HLMP-CB18
T-1
3
/
4
(5 mm) Super Bright Precision
Optical Performance InGaN LED Lamps
Data Sheet
HLMP-CB18, HLMP-CB19, HLMP-CM18,
HLMP-CM19, HLMP-CE18, HLMP-CE19,
HLMP-CB28, HLMP-CB29, HLMP-CM28,
HLMP-CM29, HLMP-CE28, HLMP-CE29,
HLMP-CB38, HLMP-CB39, HLMP-CM38,
HLMP-CM39, HLMP-CE38, HLMP-CE39
Description
These Super Bright Precision Optical Performance
LED lamps are based on flip chip InGaN material,
which is the brightest and most efficient technology
for LEDs in the blue, green, and cyan region of the
spectrum. The 470 nm typical dominant wavelength
for blue and 530 nm typical wavelength for green is
well suited to color mixing in full color signs. The
500 nm typical dominant wavelength for cyan is
suitable for traffic signal application.
These LED lamps are untinted, non-diffused, T-1
3⁄4
packages incorporating second generation optics
producing well defined spatial radiation patterns at
specific viewing cone angles.
These lamps are made with an advanced optical
grade epoxy, offering superior temperature and
moisture resistance in outdoor signal and sign
applications. The high maximum LED junction
temperature limit of +130°C enables high tempera-
ture operation in bright sunlight conditions. The
package epoxy contains both UV-a and UV-b
inhibitors to reduce the effects of long-term
exposure to direct sunlight.
Features
• Well defined spatial radiation pattern
• High luminous output
• Available in blue green and cyan color
• Viewing angle: 15°, 23° and 30°
• Standoff or non-standoff leads
• Superior resistance to moisture
• New InGaN flip chip die technology with
protective diode
• ESD class 3
Applications
• Traffic signals
• Commercial outdoor advertising
• Front panel backlighting
• Front panel indicators
Ordering Information
HLMP - x x xx - x x x xx
Mechanical Option
00: Bulk
DD: Ammo pack
Color Bin Option
0: Full color bin distribution
Maximum Intensity Bin
0: No maximum intensity bin limit
Others: Refer to Device Selection Guide
Minimum Intensity Bin
Refer to Device Selection Guide
Viewing Angle and Standoff Option
18: 15° without standoff
19: 15° with standoff
28: 23° without standoff
29: 23° with standoff
38: 30° without standoff
39: 30° with standoff
Color
B: Blue 470 nm
M: Green 530 nm
E: Cyan 500 nm
Package
C: T-1
3
⁄4
(5 mm) Round Lamp
Absolute Maximum Ratings at T
A
= 25˚C
Parameter
DC Forward Current
[1]
Peak Pulsed Forward Current
[2]
Average Forward Current
Power Dissipation
LED Junction Temperature
Operating Temperature Range
Storage Temperature Range
TTW Soldering Temperature
[3]
Solder Dipping Temperature
[3]
Notes:
1. Derate linearly as shown in Figure 3.
2. Duty factor 30%, 1KHz.
3. 1.59 mm (0.060 inch) above seating plane.
Value
30
100
30
120
130
–40 to +85
–40 to +100
250 for 5 secs
260 for 5 secs
Unit
mA
mA
mA
mW
o
C
o
C
o
C
o
C
o
C
4
Electrical Characteristics at T
A
= 25˚C
Blue
Parameters
Forward Voltage
Capacitance
Viewing Angle
[1]
Cx18/Cx19
Cx28/Cx29
Cx38/Cx39
Reverse Voltage
[2]
Thermal
Resistance
Dominant
Wavelength
[3]
Peak Wavelength
Symbol
V
F
C
2θ
1/2
Min. Typ. Max.
3.4
53
15
23
30
0.6
240
460
470
466
480
520
4.0
Green
Min. Typ. Max.
3.2 4.0
53
15
23
30
0.6
240
530 540
523
490
Cyan
Min. Typ. Max. Units Test Condition
3.3
53
15
23
30
0.6
240
500
495
510
4.0
V
pF
Deg
I
F
= 20 mA
V
F
= 0, f = 1 MHz
I
F
= 20 mA
V
R
Rθ
J-PIN
λ
d
λ
PEAK
V
o
C/W
I
R
= 10
µA
LED Junction to
cathode lead
I
F
= 20 mA
Peak of wavelength
of spectral distribu-
tion at I
F
= 20 mA
Wavelength width at
spectral distribution
power point at
I
F
= 20 mA
nm
nm
Spectral Half
Width
∆λ
1/2
21
30
26
Luminous
Efficacy
[4]
η
v
62
588
220
lm/W Emitted luminous
power/Emitted
radiant power
Notes:
1. 2θ
1/2
is the off-axis angle where the luminous intensity is
1
⁄
2
the on axis intensity.
2. The reverse voltage of the product is equivalent to the forward voltage of the protective chip at I
R
= 10
µA.
3. The dominant wavelength,
λ
d
, is derived from the Chromaticy Diagram and represents the color pf the lamp.
4. The radiant intensity, Ie in watts/steradian, may be found from the equation Ie = Iv/η
v
, where Iv is the luminous intensity in candelas and
η
v
is the luminous efficacy in lumens/watt.
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