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DUSTANDITSIMPACTON 
ELECTRONICS 
 
ABSTRACT 
Indicatorandpreventivemaintenanceutilityfordustdepositedonelectronic/electricaldevicesand 
Industrialdevicese.g.Computers. 
Dustcanbeconductiveorattractmoisturecausingleakageproblems;caninsulatethedevices 
causingittooverheat,cancausepoorcontactinvariouscircuitsorcancausearcingandcarbon 
trackinginhighervoltageapplicationsandstillmanymoreconsequencesofdustaccumulationover 
electronicscardarethere. 
Dustingremainsƒveryvitalpartofpreventivemaintenanceforanykindofdigitalsystems 
deployedoverƒvariedrangeandvarioustypesofindustries.Butthequestioniswhento 
shutdownthesystemandstartblowingthedustwithƒblowerǤ 
Thispaperfocusesononesuchsimplemethodtoindicatethedegreeofdustdepositionand 
therequirementforblowingawaythedustǤ
INTRODUCTION  
AtmosphericDustisoneoftheoldestknownenemiesofelectronicsandelectricaldevices.Over 
periodoftime,gradually,dustgetsaccumulatedonthecircuitsdespitethecovered 
covering/packing. 
Oncontrary,whendealingwithelectronicsandelectricaldevicesthereisƒneedtokeepthedevices 
cool,forwhichtherewillbeƒperforationsorgrillkindofthingengravedonthedevice 
covering/canopy.Theseperforationsandgrillsonthecoveringbodygiveaneasyaccesstothedust 
particletosettleonthecircuitsleadingtounexpectedconsequences. 
So,inactualthereisnowayorverylesswaystosaynotodustdeposition.Goodhousekeepingis 
veryessentialinensuringtheproperfunctioningofelectronic/electricaldevice.e.g.ƒPC.Thusto 
ensureƒgoodproductlifeofsuchelectronicdevicestheuserneedstocarryon“Preventive 
Maintenance”onregularbasis.Oneveryessentialandinitialactivityformingthebasicsof 
Preventivemaintenanceis‘blowingthedustwithvacuumcleanerorƒsmallsizedairblower’. 
Wedoblowinginourpersonalcomputers.Inindustriestheblowingactivityiscarriedonƒlotof 
electricalpanels,controlsystem,andallthecomputershostingplantspecificcontrol,measurement 
andanalysissoftware’s,duringtheirunitoutageorscheduledunitshutdownformaintenance. 
Athometheblowingmaynotbeofmuchsignificancebutinindustrieslikethermalutilities,cement 
industriesoroilandgasutilitiesetc...Therewillbelotofcoaldust,limestonedustandoilandgas 
fumesetc…sotheneedfordustblowingactivitiesareindispensable. 
Oneinterestingfactisthatthe‘rateofdustdepositionisnotinaccordancewithyourpreventive 
maintenancescheduleoryourunitoutageplan’. 
Now,ƒquestionwhichseemsobviousatthispartofdiscussionhowtodecidethestartofshutdown 
thespecificsmallpartorcomponentfordusting/blowinginordertoensuretheavailabilityofthe 
biggersystem. 
Anotherquestionishowtogetanassessmentofthedegreeofdustdeposition/accumulationor 
scaling. 
 
EXISTINGTECHNIQUES 
• Coveringtheelectronicscard,e.g.…plasticcoveronram. 
• Intuition/experienceofthemaintenancepeople,blowingorvacuumcleaningduringannual 
outages/overhaulideaaboutactualneedofit. 
• senseofunusualhightemperatureofthecabinetorsystemsetc…
THEMETHODTOACCESSTHEDEGREEOF 
DUSTONELECTRONICCARDS 
Themethodinvolvestheassessmentofdustdepositiononanycircuit/cardofanyparticularsize 
basedoncomparisonwithanotherreferencei.e.ƒprototypeofsamedimensionasoftheoriginal 
circuit/cardwhichactsasƒreference. 
Nowthisprototypeisdeployedinthesameenvironmenti.e.covering/case/canopywherethe 
originalcircuit/cardlies. 
Assumingthefactthattherewillbeverylittlevariationonquantityofdustdepositiononboth 
(originalelectroniccard/PCBandthereferenceprototype)ofthedevicesbeingexposedtosame 
environment,thusifyoucanmeasurethelevelofdustdepositiononthereferenceprototype,you 
canhaveanideaofhowmuchdustisthereontheoriginaldeviceundertest. 
Howtomeasurethedustaccumulationonreferenceprototypeisexplainedinthefollowingfive 
stepsintheillustrationshownbelow: 
 
