• Main INDEX
  • Monthly INDEX
  • PREV
  • NEXT
    Make New Entry, Make Followup Entry

    User name a-onl

    Log entry time 17:16:54 on July 21, 2009

    Entry number 282204

    keyword=End_of_Run_4104
    ****************************
     Run Number: 4104
     End of Run Comment:
    Run_type=Test,target_type=No Target,targetpol_poldir=Transverse-in-plane,targetpol_pol=0,beam_e0=6.064,beam_raster=on,beam_halfwaveplate=in,leftarm_p=1.00,leftarm_theta=18.0,leftarm_sieve=out,bbarm_i=518,bbarm_theta=75,bbarm_sieve=out,bbarm_zoff=0,comment_text=tagger test: 60kHz tagger, 98kHz to gr1 and 5
     
    
    can't read "scal(5,0)": no such element in array
        while executing
    "expr $scal($map(trigger-$t,$h))..."
        invoked from within
    "set  trigger_real($t,$h)   [ expr $scal($map(trigger-$t,$h))..."
        ("foreach" body line 2)
        invoked from within
    "foreach t $scalerinfo(triglist) { 
    	    set  trigger_real($t,$h)   [ expr $scal($map(trigger-$t,$h))          ]
                if { $ps($t) != 0 } {
      	     set  trigger($t,$h)        [ expr $scal($map(trigger-$t,$h))/ ( $ps($t) )  ]
                } else {
                 set  trigger($t,$h) 0
    	    }
    	}"
        ("foreach" body line 4)
        invoked from within
    "foreach h { 2 1 0 -1 -2 } {
    	set trigtot($h)      0
    	set acc_trigtot($h) 0 
    	foreach t $scalerinfo(triglist) { 
    	    set  trigger_real($t,$h)   [ expr $scal($map(trigger-$t,$h))          ]
                if { $ps($t) != 0 } {
      	     set  trigger($t,$h)        [ expr $scal($map(trigger-$t,$h))/ ( $ps($t) )  ]
                } else {
                 set  trigger($t,$h) 0
    	    }
    	}
    	set trigacc($h)  $scal($map(TS-accept,$h))
    	set clock($h)    $scal($map(clock,$h)) 
    
    # May 2009:  account for correlations.  
    # 1. Every T5 is a T1,T3
    # 2. Every T6 is a T2,T3
    # 3. Every T6 is a T5
    
            set t6corr $trigger(6,$h)
            set t5corr $trigger(5,$h)
            set t2corr $trigger(2,$h)
    	set t1corr $trigger(1,$h)
           
    	foreach t $scalerinfo(triglist) { 
    	    set tcorr 0
    	    if { $t == 1 } {
    		set tcorr [ expr $t5corr   ]
    	    } 
    	    if { $t == 2 } {
    		set tcorr [ expr $t6corr   ]
    	    } 
                if { $t == 3 } {
    		set tcorr [ expr $t5corr + $t6corr]
    	    } 
    	    if { $t == 5 } {
    		set tcorr [ expr $t6corr ]
    	    } 
    	    set  trigtot($h) [ expr $trigtot($h) + $scal($map(trigger-$t,$h))/($ps($t)+0.0001)  - $tcorr/($ps($t)+0.0001)  ]
    	}
    
    	foreach rtrig { 1 2 } {
    	    set  trigger_right($rtrig,$h)   $scal($map(RHRS-T$rtrig,$h))
    	}
    
    	set hvf(u1,$h)  $scal($map(bcm_u1,$h))
    	set hvf(u3,$h)  $scal($map(bcm_u3,$h))
    	set hvf(u10,$h) $scal($map(bcm_u10,$h))
    	set hvf(d1,$h)  $scal($map(bcm_d1,$h))
    	set hvf(d3,$h)  $scal($map(bcm_d3,$h))
    	set hvf(d10,$h) $scal($map(bcm_d10,$h))
    
        }"
        (procedure "halla_scaler_process" line 262)
        invoked from within
    "halla_scaler_process .mid.tex scalerinfo "
    
