HLMT-PG00-P00XX [BOARDCOM]

Subminiature High Performance AlInGaP LED Lamps;
HLMT-PG00-P00XX
型号: HLMT-PG00-P00XX
厂家: Broadcom Corporation.    Broadcom Corporation.
描述:

Subminiature High Performance AlInGaP LED Lamps

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中文:  中文翻译
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Data Sheet  
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and  
HLMT-Qx00  
Subminiature High Performance AlInGaP LED  
Lamps  
Sun Power Series  
HLMA-PF00, HLMA-PG00, HLMA-PH00, HLMA-PL00,  
HLMA-QF00, HLMA-QG00, HLMA-QH00, HLMA-QL00,  
HLMT-PG00, HLMT-PH00, HLMT-PL00, HLMT-QG00,  
HLMT-QH00, HLMT-QL00  
Features  
Description  
Subminiature flat top package  
Ideal for backlighting and light piping applications  
Flat Top Package  
Subminiature dome package  
Nondiffused dome for high brightness  
The HLMX-PXXX flat top lamps use an untinted,  
nondiffused, 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.  
Wide range of drive currents  
Colors:  
– 590-nm Amber  
– 605-nm Orange  
– 615-nm Reddish-Orange  
– 622/626-nm Red  
– 635-nm Red  
Dome Packages  
The HLMX-QXXX dome lamps use an untinted, nondiffused  
lens to provide a high luminous intensity within a narrow  
radiation pattern.  
Ideal for space-limited applications  
Axial leads  
Available with lead configurations for surface mount  
and through hole PC board mounting  
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  
are available. These include special surface mount lead  
configurations, gull wing, yoke lead, or Z-bend. Right angle  
lead bends at 2.54 mm (0.100 in.) and 5.08 mm (0.200 in.)  
center spacing are available for through hole mounting. For  
more information, refer to the Standard SMT and Through  
Hole Lead Bend Options for Subminiature LED Lamps Data  
Sheet.  
Technology  
These subminiature solid state lamps use one of the two  
newly developed aluminum indium gallium phosphide  
(AlInGaP) LED technologies. The HLMT-devices are  
especially effective in very bright ambient lighting  
conditions. The colors 590-nm amber, 605-nm orange,  
615-nm reddish-orange, 622/626-nm red, and 635-nm red  
are available with viewing angles of 15° for the domed  
devices and 125° for the flat top devices.  
Broadcom  
AV02-0309EN  
March 20, 2020  
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Subminiature High Performance AlInGaP LED Lamps  
Device Selection Guide  
Package  
Description  
λd (nm)  
Typ. IV (mcd)  
Part Number  
HLMA-QL00  
Viewing Angle 2θ½  
Package Outline  
590  
590  
605  
615  
615  
626  
622  
635  
590  
590  
605  
615  
615  
626  
622  
635  
500  
1000  
500  
500  
800  
500  
1000  
500  
75  
Domed, Nondiffused,  
Untinted  
15°  
B
HLMT-QL00  
HLMA-QJ00  
HLMA-QH00  
HLMT-QH00  
HLMA-QG00  
HLMT-QG00  
HLMA-QF00  
HLMA-PL00  
HLMT-PL00  
HLMA-PJ00  
HLMA-PH00  
HLMT-PH00  
HLMA-PG00  
HLMT-PG00  
HLMA-PF00  
Flat Top,  
Nondiffused, Untinted  
125°  
A
150  
75  
75  
120  
75  
150  
75  
Absolute Maximum Ratings at T = 25°C  
A
Parameter  
HLMA-xxxx  
HLMT-xxxx  
Units  
mA  
Peak Forward Current[a  
100  
30  
100  
30  
Average Forward Current (IPEAK = 100 mA)a, b  
mA  
DC Forward Currentc, d, e  
Power Dissipation  
50  
50  
mA  
120  
130  
mW  
V
Reverse Voltage (IR = 100 µA)  
5
Transient Forward Current (10 µs Pulse)f  
Operating Temperature Range  
500  
mA  
–40 to +100  
–55 to +100  
110  
°C  
°C  
°C  
Storage Temperature Range  
LED Junction Temperature  
Lead Soldering Temperature (1.6 mm (0.063 in.) from body)  
SMT Reflow Soldering Temperature  
a. See Figure 7 and Figure 8 to establish pulsed operating conditions.  
b. Maximum IAVG at f = 1 kHz.  
