HLMP-RB11-D00DD [ETC]

HLMP-RB11 4mm Oval Precision Optical Performance Best Value InGaN LED Lamps ; HLMP- RB11 4mm椭圆精密光学性能最佳价值的InGaN LED灯
HLMP-RB11-D00DD
型号: HLMP-RB11-D00DD
厂家: ETC    ETC
描述:

HLMP-RB11 4mm Oval Precision Optical Performance Best Value InGaN LED Lamps
HLMP- RB11 4mm椭圆精密光学性能最佳价值的InGaN LED灯

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Agilent HLMP-SL11, HLMP-RL11,  
HLMP-SD11, HLMP-RD11, HLMP-RB11,  
HLMP-RM11 4 mm Oval Precision  
Optical Performance Best Value  
AlInGaP and InGaN Lamps  
Data Sheet  
Features  
Well-defined spatial radiation  
pattern  
Viewing angles:  
Major axis 120˚  
Minor axis 60˚  
High luminous output  
AlInGaP II (brightest) intensity  
level  
High efficiency LED materials are  
used in these lamps: Higher  
performance of Aluminum Indium  
Gallium Phosphide (AlInGaP II)  
for Red and Amber color and  
Indium Gallium Nitride (InGaN)  
for Blue and Green. Each lamp is  
made with an advanced optical  
grade epoxy offering superior  
high temperature and high  
moisture resistance in outdoor  
applications. The package epoxy  
contains both UV-A and UV-B  
inhibitors to reduce the effects of  
long term exposure to direct  
sunlight.  
Description  
These Precision Optical  
Performance Oval LEDs are  
Colors:  
472 nm blue  
526 nm green  
630 nm red  
592 nm amber  
specifically designed for Full Color/  
Video and Passenger Information  
signs. The Oval shaped radiation  
pattern (60˚ x 120˚) and high  
luminous intensity ensure that these  
devices are excellent for wide field  
of view outdoor applications where  
a wide viewing angle and readability  
in sunlight are essential. These  
lamps have very smooth, matched  
radiation patterns ensuring  
Superior resistance to moisture  
UV resistant epoxy  
Benefits  
Viewing angle designed for wide  
field of view applicaion  
Superior performance in outdoor  
environments  
consistent color mixing in full color  
applications, message uniformity  
across the viewing angle of the sign.  
Applications  
Full color signs  
Designers can select parallel or  
perpendicular orientation. Both  
lamps are available in tinted  
version.  
CAUTION: The Blue and Green LEDs are Class 1 ESD sensitive. Please observe appropriate precautions  
during handling and processing. Refer to Agilent Application Note AN-1142 for additional details.  
Selection Guide for AlInGaP II  
Color and  
Luminous  
Intensity,  
Dominant  
Wavelength λ  
(nm) Typ.  
I (mcd)  
Leads with  
Stand-Offs  
Leadframe  
Orientation  
Package  
Drawing  
d
v
Part Number  
Min.  
155  
155  
205  
205  
HLMP-SL11-H0000  
HLMP-RL11-H0000  
HLMP-SD11-J0000  
HLMP-RD11-J0000  
Amber 592  
Amber 592  
Red 630  
Yes  
Yes  
Yes  
Yes  
Perpendicular  
Parallel  
A
B
A
B
Perpendicular  
Parallel  
Red 630  
Selection Guide for InGaN  
Color and  
Dominant  
Wavelength λ  
(nm) Typ.  
Luminous  
Intensity,  
I (mcd)  
Leads with  
Stand-Offs  
Leadframe  
Orientation  
Package  
Drawing  
d
v
Part Number  
Min.  
HLMP-RB11-D0000  
HLMP-RB11-H0000  
HLMP-RM11-H0000  
HLMP-RM11-M0000  
Blue 472  
Blue 472  
Green 526  
Green 526  
55  
Yes  
Yes  
Yes  
Yes  
Parallel  
Parallel  
Parallel  
Parallel  
B
B
B
B
155  
155  
450  
Package Dimensions  
21.00  
MIN.  
(0.827)  
9.50 ± 0.50  
(0.374 ± 0.020)  
1.00  
(0.039)  
MIN.  
A
6.30 ± 0.20  
(0.248 ± 0.008)  
CATHODE  
LEAD  
1.25 ± 0.20  
(0.049 ± 0.008)  
4.0 ± 0.20  
(0.157 ± 0.008)  
0.44 ± 0.20  
(0.017 ± 0.008)  
2.54 ± 0.30  
(0.100 ± 0.012)  
0.80  
(0.016)  
+0.10  
+0.10  
–0.04  
MAX. EPOXY MENISCUS  
0.40  
–0  
0.45  
+0.004  
–0.000)  
+0.004  
–0.002)  
(0.016  
(0.018  
21.00  
MIN.  
