LM109QML
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LM109QML5-VoltRegulator
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FEATURES
•
SpecifiedtobeCompatible,WorstCase,withTTLandDTL
OutputCurrentinExcessof1A
InternalThermalOverloadProtectionNoExternalComponentsRequired
DESCRIPTION
TheLM109seriesarecomplete5Vregulatorsfabricatedonasinglesiliconchip.Theyaredesignedforlocalregulationondigitallogiccards,eliminatingthedistributionproblemsassociationwithsingle-pointregulation.Thedevicesareavailableintwostandardtransistorpackages.Inthesolid-kovarPFMheader,itcandeliveroutputcurrentsinexcessof200mA,ifadequateheatsinkingisprovided.WiththeTOpowerpackage,theavailableoutputcurrentisgreaterthan1A.
Theregulatorsareessentiallyblowoutproof.Currentlimitingisincludedtolimitthepeakoutputcurrenttoasafevalue.Inaddition,thermalshutdownisprovidedtokeeptheICfromoverheating.Ifinternaldissipationbecomestoogreat,theregulatorwillshutdowntopreventexcessiveheating.
Considerableeffortwasexpendedtomakethesedeviceseasytouseandtominimizethenumberofexternalcomponents.Itisnotnecessarytobypasstheoutput,althoughthisdoesimprovetransientresponsesomewhat.Inputbypassingisneeded,however,iftheregulatorislocatedveryfarfromthefiltercapacitorofthepowersupply.StabilityisalsoachievedbymethodsthatprovideverygoodrejectionofloadorlinetransientsasareusuallyseenwithTTLlogic.
Althoughdesignedprimarilyasafixed-voltageregulator,theoutputoftheLM109seriescanbesettovoltagesabove5V,asshown.Itisalsopossibletousethecircuitsasthecontrolelementinprecisionregulators,takingadvantageofthegoodcurrent-handlingcapabilityandthethermaloverloadprotection.
•••
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Alltrademarksarethepropertyoftheirrespectiveowners.
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PRODUCTIONDATAinformationiscurrentasofpublicationdate.ProductsconformtospecificationsperthetermsoftheTexasInstrumentsstandardwarranty.Productionprocessingdoesnotnecessarilyincludetestingofallparameters.
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LM109QML
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ConnectionDiagrams
MetalCanPackages
Figure1.3-PinPFM
BottomView
SeeNDT003APackageFigure2.2-PinTOBottomViewSeeKPackage
SchematicDiagram
Thesedeviceshavelimitedbuilt-inESDprotection.TheleadsshouldbeshortedtogetherorthedeviceplacedinconductivefoamduringstorageorhandlingtopreventelectrostaticdamagetotheMOSgates.
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ABSOLUTEMAXIMUMRATINGS(1)
InputVoltagePowerDissipation
OperatingAmbientTemperatureRangeStorageTemperatureRangeMaximumJunctionTemperatureThermalResistance
θJA
PFM-Pkg(StillAir)
PFM-Pkg(500LF/MinAirflow)TO-Pkg(StillAir)
TO-Pkg(500LF/MinAirflow)
θJC
LeadTemperature(Soldering,10sec.)ESDTolerance(2)(1)
PFM-PkgTO-Pkg
35VInternallyLimited−55°C≤TA≤+150°C−65°C≤TA≤+150°C
150°C190°C/W69°C/W39°C/WTBD25°C/W3°C/W300°C4000V
(2)
AbsoluteMaximumRatingsindicatelimitsbeyondwhichdamagetothedevicemayoccur.OperatingRatingsindicateconditionsforwhichthedeviceisfunctional,butdonotensurespecificperformancelimits.Forensuredspecificationsandtestconditions,seetheElectricalCharacteristics.Theensuredspecificationsapplyonlyforthetestconditionslisted.Someperformancecharacteristicsmaydegradewhenthedeviceisnotoperatedunderthelistedtestconditions.Humanbodymodel,1.5kΩinserieswith100PF.
