Agilent HLMP-FWxx
5mm Extra Bright Flat Top InGaN
White LED Lamps.
Data Sheet
Features
•
High luminous white emission
•
Flat top
•
Standoff or non-standoff leads
•
Superior resistance to moisture
Applications
•
Electronic signs and signals
•
Small area illumination
•
Legend backlighting
•
General purpose indicators
Benefit
•
Reduced power consumption,
higher reliability, and increased
optical/mechanical design
flexibility compared to
incandescent bulbs and other
alternative white light sources.
HLMP-FW66, HLMP-FW67
Description
These high intensity white LED
lamps are based on InGaN
material technology. A blue
LED die is coated by phosphor
to produce white. The typical
resulting color is described by
the coordinates x = 0.31, y =
0.31 using the 1931 CIE
Chromaticity Diagram.
These flat top lamps are
untinted, non-diffused, and
incorporate precise optics
which produce well-defined
spatial radiation patterns at
specific viewing cone angle.
Caution: Devices are Class 1 ESD sensitive. Please observe appropriate precautions during
handling and processing. Refer to Application Note AN-1142 for additional details.
Package Dimensions
Package Dimension A
5.00±0.20
[ 0.197±0.008 ]
7.00±0.20
[ 0.278±0.008 ]
Package Dimension B
5.00±0.20
[ 0.197±0.008 ]
11.02±0.25
[ 0.434±0.010 ]
1.14±0.20
[ 0.045±0.008 ]
1.14±0.20
[ 0.045±0.008 ]
31.60 MIN.
[ 1.244 ]
31.60 MIN.
[ 1.244 ]
CATHODE
LEAD
CATHODE
LEAD
1.00
MIN.
[ 0.038 ]
0.50±0.10
SQ. TYP.
[ 0.020±0.004 ]
1.00
MIN.
[ 0.038 ]
0.50±0.10
SQ. TYP.
[ 0.020±0.004 ]
5.72±0.20
[ 0.225±0.008 ]
CATHODE
FLAT
2.54±0.38
[ 0.100±0.015 ]
CATHODE
FLAT
5.72±0.20
[ 0.225±0.008 ]
2.54±0.38
[ 0.100±0.015 ]
Notes:
1. All dimensions are in millimeters /inches.
2. Epoxy meniscus may extend about 1mm
(0.040") down the leads.
3. If heat-sinking application is required, the
terminal for heat sink is anode.
Part Numbering System
H L M P - FW XX - X X X XX
Mechanical Option
00: Bulk
DD: Ammo Pack Straight Leads
Color Bin Options
0: Full color bin distribution
B: Color bin 2 & 3 only
Maximum Intensity Bin
0: No maximum intensity bin limit
Others: Refer to Device Selection Guide
Minimum Intensity Bin
Refer to Device Selection Guide
Viewing Angle and Standoff Option
66: Flat top without standoff
67: Flat top with standoff
2
Device Selection Guide
Part Number
HLMP-FW66-LP0xx
HLMP-FW66-MN0xx
HLMP-FW66-MNBxx
HLMP-FW66-MQ0xx
HLMP-FW66-NP0xx
HLMP-FW66-NPBxx
HLMP-FW67-LP0xx
HLMP-FW67-MN0xx
HLMP-FW67-MNBxx
HLMP-FW67-MQ0xx
HLMP-FW67-NP0xx
HLMP-FW67-NPBxx
Typical Viewing Angle,
2θ½ (Degree)
85
85
85
85
85
85
85
85
85
85
85
85
Intensity (mcd) at 20 MA
Min.
400
520
520
520
680
680
400
520
520
520
680
680
Max.
1150
880
880
1500
1150
1150
1150
880
880
1500
1150
1150
Standoff
No
No
No
No
No
No
Yes
Yes
Yes
Yes
Yes
Yes
Package
Dimension
A
A
A
A
A
A
B
B
B
B
B
B
Notes:
1. Tolerance for luminous intensity measurement is
±
15%
2. The luminous intensity is measured on the mechanical axis of the lamp package.
3. The optical axis is closely aligned with the package mechanical axis.
4. 2θ
1/2
is the off-axis angle where the luminous intensity is ½ the on axis intensity.