(0.827)  
9.50 ± 0.50  
(0.374 ± 0.020)  
1.00  
MIN.  
(0.039)  
B
6.30 ± 0.20  
(0.248 ± 0.008)  
CATHODE  
LEAD  
1.25 ± 0.20  
(0.049 ± 0.008)  
4.0 ± 0.20  
(0.157 ± 0.008)  
0.44 ± 0.20  
(0.017 ± 0.008)  
2.54 ± 0.30  
(0.100 ± 0.012)  
0.80  
(0.016)  
+0.10  
+0.10  
–0.04  
MAX. EPOXY MENISCUS  
0.40  
–0  
0.45  
+0.004  
–0.000)  
+0.004  
–0.002)  
(0.016  
(0.018  
DIMENSIONS ARE IN MILLIMETERS (INCHES).  
2
Absolute Maximum Ratings at T = 25˚C  
A
Parameter  
Blue and Green  
30 mA  
Red and Amber  
50 mA  
[1]  
DC Forward Current  
Peak Pulsed Forward Current  
Average Forward Current  
100 mA  
100 mA  
30 mA  
30 mA  
Reverse Voltage (I = 100 µA)  
5 V  
5 V  
R
Power Dissipation  
120 mW  
120 mW  
LED Junction Temperature  
Operating Temperature Range  
Storage Temperature Range  
Soldering Temperature  
100˚C  
110˚C  
–40˚C to +80˚C  
–40˚C to +100˚C  
260˚C for 5 sec.  
–40˚C to +100˚C  
–40˚C to +120˚C  
260˚C for 5 sec.  
Note:  
1. Derate linearly as shown in Figure 6 and 7.  
Electrical/Optical Characteristics at T = 25˚C  
A
Parameter  
Symbol  
Min.  
Typ.  
Max.  
Units  
Test Conditions  
Typical Viewing Angle  
Major  
Minor  
2θ  
120  
60  
deg  
1/2  
Forward Voltage  
V
F
I = 20 mA  
F
Amber (λ = 592 nm)  
2.15  
2.00  
3.5  
2.60  
V
d
Red (λ = 630 nm)  
d
Blue (λ = 472 nm)  
4.0  
4.0  
d
Green (λ = 526 nm)  
3.5  
d
Reverse Voltage  
Amber, Red  
Blue, Green  
V
R
5
5
20  
V
I = 100 µA  
R
I = 10 µA  
R
Peak Wavelength  
Peak of Wavelength  
of Spectral Distribution  
Amber (λ = 592 nm)  
λ
594  
639  
470  
524  
nm  
d
peak  
Red (λ = 630 nm)  
at I = 20 mA  
d
F
Blue (λ = 472 nm)  
d
Green (λ = 526 nm)  
d
Spectral Halfwidth  
Wavelength Width  
at Spectral Distribution  
1/2 Power Point at  
Amber (λ = 592 nm)  
∆λ  
17  
17  
35  
47  
nm  
d
1/2  
Red (λ = 630 nm)  
d
Blue (λ = 472 nm)  
I = 20 mA  
F
d
Green (λ = 526 nm)  
d
Capacitance  
Amber, Red  
Blue, Green  
V = 0, F = 1 MHz  
F
C
40  
43  
pF  
Luminous Efficacy  
Emitted Luminous  
Power/Emitted Radiant  
Amber (λ = 592 nm)  
η
500  
155  
75  
lm/W  
d
v
Red (λ = 630 nm)  
Power at I = 20 mA  
d
F
Blue (λ = 472 nm)  
d
Green (λ = 526 nm)  
520  
d
Thermal Resistance  
Rθ  
240  
˚C/W  
LED Junction-to-Cathode  
Lead  
J-PIN  
Notes:  
1. 2θ is the off-axis angle where the luminous intensity is 1/2 the on-axis intensity.  
1/2  
2. The radiant intensity, I in watts per steradian, may be found from the equation I = I /η where I is the luminous intensity in candelas and η is  
e
e
v
v
v
v
the luminous efficacy in lumens/watt.  
3. The luminous intensity is measured on the mechanical axis of the lamp package.  
4. The optical axis is closely aligned with the package mechanical axis.  
5. The dominant wavelength λ is derived from the CIE Chromaticity Diagram and represents the color of the lamp.  
d
3
50  
40  
30  
20  
10  
0
1.0  
BLUE  
GREEN  
AMBER  
RED  
RED  
0.5  
AMBER  
2.5  
0
1.0  
1.5  
2.0  
3.0  
400  
450  
500  
550  
WAVELENGTH – nm  
600  
650  
700  
V
– FORWARD VOLTAGE – V  
F
Figure 1. Relative intensity vs. wavelength.  
