HLMP-EG55-NJ000 [AGILENT]

T-1 3/4 (5 mm) Precision Optical Performance AlInGaP LED Lamps; T-1 3/4 ( 5mm)的精密光学性能的AlInGaP LED灯
HLMP-EG55-NJ000
型号: HLMP-EG55-NJ000
厂家: AGILENT TECHNOLOGIES, LTD.    AGILENT TECHNOLOGIES, LTD.
描述:

T-1 3/4 (5 mm) Precision Optical Performance AlInGaP LED Lamps
T-1 3/4 ( 5mm)的精密光学性能的AlInGaP LED灯

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T-13/ 4 (5 mm) Precision Optical  
Performance AlInGaP LED Lamps  
Technical Data  
SunPower Series  
HLMP-EL55  
HLMP-EH55  
HLMP-EG55  
HLMP-EL57  
HLMP-EH57  
HLMP-EG57  
Features  
Applications  
• Well Defined and Smooth  
Spatial Radiation Patterns  
• Wide Viewing Angle  
• Tinted Diffused Lamp  
• High Luminous Output  
• Traffic Management:  
Variable Message Signs  
Traffic Management Signs  
• Commercial Indoor/Outdoor  
Advertising:  
Signs  
Marquees  
Passenger Information  
• Colors:  
590/592 nm Amber  
615/617 nm Reddish-Orange  
626/630 nm Red  
• Automotive:  
Exterior and Interior Lights  
• High Operating Temperature:  
TJLED = +130°C  
• Superior Resistance to  
Moisture  
Description  
There are two families of amber,  
red, and red-orange lamps;  
AlInGaP and the higher  
These Precision Optical Perform-  
ance AlInGaP LEDs provide  
superior light output for  
excellent readability in sunlight  
and are extremely reliable.  
AlInGaP LED technology  
provides extremely stable light  
output over long periods of time.  
Precision Optical Performance  
lamps utilize the aluminum  
indium gallium phosphide  
(AlInGaP) technology.  
performance AlInGaP II.  
Benefits  
• Viewing Angles Match Traffic  
Management Sign  
Requirements  
• Colors Meet Automotive  
Specifications  
• Superior Performance in  
Outdoor Environments  
• Suitable for Autoinsertion  
onto PC Boards  
The high maximum LED  
junction temperature limit of  
+130° C enables high  
temperature operation in bright  
sunlight conditions.  
These lamps are available in two  
package options to give the  
designer flexibility with device  
mounting.  
These LED lamps are tinted,  
diffused, T-13/4 packages  
incorporating second generation  
optics producing well defined  
radiation patterns at specific  
viewing cone angles.  
2
Part Numbering System  
HLMP - x x xx - x x x xx  
Mechanical Options  
00: Bulk Packaging  
DD: Ammo Pack  
Color Bin Selections  
0: No color bin limitation  
4: Amber color bin 4 only  
K: Amber color bins 2 and 4 only  
Maximum Intensity Bin  
Minimum Intensity Bin  
Viewing Angle & Lead Stand Offs  
55: 55 deg without lead stand offs; AlInGaP  
57: 55 deg without lead stand offs; AlInGaP II  
Color  
D: 630 nm Red  
G: 626 nm Red  
H: 615/617 nm Red-Orange  
L: 590/592 Amber  
Package  
E: 5 mm Round  
Device Selection Guide (AlInGaP)  
Typical  
Viewing  
Angle  
Color and  
Dominant  
Wavelength  
(nm), Typ.[3]  
Luminous  
Intensity Iv (mcd) [1,2]  
@20 mA  
Lamps Without Standoffs  
on Leads  
(Outline Drawing A)  
2θ1/ 2  
(Deg.)[4]  
Min.  
Max.  
400  
55°  
Amber 590  
Red-Orange 615  
Red 626  
HLMP-EL55-GK000  
HLMP-EH55-GK000  
HLMP-EG55-GK000  
140  
140  
140  
400  
400  
Device Selection Guide (AlInGaP II)  
Typical  
Viewing  
Angle  
Color and  
Dominant  
Wavelength  
(nm), Typ.[3]  
Luminous  
Lamps Without Standoffs  
on Leads  
(Outline Drawing A)  
Intensity Iv (mcd) [1,2]  
@20 mA  
2θ1/ 2  
(Deg.)[4]  
Min.  
