HLMP-R100 HP | Alldatasheet

Document overview

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Technical content

Features

  • Rectangular Light Emitting Surface
  • Flat High Sterance Emitting Surface
  • Stackable on 2.54 mm (0.100 inch) Centers
  • Ideal as Flush Mounted Panel Indicators
  • Ideal for Backlighting Legends
  • Long Life: Solid State Reliability
  • Choice of 4 Bright Colors DH AS AlGaAs Red High Efficiency Red Yellow High Performance Green
  • IC Compatible/Low Current Requirements

Description

The HLMP–R100, -030X, -040X, -050X are solid state lamps encapsulated in a radial lead rectangular epoxy package. They utilize a tinted, diffused epoxy to provide high on-off contrast and a flat high intensity emitting surface. Borderless package design allows creation of uninterrupted light emitting areas. Package Dimensions HLMP-R100 HLMP-0300/0301 HLMP-0400/0401 HLMP-0503/0504 H The HLMP-0503 and -0504 provide a green GaP LED chip in a green epoxy package. 5964-9378E

I (mcd) @ 20 mA DC Part Color Number Min. Typ. DH AlGaAs Red HLMP-R100 3.4 11.0 High HLMP-0300 1.3 2.5 Efficiency Red HLMP-0301 2.1 5.3 HLMP-0400 1.4 2.5 Yellow HLMP-0401 3.6 5.0 High HLMP-0503 1.6 2.5 Performance Green HLMP-0504 2.6 8.0 Absolute Maximum Ratings at TA = 25°C HLMP- HLMP- HLMP- HLMP- Parameter R100 0300/-0301 0400/0401 0503/-0504 Units Peak Forward Current 300 90 60 90 mA Average Forward Current[1] 20 25 20 25 mA DC Current[2] 30 30 20 30 mA Power Dissipation 87 135 85 135 mW Reverse Voltage (IR = 100 µA) 5 5 5 5 V Transient Forward Current[3] (10 µs Pulse) 500 500 500 500 mA Operating Temperature Range -20 to -20 to +100 -55 to -55 to +100 °C +100 +100 Storage Temperature Range -55 to -55 to +100 +100 Lead Soldering Temperature 260 °C for 5 seconds (1.6 mm [0.063 in.] from body) Notes: 1. See Figure 5 to establish pulsed operating conditions. 2. For AlGaAs Red, Red, and Green Series derate linearly from 50°C at 0.5 mA/°C. For Yellow Series derate linearly from 50°C at 0.2 mA/°C. 3. 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 current beyond the peak forward current listed in the Absolute Maximum Ratings. Axial Luminous Intensity v

Figure 1. Relative Intensity vs. Wavelength. 1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity.

  1. The dominant wavelength, λd, is derived from the CIE chromaticity diagram and represents the single wavelength which defines the
  2. Radiant intensity, Ie, in watts/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.