Nowlet’strytocreatedustaccumulationindicatorforthisPCBintheCPUshowninthefigure 
below:
Step1ǣIdentifythedimensionsoftheCard/PCB/Moduleundertestsothatwecanmakeƒ 
referenceprototypewithsamedimensionsformeasurement.
Step2ǣTurnthetwooppositeEdgestotoucheachothersuchthatitformsƒcylindricalstructure. 
Cylindricalstructurehastheadvantageofconsuminglessspace.
Step3ǣReferenceElectricalsignalmeasurement,takeanimperforatedtubeofsamedimensionas 
theperforatedtubefordeterminingthemaximumvaluesoftheelectricalsignalreceivedatthe 
otherendofthetube. 
 
 
 
Step4ǣCreatingperforationsonthecylindricaltubeǤSizeofperforationwillbeinproportionto 
theDustparticulatesizethatwillfurtherdependuponenvironmentoftheIndustrytypeinwhich 
card/PCBisexposed.Iftheenvironmentisƒthermalutilitythenmostofthedustwillbecoaldustand 
perforationsdimensionscanmatchthesizeofcoaldust.Iftheenvironmentisƒcementplantthen 
perforationsdimensioncanmatchthatofcementlimestonedustansoon.
Step5ǣFinalstep“measurement”,justturnONtheLightsource,andobservethestrengthofthe 
measuredelectricalsignalinthemeter.TheelectricalsignalwillIncrease/growwithduecourseof 
thetimeasthedustaccumulatesandblocksthepores. 
SincethereferenceelectricalsignalisalreadyknownfromSTEP3ǡanyfurtherriseorfallinthe 
valueofmeasuredelectricalsignalwillbeƒanassessmentofdustlevel. 
Nowplacethiswholeassemblyintothesameenvironmentwheretheactualelectronic 
card/moduleorcircuitisplaced. 
Note:Inordertoensurethattheamountdustdepositedonthecylindricaltube 
1. Remainsuniformoverthecylindricalsurfaceand 
2. Veryclosetotheamountofdustdepositedonactualmodule/card 
Thiswholecylindricaldevicecanbemovearoundthecentralaxis(alongthelenght)withthehelp 
ofƒsmallmotor. 
Finallywithduecourseoftime,whengraduallydustwillbebuiltuponthemodules/cards 
yourdustmonitoringkitwillassessitandgiveyouanestimationofdegreeofdust 
deposition. 
 
RESULTS/BENEFITS 
Theresultsorbenefitsemergingaremanysuchasenhancedoverallproductlifeveryless 
unexpectedfailuresǡfeweraccidentsduetooverheatingoftheappliancesǡimproved 
performanceoftheoveralldevice,lesstripsandalarms,propercontactsisensuredforlonger 
periodtimeinrelay,switchesandconnectorsetc… 
Theoutputofthisdustmeasurementtransducerasdiscussedabovecanalsobeƒusedasƒtrigger 
pointforanyfurtheractionoralarm. 
ASSUMPTIONS  
1. Dustdistributionisuniforminƒclosedenclosure/container/housinginwhich 
PCB/card/moduleismounted.Thusiftwoobjectsofsamesurfaceareaareexposedto 
dust/verminthedustaccumulatingonboththeobjectsaresameandsincethewhole 
cylindricalassemblyisrotating,dustdistributioncanbeconsideredtobedeposited 
uniformly. 
2. Themethoddescribedgivesthedustindicationwithcomparisonfromƒreferencerather 
anyabsolutescale.
3. Themaximumthenumberofpores/holes/perforationsonthecylindricalsurface,themore 
accurateisthedustlevelindication.Thetotalsurfaceareaoccupiedby 
pores/holes/perforationscannotbeexactlysameasthesurfaceareaofthe 
PCB/Card/Module. 
4. Howmuchexactamountofdustcancauseproblemisstillunknown,themethodonly 
describesƒreliablewaytoindicatethedegree,‘HI-Lo’levels,ofdustapproximately. 
 
