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HLMP-CX3B

New 5mm Blue and Green LED Lamps High luminous output

厂商名称:AVAGO

厂商官网:http://www.avagotech.com/

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HLMP-Cx1A/1B/2A/2B/3A/3B
New 5mm Blue and Green LED Lamps
Data Sheet
Description
These high intensity blue and green T-1¾ package LEDs
are untinted and non-diffused. Based on the most efficient
and cost effective InGaN material technology and incor-
porating second generation optics they produce well
defined spatial radiation patterns at specific viewing cone
angles.
Advanced optical grade epoxy construction offers superior
high temperature and moisture resistance performance in
outdoor signal and sign applications. The epoxy contains
UV inhibitor ro reduce the effects of long term exposure
to direct sunlight.
Features
Well defined spatial radiation pattern
High luminous output
Untinted, Non-diffused
Available in Color:
– Blue 470nm
– Green 525nm
Viewing Angle: 15°, 23° and 30°
Standoff or non-standoff
Superior resistance to moisture
Applications
Commercial outdoor advertising
Traffic Sign
Variable Message Sign
CAUTION:
INGaN devices are Class 1C HBM ESD sensitive per JEDEC Standard. Please observe appropriate
precautions during handling and processing. Refer to Application Note AN – 1142 for additional details.
Package Dimensions
Drawing A (Non-standoff)
1.00 ± 0.20
0.039 ± 0.008
8.70 ± 0.20
0.343 ± 0.008
5.00 ± 0.20
0.197 ± 0.008
31.60 min
1.244
Cathode
0.70 max
0.028
0.50 ± 0.10 sq. typ.
0.020 ± 0.004
2.54 ± 0.38
0.100 ± 0.015
1.00 min
0.039
5.80 ± 0.20
0.228 ± 0.008
cathode
flat
Drawing B (Standoff)
1.00 ± 0.20
0.039 ± 0.008
1.30 ± 0.15
0.051 ± 0.006 0.70 max
0.028
5.80 ± 0.20
0.228 ± 0.008
8.70 ± 0.20
0.343 ± 0.008
5.00 ± 0.20
0.197 ± 0.008
0.50 ± 0.10 sq. typ.
0.020 ± 0.004
2.54 ± 0.38
0.100 ± 0.015
Cathode
d
31.60 min
1.244
1.00 min
0.039
cathode
flat
Viewing Angle
HLMP-Cx1B
HLMP-Cx2B
HLMP-Cx3B
d
12.96±0.25
(0.510±0.010)
12.32 ±0.25
(0.485±0.010)
12.00±0.25
(0.472±0.010)
Notes:
1. All dimensions are in millimeters (inches)
2. Leads are mild steel with tin plating.
3. The epoxy meniscus is 1.50mm max
2
Device Selection Guide
Typical Viewing
angle, 2θ
½
(°)
[4]
15°
Part Number
HLMP-CB1A-XY0DD
HLMP-CB1A-XYBDD
HLMP-CB1A-XYCDD
HLMP-CB1B-XY0DD
HLMP-CB1B-XYBDD
HLMP-CB1B-XYCDD
HLMP-CB2A-VW0DD
HLMP-CB2A-VWBDD
HLMP-CB2A-VWCDD
HLMP-CB2B-VW0DD
HLMP-CB2B-VWBDD
HLMP-CB2B-VWCDD
HLMP-CB3A-UV0DD
HLMP-CB3A-UVBDD
HLMP-CB3A-UVCDD
HLMP-CB3B-UV0DD
HLMP-CB3B-UVBDD
HLMP-CB3B-UVCDD
HLMP-CM1A-560DD
HLMP-CM1B-560DD
HLMP-CM2A-230DD
HLMP-CM2B-230DD
HLMP-CM3A-Z10DD
HLMP-CM3A-Z1BDD
HLMP-CM3A-Z1CDD
HLMP-CM3B-Z10DD
HLMP-CM3B-Z1BDD
HLMP-CM3B-Z1CDD
Color
Blue
Luminous Intensity I
v
(mcd) at 20
mA
[1,2,5]
Standoff /
Min
Max
Non Standoff
7200
12000
Non Standoff
Package
drawing
A
Standoff
B
23°
4200
7200
Non Standoff
A
Standoff
B
30°
3200
5500
Non Standoff
A
Standoff
B
Green
15°
23°
30°
45000
21000
12000
76000
35000
21000
Non Standoff
Standoff
Non Standoff
Standoff
Non Standoff
A
B
A
B
A
Standoff
B
Notes:
1. The luminous intensity is measured on the mechanical axis of the lamp package and it is tested with pulsing condition.
2. The optical axis is closely aligned with the package mechanical axis.
3. Dominant wavelength,
λ
d
, is derived from the CIE Chromaticity Diagram and represents the color of the lamp.
4.
θ
½
is the off-axis angle where the luminous intensity is half the on-axis intensity.
5. Tolerance for each bin limit is ± 15%
3
Part Numbering System
HLMP C x xx
x x x xx
Packaging Option
DD: Ammo Pack
Color Bin Selection
0: Full Distribution
B: Color Bin 2 & 3
C: Color Bin 3 & 4
Maximum Intensity Bin
0: No maximum intensity limit (refer to selection guide)
Minimum Intensity Bin
Refer to Device Selection Guide
Viewing Angle and Lead Standoffs
1A: 15° without lead standoff
1B: 15° with lead standoff
2A: 23° without lead standoff
2B: 23° with lead standoff
3A: 30° without lead standoff
3B: 30° with lead standoff
Color
B: Blue 470
M: Green 525
Note: please refer to AB 5337 for complete information on part numbering system
Absolute Maximum Ratings
T
J
= 25°C
Parameter
DC Forward Current
[1]
Peak Forward Current
Power Dissipation
Reverse Voltage
LED Junction Temperature
Operating Temperature Range
Storage Temperature Range
Notes:
1. Derate linearly as shown in figure 4.
2. Duty Factor 10%, frequency 1KHz.
Blue / Green
30
100
[2]
116
5
110
-40 to + 85
-40 to + 100
Unit
mA
mA
mW
V
°C
°C
°C
4
Electrical / Optical Characteristics
T
J
= 25°C
Parameter
Forward Voltage
Green / Blue
Reverse Voltage
Dominant Wavelength
[1]
Green
Blue
Peak Wavelength
Green
Blue
Spectral Half Width
Green
Blue
Thermal Resistance
Luminous Efficacy
[2]
Green
Blue
Thermal coefficient of
λ
d
Green
Blue
Symbol
V
F
V
R
λ
d
Min.
2.8
5
519.0
460.0
Typ.
3.2
Max.
3.8
Units
V
V
Test Conditions
I
F
= 20 mA
I
R
= 10
µA
I
F
= 20 mA
525.0
470.0
516
464
30
23
240
518
78
0.028
0.024
539.0
480.0
nm
λ
PEAK
nm
Peak of Wavelength of Spectral
Distribution at I
F
= 20 mA
I
F
= 20mA
Δλ
1/2
nm
J-PIN
η
V
°C/W
lm/W
LED Junction-to-Pin
Emitted Luminous Flux /
Emitted Radiant Flux
I
F
= 20 mA ; +25°C ≤ T
J
≤ +100°C
nm/°C
Notes:
1. The dominant wavelength is derived from the chromaticity Diagram and represents the color of the lamp
2. The radiant intensity, I
e
in watts per steradian, may be found from the equation I
e
= I
V
V
where I
V
is the luminous intensity in candelas and
η
V
is
the luminous efficacy in lumens/watt.
5
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