Table1.QUALITYCONFORMANCEINSPECTION
Mil-Std-883,Method5005-GroupA
Subgroup
12345678A8B91011121314
DescriptionStatictestsatStatictestsatStatictestsatDynamictestsatDynamictestsatDynamictestsatFunctionaltestsatFunctionaltestsatFunctionaltestsatSwitchingtestsatSwitchingtestsatSwitchingtestsatSettlingtimeatSettlingtimeatSettlingtimeat
Temp°C25125-5525125-5525125-5525125-5525125-55
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LM109HELECTRICALCHARACTERISTICSDC/ACPARAMETERS
Thefollowingconditionsapplytoallthefollowingparameters,unlessotherwisespecified.AC/DC:IL=5mA
SymbolVStartIQ
Parameter
StartUpInputVoltageQuiescentCurrent
Conditions
VO≥4.706V,RL=25ΩVI=7V
VI=7.2V,IL=500mAVI=25V
VI=25V,IL=500mAVI=35V
ΔIQ
QuiescentCurrentChange
7V≤VI≤25VVI=7.2V,
5mA≤IL≤500mA
VRLineVRLoad
LineRegulationLoadRegulation
7V≤VI≤25VVI=7.2V,
5mA≤IL≤500mAVI=10V,
5mA≤IL≤500mAVI=25V,
20mA≤IL≤500mAVI=25V,tPW≤10ms,500mA≥IL≥20mA,
VO
OutputVoltage
VI=7V,P1≤2WVI=7.2V,IL=500mA,P≤2W
VI=10V,IL=100mA,P≤2W
VI=25V,IL=20mA,P≤2W
VI=25V,IL=500mA,P≤2W,tPW≤10mSVI=25V,P≤2W
IOSRR(1)(2)
ShortCircuitCurrentRippleRejectionƒ
VI=35V
IJ120Hz,eI=1VRMS,IL=125mA
50
(2)(2)(2)(2)(2)(2)
Notes
(1)
MinMax9.0
UnitVmAmAmAmAmA
Sub-groups11,2,31,2,31,2,31,2,311,2,31,2,312,312,312,3111,2,31,2,3111,2,31,2,314
-10-10-10-10-10-0.5-0.8-50-100-50
(2)
0.50.8501005010050100150505.45.45.35.45.45.42.0
mAmAmVmVmVmVmVmVmVmVVVVVVVAdB
-100-50-100-150-504...74...6
(2)
Thistestisperformedbyshiftingtheinputvoltagein50mVincrementsuntiloutputreaches4.706V.At−55°C&125°C,IL=200mAratherthan500mA.
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LM109KELECTRICALCHARACTERISTICSDC/ACPARAMETERS
Thefollowingconditionsapplytoallthefollowingparameters,unlessotherwisespecified.AC/DC:IL=5mA(1)
SymbolVStartIQ
Parameter
StartUpInputVoltageQuiescentCurrent
Conditions
VO≥4.706V,RL=5ΩVI=7V
VI=7.2V,IL=1.5AVI=25V
VI=25V,IL=1.5AtPW≤10msVI=35V
ΔIQ
QuiescentCurrentChange
7V≤VI≤25VVI=7.2V,
5mA≤IL≤1.5A
VRLineVRLoad
LineRegulationLoadRegulation
7V≤VI≤25VVI=7.2V,
5mA≤IL≤1.5AVI=10V,
1.5A≥IL≥5mAVI=25V,tPW<10ms,1A≥IL≥20mA,
VO
OutputVoltage
VI=7V,P1≤20WVI=7.2V,IL=1.5A,P≤20W
VI=10V,IL=500mA,P≤20W
VI=25V,IL=20mA,P≤20W
VI=25V,IL=1A,P≤20W,tPW≤10mSVI=25V,P≤20W
IOSRR(1)(2)(3)
ShortCircuitCurrentRippleRejection
VI=35V
IJ120Hz,eI=1VRMS,IL=500mA
50
(3)(3)(3)(3)
Notes
(2)
MinMax9.0
UnitVmAmAmAmAmA
Sub-groups11,2,31,2,31,2,31,2,311,2,31,2,312,312,312,311,2,31,2,3111,2,31,2,314
-10-10-10-10-10-0.5-0.8-50-100-100
(3)
0.50.850100100200100200505.45.45.35.45.45.42.8
mAmAmVmVmVmVmVmVmVVVVVVVAdB
-200-100-200-504...74...6
(3)
Humanbodymodel,1.5kΩinserieswith100PF.
