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    User name a-onl

    Log entry time 01:53:47 on March 31, 2008

    Entry number 229151

    keyword=Start_Run_2046,Run_type=Test,target_type=Empty,beam_e0=0.956,beam_raster=on,leftarm_p=0.9823,leftarm_theta=25,leftarm_colli=out,bbarm_i=0.0,bbarm_theta=30,bbarm_colli=out,comment_text=vme stress test: Vth = 1.60V, monitor rate ~ 4KHz
    Run Timestamp:       Mon Mar 31 01:53:11 EDT 2008
    Beginning-of-run EPICS data for Run Number 2046 at Mon Mar 31 01:53:26 EDT 2008
    
    
    
    Run_type=Test
    target_type=Empty
    beam_e0=0.956
    beam_raster=on
    leftarm_p=0.9823
    leftarm_theta=25
    leftarm_colli=out
    bbarm_i=0.0
    bbarm_theta=30
    bbarm_colli=out
    comment_text=vme stress test: Vth = 1.60V, monitor rate ~ 4KHz
    
    
    ; BBite+HRS DAQ on adaql2/a-onl account
    ; Prescale factors (integer), downloaded each run at prestart.
    ; Do NOT put spaces in string, NOR add 2nd string. (REALLY!!!)
    ; Change this file only in-between runs.
    ; Maxima: (2^24)-1 = 16777215 for T1-T4 and 65535 for T5-T8
    ; The default factor is essentially infinite.
    ; T1 = BigBite E-plane
    ; T2 = BigBite dE-plane
    ; T3 = L-HRS Singles
    ; T4 = L-HRS Efficiency
    ; T5 = E-plane + HAPPEx S0
    ; T6 = T2.AND.T3
    ; T7 = L-HRS Singles (center S1 paddles.AND.S2)
    ; T8 = 1024 Hz pulser
    ; String should be one line, no spaces, ending in carriage return
    ;
    ; NEW RULES from Brad:
    ;  - You _ALWAYS_ take all LHRS cosmics (T3s).  It's 10Hz and is useful to others.
    ;  - You _ALWAYS_ take all BB   cosmics (T5s).  It's  2Hz and is useful to others.
    ;  - No stacks of extra commented out lines.  It's a bad habit that has bitten many in the past.
    ;
    ;  - Adjust the rest of the prescales as you like.
    ;
    ps1=1,ps2=16777215,ps3=1,ps4=16777215,ps5=1,ps6=65535,ps7=65535,ps8=65535
    ;ps1=65535,ps2=16777215,ps3=16777215,ps4=16777215,ps5=65535,ps6=65535,ps7=65535,ps8=1
    
