SHA1114_15 AD | Alldatasheet
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Hll1H Kl:llAl)llllY LUNVI:K Il:K~ ADCIIII,DACII12,SHAII14,DACII17 GENERAL DESCRIPTION The ADCllll, DACl112, SHAl114, and DACl117 are fully documented, high reliabilityconverterproducts which are guar- anteed to operate within specificationsover the fullmilitary temperature range.Qualificationtestinghas proven that these devicesare capable of operatingunder severeenvironmental con- ditions.A specificationdocument isavailablefor each product which listsitscharacteristicsand capabilitiesingreatdetail. ADC1111 The ADCllll isa high reliabilityversionof the ADC-12QM. Itperforms 12 bit conversionsin 25/ls(max) and has excellent stabilityover temperature. Itcomes complete with an input buffer and offersthe choice of fiveuser-rrogrammable inputvoltageranges.Module dimensions are 2' x 4" x 0.4" (51 x 102 x lOmm). DACl112 The DACll12 isa high reliabilityversionof the DAC-12QS. This 2" x 2" x 0.4" (51 x 51 x 10mm) module, which comes complete with a versatileoutput amplifier,settlesto 0.01% accuracy in 5/ls.The user can program eitherof fiveoutput vol- tage ranges by means of jumpers connected to the module's ter- minal pins. SHAl114 The SHAl114 isa high reliabilityversionof the SHA-2A. Itis a fastsample-and-hold amplifierwith a 500ns (max) acquisition time to 0.01% accuracy.Module dimensions are 2" x 3" x 0.4" (51 x 76 x 10mm). DACl117 The DACl117 isa high reliability12 bitcurrent output D/A converterpackaged in a 1.5" x 1" x 0.4" (38 x 25 x 10mm) her- meticallysealedmetal enclosure.Itsettlesto 0.01% accuracy in 3/lswhen used with a high speed output amplifier.This device isalsoavailablein a non-militarygrade extended temperature version,the MDA-12QD/ET, and a commercial grade version, the MDA-12QD. THE HIGH RELIABILITY CONVERTER PROGRAM Analog Devices has,over the past severalyears,supplieda great many A/D and D/A convertermodules intended for military and criticalindustrialapplications.As a resultof thisexperience, we know what isneeded in a high reliabilityconverterand what ittakes to buildone. This experienceisnow availableto you in the form of the industry'sfirstlineof converter products inten- ded expresslyfor high reliabilityapplications. ADVANTAGES TO THE USER The firstbig advantage isthe ease of specification.As part of our development program, we have generated a separatespeci- ficationdrawing for each of the four products.These drawings run an average of 17 pages and specifyin exact detailallpertin- 106CONVERTERS ent characteristicsof the module. By copying our drawing over onto hisown specificationcontrol drawing format, the user can completely specifya high reliabilityconvertermodule in a very shorttime with a mimimum of effort. The second advantage isthat the system designercan get quick deliveryof unitsneeded for breadboarding and prototyping.Since the high reliabilityconvertersare standard products for us,they're availablein small quantitiesin a few weeks or less. The thirdadvantage iscost.The user isno longer in the positionof having to subsidizethe development of a specialhigh reliabilityconverter.We have sustainedallthe development costsand the user pays only for the modules he actuallyrequires --~ --- -- OBSOLETE