260°C for 5 seconds  
260°C for 20 seconds  
c. Derate linearly as shown in Figure 6.  
d. Drive currents between 10 mA and 30 mA are recommended for best long term performance.  
e. Operation at currents below 5 mA is not recommended; contact your Broadcom sales representative.  
f. The transient peak current is the maximum non-recurring peak current these devices can withstand without damaging the LED die and wire  
bonds. Operation at currents above Absolute Maximum Peak Forward Current is not recommended.  
Broadcom  
AV02-0309EN  
2
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Subminiature High Performance AlInGaP LED Lamps  
Part Numbering System  
x1  
x2  
x3  
x4  
x5  
x6  
x7  
x8  
H
L
M
-
0
0
-
Number  
X1  
Description  
Technology  
Option  
Option Description  
A/T  
AlInGaP  
X2  
Package Option  
Q
P
L
Dome  
Flat Top  
X3  
Color Option  
Amber 590 nm  
Orange 605 nm  
J
H
G
F
Reddish Orange 615 nm  
Red 622/626 nm  
Red 635 nm  
X4  
X5  
X6  
Minimum lV Bin Options  
Maximum lV Bin Options  
Color Bin Selection  
Refer to the lV Bin table.  
Refer to the lV Bin table.  
0
Full Color Bin Distribution  
B
Color Bins 2 and 3  
K
Color Bins 2, 3, and 4  
Color Bins 2 and 4  
R
W
X
Color Bins 2, 4, 6, and 7  
Color Bins 4, 6, and 7  
X7, X8  
00  
11  
12  
14  
21  
22  
24  
31  
32  
34  
Straight Leads, Bulk Packaging, Quantity of 500 parts  
Gull Wing Bend, Tape and Reel – 7 in. Reel  
Gull Wing Bend, Bulk  
Gull Wing Bend, Tape and Reel – 13 in. Reel  
Yoke Bend, Tape and Reel – 7 in. Reel  
Yoke Bend, Bulk  
Yoke Bend, Tape and Reel – 13 in. Reel  
Z-Bend, Tape and Reel – 7 in. Reel  
Z-Bend, Bulk  
Z-Bend, Tape and Reel – 13 in. Reel  
Broadcom  
AV02-0309EN  
3
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Subminiature High Performance AlInGaP LED Lamps  
Package Dimensions  
A – Flat Top Lamps  
B – Domed Lamps, Diffused and Nondiffused  
1.40 (0.055)  
1.65 (0.065)  
0.50 (0.020) REF.  
0.50 (0.020) REF.  
11.68 (0.460)  
10.67 (0.420)  
BOTH SIDES  
11.68 (0.460)  
10.67 (0.420)  
BOTH SIDES  
CATHODE  
CATHODE  
0.46 (0.018)  
0.56 (0.022)  
ANODE  
0.46 (0.018)  
0.56 (0.022)  
ANODE  
1.65 (0.065)  
1.91 (0.075)  
1.65 (0.065)  
1.91 (0.075)  
DIA.  
DIA.  
0.25 (0.010) MAX.  
0.25 (0.010) MAX.  
NOTE 2  
NOTE 2  
0.20 (0.008) MAX.  
0.20 (0.008) MAX.  
2.21 (0.087)  
1.96 (0.077)  
0.76 (0.030)  
0.89 (0.035)  
R.  
