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T-1 (3 mm) Diffused LED Lamps Technical Data
HLMP-130X Series HLMP-1385 HLMP-140X Series HLMP-1485 HLMP-1503 HLMP-1523 HLMP-1585 HLMP-K40X Series HLMP-K600
Features
* High Intensity * Choice of 4 Bright Colors High Efficiency Red Orange Yellow High Performance Green * Popular T-1 Diameter Package * Selected Minimum Intensities * Wide Viewing Angle * General Purpose Leads
* Reliable and Rugged * Available on Tape and Reel
Description
This family of T-1 lamps is widely used in general purpose indicator applications. Diffusants, tints, and optical design are balanced to yield superior light output and wide viewing angles. Several intensity choices are available in each color for increased design flexibility.
Package Dimensions
Part Number HLMP1300 1301 1302 1385 K400 K401 K402 1400 1401 1402 1485 1503 1523 1585 K600[1]
Application General Purpose General Purpose High Ambient Premium Lamp General Purpose High Ambient Premium Lamp General Purpose General Purpose High Ambient Premium Lamp General Purpose High Ambient Premium Lamp General Purpose
Minimum Intensity (mcd) at 10 mA 1.3 2.1 3.4 8.6 1.3 2.1 3.4 1.4 2.2 3.6 5.7 1.0 2.6 4.2 1.0
Color (Material) High Efficiency Red (GaAsP on GaP) Orange (GaAsP on GaP) Yellow (GaAsP on GaP)
Green (GaP)
Emerald Green (GaP)
Note: 1. Please refer to Application Note 1061 for information comparing standard green and emerald green light output degradation.
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5964-9374E
Absolute Maximum Ratings at TA = 25C
Parameter Peak Forward Current Average Forward DC Current[2] Reverse Voltage (IR = 100 A) Transient Forward Current[4] (10 sec Pulse) LED Junction Temperature Operating Temperature Range Storage Temperature Range Lead Soldering Temperature [1.6 mm (0.063 in.) from body] Current[1] HER/Orange 90 25 30 5 500 110 -55 to +100 Yellow 60 20 20 5 500 110 -55 to +100 Green 90 25 30 5 500 110 -20 to +100 -55 to +100 260C for 5 seconds Units mA mA mA V mA C C
Notes: 1. See Figure 5 (HER/Orange), 10 (Yellow), or 15 (Green/Emerald Green) to establish pulsed operating conditions. 2. For Red, Orange, and Green series derate linearly from 50C at 0.5 mA/C. For Yellow series derate linearly from 50C at 0.2 mA/C. 3. For Red, Orange, and Green series derate power linearly from 25C at 1.8 mW/C. For Yellow series derate power linearly from 50C at 1.6 mW/C. 4. The transient peak current is the maximum non-recurring peak 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 Characteristics at TA = 25C
Symbol IV Description Luminous Intensity Device HLMPHigh Efficiency Red 1300 1301 1302 1385 Orange K400 K401 K402 Yellow 1400 1401 1402 1485 Green 1503 1523 1585 Emerald Green K600 Min. 1.3 2.1 3.4 8.6 1.3 2.1 3.4 1.4 2.2 3.6 5.7 1.0 2.6 4.2 1.0 Typ. 5.0 5.5 7.0 11.0 5.0 5.5 7.0 5.0 6.0 7.0 10.0 5.0 7.0 8.5 4.5 Max. Units mcd Test Conditions IF = 10 mA
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Electrical Characteristics at TA = 25C (cont.)
Symbol 21/2 Description Included Angle Between Half Luminous Intensity Points Peak Wavelength All Device HLMPMin. Typ. 60 Max. Units Deg. Test Conditions IF = 10 mA See Note 1 Measurement at Peak
PEAK
High Efficiency Red Orange Yellow Green Emerald Green High Efficiency Red Orange Yellow Green Emerald Green High Efficiency Red Yellow Green Emerald Green High Efficiency Red Orange Yellow Green Emerald Green High Efficiency Red Orange Yellow Green Emerald Green All HER/Orange Yellow Green Emerald Green All High Efficiency Red Orange Yellow Green Emerald Green 1.5 1.5 1.5 5.0
635 600 583 565 558 626 602 585 569 560 40 36 28 24 90 280 90 500 3100 11 4 15 18 35 290 1.9 2.0 2.1 2.1 2.4 2.4 2.7 2.7
nm
d
Dominant Wavelength
nm
See Note 2
1/2
Spectral Line Halfwidth
nm
s
Speed of Response
ns
C
Capacitance
pF
VF = 0; f = 1 MHz
RJ-PIN VF
Thermal Resistance Forward Voltage
C/W V
Junction to Cathode Lead IF = 10 mA
VR V
Reverse Breakdown Voltage Luminous Efficacy
V 145 380 500 595 655 lumens Watt
IR = 100 A See Note 3
Notes: 1. 1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity. 2. The dominant wavelength, d, is derived from the CIE chromaticity diagram and represents the single wavelength which defines the color of the device. 3. Radiant intensity, Ie, in watts/steradian, may be found from the equation Ie= Iv/v, where Iv is the luminous intensity in candelas and v is the luminous efficacy in lumens/watt.
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1.0 EMERALD GREEN
ORANGE
AlGaAs RED
TA = 25 C
RELATIVE INTENSITY
HIGH PERFORMANCE GREEN
HIGH EFFICIENCY RED
0.5 YELLOW
0 500
550
600 WAVELENGTH - nm
650
700
750
Figure 1. Relative Intensity vs. Wavelength.
T-1 High Efficiency Red, Orange Diffused Lamps
Figure 2. Forward Current vs. Forward Voltage Characteristics.
Figure 3. Relative Luminous Intensity vs. DC Forward Current.
Figure 4. Relative Efficiency (Luminous Intensity per Unit Current) vs. Peak LED Current.
Figure 5. Maximum Tolerable Peak Current vs. Pulse Duration. (IDC MAX as per MAX Ratings).
Figure 6. Relative Luminous Intensity vs. Angular Displacement.
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T-1 Yellow Diffused Lamps
Figure 7. Forward Current vs. Forward Voltage Characteristics.
Figure 8. Relative Luminous Intensity vs. Forward Current.
Figure 9. Relative Efficiency (Luminous Intensity per Unit Current) vs. Peak Current.
Figure 10. Maximum Tolerable Peak Current vs. Pulse Duration. (IDC MAX as per MAX Ratings).
Figure 11. Relative Luminous Intensity vs. Angular Displacement.
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T-1 Green/Emerald Green Diffused Lamps
Figure 12. Forward Current vs. Forward Voltage Characteristics.
Figure 13. Relative Luminous Intensity vs. Forward Current.
Figure 14. Relative Efficiency (Luminous Intensity per Unit Current) vs. Peak LED Current.
Figure 15. Maximum Tolerable Peak Current vs. Pulse Duration. (IDC MAX as per MAX Ratings).
Figure 16. Relative Luminous Intensity vs. Angular Displacement.
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