LXHL-BM01 LUMILEDS, LXHL-BM01 Datasheet - Page 5

LED, HIGH BRIGHTNESS, GREEN, 1W, 53LM

LXHL-BM01

Manufacturer Part Number
LXHL-BM01
Description
LED, HIGH BRIGHTNESS, GREEN, 1W, 53LM
Manufacturer
LUMILEDS
Series
LUXEONr
Datasheet

Specifications of LXHL-BM01

Led Color
Green
Luminous Flux @ Test
53lm
Wavelength Typ
550nm
Luminous Flux @ Max
53lm
Forward Current @ Test
350mA
Forward Current If Max
350mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LXHL-BM01
Manufacturer:
LUMILEDS
Quantity:
40 000
Batwing
Lambertian
Side Emitting
Notes: (for Tables 2 & 3)
LUXEON Emitter DS25 (5/07)
R R a a d d i i a a t t i i o o n n
P P a a t t t t e e r r n n
R R a a d d i i a a t t i i o o n n
P P a a t t t t e e r r n n
1. Dominant wavelength is derived from the CIE 1931 Chromaticity diagram and represents the perceived color.
2. Royal Blue product is binned by radiometric power and peak wavelength rather than photometric lumens and dominant
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.
Optical Characteristics at 350mA, Junction Temperature, T
Philips Lumileds maintains a tolerance of ± 0.5nm for dominant wavelength measurements.
wavelength. Philips Lumileds maintains a tolerance of ± 2nm for peak wavelength measurements.
Optical Characteristics at 350mA, Junction Temperature, T
Warm White
Red Orange
Red Orange
Red Orange
Royal Blue
Royal Blue
Royal Blue
Amber
Amber
Amber
Green
Green
Green
White
White
White
C C o o l l o o r r
Cyan
Cyan
C C o o l l o o r r
Cyan
Blue
Blue
Blue
Red
Red
Red
[2]
[2]
[2]
620.5 nm
613.5 nm
584.5 nm
620.5 nm
613.5 nm
584.5 nm
620.5 nm
613.5 nm
584.5 nm
520 nm
490 nm
460 nm
440 nm
520 nm
490 nm
460 nm
440 nm
520 nm
490 nm
460 nm
440 nm
4500 K
4500 K
4500K
2850K
M M i i n n . .
M M i i n n . .
D D o o m m i i n n a a n n t t W W a a v v e e l l e e n n g g t t h h
D D o o m m i i n n a a n n t t W W a a v v e e l l e e n n g g t t h h
P P e e a a k k W W a a v v e e l l e e n n g g t t h h
o o r r C C o o l l o o r r T T e e m m p p e e r r a a t t u u r r e e
P P e e a a k k W W a a v v e e l l e e n n g g t t h h
o o r r C C o o l l o o r r T T e e m m p p e e r r a a t t u u r r e e
530 nm
505 nm
470 nm
455 nm
625 nm
617 nm
590 nm
530 nm
505 nm
470 nm
455 nm
627 nm
617 nm
590 nm
530 nm
505 nm
470 nm
455 nm
627 nm
617 nm
590 nm
5500 K
5500 K
5500 K
3300K
C C C C T T
T T y y p p . .
C C C C T T
T T y y p p . .
[2]
[2]
620.5 nm
620.5 nm
620.5nm
10000 K
10000 K
10000 K
[1]
[1]
550 nm
520 nm
490 nm
460 nm
645 nm
597 nm
550 nm
520 nm
490 nm
460 nm
645 nm
597 nm
550 nm
520 nm
490 nm
460 nm
645 nm
597 nm
λ λ P P , ,
λ λ P P , ,
3800K
M M a a x x . .
M M a a x x . .
[3]
[3]
λ λ D D , ,
λ λ D D , ,
Table 2.
Table 3.
5
H H a a l l f f w w i i d d t t h h
H H a a l l f f w w i i d d t t h h
S S p p e e c c t t r r a a l l
S S p p e e c c t t r r a a l l
Δ Δ λ λ
Δ Δ λ λ
( ( n n m m ) )
( ( n n m m ) )
35
30
25
20
20
20
14
35
30
25
20
20
20
14
35
30
25
20
20
20
14
1 1 / / 2 2
1 1 / / 2 2
[4]
[4]
C C o o e e f f f f i i c c i i e e n n t t o o f f
C C o o e e f f f f i i c c i i e e n n t t o o f f
T T e e m m p p e e r r a a t t u u r r e e
T T e e m m p p e e r r a a t t u u r r e e
W W a a v v e e l l e e n n g g t t h h
W W a a v v e e l l e e n n g g t t h h
D D o o m m i i n n a a n n t t
D D o o m m i i n n a a n n t t
Δ Δ λ λ
Δ Δ λ λ
( ( n n m m / /
( ( n n m m / /
0.04
0.04
0.04
0.04
0.05
0.06
0.09
0.04
0.04
0.04
0.04
0.05
0.06
0.09
0.04
0.04
0.04
0.04
0.05
0.06
0.09
D D
D D
/ / Δ Δ T T
/ / Δ Δ T T
o o
o o
C C ) )
C C ) )
J J
J J
J
T T o o t t a a l l F F l l u u x x
C C u u m m Φ Φ
( ( d d e e g g r r e e e e s s ) )
f f i i r r s s t t 4 4 5 5 ° °
I I n n c c l l u u d d e e d d
P P e e r r c c e e n n t t
A A n n g g l l e e
T T y y p p i i c c a a l l
<15%
<15%
<15%
<15%
<15%
<15%
<15%
<15%
w w i i t t h h i i n n
θ θ
T T o o t t a a l l
= 25ºC, Cont.
110
110
110
110
110
110
110
110
110
160
160
160
160
160
160
160
160
0 0 . . 9 9 0 0 V V
J
[5]
4 4 5 5 ° °
= 25ºC
[7]
I I n n t t e e n n s s i i t t y y
( ( d d e e g g r r e e e e s s ) )
75° 85°
75° 85°
75° 85°
75° 85°
75° 85°
75° 85°
75° 85°
75° 85°
V V i i e e w w i i n n g g
o o f f P P e e a a k k
A A n n g g l l e e
T T y y p p i i c c a a l l
2 2 θ θ 1 1 / / 2 2
A A n n g g l l e e
θ θ
110
110
110
110
110
110
110
110
110
140
140
140
140
140
140
140
140
P P e e a a k k
[6]
[8]

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