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HLMP-Pxxx Series, HLMP-Qxxx Series,
HLMP-6xxx Series, HLMP-70xx Series
Subminiature LED Lamps
Data Sheet
Description
Flat Top Package
The HLMP-Pxxx Series flat top lamps use an untinted, non­
diffused, truncated lens to provide a wide radiation pattern
that is necessary for use in backlighting applications. The flat
top lamps are also ideal for use as emitters in light pipe
applications.
Dome Packages
The HLMP-6xxx Series dome lamps for use as indicators use
a tinted, diffused lens to provide a wide viewing angle with a
high on-off contrast ratio. High brightness lamps use an un-
tinted, nondiffused lens to provide a high luminous intensity
within a narrow radiation pattern.
Resistor Lamps
The HLMP-6xxx Series 5 volt subminiature lamps with built
in current limiting resistors are for use in applications where
space is at a premium.
Lead Configurations
All of these devices are made by encapsulating LED chips on
axial lead frames to form molded epoxy subminiature lamp
packages. A variety of package configuration options is
availa­ ble. These include special sur­face mount lead configura­
tions, gull wing, yoke lead or Z-bend. Right angle lead bends at
2.54 mm (0.100 inch) and 5.08  mm (0.200 inch) center spacing
are available for through hole mounting. For more information
refer to Standard SMT and Through Hole Lead Bend Options
for Subminiature LED Lamps data sheet.
Features
ƒƒ Subminiature flat top package
—— Ideal for backlighting and light piping applications
ƒƒ Subminiature dome package
—— Diffused dome for wide viewing angle
—— Non-diffused dome for high brightness
ƒƒ TTL and LSTTL compatible 5V resistor lamps
ƒƒ Available in six colors
ƒƒ Ideal for space limited applications
ƒƒ Axial leads
ƒƒ Available with lead configurations for surface mount
and through hole PCB mounting
Broadcom Confidential
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HLMP-Pxxx Series, HLMP-Qxxx Series, HLMP-6xxx Series, HLMP-70xx Series
Device Selection Guide
Part Number: HLMP-xxxx
Standard
Red
DH AS
AlGaAs Red
High
Efficiency
Red
Orange
P005
P105
P205
P405
Yellow
P305
P102
P202
P402
P302
6000
Q100
6300
Q400
6400
Q105
6305
Q405
6405
Q150
7000
7019
Q155
6600
6620
6720
High Perf.
Green
P505
P502
6500
6505
7040
6800
6820
Data Sheet
Emerald
Green
P605
Q600
Q605
Device
Description
Untinted, Non-diffused,
Flat Top
Untinted, Diffused,
Flat Top
Tinted, Diffused
Untinted, Nondiffused,
High Brightness
Tinted, Diffused, Low
Current
Nondiffused,
Low Current
Tinted, Diffused, Resistor,
5V, 10 mA
Diffused, Resistor, 5V,
4 mA
Device
Outline
Drawing
A
A
B
B
B
B
B
B
Package Dimensions
Flat Top Lamps
0.50 (0.020) REF.
1.40 (0.055)
1.65 (0.065)
11.68 (0.460)
10.67 (0.420)
BOTH SIDES
CATHODE
ANODE
1.65
1.91
(0.065)
(0.075)
DIA.
0.20 (0.008) MAX.
0.46 (0.018)
0.56 (0.022)
0.25 (0.010) MAX.
NOTE 2
2.21 (0.087)
1.96 (0.077)
1.14 (0.045)
1.40 (0.055)
0.63 (0.025)
0.38 (0.015)
2.44 (0.096)
1.88 (0.074)
0.18 (0.007)
0.23 (0.009)
0.79 (0.031) MAX.
2.08 (0.082)
2.34 (0.092)
Diffused and Nondiffused
0.50 (0.020) REF.
11.68 (0.460)
10.67 (0.420)
BOTH SIDES
CATHODE
ANODE
1.65
1.91
(0.065)
(0.075)
DIA.
0.20 (0.008) MAX.
0.46 (0.018)
0.56 (0.022)
0.25 (0.010) MAX.
NOTE 2
0.18 (0.007)
0.23 (0.009)
2.03 (0.080)
1.78 (0.070)
2.21 (0.087)
1.96 (0.077)
0.76
0.89
(0.030)
(0.035)
R.
0.94 (0.037)
1.24 (0.049)
0.79 (0.031)
0.53 (0.021)
0.63 (0.025)
0.38 (0.015)
2.92 (0.115)
MAX.
2.08 (0.082)
2.34 (0.092)
CATHODE
STRIPE
NOTES:
1. ALL DIMENSIONS ARE IN MILLIMETRES (INCHES).
2. PROTRUDING SUPPORT TAB IS CONNECTED TO CATHODE LEAD.
3. LEAD POLARITY FOR AlGaAs LAMPS IS OPPOSITE TO THE LEAD
POLARITY OF SUBMINIATURE LAMPS USING OTHER TECHNOLOGIES.