-' .- ,~I~I I I II III I-oJ - -- -- SVM. DESCRIPTION DR. CKD. APPD. DATE A INITIAL RELEASE PER E.R.NO. . . REVSTATuslllllllllllll1 1 OF SHEETS 1112131"151617181911011111211311"1 51 UNLESS OTHERWISE SPECIFIED DRAWN DATE ANALOG DEVICESINCDIMENSIONS ARE IN INCHES TOLERANCES: DRAFTING NORWOOD. MASSACH USETTSDECIMALS: .XX ! FRACTIONS: ! .XXX ! ANGLES:! PROj ENG REVIEW SPECIFICATIONS FOR 12 BIT ANALOG-TO-DIGITAL CONVERTER, ENG MGR MODEL NUMBER ADC1111 SIZE CODE IDENT NO DWG. NO RE V A 2435503-66510 A SCALE I MODEL ADCll11 ISH..L OF 12.. OBSOLETE
1.0 1.1 2.0 2.1 3.0 3.1 3.2 3.3 3.4 _ANALOGDEVICES FOR REVISIONS AND APPROVAL SEE SHEET 1 SCOPE: Thisspecificationcoverstherequirementsforanencapsulatedl2-bit analog-to-digitalconvertermodule.ThisAIDconvertermoduleaccepts analoginputsignalswithinanyofseveralinputvoltage-rangesand convertsth~intoTTL/DTLcompatibleparalleloutputdigitaldata. GENERALREQUIREMENTS: Modulessuppliedtothisspecificationshallbemanufactured,pro-~ cessedandtestedinacarefulandworkmanlikemanneri~Laccordance withgoodengineeringpractice.Themanufacturerofmodules,in compliancewiththisapecification,shallhaveproductionandtest, facilitiesandaqualityandreliabilityassuranceprogramadequate toassuresuccessfulcompliancewiththerequirementsofthisspeci- fication. APPLICABLE DOCUMENTS: Thefollowingdocumentsformapartofthisspecificatic,ntothe extentspecifiedherein.Applicabledocuments referencE!d inthe remainderofthisspecificationarereferencedbynumberonly,with- outreferencetoamendmentorissue.Ineachcase,theamendment orissuereferencedbelowspallapply. Intheeventofanyconflictbetweenthisspecificationandanyother document,thisspecificationshalltakeprecedence. MilitaryStandards MIL-STD-130DIdentificationMarkingofU.S.MilitaryF'roperty MIL-STD-202E Test Methods forElectronicandElectricalCompon- entParts MIL-STD-454D StandardGeneralRequirementsforElectronicEquip- ment MIL-STD-SS3 Test MethodsandProceduresforMicroelectronics. . MilitaryHandbooks MIL-HDBK-217AReliabilityStressandFailureRateDataforElec- tronicEquipment . . SIZE I CODE!DENT.NO. ANALOGDEVICESINC . NORWOOD. MASSACHUSETTS I A24 SCALE I I SHEET-L I4J0021017 JI REV. A ;:1 I I I I I I .JOF17 OBSOLETE
I "~Z IXID fORRE~~ONSANDAPPROVALSEE~EETI MIL-R-ll-lA MilitarySpecifications3.5 MIL-M-l4G MIL-C-20E MIL-R-lO509F MIL-C-llOl5D MIL-P-l3949G MIL-I-l6923E MIL-S-l9500E MIL-S-23586C MIL-C-26655B MIL-M-385l0A MIL-G-45204B MIL-I-45208A MIL-I-46058C Resistor,Fixed,Composition(Insulated)/Appro- priateDeviceSpecification MoldingPlasticsandMoldedPlasticParts,Thermo- setting Capacitor,Fixed,CeramicDielectric,(Temperature Compensating)/AppropriateDeviceSpecification Resistor,Fixed,Film(HighStability)/Appropriate DeviceSpecification Capacitor,Fixed,CeramicDielectric(GeneralPur- pose)/AppropriateDeviceSpecification PlasticSheet,Laminated,CopperClad(ForPrinted Wiring) InsulatingCompound,Electrical,Embedding SemiconductorDevice/AppropriateDeviceSpecifica- tion SealingCompound,Electrical,SiliconeRubber, AcceleratorRequired Capacitor,Fixed,Electrolytic(SolidElectrolyte), Tantalum Miccocircuits,GeneralSpecificationsFor/Appropriate DeviceSpecification GoldPlating,'ElectrodeDeposited InspectionSystemRequirements InsulatingCompound,Electrical(ForCoatingPrinted CircuitAssembles) DWG.NO. ANALOG DEVICESINC NORWOOD. MASSACHUSETTS SHEET L 1..- IU:V. A c.,~I ~I. I I I I I I I I I ,..JOFlL OBSOLETE
