MSD2010TXV SIEMENS | Alldatasheet
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SIEMENS AKTIENGESELLSCHAF 4?E D MM 6235605 0026998 3 MISIEG FAST SIEMENS red MSD2010TXV/TXVB ye._cow MSD2011TXV/TXVB HIGH EFF. RED MSD2012TXV/TXVB HIGH EFF. GREEN MSD2013TXV/TXVB j ‘ 3 -150” 4-Character 5x7 Dot Matrix 3: Serial Input Alphanumeric Military Display a Package Dimensions in Inches (mm) Pin_Funeton 809 (17.7). 1 ‘Column 1
083 Me 2 ‘Cotumn 2
(1) 3 Column 3 sone’, PA 4 Colum 4 ow) SSS BES. ia lz a 4 do 5 Column a Z mf int marked by” [oa 475 (444) 9 Veo a ae ‘dot on back 2.005 (.13) 10 ‘Clock I I 1 = 050 (1.27) 12 Detain See | 2005019) 4 eo » ) ee (5.08) Set re SEL? eet ia 03088 9, wr ea fons PL e FEATURES poo fn ndeatr « Four .150” Dot Matrix Characters wo it x Hue Code “4 7 * Four Colors: Red, Yellow, High Efficiency ban XLOZOSINS mp Lumioous Red, High Efficiency Green oy a a * Wide Viewing Angle Part Number Serene TOLERANCE: +.015 (exceptions noted) * Built-in CMOS Shift Registers with Constant Current LED Row. Drivers. * Shift Registers Allow Custom Fonts DESCRIPTION * Easily Cascaded for Multiple Displays The MSD2010 through MSD2013TXV/TXVB are four digit 5x7 dot © TTL Compatible matrix serial input alphanumeric displays. The displays are available in . red, yellow, high efficiency red, or high efficiency green. The package * End Stackable is a standard twelve-pin hermetic DIP package with glass lens, The * Military Operating Temperature Range: display can be stacked horizontally or vertically to form messages of -55° to +100°C any length. The MSD201X has two fourteen-bit CMOS shift registers rized for Lumi with builtin row drivers. These shift registers drive twenty-eight rows : coe * or Hewnet intensity and enable the design of customized fonts. Cascading multiple dis- cera ‘ackage, Hermetically Sealed plays is possible because of the Data In and Data Out pins. Data In Glass Window and Out are easily input with the clock signal and displayed in « TXVB Process Conforms to MIL-D-87157 parallel on the row drivers. Data Out represents the output of the 7th Quality Level A Test and Tables |, il, Illa bit of digit number four shift register. The shift register is level trig- and IVa . gered. The like columns of each character in a display cluster are ¢ TXV Process Conforms to a Modified tied to a single pin. (See Block Diagram). High true data in the shift MIL-D-87157 Quality Level A Test and register enables the output current mirror driver stage associated with Table | each row of LEDs in the 5x7 diode array. The TTL compatible Vg input may either be tied to Voc for maximum display intensity or pulse width modulated to achieve intensity control and reduce power consumption. Continued See Appnote 44 for application information, and Appnotes 18, 19, 22, and 23 for additional information. 2-113
value for the time T+t of: 1/[5x(100)]=2 msec. If the device .
1 Operation above + 100°C ambient is possible provided the following to Data Out
- Maximum dissipation is derived from Voc =5 25 V, Vg=24V, otherwise noted
FIGURE 1. TIMING CHARACTERISTICS CLEANING THE DISPLAYS | not use commercial dishwasher detergents. oat oey refer to Siemens Appnote 19.