 
CONCLUSION 
Themethodsurelydescribesƒmeasurementtechniquetoassessthedegreeofdustdepositiononƒ 
particularmoduleorcard. 
ThoughthemethodonlydescribesaboutHIandLowlevelsofdustbut
believethatthispaper 
opensƒgatewayoffurtherpossibilitiesofanabsolutemeasurementandmorequantitative 
measurementofdustdeposition.Alsothereisƒneedtoaccuratelypredicttheconsequencesof 
dustǤ 
 
AUTHORSNOTE 
SomeoftheimagesusedinthepaperaretakenfromGoogleimagesearch. 
Youcanshareyourviews,feedbacksorsuggestiononmymailid:‘atulkumar.mshra@hotmail.com’ 
or‘aaatul007@gmail.com’orcontactmeon+91-8826006907. 
Thanks. 
AtulKumarMishra

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Dust and its impact on electronics

  • 1. DUSTANDITSIMPACTON ELECTRONICS ABSTRACT Indicatorandpreventivemaintenanceutilityfordustdepositedonelectronic/electricaldevicesand Industrialdevicese.g.Computers. Dustcanbeconductiveorattractmoisturecausingleakageproblems;caninsulatethedevices causingittooverheat,cancausepoorcontactinvariouscircuitsorcancausearcingandcarbon trackinginhighervoltageapplicationsandstillmanymoreconsequencesofdustaccumulationover electronicscardarethere. Dustingremainsƒveryvitalpartofpreventivemaintenanceforanykindofdigitalsystems deployedoverƒvariedrangeandvarioustypesofindustries.Butthequestioniswhento shutdownthesystemandstartblowingthedustwithƒblowerǤ Thispaperfocusesononesuchsimplemethodtoindicatethedegreeofdustdepositionand therequirementforblowingawaythedustǤ
  • 2. INTRODUCTION AtmosphericDustisoneoftheoldestknownenemiesofelectronicsandelectricaldevices.Over periodoftime,gradually,dustgetsaccumulatedonthecircuitsdespitethecovered covering/packing. Oncontrary,whendealingwithelectronicsandelectricaldevicesthereisƒneedtokeepthedevices cool,forwhichtherewillbeƒperforationsorgrillkindofthingengravedonthedevice covering/canopy.Theseperforationsandgrillsonthecoveringbodygiveaneasyaccesstothedust particletosettleonthecircuitsleadingtounexpectedconsequences. So,inactualthereisnowayorverylesswaystosaynotodustdeposition.Goodhousekeepingis veryessentialinensuringtheproperfunctioningofelectronic/electricaldevice.e.g.ƒPC.Thusto ensureƒgoodproductlifeofsuchelectronicdevicestheuserneedstocarryon“Preventive Maintenance”onregularbasis.Oneveryessentialandinitialactivityformingthebasicsof Preventivemaintenanceis‘blowingthedustwithvacuumcleanerorƒsmallsizedairblower’. Wedoblowinginourpersonalcomputers.Inindustriestheblowingactivityiscarriedonƒlotof electricalpanels,controlsystem,andallthecomputershostingplantspecificcontrol,measurement andanalysissoftware’s,duringtheirunitoutageorscheduledunitshutdownformaintenance. Athometheblowingmaynotbeofmuchsignificancebutinindustrieslikethermalutilities,cement industriesoroilandgasutilitiesetc...Therewillbelotofcoaldust,limestonedustandoilandgas fumesetc…sotheneedfordustblowingactivitiesareindispensable. Oneinterestingfactisthatthe‘rateofdustdepositionisnotinaccordancewithyourpreventive maintenancescheduleoryourunitoutageplan’. Now,ƒquestionwhichseemsobviousatthispartofdiscussionhowtodecidethestartofshutdown thespecificsmallpartorcomponentfordusting/blowinginordertoensuretheavailabilityofthe biggersystem. Anotherquestionishowtogetanassessmentofthedegreeofdustdeposition/accumulationor scaling. EXISTINGTECHNIQUES • Coveringtheelectronicscard,e.g.…plasticcoveronram. • Intuition/experienceofthemaintenancepeople,blowingorvacuumcleaningduringannual outages/overhaulideaaboutactualneedofit. • senseofunusualhightemperatureofthecabinetorsystemsetc…