4.0 4.1 5.0 5.1 5.2 5.3 6.0 6.1 6.2 6.3 6.4 11: 52 ANALOG DEVICES I4J004/017 FOR REVISIONS AND AP'PROVAL SEE SHEET I ABSOLUTEMAXIMUMRATINGS: AbsolutemaximumratingsshallbeasshowninTable1. ELECTRICALSPECIFICATIONS: RecommendedoperatingconditionsshallbeasshowninTable2. ElectricalspecificationsshallbeasshowninTable3. Themodule'st~ingcharacteristicsshallbe'a$showqinFigure1. MODULECONNECTIONS: Thedesiredinputrange, andwhetherornottheinternalinputbuf- .ferisu'sed,shallbe,determinedaccordingto Table4. Whenusingabipolarinputvoltagerange,eitheroffsetbinaryor two'scomplementoutputcodingshallbeavailable..The,onlydiffer- encebetweenthetwocodesisthestateofthemostsignificantbit (MSB).Foroffsetbinarycodingusepin72(MSB)astheMSBoutput. FortworScomplementusepin70(HS1r). Gainandzeroadjustmentpotentiometers,ifused,shallbeconnected asshowninFigure2. WhentheAIDconverterisusedwithitsowninternalclock,asis normallythecase,connectiontotheclockshallbeeffectedbycon- nectingtogetherpins35and36ofthemodule. MECHANICAL SPECIFICATIONS: Themodule'scircuitryshallconformtotheblockdiagramshownin Figure2. Themodule'spinassignmentsandpindesignationsshallbeasshown inTable5. Thephysicaloutlineof the module shall be in accordancl~ with Figure3. Themaximumweightofthemoduleshallbe3.5ounces (99.3 grams). Themoduleshallbepermanentlyandlegiblymarked per MIL-STD-130'. Themanufacturer'sidentification,modelnumbers.and p~1 numbers shallbemarkedontopofthemodule.Anyadditionalmarkingsshall beononeormoresidesofthemodule. ANALOG DEVICES INC lsA I243i:.-=.tDWGNDO3-665J.ONO R WO 0 0 . MAS SAC H USE T TS -- u- -- SHEET ~ -4- REV; A a'"~I . I I I I I I I I I I .JOF 17. 7.0 7.1 7.2 7.3 7.4 7.5 I OBSOLETE
II)- 7.6 8.0 8.1 9.0 9.1 9.2 9.3 9.4 9.5 9.6 9.7 9.8 9.9 FOR REVISIONS AND APPROVAL SEE SHEET I Modules meetingtherequirementsofthisspecificationshallhave theirprintedcircuitcardscoatedsubsequenttocomponentmounting andsoldering,butpriortoencapsulation,usingaplasticcoating materialmeetingtherequirementsof MIL-I-46058. ENVIRONMENTAL SPECIFICATIONS: AIDmodulesmeetingtherequirementsofthisspecificationshallbe capableofpassingtheenvironmentaltestsshowninTable6. QUALITY CONFORMANCE INSPECTION Allmodulesmeetingtherequirementsof thisspecificationshallbe inspectedusinganinspectionsystemmeetingtherequirementsof MIL-I-45208. . All modulesmeetingtherequirementsof thisspecificationshallbe subjectedtothefollowingscreeningtests,intheordershown, beforedelivery: Afterassembly,themodule,whileatambientroomtemperature,shall betestedfor,andshallpass,the250Coperatingparametersdesig- natedbyreferencenumbers1,2,and4ofTable3. Aftertemperaturestabilizationofthemoduleat+1250C,themodule shallbetestedfor,andshallpass,thehightemperatureoperating