SIEMENS AKTIENGESELLSCHAF 4?E D MM 8235605 0027000 b MMSIEG 7-41-37 RECOMMENDED OPERATING CONDITIONS Supply Votage L veo [ars | 50] 525 | v | Data Out Current, Low State [io fff +6 | ma | Data Out Current, High State [ton [| 05 | ma | Column input Vottage, Column On? [| von [27 | [ss | v | il Hold Time | Too | ao [| | [ns | | #8 a With of Glock [ two [7 | [| ns | Clock Frequency [tox [| fs | mee | Glock Transiton Tire [ta [|| 200 | s_| Free Ar Operating Temperature Range [tow [ -85 | [+100] sc | Note: 1 See Figure 3 - Peak Column Current vs. Column Voltage OPTICAL CHARACTERISTICS Red MSD2010 Description [ symbot_| Min. [ Typ. | max. | units | Test Conditions Peak Luminous Intensity per LED" 9) WVPEAK 200 wed | Voc=50V, Vo. =35V (Character Average) T= 25°C, Vp=24V Yellow MSD2011 Peak Luminous Intensity per LED°® | Iypeax | 400 | 750 wed | Voc=5.0 V, VooL=3.5 V (Character Average) Tj =25°C, Vg=2.4V [_Domnantwavelengin® ToT ses Pm PO High Efficiency Red MSD2012 [Description | Symbot_[ win. [Typ | wax | Units | Test Condon Peak Luminous intensity per LED" 9 IWPEAK 400 | 1430 wed | Voo=5.0 V, Voor =3.5 V (Character Average) T= 25°C, Vg=2.4 V [_domnantwavelengn® ToT fore | rm PO High Efficiency Green MSD2013 [ Description | Symbol | min. [ Typ.” | Max. | Units | Test Conditions Peak Luminous Intensity per LED"-9) Weak 1550 ped | Voc=50V, Voor =35V (Character Average) TjS=25°C, Vg=24V Notes: 1 The displays are categorized for luminous intensity with the intensity 4 All typical values specified at Voc =5 0 V and Tanp= 25°C unless category designated by a letter code on the bottom of the package otherwise noted 2 Dominant wavelength Jo, is denved from the CIE chromaticity diagram, and 5 The luminous intensity 1s measured at Tans=T)=25°C No time is, represents the single wavelength which defines the color of the device allowed for the device to warm up prior to measurement
3 The luminous sterance of the LED may be calculated using the following
relationships Ly (cdim?)= ty (Candela/A (Mater)? Ly (Footlamberts)= nly (CandelayA (Foot)? A=5 3x10 ® M?=5 8% 107 (Footy? 'MSD2010 thru MSD201STXVITXVB 2-118
Vp. Clock or Data Input Vin Vv .
1 All typical values specified at Voc =5 0 V and Tum» = 25°C unless
2 See Figure 3 - Peak Column Current vs Column Voltage
FIGURE 3. PEAK COLUMN CURRENT
FIGURE 4. BLOCK DIAGRAM
SIEMENS AKTIENGESELLSCHAF 4?E D Wl 4235605 0027003 1 MBSIEG T-41-37 GENERAL QUALITY ASSURANCE LEVELS The parts are tested in conformance with Quality Level A of MIL-D-87157 for hermetically sealed LED displays with 100% screening The product is tested to Tables |, Il, Illa and IVa Table |. Quality Level A of MIL-D-87157 [ Testsereen | Method | Conditions
1 Precap Visual 2072
- High Temperature Storage 1032 Tamb = 125°C, Time =24 hours MIL-STD-750 3. Temperature Cycling 1051 Condition B, 10 Cycles, 15 min. Dwell MIL-STD-750 | Tamp=-65°C to + 125°C 4. Constant Acceleration 2006 10,000 G's at Y; Orientation MIL-STD-750 5. Fine Leak 1071 Condition H, Leak Rate <5x 10” cc/s MIL-STD-750 6. Gross Leak 1071 Condition C MIL-STD-750 : 7 Interim Electrical/Optical Tests® log (at Ve=0 4 V and 2.4 V), Icy (at Va=0.4 V and 24 V), ty (Vp, Clock and Data In), Ii, (Vp. Clock and Data In), ox. lo, Visual Function and ly Peak. Vy and Vi. inputs are guaranteed by the electronic shit register test. Tamb= 25°C. 8 Burn-in 1015 Condition B at Voc = Vg =5.25 V, Veo. =3 5 V, Tamb = 100°C. MIL-STD-883_}| LED On-Time Duty Factor =5%, t= 160 hours 9 Final Electrical Test ® [ [Same as Step 7.
