HSMF-C16X AVAGO | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 9

Technical content

Features

  • Small size
  • 0603 industry standard footprint
  • Diffused optics
  • Operating temperature range of –30˚C to +85˚C
  • Compatible with reflow soldering
  • Available in various color combination
  • Available in 8 mm tape on 7" (178 mm) diameter reels

Applications

  • Keypad backlighting
  • Symbol indicator
  • LCD backlighting
  • Pushbutton backlighting
  • Front panel indicator CAUTION: HSMF-C16x LEDs are class 1A ESD sensitive per JESD22-A114C.01 standard. Please observe appropriate pre- cautions during handling and processing. Refer to Avago Technologies Application Note AN-1142 for additional details. Device Selection Guide Part Number Color Package Description HSMF-C162 AlInGaP Red / AlInGaP Amber Untinted, Diffused HSMF-C163 AlInGaP Red / InGaN Green Untinted, Diffused HSMF-C164 AlInGaP Red / InGaN Blue Untinted, Diffused HSMF-C165 High Efficiency Red / GaP Green Untinted, Diffused HSMF-C166 GaP Yellow / GaP Green Untinted, Diffused HSMF-C167 GaP Orange / GaP Green Untinted, Diffused HSMF-C168 InGaN Green / InGaN Blue Untinted, Diffused HSMF-C169 AlInGaP Amber / InGaN Blue Untinted, Diffused

Absolute Maximum Ratings for Each Die at TA = 25˚C Parameter AlInGaP InGaN GaP Units DC Forward Current[1] 20 10 20 mA Power Dissipation 48 38 52 mW Reverse Voltage 5 5 5 V LED Junction Temperature 95 95 95 ˚C Operating Temperature Range –30 to +85 ˚C Storage Temperature Range –40 to +85 ˚C Soldering Temperature See reflow soldering profile (Figure 6 & 7) Note: 1. Derate linearly as shown in Figure 4. NOTES: 1. ALL DIMENSIONS IN MILLIMETERS (INCHES). 1.6 (0.063 ) 0.16 (0.006) 0.5 (0.020) 0.4 (0.016) LED DIES DIFFUSED EPOXY PC BOARD SOLDERING TERMINALS 0.8 (0.031) CATHODE LINE 0.3 (0.012) CATHODE LINE POLARITY 1 3 HSMF-C162 AMBER 2 4 RED HSMF-C163 GREEN RED HSMF-C164 BLUE RED HSMF-C165 GREEN RED HSMF-C166 GREEN YELLOW HSMF-C167 GREEN ORANGE HSMF-C168 BLUE GREEN HSMF-C169 BLUE AMBER

Electrical Characteristics at TA = 25˚C Reverse Breakdown Capacitance Thermal Forward Voltage VR (Volts) C (pF), @ VF = 0, Resistance VF (Volts) @ IF[1] @ IR = 100 µA f = 1 MHz RθJ-PIN (˚C/W) AlInGaP Red 20 mA 1.9 2.4 5 15 300 AlInGaP Amber 20 mA 1.9 2.4 5 11 300 AlInGaP Red[2] 10 mA 1.8 2.3 5 15 300 AlInGaP Amber[2] 10 mA 1.8 2.3 5 11 300 InGaN Green 10 mA 3.4 3.8 5 35 500 InGaN Blue 10 mA 3.4 3.8 5 35 500 HER 20 mA 2.1 2.6 5 5 325 GaP Orange 20 mA 2.2 2.6 5 7 325 GaP Yellow 20 mA 2.1 2.6 5 6 325 GaP Green 20 mA 2.2 2.6 5 9 325 Optical Characteristics at TA = 25˚C Color Peak Dominant Luminous Luminous Intensity Wavelength Wavelength Viewing Angle Efficacy Iv (mcd) @ IF[1] λpeak (nm) λd[2] (nm) 2 θ1/2 Degrees[3] ηv (lm/W) AlInGaP Red 20 mA 28.5 90 637 626 120 155 AlInGaP Amber 20 mA 28.5 90 595 592 120 480 AlInGaP Red[4] 10 mA 11.2 35 637 626 120 155 AlInGaP Amber[4] 10 mA 11.2 35 595 592 120 480 InGaN Green 10 mA 18 45 523 525 120 500 InGaN Blue 10 mA 2.8 10 468 470 120 80 HER 20 mA 2.8 10 636 621 120 145 GaP Orange 20 mA 2.8 8 605 604 120 380 GaP Yellow 20 mA 2.8 8 589 586 120 500 GaP Green 20 mA 4.5 15 570 572 120 595 Notes: 1. VF Tolerance: ± 0.1 V. 2. The product testing is based on 20 mA. This is for reference only. 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 Chromatically Diagram and represents the perceived color of the device. 3. θ1/2 is the off-axis angle where the luminous intensity is 1/2 the peak intensity. 4. The product testing is based on 20 mA. This is for reference purpose.

