HLMP-HG63, HLMP-HM63, HLMP-HB63
Precision Optical Performance Red, Green and Blue
New 5mm Standard Oval LEDs
Data Sheet
Description
These Precision Optical Performance Oval LEDs are spe-
cifically designed for full color/video and passenger infor-
mation signs. The oval shaped radiation pattern 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.
The package epoxy contains both UV-A and UV-B inhibi-
tors to reduce the effects of long term exposure to direct
sunlight.
Features
•
Well defined spatial radiation pattern
•
High brightness material
•
Available in red, green and blue color.
Red
AlInGaP 626nm
Green InGaN
525nm
Blue
InGaN
470nm
•
Superior resistance to moisture
•
Standoff Package
•
Tinted and diffused
•
Typical viewing angle 40° x100°
Applications
•
Full color signs
Package Dimensions
Notes:
All dimensions in millimeters (inches).
Tolerance is ± 0.20mm unless other specified
Caution:
InGaN devices are Class 1C HBM ESD sensitive per JEDEC Standard. Please observe appropriate
precautions during handling and processing. Refer to Application Note AN-1142 for additional details.
Device Selection Guide
Part Number
HLMP-HG63-TX0xx
HLMP-HM63-Y30xx
HLMP-HB63-QU0xx
Color and Dominant
Wavelength
ld
(nm) Typ
Red 626
Green 525
Blue 470
Luminous Intensity Iv
(mcd) at 20 mA-Min
800
1990
460
Luminous Intensity Iv
(mcd) at 20 mA-Max
1990
5040
1150
Tolerance for each intensity limit is ± 15%.
Notes:
1. The luminous intensity is measured on the mechanical axis of the lamp package.
Part Numbering System
HLMP- H x 63 – x x x x x
Packaging Option
ZZ: Flexi Ammopacks
DD: Ammopack
Color Bin Selection
0: Open distribution
Maximum Intensity Bin
Refer to Device Selection Guide
Minimum Intensity Bin
Refer to Device Selection Guide.
Color
B: Blue 470
G: Red 626
M: Green 525
Package
H: 5mm Standard Oval 40° x100°
Note: Please refer to AB 5337 for complete information about part numbering system.
Absolute Maximum Ratings, T
A
= 25°C
Parameter
DC Forward Current
[1]
Peak Forward Current
Power Dissipation
Reverse Voltage
LED Junction Temperature
Operating Temperature Range
Storage Temperature Range
Red
50
100
[2]
120
5 (I
R
= 100 μA)
130
-40 to +100
-40 to +100
Blue and Green
30
100
[3, 4]
111
5 (I
R
= 10 μA)
110
-40 to +85
-40 to +100
Unit
mA
mA
mW
V
°C
°C
°C
Notes:
1. Derate linearly as shown in Figure 4 and Figure 8.
2. Duty Factor 30%, frequency 1kHz.
3. Duty Factor 10%, frequency 1KHz.
4. For long term performance with minimal light output degradation, drive current below 15mA is recommended for Blue LED.
Electrical / Optical Characteristics, T
A
= 25°C
Parameter
Forward Voltage
Red
Green
Blue
Reverse Voltage
Red
Green & blue
Dominant Wavelength
[1]
Red
Green
Blue
Peak Wavelength
Red
Green
Blue
Thermal Resistance
Luminous Efficacy
[2]
Red
Green
Blue
Luminous Flux
Red
Green
Blue
Luminous Efficiency
[3]
Red
Green
Blue
Symbol
Min.
1.8
2.7
2.7
5
5
620
520
460
Typ.
2.1
3.2
3.2
Max.
2.4
3.7
3.7
Units
Test Conditions
V
F
V
I
F
= 20 mA
V
R
V
I
R
= 100
mA
I
R
= 10
mA
626
525
470
634
516
464
240
150
530
65
1700
3700
990
40
60
16
630
540
480
I
F
= 20 mA
l
PEAK
Rq
J-PIN
nm
°C/W
Peak of Wavelength of Spectral
Distribution at I
F
= 20 mA
LED Junction-to pin
Emitted Luminous Power/
Emitted
Radiant Power
I
F
= 20 mA
h
V
lm/W
j
V
mlm
h
e
lm/W
Luminous Flux/Electrical Power
I
F
= 20 mA
Notes:
1. The dominant wavelength is derived from the chromaticity Diagram and represents the color of the lamp
2. The radiant intensity, Ie in watts per steradian, may be found from the equation Ie = I
V
/h
V
where IV is the luminous intensity in candelas and
h
V
is
the luminous efficacy in lumens/watt.
3.
h
e
=
j
V
/ I
F
x V
F
, where
j
V
is the emitted luminous flux, I
F
is electrical forward current and V
F
is the forward voltage.
AlInGaP Red
1.0
0.8
0.6
0.4
0.2
0.0
550
FORWARD CURRENT - mA
600
650
700
RELATIVE INTENSITY
50
40
30
20
10
0
0
1
2
3
WAVELENGTH - nm
FORWARD VOLTAGE - V
Figure 1. Relative Intensity vs Wavelength
2.5
RELATIVE LUMINOUS INTENSITY
(NORMALIZED AT 20 mA)
2
1.5
1
0.5
0
Figure 2. Maximum Forward Current vs Ambient Temperature
55
50
I
F
- FORWARD CURRENT - mA
45
40
35
30
25
20
15
10
5
0
0
10
20
30
40
50
0
20
DC FORWARD CURRENT - mA
40
60
80
100
T
A
- AMBIENT TEMPERATURE - ºC
120
Figure 3. Forward Current vs Forward Voltage
Figure 4. Relative Intensity vs Forward Current
InGaN Blue and Green
1.0
0.9
0.8
RELATIVE INTENSITY
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0.0
380
430
480
530
WAVELENGTH - nm
580
630
FORWARD CURRENT - mA
Blue
Green
35
30
25
20
15
10
5
0
0
1
2
3
FORWARD VOLTAGE - V
4
Figure 5. Relative Intensity vs Wavelength
1.6
1.2
1
0.8
0.6
0.4
0.2
0
0
5
Blue
10
15
20
25
FORWARD CURRENT - mA
30
Green
Figure 6. Forward Current vs Forward Voltage
35
I
F max.
- MAXIMUM FORWARD
CURRENT - mA
30
25
20
15
10
5
0
0
20
40
60
80
100
T
A
- AMBIENT TEMPERATURE - ˚C
RELATIVE LUMINOUS INTENSITY
- NORMALIZED AT 20mA
1.4
Figure 7. Relative Intensity vs Forward Current
Figure 8. Maximum Forward Current vs Ambient Temperature
DOMINANT WAVELENGTH SHIFT- nm
7
6
5
4
3
2
1
0
-1
-2
-3
FORWARD CURRENT - mA
0
5
10
15
20
25
30
35
Green
Blue
Figure 9. Relative dominant wavelength vs Forward Current
5