T-1
3
/
4
(5 mm) AlInGaP Lamps
Technical Data
HLMP-Cx08 Series
HLMP-Cx25 Series
HLMP-Cx27 Series
HLMP-C610
Features
•
•
•
•
High Intensity
General Purpose Leads
Popular 5 mm Diameter
Available in Bulk, Tape
and Reel, or Ammopack
• 8
°
or 25
°
Viewing Angles
• Choice of Colors:
Amber or Red
• Spoiler, Car Decorative
Lighting
• Motorcycle/Bicycle Warning
Lights
Description
The HLMP-Cx08, HLMP-Cx25,
HLMP-Cx27, and HLMP-C610
series are 5 mm lamps specially
designed for applications requir-
ing very high on-axis intensity
that is not achievable with a
standard lamp. These devices
are capable of producing light
output over a wide range of
drive currents.
Built using AlInGaP technology,
they are well suited for typical
5 mm TS-AlGaAs lamp applica-
Applications
Indoor/Outdoor Applications
Small Store-front Signs
Message Panels
Road Construction Barrier
Lights
• Center High Mount Stop
Lights
•
•
•
•
tions, and have significantly
SUPERIOR RELIABILITY than
most TS-AlGaAs lamps in wet/
hot environments. These lamps
come with clear non-diffused
lens and are optically designed
to yield superior light output.
Device Selection
Part Number
HLMP-C008-U00xx
HLMP-C208-S00xx
HLMP-C608-R00xx
HLMP-C610-R00xx
HLMP-C025-P00xx
HLMP-C225-O00xx
HLMP-C625-P00xx
HLMP-C027-P00xx
HLMP-C627-P00xx
Typical Viewing
Angle
[1]
(degrees),
Standoff
2
1
/
2
No
8
8
8
Yes
8
No
25
25
25
Yes
25
25
Luminous Intensity,
Iv (mcd) @ 20 mA
Min.
Typ.
2900.0
6000.0
2600.0
3000.0
1000.0
2000.0
1000.0
2000.0
500.0
1000.0
450.0
800.0
500.0
700.0
500.0
1000.0
500.0
700.0
Color
Red
Amber
Red
Red
Red
Amber
Red
Red
Red
Dominant
Wavelength
[2]
626
590
635
635
626
590
635
626
635
Notes:
1.
1
/
2
is the off-axis angle at which the luminous intensity is half of the axial luminous intensity.
2. The dominant wavelength,
d
, is derived from the CIE chromaticity diagram and represents the single wavelength which defines the
color of the device.
2
Package Dimensions
6.10 (0.240)
5.46 (0.215)
1.07 (0.042)
0.56 (0.022)
1.00 (0.040)
MAX. EPOXY
MENISCUS
1.32 (0.052)
1.02 (0.040)
0.45 SQ. NOM.
(0.018)
5.21 (0.205)
4.70 (0.105)
2.54 NOM.
(0.100)
13.50 (0.53)
13.30 (0.52)
25.40 MIN.
(1.000)
CATHODE
LEAD
1.27 MIN.
(0.050)
9.14 (0.360)
8.36 (0.330)
HLMP-Cx27
6.10 (0.240)
5.46 (0.215)
1.07 (0.042)
0.56 (0.022)
1.02 (0.004)
MAX. TYP.
0.45 SQ. NOM.
(0.018)
5.21 (0.205)
4.70 (0.105)
2.54 NOM.
(0.100)
CATHODE
LEAD
1.27 MIN.
(0.050)
25.40 MIN.
(1.000)
9.14 (0.360)
8.36 (0.330)
HLMP-Cx25
0.89 (0.035)
0.64 (0.023)
1.32 (0.052)
1.02 (0.040)
0.45 SQ. NOM.
(0.018)
6.10 (0.240)
5.46 (0.215)
5.08 (0.200)
4.57 (0.100)
2.54 NOM.
(0.100)
13.55 (0.533)
13.35 (0.525)
25.40 MIN.
(1.000)
CATHODE
LEAD
1.27 MIN.
(0.050)
9.19 (0.362)
8.43 (0.332)
HLMP-C610
6.10 (0.240)
5.46 (0.215)
0.89 (0.035)
0.64 (0.023)
1.02 (0.004)
MAX. TYP.