  • 3. THEMETHODTOACCESSTHEDEGREEOF DUSTONELECTRONICCARDS Themethodinvolvestheassessmentofdustdepositiononanycircuit/cardofanyparticularsize basedoncomparisonwithanotherreferencei.e.ƒprototypeofsamedimensionasoftheoriginal circuit/cardwhichactsasƒreference. Nowthisprototypeisdeployedinthesameenvironmenti.e.covering/case/canopywherethe originalcircuit/cardlies. Assumingthefactthattherewillbeverylittlevariationonquantityofdustdepositiononboth (originalelectroniccard/PCBandthereferenceprototype)ofthedevicesbeingexposedtosame environment,thusifyoucanmeasurethelevelofdustdepositiononthereferenceprototype,you canhaveanideaofhowmuchdustisthereontheoriginaldeviceundertest. Howtomeasurethedustaccumulationonreferenceprototypeisexplainedinthefollowingfive stepsintheillustrationshownbelow: Nowlet’strytocreatedustaccumulationindicatorforthisPCBintheCPUshowninthefigure below:
  • 6. Step3ǣReferenceElectricalsignalmeasurement,takeanimperforatedtubeofsamedimensionas theperforatedtubefordeterminingthemaximumvaluesoftheelectricalsignalreceivedatthe otherendofthetube. Step4ǣCreatingperforationsonthecylindricaltubeǤSizeofperforationwillbeinproportionto theDustparticulatesizethatwillfurtherdependuponenvironmentoftheIndustrytypeinwhich card/PCBisexposed.Iftheenvironmentisƒthermalutilitythenmostofthedustwillbecoaldustand perforationsdimensionscanmatchthesizeofcoaldust.Iftheenvironmentisƒcementplantthen perforationsdimensioncanmatchthatofcementlimestonedustansoon.
  • 7. Step5ǣFinalstep“measurement”,justturnONtheLightsource,andobservethestrengthofthe measuredelectricalsignalinthemeter.TheelectricalsignalwillIncrease/growwithduecourseof thetimeasthedustaccumulatesandblocksthepores. SincethereferenceelectricalsignalisalreadyknownfromSTEP3ǡanyfurtherriseorfallinthe valueofmeasuredelectricalsignalwillbeƒanassessmentofdustlevel. Nowplacethiswholeassemblyintothesameenvironmentwheretheactualelectronic card/moduleorcircuitisplaced. Note:Inordertoensurethattheamountdustdepositedonthecylindricaltube 1. Remainsuniformoverthecylindricalsurfaceand 2. Veryclosetotheamountofdustdepositedonactualmodule/card Thiswholecylindricaldevicecanbemovearoundthecentralaxis(alongthelenght)withthehelp ofƒsmallmotor. Finallywithduecourseoftime,whengraduallydustwillbebuiltuponthemodules/cards yourdustmonitoringkitwillassessitandgiveyouanestimationofdegreeofdust deposition. RESULTS/BENEFITS Theresultsorbenefitsemergingaremanysuchasenhancedoverallproductlifeveryless unexpectedfailuresǡfeweraccidentsduetooverheatingoftheappliancesǡimproved performanceoftheoveralldevice,lesstripsandalarms,propercontactsisensuredforlonger periodtimeinrelay,switchesandconnectorsetc… Theoutputofthisdustmeasurementtransducerasdiscussedabovecanalsobeƒusedasƒtrigger pointforanyfurtheractionoralarm. ASSUMPTIONS 1. Dustdistributionisuniforminƒclosedenclosure/container/housinginwhich PCB/card/moduleismounted.Thusiftwoobjectsofsamesurfaceareaareexposedto dust/verminthedustaccumulatingonboththeobjectsaresameandsincethewhole cylindricalassemblyisrotating,dustdistributioncanbeconsideredtobedeposited uniformly. 2. Themethoddescribedgivesthedustindicationwithcomparisonfromƒreferencerather anyabsolutescale.
  • 8. 3. Themaximumthenumberofpores/holes/perforationsonthecylindricalsurface,themore accurateisthedustlevelindication.Thetotalsurfaceareaoccupiedby pores/holes/perforationscannotbeexactlysameasthesurfaceareaofthe PCB/Card/Module. 4. Howmuchexactamountofdustcancauseproblemisstillunknown,themethodonly describesƒreliablewaytoindicatethedegree,‘HI-Lo’levels,ofdustapproximately. CONCLUSION Themethodsurelydescribesƒmeasurementtechniquetoassessthedegreeofdustdepositiononƒ particularmoduleorcard. ThoughthemethodonlydescribesaboutHIandLowlevelsofdustbut
  • 9. believethatthispaper opensƒgatewayoffurtherpossibilitiesofanabsolutemeasurementandmorequantitative measurementofdustdeposition.Alsothereisƒneedtoaccuratelypredicttheconsequencesof dustǤ AUTHORSNOTE SomeoftheimagesusedinthepaperaretakenfromGoogleimagesearch. Youcanshareyourviews,feedbacksorsuggestiononmymailid:‘atulkumar.mshra@hotmail.com’ or‘aaatul007@gmail.com’orcontactmeon+91-8826006907. Thanks. AtulKumarMishra