Thistestisperformedbyshiftingtheinputvoltagein50mVincrementsuntiloutputreaches4.706V.At−55°C&125°C,IL=1Aratherthan1.5A.
LM109KELECTRICALCHARACTERISTICSDCPARAMETERS
Thefollowingconditionsapplytoallthefollowingparameters,unlessotherwisespecified.DC:IL=5mA(1)
SymbolVNΔVO/ΔT(1)(2)
Parameter
OutputNoiseVoltageLongTermStability
Conditions
10Hz≤ƒ≤100KHz
Notes
(2)(2)
MinMax20010
UnitµVmV
Sub-groups78
Humanbodymodel,1.5kΩinserieswith100PF.Specifiedparameter,nottested.
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APPLICATIONHINTS
1.BypasstheinputoftheLM109togroundwith≥0.2μFceramicorsolidtantalumcapacitorifmainfiltercapacitorismorethan4inchesaway.
2.Avoidinsertionofregulatorinto“live”socketifinputvoltageisgreaterthan10V.Theoutputwillrisetowithin2Voftheunregulatedinputifthegroundpindoesnotmakecontact,possiblydamagingtheload.TheLM109mayalsobedamagedifalargeoutputcapacitorischargedup,thendischargedthroughtheinternalclampzenerwhenthegroundpinmakescontact.
3.Theoutputclampzenerisdesignedtoabsorbtransientsonly.Itwillnotclamptheoutputeffectivelyifa
failureoccursintheinternalpowertransistorstructure.Zenerdynamicimpedanceis≈4Ω.ContinuousRMScurrentintothezenershouldnotexceed0.5A.
4.ParallelingofLM109sforhigheroutputcurrentisnotrecommended.Currentsharingwillbealmost
nonexistent,leadingtoacurrentlimitmodeoperationfordeviceswiththehighestinitialoutputvoltage.Thecurrentlimitdevicesmayalsoheatuptothethermalshutdownpoint(≈175°C).Longtermreliabilitycannotbespecifiedundertheseconditions.
5.Preventinglatchoffforloadsconnectedtonegativevoltage:
IftheoutputoftheLM109ispullednegativebyahighcurrentsupplysothattheoutputpinismorethan0.5Vnegativewithrespecttothegroundpin,theLM109canlatchoff.ThiscanbepreventedbyclampingthegroundpintotheoutputpinwithagermaniumorSchottkydiodeasshown.Asilicondiode(1N4001)attheoutputisalsoneededtokeepthepositiveoutputfrombeingpulledtoofarnegative.The10Ωresistorwillraise+VOUTby≈0.05V.
CrowbarOvervoltageProtection
Figure3.InputCrowbar
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Figure4.OutputCrowbar
*ZenerisinternaltoLM109.
**Q1mustbeabletowithstand7Acontinuouscurrentiffusingisnotusedatregulatorinput.LM109bondwireswillfuseatcurrentsabove7A.
†Q2isselectedforsurgecapability.Considerationmustbegiventofiltercapacitorsize,transformerimpedance,andfuseblowingtime.††Trippointis≈7.5V.
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TYPICALPERFORMANCECHARACTERISTICS
MaximumAverage
PowerDissipation(LM109K)
OutputImpedance
Figure5.
MaximumAverage
PowerDissipation(LM109H)
Figure6.
RippleRejection
Figure7.
CurrentLimit
Characteristicsdocato-extra-info-titleCurrentlimitingfoldbackcharacteristicsaredeterminedbyinputoutput
differential,notbyoutputvoltage.
Figure8.
ThermallyInducedOutput
VoltageVariation
Currentlimitingfoldbackcharacteristicsaredeterminedbyinputoutputdifferential,notbyoutputvoltage.
Figure9.