2.21 (0.087)  
1.96 (0.077)  
0.18 (0.007)  
0.23 (0.009)  
0.94 (0.037)  
1.24 (0.049)  
2.03 (0.080)  
1.78 (0.070)  
1.14 (0.045)  
1.40 (0.055)  
0.63  
0.38  
(0.025)  
(0.015)  
2.92  
(0.115)  
MAX.  
2.44 (0.096)  
1.88 (0.074)  
0.63 (0.025)  
0.38 (0.015)  
0.79 (0.031)  
0.53 (0.021)  
0.79 (0.031) MAX.  
2.08 (0.082)  
2.34 (0.092)  
0.18 (0.007)  
0.23 (0.009)  
2.08 (0.082)  
2.34 (0.092)  
CATHODE  
STRIPE  
CATHODE  
STRIPE  
NOTES:  
1. ALL DIMENSIONS ARE IN MILLIMETRES (INCHES).  
2. PROTRUDING SUPPORT TAB IS CONNECTED TO CATHODE LEAD.  
Package Mounting  
CATHODE  
TAB  
NO. ANODE DOWN.  
YES. CATHODE DOWN.  
Proper right angle mounting to a PC board to prevent protruding cathode tab from shorting to anode connection.  
Broadcom  
AV02-0309EN  
4
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Subminiature High Performance AlInGaP LED Lamps  
Optical Characteristics at T = 25°C  
A
Color,  
Viewing  
Total Flux  
ɸV (min) at  
20 mAb  
Dominate  
Wavelength λd  
(nm)  
Luminous  
Efficacy  
ηVe (lm/w)  
Peak  
Wavelength  
peak (nm)  
Angle 2θ  
c
Luminous Intensity  
IV (mcd) at 20 mAa  
½
Degreesd  
λ
Part Number  
Min.  
Typ.  
Max.  
Typ.  
Typ.  
Typ.  
Typ.  
Typ.  
HLMA-QL00-S00xx  
HLMA-QL00-TU0xx  
HLMA-QL00-TUKxx  
HLMA-QL00-TVBxx  
HLMA-QL00-TVKxx  
HLMA-QL00-UV0xx  
HLMA-QL00-UVRxx  
HLMA-QL00-UWBxx  
HLMT-QL00-T00xx  
HLMA-QJ00-S00xx  
HLMA-QH00-S00xx  
HLMA-QH00-T00xx  
HLMA-QH00-UW0xx  
HLMT-QH00-T00xx  
HLMT-QH00-WX0xx  
HLMA-QG00-S00xx  
HLMA-QG00-TV0xx  
HLMT-QG00-T00xx  
HLMA-QF00-S00xx  
HLMA-PL00-N00xx  
HLMA-PL00-PRRxx  
HLMA-PL00-PRXxx  
HLMA-PL00-QRXxx  
HLMT-PL00-P0Wxx  
HLMA-PJ00-N00xx  
HLMA-PH00-N00xx  
HLMT-PH00-P00xx  
HLMA-PG00-N00xx  
HLMT-PG00-P00xx  
HLMA-PF00-N00xx  
160  
250  
250  
250  
250  
400  
400  
400  
250  
160  
160  
250  
400  
250  
1000  
160  
250  
250  
160  
25  
500  
800  
800  
1250  
1250  
1250  
1250  
2000  
250  
250  
250  
250  
250  
250  
250  
250  
800  
250  
250  
250  
250  
800  
800  
250  
250  
800  
250  
250  
250  
250  
250  
800  
250  
250  
800  
250  
800  
250  
592  
592  
592  
592  
592  
592  
592  
592  
592  
609  
621  
621  
621  
621  
621  
635  
635  
635  
650  
592  
592  
592  
592  
592  
609  
621  
621  
635  
635  
640  
590  
590  
590  
590  
590  
590  
590  
590  
590  
605  
615  
615  
615  
615  
615  
626  
626  
622  
635  
590  
590  
590  
590  
590  
605  
615  
615  
626  
622  
635  
15  
15  
480  
480  
480  
480  
480  
480  
480  
480  
480  
370  
263  
263  
263  
263  
263  
150  
150  
150  
110  
480  
480  
480  
480  
480  
370  
263  
263  
150  
150  
110  
15  
15  
15  
15  
15  
15  
1000  
500  
500  
500  
15  
15  
15  
15  
2000  
15  
500  
15  
3200  
15  
500  
15  
1250  
15  
1000  
500  
75  
15  
15  
125  
125  
125  
125  
125  
125  
125  
125  
125  
125  
125  
40  
200  
200  
200  
40  
63  
40  
150  
75  
25  
25  
75  
40  
120  
75  
25  
40  
150  
75  
25  
a. The luminous intensity, Iv, is measured at the mechanical axis of the lamp package. The actual peak of the spatial radiation pattern may not  
be aligned with this axis.  