Max.  
1150  
1150  
1150  
55°  
Amber 592  
Red-Orange 617  
Red 630  
HLMP-EL57-LP000  
HLMP-EH57-LP000  
HLMP-ED57-LP000  
400  
400  
400  
Notes:  
1. The luminous intensity is measured on the mechanical axis of the lamp package.  
2. The optical axis is closely aligned with the package mechanical axis.  
3. The dominant wavelength, λd, is derived from the CIE Chromaticity Diagram and represents the color of the lamp.  
4. θ1/ 2 is the off-axis angle where the luminous intensity is one half the on-axis intensity.  
3
Package Dimensions  
5.00 ± 0.20  
(0.197 ± 0.008)  
1.14 ± 0.20  
(0.045 ± 0.008)  
8.71 ± 0.20  
(0.343 ± 0.008  
2.35 (0.093)  
MAX.  
31.60  
(1.244)  
MIN.  
0.70 (0.028)  
MAX.  
CATHODE  
LEAD  
0.50 ± 0.10  
(0.020 ± 0.004)  
SQ. TYP.  
1.00  
(0.039)  
MIN.  
5.80 ± 0.20  
(0.228 ± 0.008)  
CATHODE  
FLAT  
2.54 ± 0.38  
(0.100 ± 0.015)  
NOTES:  
1. ALL DIMENSIONS ARE IN MILLIMETERS (INCHES).  
2. LEADS ARE MILD STEEL, SOLDER DIPPED.  
3. TAPERS SHOWN AT TOP OF LEADS (BOTTOM OF LAMP PACKAGE) INDICATE AN  
EPOXY MENISCUS THAT MAY EXTEND ABOUT 1 mm (0.040 in.) DOWN THE LEADS.  
4. RECOMMENDED PC BOARD HOLE DIAMETERS:  
LAMP PACKAGE WITHOUT STAND-OFFS: FLUSH MOUNTING AT BASE OF  
LAMP PACKAGE = 1.143/ 1.067 (0.044/ 0.042).  
4
Absolute Maximum Ratings at T = 25°C  
A
DC Forward Current[1,2,3] ..................................................................50 mA  
Peak Pulsed Forward Current[2,3] ................................................. 100 mA  
Average Forward Current[3] .............................................................30 mA  
Reverse Voltage (IR = 100 µA)................................................................ 5 V  
LED Junction Temperature .............................................................. 130° C  
Operating Temperature .................................................. –40° C to +100° C  
Storage Temperature ...................................................... –40° C to +120° C  
Through-the-Wave Solder Temperature ................ 250° C for 3 seconds  
[1.59 mm (0.060 in.) below body]  
Notes:  
1. Derate linearly as shown in Figure 4.  
2. For long term performance with minimal light output degradation, drive currents  
between 10 mA and 30 mA are recommended. For more information on recommended  
drive conditions, please refer to Application Brief I-024 (5966-3087E).  
3. Please contact your Agilent Technologies sales representative about operating currents  
below 10 mA.  
Electrical/ Optical Characteristics at T = 25°C  
A
Parameter  
Symbol  
Min.  
Typ.  
Max.  
