H
T-1
3
/
4
Super Ultra-Bright
LED Lamps
Technical Data
HLMP-8115
HLMP-8205
HLMP-8305
HLMP-8405
HLMP-8505
HLMP-8605
HLMP-8109
HLMP-8209
HLMP-8309
HLMP-8409
HLMP-8509
Features
• Very High Intensity
• Narrow and Medium Viewing
Angles
• Untinted, Nondiffused Lens
• Choice of Five Colors
• Sturdy Leads with Seating
Plane Tabs
Description
These untinted, nondiffused solid
state lamps are designed with
special internal optics to give a
very high luminous intensity
within a well defined viewing
angle. The LED materials used
within these devices is specifically
grown to assure the high light
output performance these lamps
provide.
Device Selection Guide
LED Color
DH AS AlGaAs
High Efficiency Red
Yellow
Orange
High Performance Green
Emerald Green
Part Number
HLMP-8115
HLMP-8109
HLMP-8205
HLMP-8209
HLMP-8305
HLMP-8309
HLMP-8405
HLMP-8409
HLMP-8505
HLMP-8509
HLMP-8605
Typical Luminous Intensity
(mcd @ 20 mA dc)
1000
500
350
260
350
260
350
260
400
300
75
2θ
1
/
2
Viewing Angle
10°
20°
10°
20°
10°
20°
10°
20°
10°
20°
10°
2
Package Dimensions
Absolute Maximum Ratings at T
A
= 25
°
C
DH AS
AlGaAs
Red
30
300
20
500
5
110
-20 to +100
High
Efficiency Red
and Orange
30
90
25
500
5
110
-55 to +100
-55 to +100
260°C for 5 seconds
High
Performance
Green/Emerald Green
30
90
25
500
5
110
-20 to +100
Parameter
DC Forward Current
[1]
Peak Forward Current
[2]
Average Forward Current
[2]
Transient Forward Current
[3]
(10
µs
Pulse)
Reverse Voltage (I
R
= 100
µA)
LED Junction Temperature
Operating Temperature Range
Storage Temperature Range
Lead Soldering Temperature
[1.6 mm (0.063 in.) from body]
Yellow
20
60
20
500
5
110
Units
mA
mA
mA
mA
V
°C
°C
°C
Notes:
1. See Figure 5 for maximum current derating vs. ambient temperature.
2. See Figure 6 for maximum peak current vs. pulse duration and allowable duty factor.
3. The transient peak current is the maximum non-recurring peak current the device can withstand without damaging the LED die and
wire bond. Do not operate these lamps at peak currents above the Absolute Maximum Peak Forward Current.
3
Electrical/Optical Characteristics T
A
= 25
°
C
DH AS AlGaAs HLMP-8115/8109
Parameter
Luminous Intensity
HLMP-8115
HLMP-8109
Forward Voltage
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points
HLMP-8115
HLMP-8109
Total Luminous Flux
Peak Wavelength
Dominant Wavelength
[1]
Spectral Line Half Width
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
[2]
Symbol
I
v
V
F
V
R
5.0
Min.
500
200
Typ.
1000
500
1.8
15.0
2.2
Max.
Units
mcd
V
V
Test Conditions
I
F
= 20 mA
I
F
= 20 mA
I
R
= 100
µA
2θ
1/2
φ
d
λ
PEAK
λ
d
∆λ
1/2
τ
s
C
Rθ
J-LEAD
η
v
10
20
120
645
637
20
30
30
210
80
Deg.
mlm
nm
nm
nm
ns
pF
°C/W
lm/W
Time Constant, e
-t/τ
V
F
= 0, f = 1 MHz
LED Junction-to-
Cathode Lead
s
I
F
= 20 mA
Measured at Peak
High Efficiency Red HLMP-8205/8209
Parameter
Luminous Intensity
HLMP-8205
HLMP-8209
Forward Voltage
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points
HLMP-8205
HLMP-8209
Total Luminous Flux
Peak Wavelength
Dominant Wavelength
[1]
Spectral Line Half Width
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
[2]
Symbol
I
v
V
F
V
R
5.0
Min.
200
90
Typ.
350
260
1.9
30.0
2.6
Max.
Units
mcd
V
V
Test Conditions
I
F
= 20 mA
I
F
= 20 mA
I
R
= 100
µA
2θ
1/2
φ
v
λ
PEAK
λ
d
∆λ
1/2
τ
s
C
Rθ
J-LEAD
η
v
10
20
45
635
626
40
90
11
210
145
Deg.
mlm
nm
nm
nm
ns
pF
°C/W
lm/W
V
F
= 0, f = 1 MHz
LED Junction-to-
Cathode Lead
I
F
= 20 mA
Measured at Peak
4
Yellow HLMP-8305/8309
Parameter
Luminous Intensity
HLMP-8305
HLMP-8309
Forward Voltage
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points
HLMP-8305
HLMP-8309
Total Luminous Flux
Peak Wavelength
Dominant Wavelength
[1]
Spectral Line Half Width
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
[2]
Symbol
I
v
V
F
V
R
5.0
Min.