10 Delta Determinants Aloc= +/-1 MA, Aly = +/-10 mA (Clock and Data In),
Alon = + /-10% of initial value, Aly=-20% 11. External Visual 2009 MIL-STD-883 Table ll. Group A Electrical Tests - MIL-D-87157 Subgroup/Test [ Parameters Subgroup 1 iy (Vg, Clock and Data In), Ii, (Vg, Clock and Data In), lox, tov. Visual Function and ly Peak. Vjy and Vj, inputs are guaranteed by the electronic shift register test. Subgroup 2 Selected DC Electrical Tests at High Same as Subgroup 1, except delete ly and Visual Function, 7 Temperatures? Tam = 100°C Subgroup 3 Selected DC Electrical Tests at Low Same as Subgroup 1, except delete ly and Visual Function, 7 Temperatures® Tam = -55°C Subgroup 7 Optical and Functional Tests at 25°C Satisfied by Subgroup 1 5 Subgroup 8 External Visual MIL-STD-883, Method 2009 7 Notes:
1 MIL-STD-883 test method apples
2 Limts and conditons are per the ElectncaliOptical Characterstics The
lon and lo, tests are the inverse of Vow and Vo. specitied in the Electncal Charactenstics MSD2010 thru MSO201STXV/TAV 2-118
y : SIEMENS AKTIENGESELLSCHAF 4Y7E D MB 8235605 0027004 3 MBSIEG -4\\-37 Table lila. Group B, Classes A and B of MIL-D-87157 : 1 ay 3 MIL-STD-750 Subgroup/Test Method Subgroup 1 Resistance to Solvents 1022 4 Devices/0 Failures Internal Visual and Mechanical 2075 Inspection may be performed through | 1 Device/0 Failures . glass cover, includes front and back 2 cavities = Subgroup 2! 2) 2 & Solderabity 2026 Tam = 245°C for § seconds LTPD=15 é Subgroup 3 _ Thermal Shook (Temp Cycle) 1051 Condition B1, 15 min. Dwell LTPD=15 Moisture Resistance® 1021 ‘Within 24 hours after completion of Visual Inspection Endpoints moisture resistance test Fine Leak 1071 Condition G or H Gross Leak 1071 Condition C Electrical/Optical Endpoints“ loc (at Vg=0.4 V and 2 4 V), . Icou (at Vg =0.4 V and 24 V), liq (Vg, Clock and Data In), li, (Vg, Clock and Data In), lou. fox, Visual Function and ly Peak. Vin and Vi, inputs are guaranteed by the electronic shift register test. Tamb = 25°C. Subgroup 4 Tamb = + 100°C at Vog=Vp=5.25 V, Operating Life Test (340 Hours) 1027 Vcou=3.5 V, LED on time DF =5% LTPD=10 ElectncaliOptcal Endponts® [=| Same as Subgroup 3 Subgroup 5 Non-Operating (Storage) 1032 Tamb = + 125°C LTPD=10 Life Test (340 hours) ElecincaliOptical Endpomts® | =| Same as Subgroup 3 Notes: 1 Whenever electncal/optical tests are not required as endpoints, electrical 3 Inttal conditioning shall be a 15 degree inward bend and back to orginal rejects may be used position one cycle 2 The LTPD applies to the number of leads inspected except in no 4 Limits and conditions are per the Electrical/Optical Charactenstics The case shall less than 3 displays be used to provide the number of Jon and Io. tests are the inverse of Vox and Vor specified in the leads required Electrical Charactenstics MSO2010 thru MSDZ01STXVITAVB 2-119