Figure 2. Amber, red forward current vs.  
forward voltage.  
35  
30  
25  
20  
15  
10  
5
2.5  
1.5  
1.0  
2.0  
1.5  
1.0  
0.5  
0
0.5  
0
0
2.0  
2.4  
2.8  
3.2  
3.6  
4.0  
0
10  
20  
30  
40  
50  
0
5
10  
I – FORWARD CURRENT – mA  
F
15  
20  
25  
30  
V
– FORWARD VOLTAGE – V  
I
– FORWARD CURRENT – mA  
F
F
Figure 3. Blue, green forward current vs.  
forward voltage.  
Figure 4. Amber, red relative luminous  
intensity vs. forward current.  
Figure 5. Blue, green relative luminous  
intensity vs. forward current.  
60  
50  
40  
35  
30  
25  
Rθ  
= 585°C/W  
J-A  
20  
Rθ  
Rθ  
= 585°C/W  
= 780°C/W  
J-A  
J-A  
30  
20  
15  
10  
10  
0
5
0
0
20  
40  
60  
80  
100  
0
20  
40  
60  
80  
100 120  
T
– AMBIENT TEMPERATURE – °C  
T
– AMBIENT TEMPERATURE – °C  
A
A
Figure 6. Amber, red maximum forward  
current vs. ambient temperature.  
Figure 7. Blue, green maximum forward  
current vs. ambient temperature.  
4
1.0  
0.8  
0.6  
0.4  
0.2  
0
-90  
-75  
-60  
-45  
-30  
-15  
0
15  
30  
45  
60  
75  
90  
ANGULAR DISPLACEMENT – DEGREES  
Figure 8a. Representative spatial radiation pattern for major axis.  
1.0  
0.8  
0.6  
0.4  
0.2  
0
-90  
-75  
-60  
-45  
-30  
-15  
0
15  
30  
45  
60  
75  
90  
ANGULAR DISPLACEMENT – DEGREES  
Figure 8b. Representative spatial radiation pattern for minor axis.  
5
Intensity Bin Limits (mcd at 20 mA)  
Bin Name  
Min.  
65  
Max.  
85  
Bin Name  
Min.  
240  
310  
400  
520  
Max.  
310  
D
E
J
85  
110  
140  
180  
240  
K
L
400  
F
110  
140  
180  
520  
G
H
M
680  
Tolerance for each bin limit is ± 15%.  
Note:  
1. Bin categories are established for classification of products. Products may not be available in  
all bin categories.  
Color Bin Limits (nm at 20 mA)  
Blue  
Color Range (nm)  
Bin ID  
Min.  
460.0  
464.0  
468.0  
472.0  
476.0  
Max.  
464.0  
468.0  
472.0  
476.0  
480.0  
1
2
3
4
5
Tolerance for each bin limit is ± 2 nm.  
Green  
Color Range (nm)  
Bin ID  
Min.  
520.0  
524.0  
528.0  
532.0  
536.0  
Max.  
524.0  
528.0  
532.0  
536.0  
540.0  
1
2
3
4
5
Tolerance for each bin limit is ± 0.5 nm.  
Amber  
Color Range (nm)  
Bin ID  
Min.  
584.5  
587.0  
589.5  
592.0  
Max.  
587.0  
589.5  
592.0  
594.5  
1
2
4
6
Tolerance for each bin limit is ± 0.5 nm.  
Note:  
1. All bin categories are established for  
classification of products. Products may not be  
available in all bin categories. Please contact  
your Agilent representatives for further  
information.  
6
www.agilent.com/semiconductors  
For product information and a complete list of  
distributors, please go to our web site.  
For technical assistance call:  
Americas/Canada: +1 (800) 235-0312 or  
(408) 654-8675  
Europe: +49 (0) 6441 92460  
China: 10800 650 0017  
Hong Kong: (+65) 6271 2451  
India, Australia, New Zealand: (+65) 6271 2394  
Japan: (+81 3) 3335-8152(Domestic/Interna-  
tional), or 0120-61-1280(Domestic Only)  
Korea: (+65) 6271 2194  
Malaysia, Singapore: (+65) 6271 2054  
Taiwan: (+65) 6271 2654  
Data subject to change.  
Copyright © 2002 Agilent Technologies, Inc.  
Obsoletes 5988-3135EN  
July 19, 2002  
5988-7311EN  

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