5. Part numbers in
BOLD
are recommended for new designs.
Absolute Maximum Rating at T
A
= 25
o
C
Parameters
DC forward current
Power dissipation
LED junction temperature
Operating temperature range
Storage temperature range
Notes:
1. Derate linearly as shown in figure 2.
2. Duty factor 10%, frequency 1KHz
[1]
[2]
Value
30
100
105
110
-40 to +85
-40 to +100
Unit
mA
mA
mW
o
o
o
Peak pulsed forward current
C
C
C
3
Electrical/Optical Characteristics T
A
= 25
o
C
Parameters
Forward voltage
Reverse Voltage
[1]
Thermal resistance
Chromaticity Coordinates
[2]
Capacitance
Symbol
V
F
V
R
Rθ
J-PIN
X
Y
C
Min
5.0
Typ
3.2
240
0.31
0.31
70
Max
4.0
Units
V
V
o
Test Condition
I
F
= 20 mA
I
R
= 10
µA
LED Junction to anode lead
I
F
= 20 mA
V
F
=0, f=1MHz
C/W
Notes:
1. The reverse voltage of the product is equivalent to the forward voltage of the protective chip at I
R
= 10
µA
2. The chromaticity coordinates are derived from the CIE 1931 Chromaticity Diagram and represent the perceived color of the device.
1.0
RELATIVE LUMINOUS INTENSITY
35
1.5
RELATIVE LUMINOUS INTENSITY
Rθ
J-A
= 585˚C/W
I
F
- FORWARD CURRENT - mA
30
25
Rθ
J-A
= 780˚C/W
0.8
0.6
0.4
0.2
0.0
380
1.2
0.9
0.6
0.3
0
20
15
10
5
0
0
20
40
60
80
100
AMBIENT TEMPERATURE - ˚C
480
580
680
WAVELENGTH - nm
780
0
10
20
FORWARD CURRENT - mA
30
Figure 1. Relative Intensity vs. Wavelength
Figure 2. Forward Current vs. Ambient
Temperature.
Figure 3. Relative Intensity versus DC
Forward Current
0.025
0.020
30
I
F
- FORWARD CURRENT - mA
1mA
25
20
15
10
5
0
2.0 2.2 2.4 2.6 2.8 3.0 3.2 3.4 3.6
V
F
- FORWARD VOLTAGE - VOLTS
Y-COORDINATES
0.015
0.010
0.005
0.000
-0.005
30mA
-0.010
-0.005
5mA
10mA
20mA
0.000
0.005
0.010
X-COORDINATES
0.015
Figure 4. Chromaticity shift vs. Current
*Note: (x,y) values @ 20mA reference to (0,0)
Figure 5. Forward Current vs. Forward
Voltage.
4
1.0
Intensity Bin Limit Table
Intensity (mcd) at 20 mA
Bin
Min
400
520
680
880
1150
Max
520
680
880
1150
1500
RELATIVE INTENSITY
0.5
L
M
N
0.0
-90
-60
-30
0
30
60
90
P
Q
ANGULAR REPLACEMENT - DEGREE
Figure 6. Spatial Radiation Pattern
Tolerance for each bin limit is
±
15%
Color Bin Limit Table
Rank
1
Limits (Chromaticity Coordinates)
X
Y
0.330
0.360
0.287
0.295
0.264
0.267
0.283
0.305
0.330
0.318
0.296
0.276
0.280
0.248
0.287
0.295
0.356
0.351
0.330
0.318
0.296
0.276
0.330
0.339
0.361
0.385
Color Bin Limits with Respect to CIE
1931 Chromaticity Diagram
0.40
0.35
Y-COORDINATE
2
X
Y
0.330
0.339
0.283
0.305
0.330
0.360
4
2
1
BLACK
BODY
CURVE
0.30
3
0.25
3
X
Y
4
X
Y
0.20
0.26
Tolerance for each bin limit is
±
0.01
Note:
1. Bin categories are established for classification of products. Products may not be available in all
bin categories. Please contact your Agilent representative for information on currently available
bins.
0.30
0.34
X-COORDINATE
0.38
5