Broadcom Confidential
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CATHODE
STRIPE

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HLMP-Pxxx Series, HLMP-Qxxx Series, HLMP-6xxx Series, HLMP-70xx Series
Figure 1: Proper Right Angle Mounting to a PCB to Prevent Protruding Cathode Tab from Shorting to Anode Connection
CATHODE
TAB
Data Sheet
NO. ANODE DOWN.
YES. CATHODE DOWN.
Absolute MaximumHLMRP-aPXtXXinAnogdes/Ca(thTodAe = 25°C)
Parameter
Standard
Red
DH AS
AlGaAs
Red
High Eff.
Red
DC Forward Current[1]
50 30 30
Peak Forward Current[2]
1000
300
90
DC Forward Voltage
(Resistor Lamps Only)
6
Reverse Voltage (IR = 100 µA)
5
55
Transient Forward Current
(10 µs Pulse)
2000 500 500
Operating Temperature Range
Orange
30
90
5
500
Yellow
High Perf.
Green
Emerald
Green
Unit
20 30
60 90
30 mA
90 mA
66
6V
55
5V
500 500
500 mA
Non-Resistor Lamps
Resistor Lamps
–55 to +100 –40 to +100
–55 to +100
–40 to +85
–40 to +100 –20 to +100
–20 to +85
°C
Storage Temperature Range
For Thru Hole Devices:
Wave Soldering Temperature
[1.6 mm (0.063 in.) from body]
For Surface Mount Devices:
Reflow Soldering Temperature
–55 to +100
260°C for 5 seconds
260°C for 20 seconds
Notes:
1.  See Figure 5 for current derating vs. ambient temperature. Derating is not applicable to resistor lamps.
2.  Refer to Figure 6 showing Max. Tolerable Peak Current vs. Pulse Duration to establish pulsed operating conditions.
3.  The transient peak current is the maximum non-recurring peak current the device can withstand without failure. Do not operate these lamps at this high current.
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HLMP-Pxxx Series, HLMP-Qxxx Series, HLMP-6xxx Series, HLMP-70xx Series
Electrical/Optical Characteristics (TA = 25°C)
Standard Red
Device
HLMP-
Parameter
Symbol Min.
6000-E00xx
0.63
6000-G00xx
P005-F00xx
Luminous Intensity[1]
IV 1.60
1.0
All
6000
P005
Forward Voltage
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points[2]
VF 1.4
VR 5.0
2θ½
Peak Wavelength
λPEAK
Dominant Wavelength[3]
λd
Spectral Line Half Width
Δλ1/2
All Speed of Response
τs
Capacitance
C
Thermal Resistance
Luminous Efficacy[4]
J-PIN
ηv
Typ.
1.2
3.2
2.5
1.6
12.0
90
125
655
640
24
15
100
170
65
Max.
2.0
Data Sheet
Unit Test Conditions
mcd IF = 10 mA
V IF = 10 mA
V IR = 100 µA
Deg.
nm
nm
nm
ns
pF
°C/W
lm/W
VF = 0; f = 1 MHz
Junction-to-Cathode Lead
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HLMP-Pxxx Series, HLMP-Qxxx Series, HLMP-6xxx Series, HLMP-70xx Series
DH AS AlGaAs Red
Device
HLMP-
P102-F00xx
Parameter
Symbol
P105-L00xx
P105-NP000
Q100-M00xx
Q100-N00xx
Q100-PQ000
Luminous Intensity[1]
IV
Q105-P00xx
Q105-ST000
Q150-F00xx
Q155-F00xx
Q100
Q150/Q155
Forward Voltage
VF
All
P105
Q100/Q150
Q105/Q155
Reverse Breakdown Voltage
Included Angle Between
Half Intensity Points[2]
VR
2θ½
Peak Wavelength
Dominant Wavelength[3]
Spectral Line Half Width
λPEAK
λd
Δλ1/2
All Speed of Response
τs
Capacitance
C
Thermal Resistance
Luminous Efficacy[4]
J-PIN
ηv
Min.
1.0
10.0
25
16
25.0
40
40
160
1.0
1.0
5.0
Typ.
20.0
30.0
45
45.0
200
1.8
4.0
1.8
1.6
15.0
125
90
28
645
637
20
30
30
170
80
Data Sheet
Max. Unit
Test Conditions
80
IF = 20 mA
mcd
125
500
IF = 1 mA
2.2 IF = 20 mA
V
1.8 IF = 1 mA
V IR = 100 µA
Deg.
nm
nm
nm
ns
pF
°C/W
lm/W
Measured at Peak
Exponential Time Constant;
e-t/ts
VF = 0; f = 1 MHz
Junction-to-Cathode Lead
Broadcom Confidential
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