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Auto Reset@@P @!status @code@0sourceerror in (no error)@ Set Start Time (s)@ Get Start Time (s)@0Start Time Text@ Present (s)@0 Present Text@ Elapsed Time (s)@!Time has Elapsed@0Elapsed Time Text6@P @!status @code@0source error out P6 cP P d-` c RP"@P@flg@oRt@eofudf P!Resetx!dfdP!txdP!oldP!ext P   c;`P"@P@flg@oRt@eofudfP Set Start Time (s)x dfdP txdP oldP ext P   c4\P"@P@flg@oRt@eofudfP Time Target (s)p dfdP txdP oldP ext c(^P"@P@flg@oRt@eofudfP!Time has Elapsedx!dfdP!txdP!oldP!ext c/XP"@P@flg@oRt@eofudfP! 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Auto Reset&@ Elapsed Time (s)F6@P @!status @code@0source error out@ Present (s)$@ Get Start Time (s) @ Get Start Time @ Present"@ Elapsed Time$@0Start Time Text&@0 Present Text*@0Elapsed TimeTextL@@P @!status @code@0sourceerror in (no error) @!status @code@0source*@0Elapsed Time Text   @!Reset@ Elapsed Time Target@ Set Start Time@! Auto Reset@@P @!status @code@0sourceerror in (no error)@0Elapsed TimeText@0 Present Text@0Start Time Text@!Time has Elapsed@ Elapsed Time @ Present@ Get Start Time6@P @!status @code@0source error out$@ Elapsed Time Target @ Set Start Time5$$DDhh<\tDPhPhhh sDN[]N[]'''Do a reset as soon as time has elapsed.QDResetH$^DeeSet Start Time (s)[D Time Target (s)\D@nM@oMTime has ElapsedVD!.!. 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When the VI reaches the Time Target (s), Time has Elapsed is TRUE.x4]Uses the time you wire to this input as the start time instead of the time this VI first ran.4pResets the start time to the value in Present (s) when the Express VI reaches the Time Target (s).|4dIndicates if the Elapsed Time (s) is greater than the start time plus Time Target (s).4mDisplays the amount of time in seconds that has elapsed since the start time and the Present (s) time.84#Displays the present date and time.|4hDisplays the date and time the VI first ran or the time you wire to the Set Start Time (s) input.4Returns the time the VI first ran or the time you wire to the Set Start Time (s) input. Displays the time in seconds since 12:00 a.m., Friday, January 1, 1904, Universal Time.5; Di 1; Di 1; Di \4FDescribes error conditions that occur before this VI or function runs.4Contains error information. 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UUP\4UD   4UD  U4UD(  _Wizardv2PTH0^expressexpress execution controlElapsedTimeConfig.llbConfigure Elapsed Time.vi_OriginalInstancePaths2PTH0[expressexpress execution controlElapsedTimeBlock.llbEx_Inst_Elapsed Time.vi Localized$@0TagNameLocalizeNI.LV.ALL.VILastSavedTarget0DfltNI.LV.ALL.goodSyntaxTargets&@0Dflt(CJUUAn (>;>;>c/>J?h  o  v  }  TahomaTahomaTahoma012RSRC LVINLBVW 4 RSIDLVSRBDPWLIviCPTMDSTMDFDSLIdsVICD0versDDLDRXFPTDlCPMpSTRGHLPP4HLPTHICON\icl4picl8TITLCPCTDTHPTRecDCPST 8DSIM LIfp FPHP LIbd BDHP VITS (HIST <>t=>|I>?<??8@?5A@\ܻB@CADAdtKEAFBGBh$HB|IC @JCXKCLCMDexpressexpress sharedtransition.llbWaveform Array To Dynamic.viybyobbyob @@ Array@T P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesDynamic Data TypeP cP P d-` j Pp@fP0@PP!!!!l@bP0   !!!