NT-53F0-0428 LIGHTING SCIENCE GROUP CORPORATION, NT-53F0-0428 Datasheet

LIGHT ENGINE TITAN RED/GRN/BLUE

NT-53F0-0428

Manufacturer Part Number
NT-53F0-0428
Description
LIGHT ENGINE TITAN RED/GRN/BLUE
Manufacturer
LIGHTING SCIENCE GROUP CORPORATION
Series
Titan™r
Type
With Connectorr
Datasheets

Specifications of NT-53F0-0428

Color
Red, Green, Blue (RGB)
Luminous Flux @ Current - Test
435 lm Red, 685 lm Green, 183 lm Blue
Current - Test
3 x 1.05A
Current - Max
3 x 1.4A
Driver Circuitry
No
Voltage
6.9V Red, 11.4V Green, 10.5V Blue
Configuration
Circular
With Connector
Yes
Voltage - Input
6.9V Red, 11.4V Green, 10.5V Blue
Power - Input
7.3W Red, 12W Green, 11W Blue
Product
LED Modules
Illumination Color
Red, Green, Blue
Power Consumption
9.9 W, 15.1 W, 16 W
Supply Voltage
8 V, 12.2 V, 12.9 V
Supply Current
1.4 A
Wavelength
629 nm, 535 nm, 470 nm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Interface
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
521-1045
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Related parts for NT-53F0-0428

NT-53F0-0428 Summary of contents

Page 1

amina ighting ncorporated a s Led L e Fm-0167 r 05.21.08 tm tLas eries ight ngines tLas eries Led L e ight ngines  ...

Page 2

... ypicaL and BsoLute aximum - rgB ...............................6 arm hite ayLight hite and , rgB ...................................................7 hite ayLight hite and ...................................................................................... orWard urrent vs oLtage d W .............................................................8 hite and ayLight hite .................................................................................... Lux vs unction emperature , hite arm hite With o ptic and ayLight rgB ...............................................12 o hite With ...

Page 3

... The unsurpassed technical benefits found in the Atlas Series result in unparalleled ease of design and integration. They feature the lowest thermal resistance of any LED package on the market. Our patented multi- layer on metal package design allows the most efficient ©2008 L L ...

Page 4

... Table 2. Note: 1. 2θ, 1/2, Total off-axis angle from CRI CRI source center line where the intensity is Min. Typ. 1/2 of the peak value Table 3. Note: 1. 2θ, 1/2, Total off-axis angle from View Angle [1] source center line where the intensity is 1/2 of the peak value ...

Page 5

... Lamina’s Application Engineering team can assist with the proper selection of drivers and can assist with your own drive current design. Connecting power to high brightness LEDs in the past has been challenging. Lamina has developed EZ-Connect boards and wire harnesses to make assembly fast and reliable ...

Page 6

... hArACteristiCs Minimum, Typical, and Absolute Maximum Ratings, Warm White NT-42D1-0425 and Daylight White NT-42D0-0426 Thermal Resistance [1] Insulation Resistance [2] Electrical Isolation [3] Reverse Current Reverse Voltage LED Junction Temperature [4] Storage Temperature Assembly Temperature ESD Sensitivity Current Minimum, Typical, and Absolute Maximum Ratings, RGB NT-43F0-0424 ...

Page 7

... D peCtrAl istribution 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 380 405 430 455 480 Daylight White (NT-42D0-0426) 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 380 405 430 455 1.0 0.9 0.8 0.7 ...

Page 8

... F ypiCAl relAtive orwArD Forward Voltage vs. Forward Current, Atlas Warm White 1.80 1.60 1.40 1.20 1.00 0.80 0.60 0.40 0.20 0.00 5.00 5.50 Daylight White (NT-42D0-0426) 1600 1400 1200 ...

Page 9

... F ypiCAl relAtive orwArD NT-43F0-0424 RGB Forward Current Vs. Forward Voltage 900 800 700 600 500 400 300 200 100 0 3 3.5 NT-43F0-0424 RGB Forward Current Vs. Forward Voltage 900 800 700 600 500 400 300 200 100 0 5 5.5 NT-43F0-0424 RGB Forward Current Vs. Forward Voltage ...

Page 10

... Forward Current vs Forward Voltage, Atlas Amber Amber (NT-41E0-0483) 20 Deg C 40 Deg C 60 Deg C 80 Deg C 100 Deg C 3.80 4.00 4.20 4.40 Forward Voltage (V) Forward Current vs. Forward Voltage, Atlas Red Red (NT-41A0-0482) 20 Deg C 40 Deg C 60 Deg C 80 Deg C 100 Deg C 3.60 3.80 4.00 4.20 Forward Voltage (V) ...

Page 11

... Warm White with Built-in 60 Relative Luminous Flux vs. Junction Temperature @ 700mA, Atlas Warm White 60 Degree 1.2 1 0.8 0.6 0.4 0.2 0 -25 0 Daylight White (NT-42D0-0426) Relative Luminous Flux vs. Junction Temperature Atlas Daylight White 1.2 1 0.8 0.6 0.4 0.2 0 -25 0 ©2008 amina ...

Page 12

... L i amina ighting ncorporated a s Led L e Fm-0167 r 05.21.08 tm tLas eries ight ngines lux vs unCtion eMperAture Optic (NT-45D0-0447 100 125 Junction Temperature (deg C) RGB (NT-43F0-0424) Red Green Blue 100 125 Junction Temperature (deg C) Figure 3d. ---- Projected Measured 150 Figure 3e. ---- Projected Measured 150  ...