parametersdesignatedbyreferencenumbers1,2,3and4ofTable3. Aftertemperaturestabilizationofthemoduleat-550C,themodule shallbetestedfor,andshallpass,thelowtemperatureoperating parametersdesignatedbyreferencenumbers1,2,3and4ofTable3. ThemoduleshallbetemperaturecycledinaccordancewithMIL-STD- 883,Method1010,testconditionB. Themoduleshallbeoperatedinanambienttemperatureof+1250C +2oCfor168hourswith+5Vand+15Vpowerappliedtotheunit,and ;itha5kHz minimumrepetitionrateconvertcommand. Themodule,afterstabilizationatroomambienttemperature,shall beretested,andshallpassthe250Coperatingparametersdesignated byreferencenumbers1,2,and4ofTable3. A pre-encapsulationvisualinspectionshallbeperformedtoverify thatworkmanshipisinaccordancewithMIL-STD-454, Requirement9. ANALOG D EVIC ES INC I A I ;,"A ;Nk ~ tow..~~-66510 NORWOOD. MASSACHUSETTS - r-~.,J SHEET ..L OF 17 REV. A c~~I~I ~I. I I I I II II II..J OBSOLETE
-.-11'1- "!:z::) II:ID ~ZE I CODE IDEN~ NQ SCALE 05/14/98 9.10 9.11 10.0 '10.1 11.0 11.1 11.1.1 11.1.2 11.1.3 11.1.4 11.1.5 11.1.6 11.1.7 .11.1.8 11:53 ANALOGDEVICES--- I4J006/017 FOR REVISIONS AND APf)ROVAL SEE SHEET I Afterencapsulation, themoduleshallhaveafinalelectricaltest, whichshallconsistofbeingtestedfor,andpassing,the25°Coper- atingparametersdesignatedbyreferencenumbers1,2, and 4 of Table3. Ifanycomponents,otherthantrimresistors,arereplacedwithin themoduleafterthequalityconformanceinspectionhascommenced, anytestsalreadyperformedonthemoduleareinvalidated,andthe modulemustbeginthequalityconformanceinspectionprocedureagain. CALCULATEDMEANTIMEBETWEENFAILURES: The moduleshallhaveaminimumcalculatedMTBFoflOO,OOOhoursat normalroomambienttemperaturewithnominalsupplyvoltagesapplied. TheMTBFshallbecalculatedinaccordancewithHandbookMIL-HDBK- 2l7A. COMPONENTS: Exceptasallowedforinparagraph11.2ofthisspecification,all componentsusedinmodulesmeetingthisspecificationshallmeetthe requirementsoftheappropriatespecification(s)calledoutbelow: CARBONRESISTORSshallmeettherequirementsofMIL-R-II. METALFILMRESISTORSshallmeettherequirementsofMIL-R-lO509. CERAMICCAPACITORSshallmeettheapplicablerequirementsofMIL-C- 11015and MIL-C-20. ' TANTALUM CAPACITORSshallmeettherequirementsofMIL-C-26655., MICROCIRCUITSshallbehermeticallysealedandshallmeetoneofthe followingrequirements,showninoTderofpreference:1)microcir- cuitsqualifiedto MIL-M-385l0, ClassB, 2) microcircuitsprocessed to M!L-M-38SI0, Class B.3)microcircuitsprocessedtotheappli- cablerequirementsofMIL-STD-883, ClassB. Microcircuitsmeeting therequirementsofalowerpreferenceareacceptableonlywhenthose meetingtherequirementsofahigherpreferencearenotavailable. DISCRETESEMICONDUCTORS shall behermeticallysealedandmeetthe requirementsofMIL-S-19500. PRINTEDCIRCUITBOARDSshallusematerialmeetingtherequirements ofMIL-P-13949. ENCAPSULATING COMPOUNDshallmeettherequirementsofThermalShock MIL-I-16923,andCorrosionResistanceMIL-S-23586. SHEET -2- --- REV. A 0"~I ~I I I I I I I I I I I ..JOF 17 OBSOLETE
11.1.9 FOR REVISIONS AND APPROVAL SEE SHEET I PLASTIC CASES shall bemanufacturedofdiallylphthalatemeetingthe requirementsofMIL-M-14, SDG.
