HSMx-A2-xx-xxxxx Bi-Color
HSMx-A3xx-xxxxx Tri-Color
Surface Mount LED Indicators,
PLCC-4 SMT LEDs
Data Sheet
Description
This family of SMT LEDs is packaged in the industry standard PLCC-4 package. These SMT LEDs have high reliability performance and are designed to work under a wide
range of environmental conditions. This high reliability feature makes them ideally suited to be used under
harsh interior automotive as well as interior signs application conditions.
To facilitate easy pick and place assembly, the LEDs are
packed in EIA-compliant tape and reel. Every reel will
be shipped in single intensity and color bin, except red
color to provide close uniformity.
These LEDs are compatible with IR and TTW solder reflow process.
This super wide viewing angle at 120° together with the
built in reflector pushing up the intensity of the light
output makes these LED suitable to be used in the interior electronics signs. The flat top emitting surface makes
it easy for these LEDs to mate with light pipes. This is
suitable for general backlighting in automotive interior,
office equipment, industrial equipment, and home appliances.
Features
Industry Standard PLCC-4 package (Plastic Leaded
Chip Carrier)
High reliability LED package due to enhanced silicone
resin material
High brightness using AlInGaP and InGaN dice technologies
Available in full selection of colors
Super wide viewing angle at 120°
Available in 8 mm carrier tape on 7-inch reel
Compatible with IR soldering process
Applications
Electronic signs and signals
– Interior full color sign
– Variable message sign
Interior automotive
– Instrument cluster backlighting
– Central console backlighting
– Cabin backlighting
Office automation, home appliances, industrial equipment
– Front panel backlighting
– Display backlighting
CAUTION: HSMF-Axxx-xxxxx LEDs are Class 2 ESD sensitive. Please observe appropriate precautions
during handling and processing. Refer to Avago Application Note AN-1142 for additional details.
Package Dimensions
2.8 ± 0.2
1.9 ± 0.2
2.2 ± 0.2
(2)
0.1 TYP.
0.8 ± 0.1
(3)
3.2 ± 0.2
3.5 ± 0.2
0.8 ± 0.3
(1)
(4)
0.5 ± 0.1
0.7 ± 0.1
CATHODE MARKING
NOTE:
1. ALL DIMENSIONS IN mm.
Tri Color
Device Selection Guide
1 Cathode (Color 1)
Bi Color
2 Common Anode
Part Number
Color 1
Color 2
HSMF-A201- xxxxx
GaP Red
GaP Yellow Green
HSMF-A202- xxxxx
GaP Red
GaP Yellow
HSMF-A203- xxxxx
GaP Red
GaP Emerald Green
HSMF-A204- xxxxx
GaP Orange
GaP Yellow Green
HSMF-A205- xxxxx
GaP Orange
GaP Emerald Green
HSMF-A206- xxxxx
GaP Yellow
GaP Yellow Green
HSMF-A211- xxxxx
AlGaAs Red
GaP Yellow Green
HSMF-A212- xxxxx
AlGaAs Red
GaP Yellow
HSMF-A222- xxxxx
AlInGaPRed
AlInGaP Amber
HSMF-A226- xxxxx
AlInGaP Amber
AlInGaP Yellow Green
3 Cathode (Color 3)
4 Cathode (Color 2)
Bi Color
1 Cathode (Color 1)
2 Anode (Color 1)
3 Cathode (Color 2)
4 Anode (Color 2)
2
Color 1
Min. Iv @ 20 mA
Typical Iv @ 20 mA
Bin ID
(mcd)
(mcd)
Color 2
Min. Iv @ 20 mA
Bin ID
(mcd)
Typical Iv @ 20 mA
(mcd)
HSMF-A201-A00J1
K2
9.0
16.0
L1
11.2
20.0
HSMF-A202-A00J1
K2
9.0
16.0
K1
7.2
12.0
HSMF-A203-A00J1
K2
9.0
16.0
J1
4.5
8.0
HSMF-A204-A00J1
K2
9.0
16.0
L1
11.2
20.0
HSMF-A205-A00J1
K2
9.0
16.0
J1
4.5
8.0
HSMF-A206-A00J1
K2
9.0
16.0
L1
11.2
20.0
HSMF-A211-A00J1
L2
14.0
25.0
L1
11.2
20.0
HSMF-A212-A00J1
L2
14.0
25.0
K1
7.2
12.0
HSMF-A222-A00J1
P1
45.0
80.0
P1
45.0
80.0
HSMF-A226-A00J1
P2
56.0
100.0
M2
22.4
60.0
Part Number
Note:
1. 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.
