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 T-13/4 Super Ultra-Bright LED Lamps Technical Data
HLMP-C116 HLMP-C115 HLMP-C215 HLMP-C315 HLMP-C415 HLMP-C515 HLMP-C615
HLMP-C124 HLMP-C123 HLMP-C223 HLMP-C323 HLMP-C423 HLMP-C523 HLMP-C623
Features
* Very High Intensity * Exceptional Uniformity * Microtint Lens for Color Identification * Consistent Viewability All Colors: AlGaAs Red High Efficiency Red Yellow Orange Green Emerald Green * 15 and 25 Family * Tape and Reel Options Available * Binned for Color and Intensity
Applications
* Ideal for Backlighting Front Panels* * Used for Lighting Switches * Adapted for Indoor and Outdoor Signs
Description
These non-diffused lamps are designed to produce a bright light source and smooth radiation pattern. A slight tint is added to the lens for easy color identification. This lamp has been designed with a 20 mil lead frame, enhanced
flange, and tight meniscus controls, making it compatible with radial lead automated insertion equipment.
Device Selection Guide
LED Color TS AlGaAs DH AS AlGaAs High Efficiency Red Yellow Orange High Performance Green Emerald Green
Note: 1. Refer to page 3 for typical values.
Part Number HLMP-C116 HLMP-C124 HLMP-C115 HLMP-C123 HLMP-C215 HLMP-C223 HLMP-C315 HLMP-C323 HLMP-C415 HLMP-C423 HLMP-C515 HLMP-C523 HLMP-C615 HLMP-C623
Typical Luminous Intensity (mcd @ 20 mA) 2000 1000 600 200 300 170 300 170 300 170 300 170 45 27
Viewing Angle Family[1] 15 25 15 25 15 25 15 25 15 25 15 25 15 25
2
Package Dimensions
5.00 0.20 (NOTE 1) (0.197 0.008)
8.71 0.20 (0.343 0.008)
1.14 0.20 (0.045 0.008)
0.70 (0.028) MAX.
1.85 (0.073) MAX.
31.60 MIN. (1.244)
CATHODE LEAD
1.00 MIN. (0.039)
0.50 0.10 SQ. TYP. (0.020 0.004)
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. AN EPOXY MENISCUS MAY EXTEND ABOUT 0.5 mm (0.020 in.) DOWN THE LEADS.
Absolute Maximum Ratings at TA = 25C
TS AlGaAs Red 50 500 DH AS AlGaAs Red 30 500 High Efficiency Red and Orange 30 500 High Performance Green and Emerald Green 30 500 5 110 -20 to +100
Parameter DC Forward Current[1] Transient Forward Current[2] (10 sec Pulse) Reverse Voltage (Ir = 100 A) LED Junction Temperature Operating Temperature Range Storage Temperature Range Lead Soldering Temperature [1.6 mm (0.063 in.) from body]
Yellow 20 500
Units mA mA V C C C
5 5 110 110 -55 to +100 -20 to +100
5 5 110 110 -55 to +100 -55 to +100 260 C for 5 seconds
Notes: 1. See Figure 5 for maximum current derating vs. ambient temperature. 2. The transient current is the maximum nonrecurring peak current the device can withstand without damaging the LED die and wire bond.
3
Electrical Characteristics at TA = 25C
Forward Voltage Vf (Volts) @ If = 20 mA Typ. Max. 1.9 2.4 1.8 1.9 2.1 1.9 2.2 2.2 2.2 2.6 2.6 2.6 3.0 3.0 Reverse Breakdown Vr (Volts) @ Ir = 100 A Min. 5 5 5 5 5 5 5 Capacitance C (pF) Vf = 0 f = 1 MHz Typ. 20 30 11 15 4 18 18 Thermal Resistance RJ-PIN (C/W) 210 210 210 210 210 210 210 Speed of Response s (ns) Time Constant e-t/s Typ. 45 30 90 90 280 260 260
Part Number HLMP-C116 HLMP-C124 HLMP-C115 HLMP-C123 HLMP-C215 HLMP-C223 HLMP-C315 HLMP-C323 HLMP-C415 HLMP-C423 HLMP-C515 HLMP-C523 HLMP-C615 HLMP-C623
Optical Characteristics at TA = 25C
Luminous Intensity Iv (mcd) @ 20 mA[1] Min. Typ. 500 2000 290 1000 290 600 90 200 138 300 90 170 146 300 96 170 138 300 90 170 170 300 69 170 17 45 6 27 Peak Wavelength peak (nm) Typ. 654 645 635 583 600 568 558 Color, Dominant Wavelength d[2] (nm) Typ. 644 637 626 585 602 570 560 Viewing Angle 21/2 (Degrees)[3] Typ. 14 20 11 26 17 23 17 25 17 23 20 28 20 28 Luminous Efficacy v (lm/w) 85 80 145 500 380 595 656
Part Number HLMP-C116 HLMP-C124 HLMP-C115 HLMP-C123 HLMP-C215 HLMP-C223 HLMP-C315 HLMP-C323 HLMP-C415 HLMP-C423 HLMP-C515 HLMP-C523 HLMP-C615 HLMP-C623
Notes: 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. The dominant wavelength, d, is derived from the CIE Chromaticity Diagram and represents the color of the device. 3. 21/2 is the off-axis angle where the luminous intensity is 1/2 the on-axis intensity.