Units  
Test Conditions  
IF = 20 mA  
Forward Voltage  
V
F
V
Amber (λd = 590 nm)  
Amber (λd = 592 nm)  
Red-Orange (λd = 615 nm)  
Red-Orange (λd = 617 nm)  
Red (λd = 626 nm)  
2.02  
2.15  
1.94  
2.08  
1.90  
2.00  
2.4  
2.4  
2.4  
2.4  
2.4  
2.4  
Red (λd = 630 nm)  
Reverse Voltage  
V
R
5
20  
V
IR = 100 µA  
Peak Wavelength  
λPEAK  
nm  
Peak of Wavelength of  
Spectral Distribution  
at IF = 20 mA  
Amber (λd = 590 nm)  
Amber (λd = 592 nm)  
Red-Orange (λd = 615 nm)  
Red-Orange (λd = 617 nm)  
Red (λd = 626 nm)  
592  
594  
621  
623  
635  
639  
Red (λd = 630 nm)  
Spectral Halfwidth  
∆λ1/ 2  
17  
nm  
ns  
Wavelength Width at  
Spectral Distribution  
1/ 2 Power Point at  
IF = 20 mA  
Speed of Response  
τs  
20  
Exponential Time  
Constant, e-t/ τ  
s
Capacitance  
C
40  
pF  
V = 0, f = 1 MHz  
F
Thermal Resistance  
RθJ-PIN  
240  
°C/ W  
LED Junction-to-Cathode  
Lead  
Luminous Efficacy[1]  
Amber (λd = 590 nm)  
Amber (λd = 592 nm)  
Red-Orange (λd = 615 nm)  
Red-Orange (λd = 617 nm)  
Red (λd = 626 nm)  
ηv  
lm/ W  
Emitted Luminous  
Power/ Emitted Radiant  
Power  
480  
500  
260  
235  
150  
155  
Red (λd = 630 nm)  
Note:  
1. The radiant intensity, Ie, in watts per steradian, may be found from the equation Ie = Iv/ ηv, where Iv is the luminous intensity in candelas and ηv is  
the luminous efficacy in lumens/ watt.  
5
1.0  
RED-ORANGE  
RED  
AMBER  
0.5  
0
500  
550  
600  
650  
700  
WAVELENGTH – nm  
Figure 1. Relative Intensity vs. Peak Wavelength.  
3.0  
2.5  
2.0  
1.5  
1.0  
100  
90  
50  
40  
30  
20  
80  
70  
Rθ = 585° C/ W  
JA  
60  
RED  
50  
Rθ = 780° C/ W  
JA  
40  
AMBER  
30  
20  
10  
0
0.5  
0
10  
0
1.0  
0
20  
40  
60  
1.5  
2.0  
2.5  
3.0  
0
20  
AMBIENT TEMPERATURE °C  
A
40  
60  
80  
100  
I DC FORWARD CURRENT mA  
V FORWARD VOLTAGE V  
T
F
F
Figure 2. Forward Current vs. Forward  
Voltage.  
Figure 3. Relative Luminous Intensity vs.  
Forward Current.  
Figure 4. Maximum Forward Current vs.  
Ambient Temperature. Derating Based on  
TJMAX = 130°C.  
100  
90  
80  
70  
60  
50  
40  
30  
20  
10  
0
-100  
-80  
-60  
-40  
-20  
0
20  
40  
60  
80  
100  
θ ANGULAR DISPLACEMENT DEGREES  
Figure 5. Representative Spatial Radiation Pattern for 55° Viewing Angle Lamps.  
Intensity Bin Limits  
(mcd at 20 mA)  
Amber Color Bin Limits  
(nm at 20 mA)  
Bin  
Bin  
Name  
Min.  
140  
180  
240  
310  
400  
520  
680  
880  
Max.  
180  
240  
310  
400  
520  
680  
880  
1150  
Name  
Min.  
584.5  
587.0  
589.5  
592.0  
Max.  
587.0  
589.5  
592.0  
594.5  
G
1
2
4
6
H
J
K
L
Tolerance for each bin limit is ± 0.5 nm.  
M
N
Note:  
P
1. Bin categories are established for  
classification of products. Products  
may not be available in all bin  
categories.  
Tolerance for each bin limit is ± 15%.  
www.agilent.com/semiconductors  
For product information and a complete list of  
distributors, please go to our web site.  
For technical assistance call:  
Americas/Canada: +1 (800) 235-0312 or  
(916) 788-6763  
Europe: +49 (0) 6441 92460  
China: 10800 650 0017  
Hong Kong: (+65) 6756 2394  
India, Australia, New Zealand: (+65) 6755 1939  
Japan: (+81 3) 3335-8152 (Domestic/Interna-  
tional), or 0120-61-1280 (Domestic Only)  
Korea: (+65) 6755 1989  
Singapore, Malaysia, Vietnam, Thailand,  
Philippines, Indonesia: (+65) 6755 2044  
Taiwan: (+65) 6755 1843  
Data subject to change.  
Copyright © 2004 Agilent Technologies, Inc.  
Obsoletes 5988-1855E  
July 13, 2004  
5988-3460EN  

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