DS47 LUMILEDS [Lumileds Lighting Company], DS47 Datasheet - Page 6

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DS47

Manufacturer Part Number
DS47
Description
Manufacturer
LUMILEDS [Lumileds Lighting Company]
Datasheet

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Notes for Table 4:
Notes for Table 5:
Notes for Table 6:
LUXEON Warm White Emitter & Star DS47 (7/06)
1.
2.
3.
1.
2.
3.
4.
1.
2.
3.
P P a a r r t t N N u u m m b b e e r r
LXHL BW03
Electrical Characteristics at 350mA, Junction Temperature, T
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.
The efficiency of collimating optics is approximately 85%.
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.
Total angle at which 90% of total luminous flux is captured.
θ½ is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value.
Typical Candela value listed for collimated Star/O product only.
All products built with Indium Gallium Nitride (InGaN).
Philips Lumileds maintains a tolerance of ± 0.06V on forward voltage measurements.
Dynamic resistance is the inverse of the slope in linear forward voltage model for LEDs. See Figures 3a and 3b.
Measured between 25°C ≤ T
Optical Characteristics at 350mA, Junction Temperature, T
LXHL MWEC
LXHL MW1D
LXHL MWEA
LXHL MW1B
LXHL BW02
LXHL PW01
LXHL DW01
LXHL FW1C
LXHL NWE8
LXHL MWGC
LXHL NWG8
P P a a r r t t N N u u m m b b e e r r
P P a a r r t t N N u u m m b b e e r r
LXHL BW03
Flux Characteristics of 5500K LUXEON at 350mA,
[1]
[1]
[1]
[1]
[1]
[1]
[1]
[1]
[1]
2.79
M M i i n n . .
F F o o r r w w a a r r d d V V o o l l t t a a g g e e V V
C C o o n n f f i i g g u u r r a a t t i i o o n n
T T e e m m p p e e r r a a t t u u r r e e
5500 K
5500 K
5500 K
5500 K
5500 K
5500 K
5500 K
5500 K
5500 K
Emitter
Star/O
C C o o l l o o r r
T T y y p p . .
3.42
Star
J
( ( V V ) )
≤ 110°C at I
Junction Temperature, T
M M a a x x . .
3.99
F F
[ [ 1 1 ] ]
F
= 350mA.
A A n n g g l l e e
T T o o t t a a l l I I n n c c l l u u d d e e d d
C C o o n n f f i i g g u u r r a a t t i i o o n n
R R e e s s i i s s t t a a n n c c e e
D D y y n n a a m m i i c c
Star/O
Table 4.
Emitter
Emitter
Emitter
Table 5.
Table 6.
Star/C
( ( Ω Ω ) ) R R
Star/C
θ θ
Star
Star
Star
110
110
[ [ 1 1 ] ]
0 0 . . 9 9 0 0 V V
1.0
25
6
( ( d d e e g g r r e e e e ) )
D D
[2]
[ [ 2 2 ] ]
T T e e m m p p e e r r a a t t u u r r e e 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 F F o o r r w w a a r r d d V V o o l l t t a a g g e e
J
V V i i e e w w i i n n g g A A n n g g l l e e
= 25ºC
Side Emitting
Side Emitting
Lambertian
Lambertian
Lambertian
Collimated
Δ Δ V V
R R a a d d i i a a t t i i o o n n
Batwing
Batwing
Batwing
( ( d d e e g g r r e e e e ) )
P P a a t t t t e e r r n n
( ( m m V V / / º º C C ) )
2 2 θ θ 1 1 / / 2 2
110
110
F F
10
2.0
/ / Δ Δ T T
J J
[ [ 2 2 ] ]
[ [ 3 3 ] ]
T T y y p p i i c c a a l l L L u u m m i i n n o o u u s s
T T y y p p i i c c a a l l C C a a n n d d e e l l a a
T T h h e e r r m m a a l l R R e e s s i i s s t t a a n n c c e e , ,
o o n n A A x x i i s s
F F l l u u x x ( ( l l m m ) )
J J u u n n c c t t i i o o n n t t o o C C a a s s e e
J
40.5
40.5
Φ Φ
( ( c c d d ) )
N/A
N/A
200
( ( º º C C / / W W ) ) R R θ θ
45
45
45
45
38
45
45
J
V
= 25ºC
[2]
= 25ºC
15
[ [ 3 3 ] ]
J J C C

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