b. ɸv is the total luminous fl ux output as measured with an integrating sphere.  
c. The dominant wavelength, λd, is derived from the CIE Chromaticity Diagram and represents the color of the device.  
d. θ is the off -axis angle where the luminous intensity is ½ the peak intensity.  
½
e. Radiant intensity, Ie, in watts/steradian, may be calculated from the equation Ie = Iv/ηv, where Iv is the luminous intensity in candelas and ηv  
is the luminous efficacy in lumens/watt.  
Broadcom  
AV02-0309EN  
5
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Subminiature High Performance AlInGaP LED Lamps  
Electrical Characteristics at T = 25°C  
A
Reverse Breakdown Voltage  
VR (Volts) at IR = 100 µA  
Thermal Resistance  
RθJ-PIN (°C/W)  
Forward Voltage VF (Volts) at IF = 20 mA  
Part Number  
HLMA-Qx00  
Typ.  
Max.  
Min.  
Typ.  
Typ.  
1.9  
2.0  
1.9  
2.0  
2.4  
2.6  
2.4  
2.6  
5
5
5
5
25  
20  
25  
20  
170  
170  
170  
170  
HLMT-Qx00  
HLMA-Px00  
HLMT-Px00  
Figure 1: Relative Intensity vs. Wavelength  
1.0  
REDDISH  
ORANGE  
RED 626 nm  
AMBER  
ORANGE  
RED 635 nm  
0.5  
0
550  
600  
650  
700  
WAVELENGTH – nm  
Figure 2: Forward Current vs. Forward Voltage, HLMA-xxxx  
Figure 3: Forward Current vs. Forward Voltage, HLMT-xxxx  
50  
40  
30  
20  
50  
40  
30  
20  
10  
10  
0
0
1.0  
1.5  
2.0  
2.5  
3.0  
1.0  
1.5  
2.0  
2.5  
3.0  
VF – FORWARD VOLTAGE – V  
VF - FORWARD VOLTAGE - V  
Broadcom  
AV02-0309EN  
6
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Subminiature High Performance AlInGaP LED Lamps  
Figure 4: Relative Luminous Intensity vs. DC Forward  
Current, HLMA-xxxx  
Figure 5: Relative Luminous Intensity vs. DC Forward  
Current, HLMT-xxxx  
2.5  
2.0  
1.5  
4.0  
3.0  
2.0  
1.0  
0
1.0  
0.5  
0
0
10  
20  
30  
40  
50  
0
10  
20  
30  
40  
50  
60  
IF - DC FORWARD CURRENT - mA  
IF - DC FORWARD CURRENT - mA  
Figure 6: Maximum Forward Current vs. Ambient  
Temperature  
50  
40  
RTJ-A = 380 qC/W  
30  
RTJ-A = 476 qC/W  
20  
10  
0
0
20  
40  
60  
80  
100  
TA – AMBIENT TEMPERATURE – qC  
Figure 7: Maximum Average Current vs. Peak Forward  
Current, HLMA-xxxx  
Figure 8: Maximum Average Current vs. Peak Forward  
Current, HLMT-xxxx  
50  
50  
f ≥ 1 KHz  
40  
40  
f ≥ 1 KHz  
f ≥ 300 Hz  
30  
30  
20  
10  
0
f ≥ 100 Hz  
20  
10  
0
50  
75  
100  
50  
58  
67  
75  
83  
92  
100  
I
PEAK – PEAK FORWARD CURRENT – mA  
IPEAK – PEAK FORWARD CURRENT – mA  
Broadcom  
AV02-0309EN  
7
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Subminiature High Performance AlInGaP LED Lamps  
Figure 9: Relative Luminous Intensity vs. Angular Displacement for 15° Device  
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
-50  
-40  
-30  
-20  
-10  
0
10  
20  
30  
40  
50  
ANGULAR DISPLACEMENT – DEGREES  
Figure 10: Relative Luminous Intensity vs. Angular Displacement for 125° Device  
1.1  
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
100 90 80 70 60 50 40 30 20 10  
0 10 20 30 40 50 60 70 80 90 100  
ANGULAR DISPLACEMENT – DEGREES  
Intensity Bin Limits  
Color Bin Limits  
Bin  
Min.  