2. IV tolerance = ±10 %.
Tri Color
Part Number
Color 1
Color 2
Color 3
HSMF-A341-xxxxx
AllnGaP Red
InGaN Green
InGaN Blue
Part Number
HSMF-A341-A00J1
Color 1
Min. Iv
@ 20 mA
Bin ID (mcd)
Typical Iv
@ 20 mA
(mcd)
Color 2
Min. Iv
@ 20 mA
Bin ID (mcd)
Typical Iv
@ 20 mA
(mcd)
Color 3
Min. Iv
@ 20 mA
Bin ID (mcd)
Typical Iv
@ 20 mA
(mcd)
K2
9.0
13.0
L2
14.0
20.0
K2
9.2
10.0
P1
45.0
80.0
R1
112.5
160.0
K2
9.2
10.0
P1
45.0
80.0
R1
112.5
160.0
K2
9.2
10.0
P1
45.0
80.0
R1
112.5
160.0
N1
28.5
40.0
P1
45.0
80.0
R1
112.5
160.0
N1
28.5
40.0
Note:
1. 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.
2. IV tolerance = ±10 %.
3
Part Numbering System
HSM x 1 – A x 2 x 3 x 4 – x 5 x 6 x 7 x 8 x 9
Packaging Option
Color Bin Selection
Intensity Bin Select
Device Specification Configuration
Package Type
LED Chip Color
Absolute Maximum Ratings (TA = 25°C)
Parameters
GaP
AlGaAs
Red, Amber
AlInGaP
Yellow Green
20 mA[4]
GaN/InGaN
DC Forward Current[1]
30 mA
30 mA
30 mA[3,4]
Peak Forward Current[2]
100 mA
100 mA
100 mA
100 mA
100 mA
Power Dissipation
78 mW
78 mW
72 mW
48 mW
120 mW
Reverse Voltage
5V
Junction Temperature
110°C
Operating Temperature
–55°C to +100°C
Storage Temperature
–55°C to +100°C
Notes:
1. Derate linearly as shown in figure 4.
2. Duty factor = 10%, Frequency = 1kHz.
3. Drive Current between 10 mA and 30 mA are recommended for best long term performance.
4. Operation at current below 5 mA is not recommended.
4
20 mA
Optical Characteristics (TA = 25°C)
Color
Peak
Wavelength
PEAK (nm)
Typ.
Dominant
Wavelength
D (nm)[1]
Typ.
Viewing Angle
21/2 (Degrees)[2]
Typ.
Luminous
Efficacy v
(lm/W)[3]
Typ.
Luminous Intensity/
Total Flux
Iv (mcd) /v (mlm)
Typ.
GaP Red
635
626
120
120
0.45
AlGaAs Red
645
637
120
63
0.45
AlInGaP Red
635
626
120
150
0.45
AlInGaP Red Orange
621
615
120
240
0.45
GaP Orange
600
602
120
380
0.45
AlInGaP Amber
592
590
120
480
0.45
GaP Yellow
583
585
120
580
0.45
AlInGaP Amber
592
590
120
480
0.45
GaP Yellow Green
565
569
120
590
0.45
GaP Emerald Green
558
560
120
650
0.45
InGaN Green
523
525
120
500
0.45
InGaN Blue
468
470
120
75
0.45
GaN Blue
428
462
120
65
0.45
AlInGaP Yellow Green
575
571
120
620
0.45
Notes:
1. The dominant wavelength, D, is derived from the CIE Chromaticity Diagram and represents the color of the device.
2. 1/2 is the off-axis angle where the luminous intensity is 1/2 the peak intensity.
3. Radiant intensity, Ie in watts/steradian, may be calculated from the equation Ie = Iv/v, where Iv is the luminous intensity in candelas and v is
the luminous efficacy in lumens/watt.
Electrical Characteristics (TA = 25°C)
Dice Technology
Forward Voltage
VF (Volts) @ IF = 20mA
Typ.
Max.
Reverse Voltage
VR @ 100 A
Min.
Reverse Voltage
VR @ 10 A
Min.
