HLMA-CX00 HP | Alldatasheet

Document overview

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Technical content

Features

  • Outstanding LED Material Efficiency
  • High Light Output over a Wide Range of Currents
  • Low Electrical Power Dissipation
  • CMOS/MOS Compatible
  • Colors: 590/592 nm Amber, 615/617 nm and 622 nm Reddish-Orange
  • Variety of Packages Available

Applications

  • Outdoor Message Boards
  • Safety Lighting Equipment
  • Signaling Applications
  • Emitter for Emitter/ Detector Applications
  • Changeable Message Signs
  • Portable Equipment
  • Medical Equipment
  • Automotive Lighting
  • Alternative to Incandescent Lamps SunPower Series HLMA-CX00 Series HLMA-DX00 Series HLMA-KX00 Series HLMT-CX00 Series HLMT-DX00 Series T-13/4 (5 mm), T-1 (3 mm), High Performance AlInGaP LED Lamps Technical Data 5963-2323E

NOTES: 1. ALL DIMENSIONS ARE IN MILLIMETERS (INCHES). 2. THE LEADS ARE MILD STEEL, SOLDER DIPPED. 3. AN EPOXY MENISCUS MAY EXTEND ABOUT 1 MM (0.040") DOWN THE LEADS, UNLESS OTHERWISE NOTED. Package Dimensions 0.89 (0.035) 0.64 (0.025) 6.10 (0.240) 5.59 (0.220) 5.08 (0.200) 4.57 (0.180) 25.40 (1.00) MIN. 0.102 (0.004) MAX. TYP. 1.27 (0.050) NOM. 9.19 (0.362) 8.43 (0.332) 2.54 (0.100)NOM. 0.46 (0.018) SQUARE NOMIMAL NOTES CATHODE LEAD NOTE 1 A B 3.18 (0.125) 2.67 (0.105) 25.40 (1.00) MIN. 1.27 (0.050)NOM. 1.02 (0.040) 6.35 (0.250) 5.58 (0.220) 0.45 (0.018)SQUARE NOMINAL CATHODE 2.54 (0.100)NOM. NOM. 4.70 (0.185) 4.19 (0.165) 3.43 (0.135) 2.92 (0.115) C 0.89 (0.035) 0.64 (0.025) 6.10 (0.240) 5.59 (0.220) 5.08 (0.200) 4.57 (0.180) 23.0 (0.90) MIN. 1.65 (0.065) 1.35 (0.053) 1.27 (0.050) NOM. 9.19 (0.362) 8.43 (0.332) 2.54 (0.100)NOM. 0.64 (0.025) SQUARE NOMIMAL CATHODE LEAD 12.70 (0.500) 11.94 (0.470)

Absolute Maximum Ratings at TA = 25°C (T-13/4 Package) [1.59 mm (0.06 in.) below seating plane] Notes: 1. Derate linearly as shown in Figure 4. 2. Any pulsed operation cannot exceed the Absolute Max Peak Forward Current or the Max Allowable Time Average Power as specified in Figure 5. 3. The transient peak current is the maximum nonrecurring peak current the device can withstand without damaging the LED die and wire bonds. 4. Drive Currents between 10 and 30 mA are recommended for best long term performance. 5. Operation at currents below 10 mA is not recommended, please contact your Hewlett-Packard sales representative. Absolute Maximum Ratings at TA = 25°C (T-1 Package) [1.59 mm (0.06 in.) below seating plane] Notes: 1. Derate linearly as shown in Figure 4. 2. Any pulsed operation cannot exceed the Absolute Max Peak Forward Current or the Max Allowable Time Average Power as specified in Figure 5. 3. The transient peak current is the maximum nonrecurring peak current the device can withstand without damaging the LED die and wire bonds. 4. Drive Currents between 10 mA and 30 mA are recommended for best long term performance. 5. Operation at currents below 10 mA is not recommended, please contact your Hewlett-Packard sales representative.

