HLMP-0800#002 [AGILENT]

Optoelectronic Device;
HLMP-0800#002
型号: HLMP-0800#002
厂家: AGILENT TECHNOLOGIES, LTD.    AGILENT TECHNOLOGIES, LTD.
描述:

Optoelectronic Device

光电
文件: 总6页 (文件大小:105K)
中文:  中文翻译
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Agilent HLMP-40xx, HLMP-08xx  
T-13/ 4, 2mmx5mmRectangular  
Bicolor LED Lamps  
Data Sheet  
Features  
Two color operation  
Three leads with one common  
cathode  
Option of straight or spread leads  
configuration  
Diffused, wide visibility range  
Description  
The T-1 3/4 HLMP-40xx and 2  
mm by 5 mm rectangular HLMP-  
08xx are three leaded bicolor  
light sources designed for a  
variety of applications where  
dual state illumination is  
required in the same package.  
There are two LED chips,  
mounted on a central common  
cathode lead for maximum on-  
axis viewability. Colors between  
the two chips can be generated  
by independently pulse width  
modulating the LED chips.  
Selection Guide  
Min. Luminous Intensity Iv (mcd)  
Package  
Part Number  
HLMP-4000  
HLMP-4000# xxx  
HLMP-4015  
HLMP-0800  
HLMP-0805  
Color  
Green  
Red  
Yellow  
I (mA)  
F
T-1 3/ 4  
Green/ HER  
4.2  
2.1  
10  
10  
20  
20  
20  
4.2  
2.1  
Green/ Yellow  
Green/ HER  
20.0  
2.6  
20  
Rectangular  
2.1  
Green/ Yellow  
2.6  
1.4  
Part Numbering System  
HLMP - X X X X # X X X  
Mechanical Options  
002:Tape & Reel, Straight Leads  
010:Right Angle Housing, Even Leads  
Color Options  
00:  
High Efficiency Red (HER)/High Efficiency Green  
05/15: Yellow/High Efficiency Green  
Package Options  
40: T-1 3/4 (5 mm)  
08: Rectangular  
Package Dimensions  
2.23 (0.088)  
1.98 (0.078)  
5.08 (0.200)  
4.57 (0.180)  
5.18 (0.204)  
4.93 (0.194)  
8.00 (0.315)  
7.37 (0.290)  
9.19 (0.362)  
8.43 (0.332)  
0.89 (0.035)  
0.64 (0.025)  
5.46 (0.215)  
4.98 (0.196)  
25.40  
MIN.  
(1.00)  
COMMON  
CATHODE  
25.40  
(1.00)  
COMMON  
CATHODE  
MIN.  
2.41 (0.095)  
2.03 (0.085)  
1.27 (0.050)  
NOM.  
0.508 (0.020)  
SQ. TYP.  
0.508 (0.020)  
SQ. TYP.  
SIDE VIEW  
1.27 (0.050)  
NOM.  
1.27 (0.050)  
NOM.  
1.27 (0.050)  
NOM.  
2.54 (0.100)  
NOM.  
2.54 (0.100)  
NOM.  
GREEN ANODE  
FLAT INDICATES  
ANODE  
6.10 (0.240)  
5.59 (0.220)  
RED OR YELLOW ANODE  
(SHORT LEAD)  
GREEN  
ANODE  
RED OR YELLOW ANODE  
(SHORT LEAD)  
COMMON CATHODE  
COMMON CATHODE  
HLMP-40xx Straight Leads  
HLMP-08xx Straight Leads  
Notes:  
1. All dimensions are in millimeters (inches).  
2. Epoxy meniscus may extend about 1 mm (0.040") down the leads.  
2
Absolute Maximum Ratings at T = 25°C  
A
Parameter  
HER/ Green  
Yellow/ Green  
Units  
mA  
mA  
mA  
mW  
°C  
Peak Forward Current  
90  
60  
[1,2]  
Average Forward Current  
(Total)  
25  
20  
[2]  
DC Current (Total)  
30  
20  
[3]  
Power Dissipation (Total)  
135  
135  
Operating Temperature Range  
Storage Temperature Range  
–20 to +100  
–20 to +100  
–55 to +100  
–55 to +100  
°C  
Reverse Voltage (I = 100 µA)  
5
5
V
R
[4]  
Transient Forward Current  
500  
500  
mA  
(10 µsec Pulse)  
Wave Soldering Temperature  
(1.59 mm (0.063 inch) from Body)  
250 for 3 seconds  
260 for 5 seconds  
°C  
°C  
Solder Dipping Temperature  
(1.59 mm (0.063 inch) from Body)  
Notes:  
1. See Figure 5 to establish pulsed operating conditions.  
2. The combined simultaneous current must not exceed the maximum.  
3. The combined simultaneous current must not exceed the maximum.  
4. The transient peak current is the maximum non-recurring current that can be applied to the device without damaging the LED die and wirebond. It is  
not recommended that the device be operated at peak currents beyond the peak forward current listed in the Absolute Maximum Ratings.  