    ****************************
    End-of-run EPICS data for Run Number 4104 at Tue Jul 21 17:09:23 EDT 2009
    
    Wien angle :
    Half-wave plate (off=out) : IN
    Left Arm D1 momentum : 0.00278902
    Left Arm arm angle : -0.179
    Right Arm D1 momentum : 0.00633091
    Right Arm arm angle : 0.197
    -----
    HALLA:p :
    HALLA:dpp :
    Tiefenbach Hall A energy : 0
    Left Arm Top VDC Current : 1.31836
    Left Arm Bottom VDC Current : 1.41602
    Left Arm Top VDC voltage : 0.0170898
    Left Arm Bottom VDC voltage : 0.0185547
    -----
    Right Arm Top VDC Current : -1.46484
    Right Arm Bottom VDC Current : -1.31836
    Right Arm Top VDC voltage : -0.012207
    Right Arm Bottom VDC voltage : -0.0107422
    -----
    Left Arm Q1 momentum : 0.000411497
    Left Arm Q1 power supply : 0
    Left Arm Q1 gauss meter : 0.0003251
    Left Arm Q2 gauss meter : 0.0007108
    Left Arm Q2 power supply current : -0.000329454
    Left Arm Q2 momentum : -8.43354e-07
    Left Arm Q2 power supply polarity : enabled
    Left Arm D1 power supply current : -0.00257004
    Left Arm D1 momentum : 0.00285917
    Left Arm D1 NMR : 0.519914
    Left Arm Q3 gauss meter : -6.584e-05
    Left Arm Q3 power supply current : -0.000489001
    Left Arm Q3 momentum : -1.22828e-06
    Left Arm Q3 power supply polarity : enabled
    -----
    BigBite magnet current setpoint : 0
    BigBite magnet current readback : 0
    BigBite Gaussmeter readback : -0.002797
    -----
    Average current of the two cavities : 0.0240025
    Current on Unser monitor : -6.34838
    Current on Upstream bcm : 0.033514
    Current on Downstream bcm : 0.014491
    Upstream Cavity Coefficient : 44.3
    Downstream Cavity Coefficient : 43.49
    Current on IBC0L02 (source) : 0.00464055
    Hall C Current :
    MBSY1c magnet current (amp) : 0
    MBSY1c Bdl : 1.51674e+06
    Hall A momentum (Tiefenbach) (HALLA:p) :
    Hall A momentum orbit correction (dpp) :
    Hall A setup momentum (MMSHLAE) : 3667.5
    Hall A energy (halla_MeV) : 0
    Hall C energy (hallc_MeV) : 0
    Delta(E)/E width (MV_AI_DXWID) : 2.93542
    IPM1C12.XPOS : 0
    IPM1H04A.XPOS : 0
    IPM1H04A.YPOS : 0
    IPM1H04B.XPOS : 0
    IPM1H04B.YPOS : 0
    -----
    HacL_HPE1313A:0_Ch58 : -0.233398
    HacL_HPE1313A:0_Ch55 : 22.8027
    HacL_HPE1313A:0_Ch54 : -0.229004
    Left Arm Angle Vernier : 0
    Left Arm Scattering Angle : -0.179
    Left VDC -DISC LVL Top : 3.89453
    Left VDC -DISC LVL Bottom : 3.9668
    Left VDC -DISC LVL Voltage1 : 4.97803
    Left VDC -DISC LVL Voltage2 : -5.05908
    -----
    Wien angle : 66.9203
    Helicity Mode ON/OFF Random/Toggle : OFF
    Wien BDL : 3.18799
    Wien field : 44.582
    Laser attenuation Hall A : 60
    Laser power Hall A : 100
    Half-wave plate (off=out) : IN
    rotating waveplate : -1
    Beam Half-wave plate (off=out) : IN
    -----
    G0 Helicity Settle Read :
    G0 Helicity Delay Read :
    G0 Helicity Pattern :
    G0 Helicity Cycle Rate Read :
    -----
    Target OTR x-position : -10.5973