Figure10.
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TYPICALPERFORMANCECHARACTERISTICS(continued)
RippleRejection
Input-OutputDifferential(V)
Figure11.OutputVoltage(V)
Figure12.OutputVoltage(V)
Figure13.QuiescentCurrent
Figure14.QuiescentCurrent
Figure15.Figure16.
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TYPICALPERFORMANCECHARACTERISTICS(continued)
OutputVoltageNoise
LineTransientResponse
Figure17.
LoadTransientResponse
Figure18.
Figure19.
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TYPICALAPPLICATIONS
Figure20.Fixed5VRegulator
*Requiredifregulatorislocatedmorethan4″frompowersupplyfiltercapacitor.
†Althoughnooutputcapacitorisneededforstability,itdoesimprovetransientresponse.
C2shouldbeusedwheneverlongwiresareusedtoconnecttotheload,orwhentransientresponseiscritical.Note:Pin3electricallyconnectedtocase.
Figure21.AdjustableOutputRegulator
Figure22.HighStabilityRegulator*
*Regulationbetterthan0.01%,load,lineandtemperature,canbeobtained.†Determineszenercurrent.Maybeadjustedtominimizethermaldrift.‡Solidtantalum.
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Figure23.CurrentRegulator
*Determinesoutputcurrent.Ifwirewoundresistorisused,bypasswith0.1μF.
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REVISIONHISTORY
Date
Released11/08/05
Revision
A
Section
Newreleasetocorporateformat
Originator
L.Lytle
Changes
2MDSdatasheetsconvertedintoone
datasheetinthecorporateformat.Deletednote5&correctedVRLoadofLM109Kto≥.
MNLM109-KRev0AL&MNLM109-HRev0ALwillbearchived.
ChangedlayoutofNationalDataSheettoTIformat.
4/22/2013AAll
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PACKAGE OPTION ADDENDUM
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PACKAGING INFORMATION
Orderable DeviceLM109H/883LM109K/883Status(1)Package TypePackagePinsPackageDrawingQtyTOTONDTK322050Eco Plan(2)Lead/Ball FinishCall TICall TIMSL Peak Temp(3)Op Temp (°C)-55 to 150-55 to 150Top-Side Markings(4)SamplesACTIVEACTIVETBDTBDCall TICall TILM109H/883 Q ACOLM109H/883 Q >TLM109K/883 Q ACO/883 Q >T (1)
The marketing status values are defined as follows:ACTIVE: Product device recommended for new designs.
LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect.
NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design.PREVIEW: Device has been announced but is not in production. Samples may or may not be available.OBSOLETE: TI has discontinued the production of the device.
(2)
Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check http://www.ti.com/productcontent for the latest availabilityinformation and additional product content details.
TBD: The Pb-Free/Green conversion plan has not been defined.
Pb-Free (RoHS): TI's terms \"Lead-Free\" or \"Pb-Free\" mean semiconductor products that are compatible with the current RoHS requirements for all 6 substances, including the requirement thatlead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes.
Pb-Free (RoHS Exempt): This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and package, or 2) lead-based die adhesive used betweenthe die and leadframe. The component is otherwise considered Pb-Free (RoHS compatible) as defined above.
Green (RoHS & no Sb/Br): TI defines \"Green\" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame retardants (Br or Sb do not exceed 0.1% by weightin homogeneous material)
(3)
MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature.
(4)
Multiple Top-Side Markings will be inside parentheses. Only one Top-Side Marking contained in parentheses and separated by a \"~\" will appear on a device. If a line is indented then it is acontinuation of the previous line and the two combined represent the entire Top-Side Marking for that device.
Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on informationprovided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken andcontinues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals.TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release.
In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis.
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MECHANICAL DATA
K0002C
K02C (Rev E)4214774/A 03/2013NOTES:
1. All linear dimensions are in millimeters. Dimensions in parenthesis are for reference only. Dimensioning and tolerancing per ASME Y14.5M.2. This drawing is subject to change without notice.3. Leads not to be bent greater than 15º
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MECHANICAL DATA
NDT0003A
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