11.1.10 TERMINAL PINS shallbemadeofhalf-hardbrassandshallbegold
platedperMIL-G-45204, Class1,TypeII. 11.2 12.0 12.1 12.2 I..:.In- ~z:;)a:CD ANALOG DEVICES INC NORWOOD. MASSACHUSETTS Thevendorshall,uponrequest,furnishalistofallcomponentsnot meetingtheappropriaterequirementsofparagraph11.1,andshall indicatethereason(s)forusingsuchcomponents. PREPARATION FOR DELIVERY: PreservationandPackaging;Themoduleshallbeaffordedpreservation andpackaginginamannertha~willaffordadequateprotectionagainst corrosion,deterioration,andphysicaldamageduringshipment. Packing;Themoduleshallbepackedincontainersofthetype,size, andkindcommonlyusedforthepurpose,inamannerthatwillinsure acceptancebycommoncarrierandsafedeliveryatdestination. DWG. NO. SHEET .L. OF Ii -- - -- REV. c.,~I r:"1 ~I. I I I I I I I I I I ..J A OBSOLETE
I~1ft- ~~z ::. ID 05/14/9811:54 ANALOGDEVICES 141008/017 FOR REVISIONS AND APPROVAL SEE SHEET I TABLE1 ABSOLUTEMAXIMUMRATINGS +15VoltSupplyVoltage -15VoltSupplyVoltage +5VoltSupplyVoltage AnalogInputVoltage StorageT~perature LeadTemp.'DuringSoldering: SolderingIronononepin WaveSolderonallpins TABLE2 +18,Voltst, " -18Volts' +5.5Volts +15Volts -55°Cto+1259C 572°F(3000C)for3sec. 5000F(2600c)for3sec. RECOMMENDEDOPERATINGCONDITIONS +15VSupplyVoltage -15VSupplyVoltage TrackingErrorBetween+lSVand -15VSupplies +5V-SupplyVoltage AnalogInputVoltageRange ConvertCommandLogic"1"Voltage ConvertCommandLogic"0"Voltage ConvertCommandPulseWidth AmbientOperatingTemperatureRange +15Volts+3% -15Volts+3% 1% Maximum +SVolts+5% -15Vto+15V +2.4<.VIN<+5.0V +OV<VIN<+O.4V lOOnsMinimum -55°Cto+12SoC ANALOG DEVICES INC IA I ;~;N.k~ ~DWG.Ng3-665l0 NOR WOOD.MASSACHUSETTS ~.., SHEET~ :.- REV. A 0'"::II ~I. I I I I I I I I I I .JOFE.. OBSOLETE
BRUNING 156" f Foralltests,supplyvoltages TABLE3 aresetat+15.00volts,-15.00 » I ELECTRICALSPECIFICATIONSvolts,and+5.00volts -z:» I :I lENTTEMP-+1250C r- CHARACTERISTIC MIN NOMI MAXIUNITS!PINS 8G) I POSITIVESUPPLYCURRENT1 25 25 25 IDA27 C NEGATIVESUPPLYCURRENT1 -45 -40 -35mA 25 POSITIVESUPPLYCURRENT2 275 275 275mA 29 :m<I IPOWERSUPPLYREJECTIONI 3 I I I I 10.002I I I I I%/%!::.Vs :z:- en I 1 RELATIVEACCURACYERRORI I I I I I 1+0.5 I I I I LSB:m2 DIFFERENTIALLINEARITY ::0 ElUWR I I I I I I 1+0.5I I I I LSBcn 3 4 E TEMP.COFFICIENTS GAIN +10 +7 +12ppm/oC ZERO +50 +50 +50pV/OCOFFSET -+6 +5 +6ppm/oC DIFF.LINEARITY +6 +3 +6ppm/oC INPUTIMPEDANCE BUFFERED 109 109 109 OHMS 2 ::1t DIRECT:. ::D m %1 I OVto+10VRANGE 5000 5000 5000 OHMS6 :Sp -5Vto+5VRANGE 5000 5000 5000 OHMS6 !!! 