Optical Characteristics at TA = 25°C TS-AlInGaP T-13/4 Luminous Color, Intensity Peak Dominant Viewing Angle Luminous Part I V (mcd) Wavelength Wavelength 2 θ1/2 Efficacy Number @ 20 mA [1] λpeak (nm) λd[2] (nm) Degrees [3] ηv Package CL00[1] 2600 8300 594 592 8 480 A CH00[1] 2900 9000 623 617 8 263 DL00[4] 450 1500 594 592 24 480 B DH00[4] 500 1800 623 617 24 263 AS-AlInGaP T-1 Luminous Color, Intensity Peak Dominant Viewing Angle Luminous Part I V (mcd) Wavelength Wavelength 2 θ1/2 Efficacy Number @ 20 mA [1] λpeak (nm) λd[2] (nm) Degrees [3] ηv Package KL00 35 200 592 590 45 480 C KH00 35 200 621 615 45 263 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, λd, is derived from the CIE Chromaticity Diagram and represents the color of the device. 3. θ1/2 is the off-axis angle where the luminous intensity is 1/2 the peak intensity. Notes: 1. The luminous intensity, IV, is measured at the peak of the spatial radiation pattern which may not be aligned with the mechanical axis of the lamp package. 2. The dominant wavelength, λd, is derived from the CIE Chromaticity Diagram and represents the color of the device. 3. θ1/2 is the off-axis angle where the luminous intensity is 1/2 the peak intensity. 4. 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. AS-AlInGaP T-13/4 Luminous Color, Intensity Peak Dominant Viewing Angle Luminous Part I V (mcd) Wavelength Wavelength 2 θ1/2 Efficacy Number @ 20 mA [1] λpeak (nm) λd[2] (nm) Degrees [3] ηv Package CL00[1] 1000 3500 592 590 7 480 A CH00[1] 1000 3500 621 615 7 263 DL00[4] 300 800 592 590 24 480 B DH00[4] 290 600 621 615 24 263 DG00[4] 290 500 630 622 24 197 Notes: 1. The luminous intensity, IV, is measured at the peak of the spatial radiation pattern which may not be aligned with the mechanical axis of the lamp package. 2. The dominant wavelength, λd, is derived from the CIE Chromaticity Diagram and represents the color of the device. 3. θ1/2 is the off-axis angle where the luminous intensity is 1/2 the peak intensity. 4. 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.

Forward Reverse Capacitance Response Voltage Breakdown C (pF) τs (ns) Part V F (Volts) V R (Volts) V F = 0, Thermal Time Constant Number @ I F = 20 mA @ I R = 100 µA f = 1 MHz Resistance e -t/τs KL00 1.9 2.4 5 25 40 290 13 KH00 1.9 2.4 5 25 40 290 13 Electrical Characteristics at TA = 25°C TS-AlInGaP T-13/4 Speed of Forward Reverse Capacitance Response Voltage Breakdown C (pF) τs (ns) Part V F (Volts) V R (Volts) V F = 0, Thermal Time Constant Number @ I F = 20 mA @ I R = 100 µA f = 1 MHz Resistance e -t/τs CL00 2.0 2.4 5 25 70 210 13 CH00 2.0 2.4 5 25 70 210 13 DL00 2.0 2.4 5 25 70 260 13 DH00 2.0 2.4 5 25 70 260 13 AS-AlInGaP T-13/4 Speed of Forward Reverse Capacitance Response Voltage Breakdown C (pF) τs (ns) Part V F (Volts) V R (Volts) V F = 0, Thermal Time Constant Number @ I F = 20 mA @ I R = 100 µA f = 1 MHz Resistance e -t/τs CL00 1.9 2.4 5 25 40 210 13 CH00 1.9 2.4 5 25 40 210 13 DL00 1.9 2.4 5 25 40 260 13 DH00 1.9 2.4 5 25 40 260 13 DG00 1.9 2.4 5 25 40 260 13