Page 13

... Junction Temperature (deg. C) Green (NT-42C1-0485) 40.00 60.00 80.00 100.00 120.00 Temperature (deg. C) Amber (NT-41E0-0483 100 125 Junction Temperature (C) Red (NT-41A0-0482 100 Junction Temperature (deg onoChroMAtiCs Figure 3f. ---- Projected Measured 150 Figure 3g. ---- Projected Measured 140.00 Figure 3h. ---- Projected Measured 150 Figure 3i. ...

Page 14

... lux vs urrent Atlas Warm Luminous Flux vs. Forward Current, Atlas Warm White 300 250 200 150 100 200 400 Warm White with Built-in 60 Atlas Warm White 60 Degree Luminous Flux vs. Forward Current 300.00 250.00 200.00 150.00 100.00 50.00 0.00 0 200 400 Atlas Daylight Luminous Flux vs. Forward Current ...

Page 15

... lux vs urrent Daylight White with Built in 60 Luminous Flux vs. Forward Current, Atlas Daylight 60 Degree 350.00 300.00 250.00 200.00 150.00 100.00 50.00 0.00 0 200 400 250 200 Red Green Blue 150 100 100 200 ©2008 amina ighting ncorporated a s Led L e Fm-0167 r 05 ...

Page 16

... Luminous Flux vs Forward Current, Atlas Green 450 400 350 300 250 200 150 100 200 400 Total Luminous Flux vs. Forward Current, Atlas Amber 250 200 150 100 200 400 Luminous Flux vs. Forward Current, Atlas Red 250 200 150 100 50 ...

Page 17

... C FFiCACy vs urrent Efficacy vs. Forward Current, Atlas Warm White 200 400 Atlas Daylight Efficacy vs Forward Current 200 400 Efficacy vs. Forward Current, Atlas RGB 100 200 ©2008 amina ighting ncorporated a s Led L e Fm-0167 r 05.21.08 tm tLas eries ight ngines ev Warm White (NT-42D1-0425) 600 ...

Page 18

... Forward Current (mA) Efficacy vs Forward Current, Atlas Green Amber (NT-41E0-0483) 600 800 1000 1200 1400 1600 1800 Forward Current (mA) Efficacy Vs. Forward Current, Atlas Red Red (NT-41A0-0482) 600 800 1000 1200 1400 1600 1800 Forward Current (mA) Figure 5d. Figure 5e. 2000 Figure 5f. ...

Page 19

... Table 8a. Note: Typical relative Warm White Bin NT-42D1-0425. ©2008 amina ighting ncorporated a s Led L e Fm-0167 r 05.21.08 tm tLas eries ight ngines ev Daylight White (NT-42D0-0426) Figure 6b. CIE Reference 1931 0.41 2750 K 2950 K 0. 0.39 EB BBL 0. 0.37 0.36 5450 K 0.35 SJ 0.34 6200 0.33 ...

Page 20

... The Warm White (NT-42D1-0425) and Daylight White (NT-42D0-0426) will deliver 70% lumen maintenance at 50,000 hours of operation at a forward current of 700mA. This projection is based on constant current operation with junction temperature maintained at or below 120ºC. The RGB (NT-43F0-0424) will deliver, 70% lumen maintenance at 50,000 hours of operation at a forward current of 350mA. This projection is based on constant current operation with junction temperature maintained at or below 120º ...

Page 21

... Warm White (NT-42D1-0425), Daylight White (NT-42D0-0426) -90 -80 -70 -60 -50 -40 Blue (NT-42B1-0484), Green (NT-42C1-0485), Amber (NT-41E0-0483), and Red (NT-41A0-0482) -90 -80 -70 -60 -50 - elAtive uMinous ntensity Relative Luminous Intensity Distribution (Polar) 30° 40° 50° -1.0 -0.8 -0.6 -0.4 -0.2 0.0 130° ...

Page 22

... Blue (NT-42B1-0484), Green (NT-42C1-0485), Amber (NT-41E0-0483), and Red (NT-41A0-0482) (Polar) 30° 40° 50° -1.0 -0.8 -0.6 130° 140° 150° eChAniCAl iMensions Warm White (NT-42D1-0425), Daylight White (NT-42D0-0426) ©2008 amina ighting ncorporated a s Led L e Fm-0167 r 05.21.08 tm tLas eries ...

Page 23

... Drawing not to scale. Units: Inches [millimeters] Figure 11. For optimal thermal performance thermal grease or epoxy should be added beneath the entire surface of the LED array. All dimensions are for reference only. Units: Inches [millimeters] Thermal Design Proper thermal design is essential to achieving maximum life and performance. ...

Page 24

... RGB (NT-43F0-0424) ourCe Daylight White (EZ-42D0-0433) Figure 12b. Do not handle device by the lens. Care must be taken to avoid damage to the lens. Drawing not to scale. Units: Inches [millimeters] Figure 13. Units: Inches [millimeters] Light engine mounted on EZConnect board dimensions are for reference only.  ...

Page 25

ACkAging Ape C t Arrier Ape p t ACkAging rAy ©2008 amina ighting ncorporated a s Led L e Fm-0167 r 05.21.08 tm tLas eries ight ngines ev eel Packaging Tape & Reel ...

Page 26

... M2 X 0.4 cheese head screw, 18 recommended. When mounting the light engine, position the three screws in the center of each of the three slots. Tighten the three screws evenly, first to about 0.89 inch pounds (10 Newton-centimeter), and then tighten each to a maximum torque of 4 inch pounds (45 Newton-centimeter) ...

Page 27

... Lamina Lighting, Incorporated (Seller) extends warranty on goods produced by the Seller for one (1) year from original date of shipment, that the goods sold hereunder are new and free from substantive defects in workmanship and materials. This warranty extends only to the Buyer and not to indirect purchasers or users. Seller’s liability under the foregoing warranty is limited to replacement of goods or repair of defects or refund of the purchase price at the Seller’ ...

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