GaP
2.2
2.6
5
-
AS AlGaAs
1.9
2.6
5
-
AlInGaP
1.9
2.4
5
-
GaN Blue
3.9
4.3
-
5
InGaN
3.4
4.05
-
5
5
1.0
RELATIVE INTENSITY
0.9
BLUE
YELLOW GREEN
CYAN
AMBER
0.8
GREEN
0.7
ORANGE
0.6
0.5
0.4
RED ORANGE
0.3
RED
0.2
0.1
0
380
430
530
480
630
580
680
730
780
WAVELENGTH – nm
RELATIVE INTENSITY
1.0
GaP
EMERALD
GREEN
0.8
GaP
YELLOW
GREEN
0.6
GaP YELLOW
GaP ORANGE
GaN BLUE
0.4
GaP RED
0.2
0
380
480
430
580
530
680
630
730
780
WAVELENGTH – nm
Figure 1. Relative intensity vs. wavelength
1.8
30
25
GaP
20
AlGaAs
15
InGaN
AS AlInGaP
10
GaN
BLUE
5
0
0
1
2
3
4
5
FORWARD VOLTAGE – V
Figure 2. Forward current vs. forward voltage
6
35
1.6
Gap
30
AlInGaP
AlGaAs
1.4
InGaN
1.2
GaN
1.0
0.8
0.6
CURRENT – mA
RELATIVE LUMINOUS INTENSITY
(NORMALIZED AT 20 mA)
FORWARD CURRENT – mA
35
AlGaAs
GaP
25
AS AlInGaP
20
InGaN/GaN
15
10
0.4
5
0.2
0
0
5
10
15
20
25
30
DC FORWARD CURRENT – mA
Figure 3. Relative intensity vs. forward voltage
35
0
0
20
40
60
80
100
120
TEMPERATURE – °C
Figure 4a. Maximum forward current vs. ambient
temperature. Derated based on TJMAX = 110°C,
RJA = 500°C/W (1 chip on)
DOMINANT WAVELENGTH – nm
MAXIMUM FORWARD CURRENT – mA
540
35
30
AlGaAs
GaP
25
AS AlInGaP
20
15
InGaN/GaN
10
5
0
0
20
40
60
80
100
530
510
500
490
480
InGaN BLUE
470
460
120
InGaN GREEN
520
0
5
AMBIENT TEMPERATURE – °C
10
15
20
25
30
CURRENT – mA
Figure 4b. Maximum forward current vs. ambient
temperature. Derated based on TJMAX = 110°C,
RJA = 700°C/W (3 chip on)
Figure 5. Dominant wavelength vs. forward
current – InGaN
NORMALIZED INTENSITY
1.0
0.8
0.6
0.4
0.2
0
-90 -80 -70 -60 -50 -40 -30 -20 -10
0
10 20 30 40 50 60 70 80 90
ANGULAR DISPLACEMENT – DEGREES
Figure 6. Radiation pattern
TEMPERATURE
20 SEC. MAX.
240°C MAX.
3°C/SEC. MAX.
100-150°C
183°C
–6°C/SEC.
MAX.
3°C/SEC.
MAX.
120 SEC. MAX.
60-150 SEC.
TIME
Figure 7. Recommended SnPb reflow soldering profile
Note: For detail information on reflow soldering of Avago surface mount LEDs, do refer
to Avago Application Note AN 1060 Surface Mounting SMT LED Indicator Components.
7
35
;;;
;;;
;;;
;;;;
;;;
;;;
;;;
;;;
2.60
3.30
3.30
0.40
1.10
0.50
4.50
7.50
1.50
SOLDER RESIST
Figure 8. Recommended soldering pad pattern
TRAILER
COMPONENT
LEADER
480 mm MIN. FOR ∅180 REEL.
960 mm MIN. FOR ∅330 REEL.
200 mm MIN. FOR ∅180 REEL.
200 mm MIN. FOR ∅330 REEL.
C
A
USER FEED DIRECTION
Figure 9. Tape leader and trailer dimension
4 ± 0.1
4 ± 0.1
2 ± 0.05
2.29 ± 0.1
1.75 ± 0.1
+0.1
∅1.5 –0
C
3.5 ± 0.05
+0.3
8 –0.1
3.81 ± 0.1
A
3.05 ± 0.1
+0.1
∅1 –0
8°
0.229 ± 0.01
Figure 10. Tape leader and trailer dimension
8
Ø 20.5 ± 0.3
2 +0.5
–0
62.5
180
+0
–2.5
Ø 13 ± 0.2
8.4
+1.50
(MEASURED AT OUTER EDGE)
–0.00
14.4 (MAX. MEASURED AT HUB)
LABEL AREA (111 mm x 57 mm)
WITH DEPRESSION (0.25 mm)
7.9 (MIN.)
10.9 (MAX.)
Figure 11. Reel dimension
USER FEED DIRECTION
ID
Note : Diameter "ID" should
be bigger than 2.3mm
CATHODE SIDE
PRINTED LABEL
Figure 12. Reeling Orientation
9
Figure 13. Recommended Pick and Place Nozzle Size
Handling Precaution
The encapsulation material of the product is made of
silicone for better reliability of the product. As silicone
is a soft material, please do not press on the silicone or
poke a sharp object onto the silicone. These might damage the product and cause premature failure. During assembly of handling, the unit should be held on the body
only. Please refer to Avago Application Note AN 5288 for
detail information.
B. Control after opening the MBB
- The humidity indicator card (HIC) shall be read
immediately upon opening of MBB.
- The LEDs must be kept at
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