212
96
Typ.
350
260
2.1
30.0
2.6
Max.
Units
mcd
V
V
Test Conditions
I
F
= 20 mA
I
F
= 20 mA
I
R
= 100
µA
2θ
1/2
φ
v
λ
PEAK
λ
d
∆λ
1/2
τ
s
C
Rθ
J-LEAD
η
v
10
20
45
583
585
36
90
15
210
500
Deg.
mlm
nm
nm
nm
ns
pF
°C/W
lm/W
V
F
= 0, f = 1 MHz
LED Junction-to-
Cathode Lead
I
F
= 20 mA
Measured at Peak
Orange HLMP-8405/8409
Parameter
Luminous Intensity
HLMP-8405
HLMP-8409
Forward Voltage
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points
HLMP-8405
HLMP-8409
Total Luminous Flux
Peak Wavelength
Dominant Wavelength
[1]
Spectral Line Half Width
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
[2]
Symbol
I
v
V
F
V
R
5.0
Min.
200
90
Typ.
350
260
1.9
30.0
2.6
Max.
Units
mcd
V
V
Test Conditions
I
F
= 20 mA
I
F
= 20 mA
I
R
= 100
µA
2θ
1/2
φ
v
λ
PEAK
λ
d
∆λ
1/2
τ
s
C
Rθ
J-LEAD
η
v
10
20
45
600
602
40
280
4
210
380
Deg.
mlm
nm
nm
nm
ns
pF
°C/W
lm/W
V
F
= 0, f = 1 MHz
LED Junction-to-
Cathode Lead
I
F
= 20 mA
Measured at Peak
5
High Performance Green HLMP-8505/8509
Parameter
Luminous Intensity
HLMP-8505
HLMP-8509
Forward Voltage
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points
HLMP-8505
HLMP-8509
Total Luminous Flux
Peak Wavelength
Dominant Wavelength
[1]
Spectral Line Half Width
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
[2]
Symbol
I
v
V
F
V
R
Min.
170
111
5.0
Typ.
400
300
2.2
30
Max.
Units
mcd
3.0
V
V
Test Conditions
I
F
= 20 mA
I
F
= 20 mA
I
R
= 100
µA
2θ
1/2
φ
v
λ
PEAK
λ
d
∆λ
1/2
τ
s
C
Rθ
J-LEAD
η
v
10
20
115
568
570
28
260
18
210
595
Deg.
mlm
nm
nm
nm
ns
pF
°C/W
lm/W
I
F
= 20 mA
Measured at Peak
V
F
= 0, f = 1 MHz
LED Junction-to-
Cathode Lead
Notes:
1. The dominant wavelength,
λ
d
, is derived from the CIE Chromaticity Diagram and represents the color of the device.
2. The radiant intensity, I
e
, in watts per steradian, may be found from the equation I
e
= I
v
/η
v
, where I
v
is the luminous intensity in
candelas and
η
v
is the luminous efficacy in lumens/watt.
Emerald Green HLMP-8605
[1]
Parameter
Luminous Intensity
HLMP-8605
Forward Voltage
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points
HLMP-8605
Peak Wavelength
Dominant Wavelength
[2]
Spectral Line Half Width
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
[3]
Symbol
I
v
V
F
V
R
Min.
69
5.0
Typ.
75
2.2
30
Max.
Units
mcd
V
V
Test Conditions
I
F
= 20 mA
I
F
= 20 mA
I
R
= 100
µA
3.0
2θ
1/2
λ
PEAK
λ
d
∆λ
1/2
τ
s
C
Rθ
J-LEAD
η
v
10
558
560
24
3100
35
210
656
Deg.
nm
nm
nm
ns
pF
°C/W
lm/W
Measured at Peak
V
F
= 0, f = 1 MHz
LED Junction-to-
Cathode Lead
Notes:
1. Please refer to Application Note 1061 for information comparing standard green and emerald green light output degradation.
2. The dominant wavelength,
λ
d
, is derived from the CIE Chromaticity Diagram and represents the color of the device.
3. The radiant intensity, I
e
, in watts per steradian, may be found from the equation I
e
= I
v
/η
v
, where I
v
is the luminous intensity in
candelas and
η
v
is the luminous efficacy in lumens/watt.