    Target OTR y-position :
    Target OTR x-width : 0
    Target OTR y-width : -0
    Target OTR data valid flag : No
    Target OTR In/Out : OTR is Out
    -----
    SLI data valid? : No
    SLI horiz size mm : 0
    SLI Energy spread *10^5 :
    SLI x position : 0.700621
    SLI vert. size mm : 0
    SLI y position : 0.570892
    -----
    Polarized 3He Target
    RTD1 (upstream) : HacAi_hpchan0 --- Invalid channel name
    RTD2 : HacAi_hpchan1 --- Invalid channel name
    RTD3 : HacAi_hpchan2 --- Invalid channel name
    RTD4 : HacAi_hpchan3 --- Invalid channel name
    RTD5 (downstream) : HacAi_hpchan4 --- Invalid channel name
    RTD6 (pump cell up) : HacAi_hpchan5 --- Invalid channel name
    RTD7 (pump cell down) : HacAi_hpchan6 --- Invalid channel name
    HacAi_hpchan7: Temp at Ref. Cell : HacAi_hpchan7 --- Invalid channel name
    HacAi_hpchan8: Temp at Ref. Cell : HacAi_hpchan8 --- Invalid channel name
    HacAi_hpchan9: Temp at Ref. Cell : HacAi_hpchan9 --- Invalid channel name
    Reference Cell Gas Pressure (psi) : HacAi_hpchan60 --- Invalid channel name
    Reference Cell System Vacuum (Torr) : HacAi_hpchan61 --- Invalid channel name
    Cooling Jets Flow Rate : HacAi_hpchan62 --- Invalid channel name
    Target position : HaGenTargPos --- Invalid channel name
    Oven Air Flow : HacOMEGA_RTD --- Invalid channel name
    -----
    HaGenTargBrake : HaGenTargBrake --- Invalid channel name
    HaGenTargBrake : HaGenTargBrake --- Invalid channel name
    HacOMEGA_AL1 : HacOMEGA_AL1 --- Invalid channel name
    HacOMEGA_READ : HacOMEGA_READ --- Invalid channel name
    HacOMEGA_SP1 : HacOMEGA_SP1 --- Invalid channel name
    HacOMEGA_PROP1 : HacOMEGA_PROP1 --- Invalid channel name
    HacOMEGA_RST1 : HacOMEGA_RST1 --- Invalid channel name
    HacOMEGA_RATE : HacOMEGA_RATE1 --- Invalid channel name
    -----
    CLASER_STATE_MB : CLASER_STATE_MB --- Invalid channel name
    CLASER_RDCUR : CLASER_RDCUR --- Invalid channel name
    CLASER_TEMP : CLASER_TEMP --- Invalid channel name
    -----
    CLASER2_STATE_MB : CLASER2_STATE_MB --- Invalid channel name
    CLASER2_RDCUR : CLASER2_RDCUR --- Invalid channel name
    CLASER2_TEMP : CLASER2_TEMP --- Invalid channel name
    -----
    CLASERAB_STATE_MB : CLASERAB_STATE_MB --- Invalid channel name
    CLASERAB_GETCUR0 : CLASERAB_GETCUR0 --- Invalid channel name
    CLASERAB_GETCUR1 : CLASERAB_GETCUR1 --- Invalid channel name
    CLASERAB_GETTEMP0 : CLASERAB_GETTEMP0 --- Invalid channel name
    CLASERAB_GETTEMP1 : CLASERAB_GETTEMP1 --- Invalid channel name
    -----
    CLASER3_STATE_MB : CLASER3_STATE_MB --- Invalid channel name
    CLASER3_RDCUR : CLASER3_RDCUR --- Invalid channel name
    CLASER3_TEMP : CLASER3_TEMP --- Invalid channel name
    -----
    CLASER4_STATE_MB : CLASER4_STATE_MB --- Invalid channel name
    CLASER4_RDCUR : CLASER4_RDCUR --- Invalid channel name
    CLASER4_TEMP : CLASER4_TEMP --- Invalid channel name
    -----
    CLASER5_STATE_MB : CLASER5_STATE_MB --- Invalid channel name