0.45 SQ. NOM.
(0.018)
5.08 (0.200)
4.57 (0.100)
2.54 NOM.
(0.100)
CATHODE
LEAD
1.27 MIN.
(0.050)
25.40 MIN.
(1.000)
9.19 (0.362)
8.43 (0.332)
HLMP-Cx08
3
Part Numbering System
HLMP - C x xx - x x x xx
Mechanical Option
00: Bulk
02: Tape & Reel, Straight Leads
DD: Ammo Pack
Color Bin Options
0: Full Color Bin Distribution
Maximum Iv Bin Options
0: Open (no max. limit)
Minimum Iv Bin Options
Please refer to the Iv Bin Table
Viewing Angle & Standoff Option
08: 8 degrees, without standoff
10: 8 degrees, with standoff
25: 25 degrees, without standoff
27: 25 degrees, with standoff
Color Options
0: AlInGaP Red 626 nm
2: AlInGaP Amber 590 nm
6: AlInGaP Red 635 nm
Absolute Maximum Ratings at T
A
=25
°
C
Parameter
Peak Forward Current
Average Forward Current
[1]
DC Current
[2]
Reverse Voltage (I
R
= 100
µA)
LED Junction Temperature
Operating Temperature
Storage Temperature
Lead Soldering Temperature
[1.59 mm (0.060 in.) below seating plane]
Absolute Maximum
70
30
50
5
110
-40 to +100
-40 to +120
260°C for 5 seconds
Units
mA
mA
mA
V
°C
°C
Notes:
1. See Figure 2 to establish pulsed operating conditions.
2. Derate linearly from 50°C at 0.5 mA/°C.
3. The transient peak current is the maximum non-recurring peak current that can be applied to the device without damaging
the LED die and wirebond. It is not recommended that this device be operated at peak currents above the Absolute Maximum
Peak Forward Current.
4
Optical/Electrical Characteristics at T
A
=25
°
C
Symbol
2θ
1
/
2
Parameter
Device
Included Angle Between Half HLMP-C008
Luminous Intensity Points
[1]
HLMP-C208
HLMP-C608
HLMP-C025
HLMP-C225
HLMP-C625
HLMP-C610
HLMP-C027
HLMP-C627
Dominant Wavelength
[2]
HLMP-C008
HLMP-C208
HLMP-C608
HLMP-C025
HLMP-C225
HLMP-C625
HLMP-C610
HLMP-C027
HLMP-C627
Peak Wavelength
HLMP-C008
HLMP-C208
HLMP-C608
HLMP-C025
HLMP-C225
HLMP-C625
HLMP-C610
HLMP-C027
HLMP-C627
Spectral Line Halfwidth
Speed of Response
Capacitance
Thermal Resistance
Forward Voltage
HLMP-C008
HLMP-C208
HLMP-C608
HLMP-C025
HLMP-C225
HLMP-C625
HLMP-C610
HLMP-C027
HLMP-C627
5.0
Min.
Typ.
[3]
8
8
8
25
25
25
8
25
25
626
590
635
626
590
635
635
626
635
635
594
650
635
594
650
650
635
650
17
20
40
260
1.9
1.9
1.9
1.9
1.9
1.9
1.9
1.9
1.9
2.4
2.6
2.6
2.4
2.6
2.6
2.6
2.4
2.6
Max.
Units
Deg.
Test
Conditions
I
F
= 20 mA
See Note 1
λ
d
nm
See Note 2
λ
PEAK
nm
Measurement
at Peak
λ
1
/
2
τ
s
C
Rθ
J-PIN
V
F
nm
ns
pF
°C/W
V
V
F
= 0;
f = 1 MHz
Junction to
Cathode Lead
I
F
= 20 mA
V
R
Reverse Breakdown Voltage
V
I
R
= 100
µA
Notes:
1.
θ
1
/
2
is the off-axis angle at which the luminous intensity is half of the axial luminous intensity.
2. The dominant wavelength,
λ
d
, is derived from the CIE chromaticity diagram and represents the single wavelength which defines the
color of the device.
3. Typical specification for reference only. Do not exceed absolute maximum ratings.
5
1.0
C208
C225
C008
C025
C027
C608
C625
C627
C610
RELATIVE INTENSITY
0.5
0
550
600
WAVELENGTH – nm
650
700
Figure 1. Relative Intensity vs. Wavelength.
RATIO OF MAXIMUM TOLERABLE
PEAK CURRENT TO MAXIMUM
TOLERABLE DC CURRENT
6
5
4
CURRENT – mA
60
50
40
RED
30
20
10
AMBER
3
300
100
100
z
1 KH
z
3 KH
Hz
10 K
Hz
30 K
2
Hz
Hz
KHz
I
PEAK
– MAX.
I
DC
– MAX.
1
1.0
10
100
1000
10,000
0
1.0
1.5
2.0
2.5
3.0
tp – PULSE DURATION – µs
V
F
– FORWARD VOLTAGE – V
Figure 2. Maximum Tolerable Peak
Current vs. Pulse Duration.
Figure 3. Forward Current vs.
Forward Voltage.
3.0
RELATIVE LUMINOUS INTENSITY
(NORMALIZED AT 20 mA)
60
FORWARD CURRENT (mA)
2.5
2.0
1.5
1.0
0.5
0
40
Rθ
J-A
= 780°C/W
20
0
20
40
60
0
0
20
40
60
80
100
120
I
F
– DC FORWARD CURRENT – mA
AMBIENT TEMPERATURE (°C)
Figure 4. Relative Luminous Intensity
vs. Forward Current.
Figure 5. Maximum Forward DC
Current vs. Ambient Temperature.