00 -10Vto+10VRANGE 10000 10000 10000 OHMS 5 z OVto+5VRANGE 2500 2500 2500 OHMS 6 CO) 0% -2.5Vto+2.5VRANGE 2500 2500 2500 OHMS6 z UJ CI0'\\4CONVERSIONTIME 5 25 25 25 330'\\ ps "'0 en \\J1 "'0 '" < 1\\0 HIGHLEVELINPUTCURRENT7,9 40 40 40 pA 34r LOWLEVELINPUTCURRENT8,9 1.6 -1.6 -1.6mA 34'"mm H HIGHLEVELOUTPUTVOLTAGE10,122.4 2.4 2.4 VOLTS 33,41 LOWLEVELOUTPUTVOLTAGE11,12 0.4 0.4 0.4VOLTS33,4 :;:: >", -t 'ON "MO I OBSOLETE
I,~ :II '-II> PI~ 15686 CHARACTERISTIC HIGH LEVEL OUTPUT VOLTAGE LOW LEVEL OUTPUT VOLTAGE HIGH LEVEL OUTPUT VOLTAGE LOW LEVEL OUTPUT VOLTAGE .ON .~Ma TABLE 3 ELECTRICAL SPECIFICATIONS (CONTD.) !. t NOTES 13,15 14,15 15,16 15,17 2.4 2.4 0.4 0.4 2.4 2.4 0.4 0.4 2.4 0.4 2.4 0.4 i-'i-' tJ1 tJ1 ;.:..z ;.:.. t'"""0G") 0tr1 ~0i-'0 Z»z.» I REF°,.. NO. Co 8C) cnm <"-n:m UI cn ()J ;-i zp r-- G') z 0 9wI0\\ "'Iv.::a:PI 0PI-4 I UNITSPINS VOLTS48,50, 52,54, 56,58, 61,63, 65;67, 71,72 VOLTS148,50, 52,54, 56,58, 61,63, 65,67, 71,72 VOLTSI ::D VOLTS!70I::Dm<'- !!! 0zen »-z0 ,."U ::a <,. ,.. enmm :x:: mm-t OBSOLETE
I~ :..17. > PI~ ...1., 15686 NOTES TO TABLE 3 1. As measuredwith+15 volt supply set to +15.00 volts and -15 volt supply set to -15.00 volts 2. As measured with +5 volt supplyset to +5.00 volts. 3. Applies only to slowly occurring variations in !15 volt supplies. Also assumes +15 volt and -15 volt supplies track. Gain TC is expressed as ppm/oC of range. For unipolar input range, range = +F.S. voltage. For bipolar input range, range = 2 x +F.S. voltage. Zero TC applies when using a unipolar input range. Offset TC applies when using a bipolar input range, and is expressed as ppm/oC of range. 5. Conversion time is measured froI!1falling edge ("1" to "0" transition) of convert command pulse to "1" to "0" transition of status output. 6. As measured with a high input impedance voltmeter. Any load connected to the reference output should draw no more than 1<¥J.. 7. As measured with an input voltage of 2.4 volts. 8. As measured with an input voltage of 0.4 volts. -n0::a ::am !!! 