$@P0!!!B@8PPb P         @P b P         @P  c4P"@P@flg@oRt@eofudfPT P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesDynamic Data TypenxT dP^@TTNPTP @ P!0SdfdnPT dP^@TTNPTP @ P!0StxdnPT dP^@TTNPTP @ P!0SoldnPT dP^@TTNPTP @ P!0Sext4 P@@@  P   c4P"@P@flg@oRt@eofudfP@ Arrayx@ dfdP@ txdP@ oldP@ ext c cD c@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes c cLTP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes c@@ Array c c c c c c c dP``` d d 0@v48< :^Plot 0 Time Amplitudef32-f3K4@Y@4@?6"$@$$@@?R$`08 > @d@@VIDS.Instance 22 19Saved batteryTest .viVIDSWaveform Array To Dynamic.vi PTH0Dli386codeh0EwE\EPPUEd$=X=ÐYӀ}5ELXC<C,}E$EEƅɍHHƅ hhUEP lvexpress.chm Convert_to_Dynamic_Data.html? QX QG B UG( X?03 " "30 " 30 "03Convert to Dynamic Data @@ Array|@T dP^@TTNPTP @ P!0SDynamic Data TypepDTHPDܪ88ho~@@ YTP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesxlP @T P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesOutput@@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes Output SignalInput@@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes Output SignalInput@T P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesOutput @@ Array@T P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesDynamic Data Type\4l,LL, ]D8ES8ESDynamic Data TypeHD"d  PD$TimeU D$& AmplitudeHD8an.an.N) (0.Q%A&AArrayHą N4;5; H܅ 8d :cHD|HDL  hDY Z Waveform Array To Dynamic.vi  nn 13 g/g3>FPHP.Instance 22 19Saved batteryTest .viFPHP \8oXL \ x 7|p^^u3;8(4 h0 k! ;>n4 F 7FT0 C 3H;>n@ :K! ^rn>n>gE@ :J! sfFfF]O@ :L! 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QX QG B UG( X?03 " "30 " 30 "03Convert to Dynamic Data2 @@ Array|@T dP^@TTNPTP @ P!0SDynamic Data TypepDTHPDܪ88ho~@@ YTP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesxlP @T P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesOutput@@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes Output SignalInput@@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes Output SignalInput@T P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesOutput @@ Array@T P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesDynamic Data Type\4l,LL, ]D8ES8ESDynamic Data TypeHD"$  PD$TimeU D$& AmplitudeHD|an.an.N) (0.Q%A&AArrayHt N4;5; H 8d :cHD`HD  hDY Z Waveform Array To Dynamic.vi  nn 13 g/g3>FPHP.Instance 23 19Saved batteryTest .viFPHP 8lXL \ x 7|p^^u3;8(4 h0 k! ;>n4 F 7FT삀0 C 3H;>n@ :K! ^rn>n>gE@ :J! sfFfF]O@ :L! 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Reset Timer@! Reset mAH@ Charge Term (A)<@ Normal VIBattery ChargeBattery Discharge Test Mode @!Stop @State @!Active@ Discharge Term (V) I. Description: This example demonstrates how to acquire a continuous amount of data (Waveform) using the DAQ device's internal clock. II. Instructions for Running: 1. Create an analog input voltage channel. 2. Set the rate for the sample clock. Additionally, define the sample mode to be continuous. 3. Call the Start VI to start the acquisition. 4. Read the waveform data in a loop until the user hits the stop button or an error occurs. Note: This example reads data from one or more channels and returns an array of data. Use the Index Array function to access an individual channel of data. 5. Call the Clear Task VI to clear the Task. 6. Use the popup dialog box to display an error if any. IV. I/O Connections Overview: Make sure your signal input terminal matches the Physical Channel I/O Control. 