4
1.0
EMERALD GREEN HIGH PERFORMANCE GREEN
ORANGE
TS AlGaAs RED DH As AlGaAs RED
TA = 25 C
RELATIVE INTENSITY
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
300.0 200.0
100
IF - FORWARD CURRENT - mA
100.0 50.0 20.0 10.0 5.0 2.0 1.0 0.5 0.2 0.1 0
TS AlGaAs RED
IF - FORWARD CURRENT - mA
DH As AlGaAs RED
80
HIGH PERFORMANCE GREEN, EMERALD GREEN HIGH EFFICIENCY RED/ORANGE YELLOW
60
40
20
0.5
1.0
1.5
2.0
2.5
3.0 3.5
0
0
1.0
2.0
3.0
4.0
5.0
VF - FORWARD VOLTAGE - V
VF - FORWARD VOLTAGE - V
Figure 2. Forward Current vs. Forward Voltage (Non-resistor Lamp).
5.0
RELATIVE LUMINOUS INTENSITY (NORMALIZED AT 20 mA)
HER, ORANGE, YELLOW, AND HIGH PERFORMANCE GREEN, EMERALD GREEN 1.6
RELATIVE LUMINOUS INTENSITY (NORMALIZED AT 20 mA)
2.0 1.0 0.5 0.2 0.1 0.05 0.02 0.01 0.1 0.2 0.5 1 2 5 10 20 30 50 TS AlGaAs RED DH As AlGaAs RED
1.4 1.2 1.0 0.8 0.6 0.4 0.2 0 0 5 10 15 20 25 30
IF - DC FORWARD CURRENT - mA
IDC - DC CURRENT PER LED - mA
Figure 3. Relative Luminous Intensity vs. Forward Current.
5
DH As AlGaAs RED 1.2 1.0 0.8 0.6 0.4 0.2 0
TS AlGaAs RED 1.2 1.1 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 1
PEAK - RELATIVE EFFICIENCY (NORMALIZED AT 20 mA)
HER, ORANGE, YELLOW, HIGH PERFORMANCE GREEN, EMERALD GREEN 1.3
YELLOW EMERALD GREEN
1.2 1.1 1.0 0.9
HIGH PERFORMANCE GREEN HIGH EFFICIENCY RED/ORANGE
RELATIVE EFFICIENCY (NORMALIZED AT 20 mA)
RELATIVE EFFICIENCY (NORMALIZED AT 20 mA)
0.8 0.7 0.6 0.5 0.4 0 10 20 30 40 50 60 70 80 90
0
10
20
50
100
200 300
2
5
10 20
50 100 200 300
IPEAK - PEAK FORWARD CURRENT - mA
IPEAK - PEAK FORWARD CURRENT - mA
IPEAK - PEAK FORWARD CURRENT - mA
Figure 4. Relative Efficiency (Luminous Intensity per Unit Current) vs. Peak Current.
DH As AlGaAs RED 40
TS AlGaAs RED IF - FORWARD CURRENT - mA
IF - FORWARD CURRENT - mA
HER, ORANGE, YELLOW, AND HIGH PERFORMANCE GREEN, EMERALD GREEN 40 35 30 25 20 YELLOW 15 10 5 0 0 20 RJA = 705 C/W RJA = 470 C/W RJA = 300 C/W HER, ORANGE, GREEN, EMERALD GREEN
IF - FORWARD CURRENT - mA
35 30 25 20 15 10 5 0 0 20 40 60 80 100 RJA = 559 C/W RJA = 689 C/W
50 40 RJA = 400 C/W 30 RJA = 550 C/W 20 10 0
0
20 25
40
55 60
80
100
40
60
80
100
TA - AMBIENT TEMPERATURE - C
TA - AMBIENT TEMPERATURE - C
TA - AMBIENT TEMPERATURE - C
Figure 5. Maximum Forward dc Current vs. Ambient Temperature. Derating Based on TjMAX = 110C
NORMALIZED LUMINOUS INTENSITY
1 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 45 40 35 30 25 20 15 10 5 0 -5 -10 -15 -20 -25 -30 -35 -40 -45
ANGULAR DISPLACEMENT - DEGREES
Figure 6. Relative Luminous Intensity vs. Angular Displacement. 15 Degree Family.
NORMALIZED LUMINOUS INTENSITY
1 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 45 40 35 30 25 20 15 10 5 0 -5 -10 -15 -20 -25 -30 -35 -40 -45
ANGULAR DISPLACEMENT - DEGREES
Figure 7. Relative Luminous Intensity vs. Angular Displacement. 25 Degree Family.
For technical assistance or the location of your nearest Hewlett-Packard sales office, distributor or representative call: Americas/Canada: 1-800-235-0312 or 408-654-8675 Far East/Australasia: Call your local HP sales office. Japan: (81 3) 3335-8152 Europe: Call your local HP sales office. Data subject to change. Copyright (c) 1996 Hewlett-Packard Co. Obsoletes 5965-4812E (9/96) Printed in U.S.A. 5965-6165E (11/96)


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