SIEMENS AKTIENGESELLSCHAF 4?E D MM 8235605 0027005 5 MBSIEG « T-41- : Table IVa. Group C, Classes A and B of MIL-D-87157 37 i MIL-STD-750 | Subgroup/Test Method Conditions { Subgroup 1” i Physical Dimensions 2066 2 Devices/0 Failures ! Subgroup 2" 2) . : Lead Integrity Condition B2 LTPD=15 Hermetic Seal a ! Fine Leak Condition G or H Gross Leak [1071 Condnon ; Subgroup 3 { Shock 2016 1500G's, Time=0 5 ms, 5 Blows in ; Each Orientation X1, Y1, 2 LTPD=15 | Constant Acceleration | 2006 | ‘10,000G's at Y1 Orrentation i Electrical/Optical Endpoints I¢c (at Vg=0.4 V and 24 V), Ico (at Vp =0.4 V and 24 Vj, Iw (Vg, Clock and Data In), lou (Ve. Clock and Data In), lop lox, Visual Function and ly Peak. Viq and Vi. inputs are guaranteed by the electronic shift register test : Tamb= 25°C. Subgroup 46 © Salt Atmosphere 1041 LTPD=15 Subgroup 5 Bond Strength” 2037 Condition A LTPD=20 (C=0) Subgroup 6 Tamb= + 100°C at Veg =Vg = 5.25 V, Operating Life Test® 1026 Voor =3.5 V, LED on time DF=5% A=10 ElectricaOptcal Endponts? | «| Same as Subgroup 3 Notes: 1 The LTPD apphes to the number of leads inspected except in no case 6 Solderability samples shall not be used ‘shail less than three displays be used to provide the number of 7 Displays may be selected prior to seal leads required 8 any given inspection lot undergoing Group 8 inspection has been
2 MIL-STD 883 test method apples selected to satisfy Group C inspection requirements, the 340-hour life
3 Visual requirements shall be as specified in MIL-STD-883, tests may be continued on test to 1000 hours in order to satisly the Methods 1010 or 1011. Group C Life Test requirements In such cases, either the 340-hour end- 4 Limits and conditions are per the electrica/optical charactenstics point measurement shall be made a basis for Group B lot acceptance or 5 Whenever electncai/optical tests are not required as endpomnts, electrical the 1000-hour endpoint measurement shall be used as the basis for both rejects may be used Group B and Group C acceptance 'MSD2010 thru MED201STXVITAVB 2-120
SIEMENS AKTIENGESELLSCHAF 4?E D Ml 8235605 0027007 9 M@mSIEG THERMAL MODELING (Cont.) T-41-37 For ease of calculations the maximum allowable electrical operating condition is dependent upon the aggregate thermal resistance of the LED matrixes and the two driver ICs. All of the thermal management calculations are based upon the parallel combination of these two networks which 1s 15°CW Maximum allowable power dissipation is given in Equation 3. Equation 3. Poispray = vata Roic + Roca Poisptay=5 Veot 'cor (1/35) DF + Veg lee For further reference see Figures 2, 7, 8, 9, 10 and 11. KEY TO EQUATION SYMBOLS DF Duty factor loc Quiescent IC current loon Column current n Number of LEDs on in a 5x7 array Pcase Package power dissipation excluding LED under consideration Poot Power dissipation of a column Ppisptay Power dissipation of the display Pico Power dissipation of an LED Roca Thermal resistance case to ambient Reso Thermal resistance junction to case Tr Ambient temperature Tuc) Junction temperature of an IC Tyveo) Junction temperature of a LED Tygaax) Maximum junction temperature Veco IC voltage Voor Column voltage Veweo) Forward voltage of LED Zee Thermal impedance junction to case MSD20%0 thru MSD2013TXVITAWB 2-122
FIGURE 6. NORMALIZED LUMINOUS INTENSITY i 10 a FIGURE 7. MAX, LED JUNCTION TEMPERATURE 3 EezZ6ea
5 LO @ 03 Fwy raaey oe
FIGURE 8. MAX. PACKAGE POWER DISSIPATION : [2] 3] BAe Bp