8
CBT-40
Product Datasheet
Light Output and Spectral Characteristics Over Heat Sink Temperature
Relative Dominant Wavelength Shift (nm)
20 30 40 50 60 70 80 90 120% Relative Luminous Flux (%) 110% 100% 90% 80% 70% 60% 50% 40% Heat Sink Temperature
3 2.5 2 1.5 1 0.5 0 -0.5 -1 -1.5 20 30 40 50 60 70 80 90 Heat Sink Temperature
Median Lifetime Estimate vs. Tj13
160 Device Junction Temperature (C) 140 Lumen Maintenance (%) 120 100 80 60 40 20 0 1,000 10,000 Median Lifetime Estimate (hours) 100,000 120% 100% 80%
Lumen Maintenance14
L70
60% 40% 20% 0% 100 1,000 Time (hours) 10,000 100,000
L50
Measured Extrapolated
Typical Spectrum15
Relative Spectral Power Distribution 1.2 1 0.8 0.6 0.4 0.2 0 400 450 500 550 Wavelength (nm) 600 650 700
Note 13. Median lifetime estimate as a function of junction temperature at 1.5A/mm2 in continuous operation. Lifetime defined as time to 70% of initial intensity. Based on preliminary lifetime test data. Data can be used to model failure rate over typical product lifetime. Note 14. Lumen maintenance vs. time at 1.5A/mm2 in continuous operation, Red junction temperature of 70C, Green junction temperatures of 120C, Blue junction temperatures of 100C. Note 15. Typical spectrum at current density of 1.5 A/mm2 in continuous operation.
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 9
CBT-40
Product Datasheet
Typical Radiation Pattern
Typical Polar Radiation Pattern for Blue and Green
-30 30
Typical Polar Radiation Pattern for Red
-30 30
-60
60
-60
60
-120% -100% -80%
-60%
-40%
-20%
0%
20%
40%
60%
80%
100%
120%
-120% -100% -80%
-60%
-40%
-20%
0%
20%
40%
60%
80%
100%
120%
Thermal Resistance
Window
Tj Tb
Die Junction Window Frame Thermistor
Typical Thermal Resistance
Rj-b1 Rb-hs1 Rj-hs2 Rj-ref1
Note 1:
1.63 C/W 0.19 C/W 1.82 C/W 1.62 C/W
Tref Ths
Copper core-board Thermal Interface material
Heat sink
Thermal resistance values are based on FEA model results correlated to Rj-hs data Thermal Resistance is based on eGraf 1205 Thermal interface.
Note 2:
Ta
Ths definition = 3 mm from core-board
Thermistor Information
The thermistor used in PhlatLight devices mounted on coreboards is from Murata Manufacturing Co. The global part number is NCP15XH103J03RC. Please see http://www.murata.com/ for details on calculating thermistor temperature. For more information on use of the thermistor, please contact Luminus directly.
Electrical Pinout
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 10
CBT-40
Product Datasheet
Mechanical Dimensions
DIMENSIONS IN MILLIMETERS 26.50.5 PIN 1 1.87 EMITTING AREA 12.0 2.09 EMITTING AREA A 10.50 16.00.5
RED DEVICE
BLUE DEVICE
A
2x
1.7 ALIGNMENT HOLES 1.6
GREEN DEVICE 2x 2.40.1 FASTENER HOLES B
6.3 SECTION A-A
1.6 .063 PIN # 1 2 3-5 6-8
FUNCTION THERMISTOR (+) THERMISTOR (-) POWER (-) POWER (+)
"A" "B" "C" DESCRIPTION
DETAIL B NOMINAL DIMENSION 0.94 0.67 0.27 TOLERANCE 0.13 0.16 0.05
DIMENSION NAME "A" "B" "C"
TOP OF METAL SUBSTRATE TO TOP OF GLASS EMITTING AREA TO TOP OF GLASS TOP OF METAL SUBSTRATE TO EMITTING AREA
For detailed drawing of package, please refer to Luminus drawing #DWG-001263
DWG-001263
Connector: MOLEX Part Number 874380843. Please refer to page 10 or detailed drawing for pin-out information.
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 11
CBT-40
Product Datasheet
Ordering Information
Ordering Part Number1,2,3
CBT-40-R-C21-HC100 CBT-40-G-C21-JC200 CBT-40-B-C21-KC300
Note 1:
Color
Red Green Blue
Description
Red PhlatLight CBT-40 consisting of a 4 mm2 LED, thermistor, and connector, mounted on a copper-core PCB. Green PhlatLight CBT-40 consisting of a 4 mm2 LED, thermistor, and connector, mounted on a copper-core PCB. Blue PhlatLight CBT-40 consisting of a 4 mm2 LED, thermistor, and connector, mounted on a copper-core PCB.
Note 2: Note 3:
HC100 - denotes a bin kit comprising of all red flux and wavelength bins as specified on page 3 JC200 - denotes a bin kit comprising of all green flux and wavelength bins as specified on page 3 KC300 - denotes a bin kit comprising of all blue flux and wavelength bins as specified on page 3. See PhlatLight Binning and Labeling document for more information. For info on ordering bin kits, contact your local Luminus sales representative. Standard packaging increment (SPI) is 10.
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The products, their specifications and other information appearing in this document are subject to change by Luminus Devices without notice. Luminus Devices assumes no liability for errors that may appear in this document, and no liability otherwise arising from the application or use of the product or information contained herein. None of the information provided herein should be considered to be a representation of the fitness or suitability of the product for any particular application or as any other form of warranty. Luminus Devices' product warranties are limited to only such warranties as accompany a purchase contract or purchase order for such products. Nothing herein is to be construed as constituting an additional warranty. No information contained in this publication may be considered as a waiver by Luminus Devices of any intellectual property rights that Luminus Devices may have in such information. PhlatLight(R) is a registered trademark of Luminus Devices, Inc., all rights reserved.
This product is protected by U.S. Patents 6,831,302; 7,074,631; 7,083,993; 7,084,434; 7,098,589; 7,105,861; 7,138,666; 7,166,870; 7,166,871; 7,170,100; 7,196,354; 7,211,831; 7,262,550; 7,274,043; 7,301,271; 7,341,880; 7,344,903; 7,345,416; 7,348,603; 7,388,233; 7,391,059; Patents Pending in the U.S. and other countries.
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(c) 2009 Luminus Devices, Inc. - All Rights Reserved Page 12


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