0zen C ~"tJ"tJ ::a <~r- enmmen:z:mm-i 9. Convert command is a positive-going pulse withaminimumwidthoflOOns. 10.Asmeasuredwithaloadcurrentofl6qpA. 11.Asmeasuredwithaloadcurrentof-6.4mA 12.STATUSoutput(pin33)isalogic"1"(output>2.4V)duringaconversion. ::iIAIUSoutput(pin43)isalogic"0"(output<0.4V)duringaconversion. 13.Asmeasuredwithaloadcurrentof40~A. 14.Asmeasuredwithaloadcurrentof -16mA. 15. 16. Forallbitoutputs,alogic"1"isdefinedasahighlevelvoltage(output>2.4V). Asmeasuredwithaloadcurrentof32OpA. Asmeasuredwithaloadcurrentof -12.8mA. .ON .!>MO r-0 E z WI °1'"% VIPI I-'PI 0... I OBSOLETE
(I') (I') N \\!) Z Z ::I CD I4J012/017 FOR REVISIONS AND APPROVAL SEE SH EET I TABLE4 INPUTRANGEAND BUFFER SELECTION ANALOG DEVICESwcl A1243"5. 5tDWD.NO~3-66510NORWOOD.MASSACHUSETTS u SCALE SHEET.1.2.. - - - -- °REV. A !=\\I !=>, I I I I I I I I .JOF..1l ... InputRange Input InputJumper,JumperJumper inVolts ImpedanceToPinPin4To J!in 20Mro Pin19To 0to+10 109OHMS 2 6 -- 23 KIHlMUK 0to+10 5KOHMS 6 -- -- 23 -5to+5 10eOHMS 2 6 -- 20 MINIMUM -5to+5 5KOHMS 6 -- -- 20 -10to+10 10'OHMS 2 5 -- 20 MINIMUM -10to+10 10KOHMS 5 -- -- 20 0to+5 109OHMS 2 6 5 23 MINIMUM 0to+5. 25KOHMS 6 -- 5 23 -2.5to+2.5109OHMS 2 6 5 20 MINIMUM -2.5to+2.52.5KOHMS 6 -- 5 20 OBSOLETE
I~In- ~z:;:)III:G:I PIN NUMBER FOR REVISIONS AND APPROVAL SEE SHEET I TABLE 5 PIN DESIGNATIONS DESIGNATION GAIN ADJUST BUFFER INPUT SIGNAL GROUND BUFFER OUTPUT
20 VOLT RANGE INPUT
10 VOLT RANGE INPUT
BIPOLAR OFFSET CURRENT OUTPUT COMPARATOR INPUT REFERENCE OUTPUT SIGNAL GROUND -15VDC INPUT +15VDC INPUT +5VDC INPUT DIGITAL GROUND COMPARATOR OUTPUT STATUS OUTPUT CONVERT COMMAND INPUT CLOCK INPUT CLOCK OUTPUT CLOCK INHIBIT INPUT S1'ATUS OUTPUT BIT 12 (LSB) OUTPUT BIT 11 OUTPUT BIT 10 OUTPUT BIT 9 OUTPUT BIT 8 OUTPUT BIT 7 OUTPUT BIT 6 OUTPUT BIT 5 OUTPUT BIT 4 OUTPUT BIT 3 OUTPUT BIT 1 (mlr)OUTPUT BIT 2 OUTPUT BIT 1 (MSB) OUTPUT NOTE: Pinsare installed only in those pin locations called out in this table. ANALOG D EVICES ~ A ';0:1'3 DENs:~ tDWGoNOO3-66510 NORWOOD. MASSACHUSETTS c.--r . SHEET 13 OF.!2- ..- REV. A c.,~I ~I. I I I I II I I II~ OBSOLETE