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V>n0 C >n@ :J!4HfFfF]O0 J& {|@ :L! o=v6o=@ :K!3n>n>gE0 2(67 Z0 2-AB [D`002(2 hDO@44<p4 l p |4 3^q<4 22;|4 3^Tx4 63B/t0  $50 2(:/;4 \0 2-1 4 ]8 hB\T4 $R0 DY-0  >n |,8 h BU0 D$ $ | |@ P <"D<  h8 0 |4 D"p4 F@R 0 @ number of samples per channel specifies the number of samples to read from the buffer.0# | mean is the average of the values in the input sequence X.H'RO p\' ,8'v vD@)P~$B4oHp) 2 4|bJ|bJ|bJ8)h$BT,)`p) !"0) w rdHp) 2 8@o|cIo|cIo|cI8)hBT0) _$ o0) w$ r)!8#X!x)"P"!0) W$ p>n)$,$<)Sp$$rl$%(0) 7 t )|8)hB4)Qt n4) 6 d xj\0*  r<*Otn(@* 6 VmiSSR8*h BT8*h#BT0*  d t ndH8*h dBTp* 2#Vv{l@KKv{KKl@v{ddl@* #t.~t.~t*t.~t**  tn.~tn.~tn*tn.~tn*<*OtD* %Tt.~t.~t*t.~t*8*h%TBT,* d #%T,*%T# d<*Ot,*&$&X&'&%%0*  "`8*hB4h 4* F #xX8+ 6 $^T@L- : $*0Q0Q/R.S-T@- : A"p<p(  0a+mcIa+mcIa+mcIp0 :(  +a7mbJ+a7mbJ+a7mbJ0|P80hJ,B'eT00D*J,T 0SSSSP 0OODNNp0^dQUwv : PDg0|00 C+ >n40 FJ,  P<1O.X+g-(,1|1|P1;data contains a Boolean sample to write to the task.,1--./4/-T81h,tB,,R 41 G,t0Iԃ2 2,tVN]jBKKN]KKjBN]ddjBN]KKjBN]ddjB02D.,t 2|s2 ,t0biC0biC0biC0biC0biC2 7,tY0gDh0gDh0g0gDh0g\2 7,tX+ghD+ghDP2W3a900x@ V ht2_input terminal configuration specifies the input terminal configuration for the channel.,21T111212`<2 20( &5844 F0( ap؂85J0( (%7\407 0( "9dHp7 20( 0!-cI!-cI!-cI87h0(B Tap7 60( ,8bJ,8bJ,8bJ07D 0($ 7|7|7|H73data contains a sample to write to the task.7|7|,76\66,6768h<07D4\bT 7|x87hbB3`3LR <7S`=or34467|7error out contains error information. If error in indicates that an error occurred before this VI or function ran, error out contains the same error information. Otherwise, it describes the error status that this VI or function produces.7<8h607 4 rdH47 F4 o~& 08 74 n<8O4 74788h4B338Tg,87`89|8048 G6 9|9tstatus is TRUE (X) if an error occurred or FALSE (checkmark) to indicate a warning or that no error occurred.89h6B43@9PC4^8:@ `9|<9 n6Ԃd<;::H _= ^> _4> F8h 1̂8?28h !ZЂLA 28h !0Q0Q/R.S-TA|Acode is the error or warning code. If status is TRUE, code is a nonzero error code. If status is FALSE, code is 0 or a warning code.0A 8h ^dH8Ah8hB874AQ4n<8=,A>>=D=tpA :8h 0 cI cI cIpA :8h  bJ bJ bJ0A < ndH8Ah<B:940ADY4 |Asource identifies where and why an error occurred. The source string includes the name of the VI that produced the error, what inputs are in error, and how to eliminate the error.4A F<  4B 2< jҼC|C|XCFTg DC@ ~p 0C 7?< |C|C|C|C|<0C @D TldH@CPB/l@@`J FHC3data contains a sample to write to the task.<CA@AtABhA@A8Ch@DB??R4C F@D /U8D 2@D XhLF :@D Xh0Qu0Q/R.S-TpF 6@D 0S_cIS_cIS_cIpF 2@D _kbJ_kbJ_kbJ0FD@I@DT bXFIH GpFC ~p 0F 7C F|Fphysical channels specifies the names of the physical channels to use to create virtual channels. The DAQmx Physical Channel Constant lists all physical channels on devices and modules installed in the system.<FDEE@E|?F$E4F F?< g x`@G 2?<O }!!"<G 2?< }T pH 2?<+  zu7zu7zu78Hh?<B??U0H ?< x dH0HDYQ?< Hphysical channels specifies the names of the physical channels to use to create virtual channels. 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