Max.  
Package  
Yellow  
Bin  
Min.  
Max.  
N
P
Q
R
S
T
25  
40  
50  
80  
0
3
2
4
6
7
0
2
3
4
5
Full Distribution  
584.0  
586.5  
589.0  
591.5  
594.0  
587.5  
590.0  
592.5  
595.0  
597.5  
63  
125  
200  
320  
500  
800  
1250  
2000  
3200  
5000  
100  
160  
250  
400  
630  
1000  
1600  
2500  
U
V
W
X
Y
Orange  
Full Distribution  
599.0  
601.5  
603.8  
606.8  
602.5  
604.0  
608.2  
611.2  
Broadcom  
AV02-0309EN  
8
HLMA-Qx00, HLMA-Px00, HLMT-Px00, and HLMT-Qx00 Data Sheet  
Mechanical Option Matrix  
Mechanical Option Code  
Subminiature High Performance AlInGaP LED Lamps  
Definition  
Straight Leads, Bulk Packaging, Quantity of 500 Parts  
00  
11  
12  
14  
21  
22  
24  
31  
32  
34  
Gull Wing Leads, 12 mm Tape on 7 in. Diameter Reel, 1500 Parts per Reel  
Gull Wing Leads, Bulk Packaging, Quantity of 500 Parts  
Gull Wing Leads, 12 mm Tape on 13 in. Diameter Reel, 6000 Parts per Reel  
Yoke Leads, 12 mm Tape on 7 in. Diameter Reel, 1500 Parts per Reel  
Yoke Leads, Bulk Packaging, Quantity of 500 Parts  
Yoke Leads, 12 mm Tape on 13 in. Diameter Reel, 6000 Parts per Reel  
Z-Bend Leads, 12 mm Tape on 7 in. Diameter Reel, 1500 Parts per Reel  
Z-Bend Leads, Bulk Packaging, Quantity of 500 Parts  
Z-Bend Leads, 12 mm Tape on 13 in. Diameter Reel, 6000 Parts per Reel  
NOTE: All categories are established for classification of products. Products may not be available in all categories. Contact  
your local Broadcom representative for further clarification and information.  
Broadcom  
AV02-0309EN  
9
Broadcom, the pulse logo, Connecting everything, Avago Technologies, Avago, and the A logo are among the trademarks  
of Broadcom and/or its affiliates in the United States, certain other countries, and/or the EU.  
Copyright © 2011–2020 Broadcom. All Rights Reserved.  
The term “Broadcom” refers to Broadcom Inc. and/or its subsidiaries. For more information, please visit www.broadcom.com.  
Broadcom reserves the right to make changes without further notice to any products or data herein to improve reliability,  
function, or design. Information furnished by Broadcom is believed to be accurate and reliable. However, Broadcom does  
not assume any liability arising out of the application or use of this information, nor the application or use of any product or  
circuit described herein, neither does it convey any license under its patent rights nor the rights of others.  

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