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  hdsm-431x/433x 0.39 (10.0mm) single digit surface mount led display data sheet description this is 0.39 (10.0mm) height single digit display. this device utilizes alingap / gaas chips.this device is with top surface gray and white segments. features  0.39 digit height  low current operation  excellent characters appearance  available in ca and cc  1000 pieces per reel  moisture sensitivity level: level 3  rohs compliant package dimensions ordering information red green yellow orange description hdsm-431c hdsm-431h HDSM-431F hdsm-431l common anode, right hand decimal hdsm-433c hdsm-433h hdsm-433f hdsm-433l common cathode, right hand decimal note: 1. all dimensions are in millimeters. 2. tolerance are +/- 0.25mm unless otherwise specified.
2 pin connection (common anode) pin no connection 1 cathode e 2 cathode d 3 common anode 4 cathode c 5 cathode dp 6 cathode b 7 cathode a 8 common anode 9 cathode f 10 cathode g internal circuit diagram (common anode)     
    pin connection (common cathode) pin no connection 1 anode e 2 anode d 3 common cathode 4 anode c 5 anode dp 6 anode b 7 anode a 8 common cathode 9 anode f 10 anode g internal circuit diagram (common cathode)     
    absolute maximum ratings @ t a =25 parameter green/yellow/red/orange unit power dissipation per segment 65 mw peak forward current per segment (1/10 duty cycle. ,0.1ms pulse width) 100 ma continuous forward current per segment derating linearly from 25c per segment 25 ma 0.25 ma/ c reverse voltage per segment 5 v operating temperature range -40c to +105c storage temperature range -40c to +105c
3 electrical / optical characteristics @ t a =25c green parameters symbol min typ max unit test condition average luminous intensity i v 5.4 9 - mcd i f = 10ma emissions wavelength  p /  d - 572/571 - nm i f = 20ma spectral line half-width  -20-nmi f = 20ma forward voltage, per segment v f - 2.1 2.6 v i f = 20ma reverse current, per segment i r - 100  a v r = 5v luminous intensity matching ratio i v-m - - 2:1 - i f = 10ma yellow parameters symbol min typ max unit test condition average luminous intensity i v 8.6 15 - mcd i f = 10ma emissions wavelength  p /  d - 591/589 - nm i f = 20ma spectral line half-width  -15-nmi f = 20ma forward voltage, per segment v f - 2.1 2.6 v i f = 20ma reverse current, per segment i r - 100  a v r = 5v luminous intensity matching ratio i v-m - - 2:1 - i f = 10ma red parameters symbol min typ max unit test condition average luminous intensity i v 8.6 14.3 - mcd i f = 10ma emissions wavelength  p /  d - 644/630 - nm i f = 20ma spectral line half-width  -20-nmi f = 20ma forward voltage, per segment v f - 2.0 2.6 v i f = 20ma reverse current, per segment i r - 100  a v r = 5v luminous intensity matching ratio i v-m - - 2:1 - i f = 10ma orange parameters symbol min typ max unit test condition average luminous intensity i v 8.6 16 - mcd i f = 10ma emissions wavelength  p /  d - 611/605 - nm i f = 20ma spectral line half-width  -17-nmi f = 20ma forward voltage, per segment v f - 2.1 2.6 v i f = 20ma reverse current, per segment i r - 100  a v r = 5v luminous intensity matching ratio i v-m - - 2:1 - i f = 10ma
4 typical electrical / optical characteristic curves @ t a =25c        
   
                  
  

        
  
           !"#  "$  !"#  "$ % &'( ) (*!+,-! ) !+.+-++ #  ( ) !+.+-++ #  ( ) !+.+-++ #  ( ) !+.+-/!&(/) 0 12++(3)      green figure 1. relative luminous intensity vs. wavelength figur e 2. relative luminous intensity vs. forward current figure 3. allowable dc current vs. ambient temperature figure 4. forward current vs. forward voltage
5 yellow        
#  "$ #  "$ % &'( ) (*!+,-! ) !+.+-++ #  ( )       

          figure 1. relative intensity vs. wavelength figure 2. relative intensity vs. forward current figure 3. allowable dc current vs. ambient temperature figure 4. forward current vs. forward voltage 
      
  !+.+-++ #  ( ) !+.+-++ #  ( ) !+.+-/!&(/) 0 12++(3)      

    
      
6 red        
 !"#  "$ % &'( ) (*!+,-! ) !+.+-++ #  ( ) !+.+-++ #  ( ) !+.+-++ #  ( ) !+.+- /!&(/) 0  12++( 3 )       

                 
   
        
        
       !"#  "$ figure 1. relative luminous intensity vs. wavelength figur e 2. relative luminous intensity vs. forward current figure 3. allowable dc current vs. ambient temperature figure 4. forward current vs. forward voltage
7 orange        
     
     
#  "$ % &'( ) (*!+,-! ) !+.+-++ #  ( ) !+.+-++ #  ( ) !+.+-++ #  ( ) !+.+-/! &  ( / ) 0 12++(3)    
           

     

            #  "$ figure 1. relative intensity vs. wavelength figure 2. relative intensity vs. forward current figure 3. allowable dc current vs. ambient temperature figure 4. forward current vs. forward voltage
8 intensity bin limits (mcd) green iv bin category min. max. m 5.401 8.6 n 8.601 13.7 p 13.701 21.8 tolerance: 15% yellow iv bin category min. max. n 8.601 13.7 p 13.701 21.80 q 21.801 34.7 tolerance: 15% smt soldering profile pb free reflow soldering profile red iv bin category min. max. n 8.601 13.7 p 13.701 21.80 q 21.801 34.7 tolerance: 15% orange iv bin category min. max. n 8.601 13.7 p 13.701 21.80 q 21.801 34.7 r 34.701 55.2 tolerance: 15% note: 1. bin categories are established for classification of products. products may not be available in all categories. please contact your avago representative for information on currently available bins. recommended soldering pattern (unit: mm) 2. 6 1 . 9 x 4 = 7 . 6 1 2. 8 1 .4 recommended s t enci l window opening is 80% 245 c time temperature 6 c/sec. max. 1 00 sec. max. 60 - 12 0 sec. 3 c/sec. max. 3 c/sec. max. 1 0 - 3 0 sec. 15 0 c 2 00 c 21 7 c (acc. to j-std- 0 2 0 c) notes: 1. the peak temperature refers to the peak package body temperature. 2. number of reflow process shall be limited to maximum 2 times only. cooling process to normal temperature is required between first and second soldering process.
tape specification (unit: mm) 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 in the united states and other countries. data subject to change. copyright ? 2005-2011 avago technologies. all rights reserved. av02-0708en - march 17, 2011


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