05/14/9811:57 ANALOGDEVICES 141014/017 FOR REVISIONS,AND APPROVAL SEESHEETI TA!LE6 ENVIRONMENTAL TESTS TEST VISUAL AND MECHANICAL BAROMETRIC PRESSURE (mUCED) TEMPERATURECYCLING MOISTURERESISTANCE I.In- I 2003 1009 1008 CONDITIONS A,B .' B B deletesection3.1 deletesection3.42,step7b section3.5:nominalpower supplyvoltagesshallbe applied B pulseduration:O.5ms A appliedforce:4.5lbs A B maximumtemperature:l2SoC testduration:1000hrs. perASTMSTDG-2l A deletesection3.1 B testduratio11:1000hra. I SIZE ANALOGDEVICESINC NORWOOD.MASSACHUSETTS A SCALE SHEET14 OF17 REV. A o~=-, ~I. I I I I I I II II. KtL-STD METHOD 883 2008 202 10SC 883 1010 883 1004 SHOCK 883 2002 TERMINAL STRENGTH 202 2llA .. VIBRATIONFATIGUE 883 2005 'STEADY-STATELIFE 883 1005 SOLDERABILITY 883 FUNGUSRESISTANCEMIL-I-46058 SALTATMOSPHERE 883 HIGHTEMPERATURESTORAGE883 OBSOLETE
I ~81)- ,.;I:z:)«CD FOR REVISIONS AND APPROVAL SEE SHEET I FI cr"'<.F1 Tprp7(', IHAGRAH -II- lOOns.MIN -.n ~ ~ ~ I, , , '" '" '" '" g! ~~~, , I , ~IIIIIIIIIIII "0..11 fT I ~IIIIIIIIIII~ "0" II I I I I H 1111111\\ 1 2 3 4 5 8 7 8 9 10 11 12 PreviousCode=10110...1 NewCode =01010...1 NoteIdleClockPulsesbetween 4thand?~hbits,andbetween 8thand9thbits. CONVERT COMMAND STATUS CLOCK MSB 2SB 3SB 4SB SSB I I I I I I I I LSB COMPARATOR OUTPUT ANALOG DEVICESwc sA ';A~N~~~DWG.N~~-66510NORWOOD . MASSACHUS~TTS c.-r - SHEET 15 --- OF 17 "EV. A c.,81 !='I ~I. I I I I II II II..J OBSOLETE
e10In-" 05/14/9811:58 ANALOGDEVICES 141016/017 FOR REVISIONS AND APPROVAL SEE SHEET I FIGURE 2 BLOCKDIAGRAM ...,5 JOK 1 00 K 4-:-/\\N GAIN 2 -i5 3 20v RANGE ~ , 5 leV RANGE "6 +15V 3MEG ZERO -15 +15V 271 0--+ 30 ~ GRD .)COMP.OUTI .STATUS CONVERT CMD CLOCK IN CLOCK OUT PRECISION DAC (uDAC IC'S PLUS THIN FILM RESISTOR NETWORK) CD'" ,:E co'"-J MSs TTl LOGIC REGISTERS INTERNAL CLOCK ANALOG'D EVIC ES weNORWOOD.MASSACHUSETTS '70 . 9 ., 154 . 152 51) STATUS 0 143 CLOCK INHIBI1f DWG.NO. 03~66510 SHEET ..li. REV. A C ,I zi I I I I I I I I I ..JOF.lL OBSOLETE
0.018(0.457)MIN 0.020(0.508)MAX Note: Dimensionsin inchesshownout- sideparenthesis Dimensionsinmm showninside parenthesis Note: Pinsinstalled onlyinshaded holelocations I In- Iz ::) QCCD ANALOGDEVICESINCI AI NORWOO0 . MASSACHUSETTS ~ c..., FORREVISIONS AND APPROVAL SEE SHEET I FIGURE3 PHYSICAL OUTLINE 1 ~ 2.00(50.8) ---1-1 2.02(51.3) g.4 40(10.2) NOM . 2(10.7)MAX J-b~f~:!JT 36 37 MINMAX 4.00(101.6) NOM 4.02(102.1) MAX 1 72 BOTTOM VIEW 0.1" SQUARE GRID SHEET 17 ~ -~-- OF 17 "EV. A 0'"~I f', ~I. I I I I II II II..J OBSOLETE