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PDF LXHL-PL01 Data sheet ( Hoja de datos )

Número de pieza LXHL-PL01
Descripción (LXHL-xxxx) Luxeon Emitter
Fabricantes luxeon 
Logotipo luxeon Logotipo



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No Preview Available ! LXHL-PL01 Hoja de datos, Descripción, Manual

Technical Datasheet DS25
power light source
Luxeon Emitter
Introduction
Luxeon® is a revolutionary, energy efficient and ultra compact new light
source, combining the lifetime and reliability advantages of Light Emitting
Diodes with the brightness of conventional lighting.
Luxeon Emitters give you total design freedom and unmatched brightness,
creating a new world of light.
Luxeon Emitters can be purchased in reels for high volume assembly.
For more information, consult your local Lumileds representative.
Features
ΠHighest flux per LED family
in the world
ΠVery long operating life (up to
100k hours)
ΠAvailable in White, Green,
Blue, Royal Blue, Cyan, Red,
Red Orange, and Amber
ΠLambertian, Batwing or Side
Emitting radiation pattern
ΠMore energy efficient than
incandescent and most
halogen lamps
ΠLow voltage DC operated
ΠCool beam, safe to the touch
ΠInstant light (less than 100 ns)
ΠFully dimmable
ΠNo UV
ΠSuperior ESD protection
For high volume applications, custom Luxeon power light source designs
are available upon request, to meet your specific needs.
Typical Applications
ΠReading lights (car, bus, aircraft)
ΠPortable (flashlight, bicycle)
ΠMini accent/Uplighters/
Downlighters/Orientation
ΠFiber optic alternative/
Decorative/Entertainment
ΠBollards/Security/Garden
ΠCove/Undershelf/Task
ΠTraffic signaling/Beacons/ Rail
crossing and Wayside
ΠIndoor/Outdoor Commercial
and Residential Architectural
ΠAutomotive Ext (Stop Tail Turn,
CHMSL, Mirror Side Repeat)
ΠEdge lit signs (Exit, point of sale)
ΠLCD Backlights/Light Guides
Luxeon Emitter is available in white, green, blue, royal blue,
cyan, red, red orange and amber.

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LXHL-PL01 pdf
Optical Characteristics at 350mA, Junction Temperature, TJ = 25ºC
Table 2.
Radiation
Pattern
Color
Dominant Wavelength [1] λD,
Peak Wavelength [2] λP,
or Color Temperature [3]
CCT
Min. Typ.
Max.
Spectral
Half width[4]
(nm)
∆λ1/2
Temperature
Coefficient of
Dominant
Wavelength
(nm/oC)
∆λD/ TJ
Total
Included
Angle[5]
(degrees)
θ0.90V
Viewing
Angle[6]
(degrees)
2θ 1/2
Batwing
White
Warm White
Green
Cyan
Blue
Royal Blue[2]
Red
Red Orange
Amber
4500K
2850K
520 nm
490 nm
460 nm
440 nm
620.5 nm
613.5 nm
584.5 nm
5500 K
3300K
530 nm
505 nm
470 nm
455 nm
625 nm
617 nm
590 nm
10000 K
3800K
550 nm
520 nm
490 nm
460 nm
645 nm
620.5nm
597 nm
35
30
25
20
20
20
14
110 110
110 110
0.04 110 110
0.04 110 110
0.04 110 110
0.04 110 110
0.05 110 110
0.06 110 110
0.09 110 110
Lambertian
White
Green
Cyan
Blue
Royal Blue[2]
Red
Red Orange
Amber
4500 K
520 nm
490 nm
460 nm
440 nm
620.5 nm
613.5 nm
584.5 nm
5500 K
530 nm
505 nm
470 nm
455 nm
627 nm
617 nm
590 nm
10000 K
550 nm
520 nm
490 nm
460 nm
645 nm
620.5 nm
597 nm
35
30
25
20
20
20
14
160 140
0.04 160 140
0.04 160 140
0.04 160 140
0.04 160 140
0.05 160 140
0.06 160 140
0.09 160 140
Optical Characteristics at 350mA, Junction Temperature, TJ = 25ºC, Cont.
Table 3.
Radiation
Pattern
Color
Dominant Wavelength [1] λD,
Peak Wavelength [2] λP,
or Color Temperature [3]
CCT
Min. Typ.
Max.
Spectral
Half width[4]
(nm)
∆λ1/2
Temperature
Coefficient of
Dominant
Wavelength
(nm/oC)
∆λD/ TJ
Typical
Total Flux
Percent
within
first 45°[7]
Cum Φ45°
Typical
Angle
of Peak
Intensity [8]
θPeak
White
4500 K 5500 K 10000 K
<15%
75° 85°
Green
520 nm 530 nm
550 nm
35
0.04
<15%
75° 85°
Cyan
490 nm 505 nm
520 nm
30
0.04
<15%
75° 85°
Side Emitting Blue
460 nm 470 nm
490 nm
25
0.04
<15%
75° 85°
Royal Blue[2] 440 nm 455 nm
460 nm
20
0.04
<15%
75° 85°
Red
620.5 nm 627 nm
645 nm
20
0.05
<15%
75° 85°
Red Orange 613.5 nm 617 nm 620.5 nm
20
0.06
<15%
75° 85°
Amber
584.5 nm 590 nm
597 nm
14
0.09
<15%
75° 85°
Notes: (for Tables 2 & 3)
1. Dominant wavelength is derived from the CIE 1931 Chromaticity diagram and represents the perceived color. Lumileds
maintains a tolerance of ± 0.5nm for dominant wavelength measurements.
2. Royal Blue product is binned by radiometric power and peak wavelength rather than photometric lumens and dominant
wavelength. Lumileds maintains a tolerance of ± 2nm for peak wavelength measurements.
3. CCT ±5% tester tolerance.
4. Spectral width at ½ of the peak intensity.
5. Total angle at which 90% of total luminous flux is captured.
6. θ½ is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value.
7. Cumulative flux percent within ± 45° from optical axis.
8. Off axis angle from lamp centerline where the luminous intensity reaches the peak value.
Luxeon Emitter DS25 (4/05)
5

5 Page





LXHL-PL01 arduino
Forward Current Characteristics, TJ = 25ºC, Continued
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.
1.2
1
0.8
0.6
0.4
0.2
0
0 100 200 300 400
IF - Average Forw ard Current (mA)
Figure 4a. Relative Luminous Flux vs. Forward Current for White,
Warm White, Green, Cyan, Blue, and Royal Blue at TJ = 25ºC maintained.
1.2
1.0
0.8
0.6
0.4
0.2
0.0
0 100 200 300 400
IF - Average Forw ard Current (mA)
Figure 4b. Relative Luminous Flux vs. Forward Current
for Red, Red Orange and Amber at TJ = 25ºC maintained.
Luxeon Emitter DS25 (4/05)
11

11 Page







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