Intensity (Iv) Bin Limits[1] Intensity @ 20 mA (mcd) Bin ID Min. Max. A 0.11 0.18 B 0.18 0.29 C 0.29 0.45 D 0.45 0.72 E 0.72 1.10 F 1.10 1.80 G 1.80 2.80 H 2.80 4.50 J 4.50 7.20 K 7.20 11.20 L 11.20 18.00 M 18.00 28.50 N 28.50 45.00 P 45.00 71.50 Q 71.50 112.50 R 112.50 180.00 S 180.00 285.00 T 285.00 450.00 U 450.00 715.00 V 715.00 1125.00 W 1125.00 1800.00 X 1800.00 2850.00 Y 2850.00 4500.00 Tolerance: ± 15%. Color Bin Limits[1] Y ellow/Amber Color Bins[1] Dom. Wavelength (nm) Bin ID Min. Max. A 582.0 584.5 B 584.5 587.0 C 587.0 589.5 D 589.5 592.0 E 592.0 594.5 F 594.5 597.0 Tolerance: ± 0.5 nm InGaN Green Color Bins[1] Dom. Wavelength (nm) Bin ID Min. Max. A 515.0 520.0 B 520.0 525.0 C 525.0 530.0 D 530.0 535.0 Tolerance: ± 1 nm Note: 1. Bin categories are established for classifi- cation of products. Products may not be available in all categories. Please contact your Avago representative for information on currently available bins. Note: 1. Bin categories are established for classifi- cation of products. Products may not be available in all categories. Please contact your Avago representative for information on currently available bins. Green Color Bins[1] Dom. Wavelength (nm) Bin ID Min. Max. A 561.5 564.5 B 564.5 567.5 C 567.5 570.5 D 570.5 573.5 E 573.5 576.5 Tolerance: ± 0.5 nm Blue Color Bins[1] Dom. Wavelength (nm) Bin ID Min. Max. A 460.0 465.0 B 465.0 470.0 C 470.0 475.0 D 475.0 480.0 Tolerance: ± 1 nm Orange Color Bins[1] Dom. Wavelength (nm) Bin ID Min. Max. A 597.0 600.0 B 600.0 603.0 C 603.0 606.0 D 606.0 609.0 E 609.0 612.0 F 612.0 615.0 Tolerance: ± 1 nm

For more information on reflow soldering, refer to Ap- plication Note 1060, Surface Mounting SMT LED Indicator Components. Storage Condition: 5 to 30˚C @ 60% RH max. Baking is required under the condition: a) the blue silica gel indicator becoming white/trans- parent color b) the pack has been opened for more than 1 week Baking recommended condition: 60 ± 5˚C for 20 hours. For product information and a complete list of distributors, please go to our web site: www.avagotech.com Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies, Limited in the United States and other countries. Data subject to change. Copyright © 2007 Avago Technologies, Limited. All rights reserved. Obsoletes 5989-4810EN AV02-0584EN - July 23, 2007