    CLASER5_RDCUR : CLASER5_RDCUR --- Invalid channel name
    CLASER5_TEMP : CLASER5_TEMP --- Invalid channel name
    -----
    CLASER6_STATE_MB : CLASER6_STATE_MB --- Invalid channel name
    CLASER6_RDCUR : CLASER6_RDCUR --- Invalid channel name
    CLASER6_TEMP : CLASER6_TEMP --- Invalid channel name
    -----
    CLASERAB2_STATE_M : CLASERAB2_STATE_MB --- Invalid channel name
    CLASERAB2_GETCUR0 : CLASERAB2_GETCUR0 --- Invalid channel name
    CLASERAB2_GETCUR1 : CLASERAB2_GETCUR1 --- Invalid channel name
    CLASERAB2_GETTEMP0 : CLASERAB2_GETTEMP0 --- Invalid channel name
    CLASERAB2_GETTEMP1 : CLASERAB2_GETTEMP1 --- Invalid channel name
    ----
    CLASERAB3_STATE_M : CLASERAB3_STATE_MB --- Invalid channel name
    CLASERAB3_GETCUR0 : CLASERAB3_GETCUR0 --- Invalid channel name
    CLASERAB3_GETCUR1 : CLASERAB3_GETCUR1 --- Invalid channel name
    CLASERAB3_GETTEMP0 : CLASERAB3_GETTEMP0 --- Invalid channel name
    CLASERAB3_GETTEMP1 : CLASERAB3_GETTEMP1 --- Invalid channel name
    ----
    nld1_lasmdp : nld1_lasmdp --- Invalid channel name
    ntc1_temp : ntc1_temp --- Invalid channel name
    nld1_lasouti : nld1_lasouti --- Invalid channel name
    ntc1_tecouti : ntc1_tecouti --- Invalid channel name
    nld1_lascond : nld1_lascond --- Invalid channel name
    ----
    nld2_lasmdp : nld2_lasmdp --- Invalid channel name
    ntc2_temp : ntc2_temp --- Invalid channel name
    nld2_lasouti : nld2_lasouti --- Invalid channel name
    ntc2_tecouti : ntc2_tecouti --- Invalid channel name
    nld2_lascond : nld2_lascond --- Invalid channel name
    ----
    nld3_lasmdp : nld3_lasmdp --- Invalid channel name
    ntc3_temp : ntc3_temp --- Invalid channel name
    nld3_lasouti : nld3_lasouti --- Invalid channel name
    ntc3_tecouti : ntc3_tecouti --- Invalid channel name
    nld3_lascond : nld3_lascond --- Invalid channel name
    ----
    DDM45_1disp1_read : DDM45_1disp1_read --- Invalid channel name
    DDM45_2disp1_read : DDM45_2disp1_read --- Invalid channel name
    DDM45_3disp1_read : DDM45_3disp1_read --- Invalid channel name
    ----
    haPolHe3_Spin_State : haPolHe3_Spin_State --- Invalid channel name
    haPolHe3_Flip_Sequence_ID : haPolHe3_Flip_Sequence_ID --- Invalid channel name
    haPolHe3_Flip_Count : haPolHe3_Flip_Count --- Invalid channel name
    haPolHe3_EPR_ID : haPolHe3_EPR_ID --- Invalid channel name
    haPolHe3_EPR_POL : haPolHe3_EPR_POL --- Invalid channel name
    haPolHe3_Last_Flip_Start : haPolHe3_Last_Flip_Start --- Invalid channel name
    haPolHe3_Last_Flip_End : haPolHe3_Last_Flip_End --- Invalid channel name
    haPolHe3_FLIP_NMR_PHASE : haPolHe3_FLIP_NMR_PHASE --- Invalid channel name
    haPolHe3_FLIP_NMR_Mag : haPolHe3_FLIP_NMR_Mag --- Invalid channel name
    haPolHe3_FLIP_NMR_Pol : haPolHe3_FLIP_NMR_Pol --- Invalid channel name
    HaGenTargSpin1 : HaGenTargSpin1 --- Invalid channel name
    HaGenTargSpin2 : HaGenTargSpin2 --- Invalid channel name
    HaGenTargPos : HaGenTargPos --- Invalid channel name
    ----