Electrical/ Optical Characteristics at T = 25˚C  
A
High Efficiency Red  
Green  
Yellow  
Symbol Parameter  
Min.  
Typ. Max. Min. Typ. Max. Min. Typ. Max. Units Test Condition  
l
Peak  
Wavelength  
635  
626  
90  
568  
570  
260  
583  
585  
90  
nm  
nm  
ns  
20 mA  
PEAK  
l
d
Dominant  
Wavelength  
20 mA  
[1]  
t
s
Speed of  
Response  
C
Capacitance  
11  
18  
15  
pF  
V
V = 0, f = 1 MHz  
F
V
F
Forward  
Voltage  
1.9  
2.6  
2.2  
3.0  
2.1  
5
2.6  
20 mA  
V
R
Reverse  
Voltage  
5
5
V
I = 100 µA  
R
Rq  
Thermal  
210  
210  
210  
°C/ W Junction-to-  
J-PIN  
Resistance  
Cathode Lead  
2q  
1/ 2  
Included Angle  
between half  
luminous  
[2]  
intensity points  
HLMP-40xx  
HLMP-08xx  
65  
100  
65  
100  
65  
100  
degree  
lm/ W  
h
V
Luminous  
Efficacy  
145  
595  
500  
[3]  
Notes:  
1. The dominant wavelength, l , is derived from the CIE Chromaticity Diagram and represents the single wavelength which defines the color of the device.  
d
2. q is the off-axis angle at which the luminous intensity is half the axial luminous intensity.  
1/ 2  
3. Radiant intensity, le, in watts steradian, may be found from the equation le = Iv/ h where Iv is the luminous intensity in candelas and h V is the luminous  
V,  
efficacy in lumens/ watt.  
3
1.0  
ORANGE  
T = 25° C  
A
EMERALD GREEN  
HIGH  
PERFORMANCE  
GREEN  
HIGH EFFICIENCY RED  
0.5  
YELLOW  
0
500  
550  
600  
650  
700  
750  
WAVELENGTH nm  
Figure 1. Relative intensity vs. wavelength.  
HIGH EFFICIENCY RED, ORANGE,  
YELLOW, AND HIGH PERFORMANCE  
GREEN, EMERALD GREEN  
HER, ORANGE, YELLOW, AND HIGH  
PERFORMANCE GREEN, EMERALD GREEN  
1.6  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0
100  
HIGH  
PERFORMANCE  
GREEN,  
EMERALD GREEN  
HIGH  
EFFICIENCY  
RED/ORANGE  
80  
60  
40  
20  
0
YELLOW  
0
1.0  
2.0  
3.0  
4.0  
5.0  
0
5
10  
15  
20  
25  
30  
V
– FORWARD VOLTAGE – V  
F
I
DC  
DC CURRENT PER LED mA  
Figure 2. Forward current vs. forward voltage characteristics.  
Figure 3. Relative luminous intensity vs. DC forward current.  
HER, ORANGE, YELLOW, HIGH  
PERFORMANCE GREEN, EMERALD GREEN  
1.3  
6
5
EMERALD GREEN  
YELLOW  
1.2  
10 KHz  
30 KHz  
100 KHz  
300 Hz  
1 KHz  
3 KHz  
1.1  
4
3
HIGH EFFICIENCY  
RED/ORANGE  
100 Hz  
1.0  
0.9  
HIGH PERFORMANCE GREEN  
0.8  
2
0.7  
0.6  
0.5  
0.4  
1
1.0  
0
10 20 30 40 50 60 70 80 90  
10  
100  
1000  
10,000  
I
PEAK SEGMENT CURRENT mA  
t
PULSE DURATION µs  
PEAK  
P
Figure 4. Relative efficiency (luminous intensity per unit  
current) vs. peak LED current.  
Figure 5. Maximum tolerable peak current vs. pulse  
duration. (I Max. as per maximum ratings.)  
DC  
4
0°  
1.0  
10°  
20°  
30°  
0.8  
0.6  
0.4  
0.2  
40°  
50°  
60°  
70°  
80°  
90°  
10° 20° 30° 40° 50° 60° 70° 80° 90°100°  
Figure 6. Relative luminous intensity vs. angular displacement for HLMP-40xx.  
0°  
10°  
20°  
1.0  
30°  
0.8  
0.6  
0.4  
0.2  
40°  
50°  
60°  
70°  
80°  
90°  
10° 20° 30° 40° 50° 60° 70° 80° 90°100°  
Figure 7. Relative luminous intensity vs. angular displacement for HLMP-08xx.  
Mechanical Option Matrix  
Mechanical Option Code  
Definition  
002  
010  
Tape & Reel, straight leads, minimum increment 1300 pcs/ bag  
Right Angle Housing, even leads, minimum increment 500 pcs/ bag  
Note:  
All categories are established for classification of products. Products may not be available in all categories. Please contact your local Agilent representative for  
further clarification/ information.  
5
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 © 2003-2005 Agilent Technologies, Inc.  
Obsoletes 5988-9672EN  
June 6, 2005  
5989-3266EN  

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