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HLMP-C100 HLMP-C110 Features Exceptional Brightness Outstanding M


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High Performance AlGaAs Lamps Technical Data
HLMP-C100 HLMP-C110 Features
Exceptional Brightness Outstanding Material Efficiency High Light Output Over Wide Range Drive Currents Viewing Angle: Narrow Wide Forward Voltage Power Dissipation CMOS/MOS Compatible Color
These T-13/4, untinted, nondiffused lamps utilize highly optimized material technology, transparent substrate aluminum gallium arsenide AlGaAs). This technology very high luminous efficiency, capable producing high light output over wide range drive currents (500 mA). color deep dominant wavelength AlGaAs flip-chip technology, attached anode lead wire bonded cathode lead.
Package Dimensions
5.00 0.20 (0.197 0.008)
8.70 0.20 (0.343 0.008
1.14 0.20 (0.045 0.008)
2.35 MAX. (0.093) 31.4 (1.23) MIN. 0.70 MAX. (0.028)
CATHODE
NOTES: DIMENSIONS MILLIMETERS (INCHES). LEADS MILD STEEL, SOLDER DIPPED. EPOXY MENISCUS EXTEND ABOUT (0.040") DOWN LEADS, UNLESS OTHERWISE NOTED.
1.27 NOM. (0.050)
0.50 0.10 SQUARE (0.020 0.004)
CATHODE
5.80 0.20 (0.228 0.008)
2.54 NOM. (0.100)
Axial Luminous Intensity Viewing Angle 25°C
Part Number HLMPC100 C110 Minimum Intensity (mcd) Typical Intensity (mcd) Typical Radiant Intensity (mW/sr) 21/2 Degrees
Note: axis angle from optical centerline where luminous intensity on-axis value.
Absolute Maximum Ratings 25°C
Peak Forward Current[2] Average Forward Current IPEAK [1,2] Forward Current[3] Power Dissipation Reverse Voltage (IR=100 Transient Forward Current Pulse)[4] Operating Temperature Range +100°C Storage Temperature Range +100°C Junction Temperature 110°C Lead Soldering Temperature [1.6 (0.063 in.) from body] 260°C seconds
Notes: Maximum IAVG kHz, 10%. Refer Figure establish pulsed operating conditions. Derate linearly shown Figure transient peak current maximum non-recurring peak current device withstand without damaging wire bonds. recommended that device operated peak currents above Absolute Maximum Peak Forward Current.
Electrical/Optical Characteristics 25°C
Description Forward Voltage Reverse Voltage Peak Wavelength Dominant Wavelength[1] Spectral Line Halfwidth Speed Response Capacitance Thermal Resistance HLMP-C1X0 Luminous Efficacy[2] Symbol PEAK RJ-PIN Min. Typ. 1.85 20.0 Max. Units °C/W lm/W Exponential Time Constant, e-t/ Junction-to-Anode Lead Test Conditions
Notes: dominant wavelength, derived from chromaticity diagram represents color device. radiant intensity, watts steradian, found from equation Ie=IV/V, where luminous intensity candelas luminous efficacy lumens/watt.
FORWARD CURRENT
RELATIVE INTENSITY
10-1
10-2
10-3
1000
WAVELENGTH
FORWARD VOLTAGE
Figure Relative Intensity Wavelength.
Figure Forward Current Forward Voltage.
RELATIVE LUMINOUS INTENSITY (NORMALIZED
0.05
RELATIVE EFFICIENCY (NORMALIZED
0.01
FORWARD CURRENT
IPEAK PEAK FORWARD CURRENT
Figure Relative Luminous Intensity Forward Current.
Figure Relative Efficiency Peak Forward Current.
FORWARD CURRENT
400° 550°
IAVG AVERAGE CURRENT
1000
AMBIENT TEMPERATURE
IPEAK PEAK FORWARD CURRENT
Figure Maximum Forward Current Ambient Temperature. Derating Based TJMAX 110°C.
Figure Maximum Average Current Peak Forward Current.
RELATIVE LUMINOUS INTENSITY
ANGLE FROM OPTICAL CENTERLINE DEGREES (CONE HALF ANGLE)
Figure Relative Luminous Intensity Angular Displacement. HLMP-C100.
RELATIVE LUMINOUS INTENSITY
ANGLE FROM OPTICAL CENTERLINE DEGREES (CONE HALF ANGLE)
Figure Relative Luminous Intensity Angular Displacement. HLMP-C110.
technical assistance location your nearest Hewlett-Packard sales office, distributor representative call: Americas/Canada: 1-800-235-0312 408-654-8675 East/Australasia: Call your local sales office. Japan: 3335-8152 Europe: Call your local sales office. Data subject change. Copyright 1997 Hewlett-Packard Obsoletes 5964-9291E (4/96) Printed U.S.A. 5966-0970E (11/97)

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