    
    Left Arm Q1 momentum : 0.00145823
    Left Arm Q1 power supply : 0
    Left Arm Q1 gauss meter : 0.0002113
    Left Arm Q2 power supply current : 0.00977131
    Left Arm Q2 momentum : 0.00300946
    Left Arm Q2 gauss meter : 0.0008433
    Left Arm Q2 power supply polarity : disabled
    Left Arm D1 power supply current : -1.36115
    Left Arm D1 momentum : 0.00343234
    Left Arm D1 NMR : 0.156663
    Left Arm Q3 power supply current : -0.000473955
    Left Arm Q3 momentum : -1.19049e-06
    Left Arm Q3 gauss meter : -8.51e-05
    Left Arm Q3 power supply polarity : enabled
    Left Arm B Field Hall Probe (D-G) : -0.0012385
    -----
    Right Arm Q1 momentum : 0.000731707
    Right Arm Q1 power supply : 0
    Right Arm Q1 gauss meter : -3.83e-05
    Right Arm Q2 power supply current : -0.0159838
    Right Arm Q2 momentum : -3.82311e-05
    Right Arm Q2 gauss meter : 0.0006189
    Right Arm Q2 power supply polarity : enabled
    Right Arm D1 power supply current : 102.317
    Right Arm D1 momentum : 0.294062
    Right Arm D1 NMR : 7.5189
    Right Arm Q3 power supply current : -0.000668799
    Right Arm Q3 momentum : 0.00252995
    Right Arm Q3 gauss meter : 0.0001522
    Right Arm Q3 power supply polarity : disabled
    Right Arm B Field Hall Probe (D-G) : -0.1079
    -----
    BigBite magnet current setpoint : 0
    BigBite magnet current readback : 0
    -----
    Left Arm Top VDC Current : -2.09961
    Left Arm Bottom VDC Current : -0.341797
    Left Arm Top VDC voltage : 3.99023
    Left Arm Bottom VDC voltage : 3.99561
    -----
    Right Arm Top VDC Current : 1.36719
    Right Arm Bottom VDC Current : -0.830078
    Right Arm Top VDC voltage : 4.00049
    Right Arm Bottom VDC voltage : 4.00781
    -----
    Average current of the two cavities : 0.0424008
    Current on Unser monitor : 10.9545
    Current on Upstream bcm : 0.0633499
    Current on Downstream bcm : 0.0214517
    Upstream Cavity Coefficient : 76.7
    Downstream Cavity Coefficient : 78.9
    Current on IBC0L02 (source) : 58.5662
    Hall C Current : 60.24
    Hall A momentum (Tiefenbach) (HALLA:p) : 1193.97
    Hall A momentum orbit correction (dpp) : 0
    Hall A setup momentum (MMSHLAE) : 1193.56
    Hall A energy (halla_MeV) : 1193.97
    Hall C energy (hallc_MeV) : 5717.78
    Delta(E)/E width (MV_AI_DXWID) : 1.54975
    MBSY1c magnet current (amp) : 0.0377198
    MBSY1c Bdl : 298189
    Arc1 dp/p : 0
    Arc2 dp/p : 0
    Raster X width : 2
    Raster Y width : 2
    -----
    Left Arm Collimator : 0.87168
    HacL_HPE1313A:0_Ch58 : -0.296387
    HacL_HPE1313A:0_Ch55 : 23.291
    HacL_HPE1313A:0_Ch54 : -0.392578
    Left Arm Angle Floor Angle : 0
    Left Arm Angle Vernier : 0
    Left Arm Scattering Angle : -0.179
    -----
    Right Arm Arm Collimator : -0.00688477
    HacR_HPE1313A:0_Ch58 : -0.560547
    HacR_HPE1313A:0_Ch55 : 22.168
    HacR_HPE1313A:0_Ch54 : -0.861816
    Right Arm Angle Floor Angle : 0
    Right Arm Angle Vernier : 0
    Right Arm Scattering Angle : 0.197
    -----
    IPM1C12.XPOS : 0
    IPM1C12.YPOS : 0
    IPM1H04A.XPOS : 0
    IPM1H04A.YPOS : 0
    IPM1H04B.XPOS : 0
    IPM1H04B.YPOS : 0
    Survey X offset bpmA : -0.63
    Survey Y offset bpmA : -0.9
    Survey X offset bpmB : 0.77
    Survey Y offset bpmB : -1
    -----
    Wien angle : -26.1977
    Helicity Mode ON/OFF Random/Toggle : OFF
    Wien field : 17.378
    Laser attenuation Hall A : 100
    Laser power Hall A : 100
    Half-wave plate (off=out) : IN
    rotating waveplate : 0
    Beam Half-wave plate (off=out) : IN
    -----
    G0 Helicity Settle Set : 500 usec
    G0 Helicity Delay Set : No Delay
    G0 Helicity Pattern Set : Quartet
    G0 Helicity Cycle Rate Set : 30 Hz
    G0 Helicity Settle Read : 500 usec
    G0 Helicity Delay Read : No Delay
    G0 Helicity Pattern : Quartet
    G0 Helicity Cycle Rate Read : 30 Hz
    -----
    Target : Home
    fan frequency loop 1 : 0
    fan frequency loop 2 : 0
    fan frequency loop 3 : 0
    Encoder position : -385557
    Target type : -385557
    temperature loop 1(1) : 4
    temperature loop 1(2) : 119.99
    temperature loop 1(3) : 119.99
    Heat exchange He : 282
    temperature loop 2(1) : 100.09
    temperature loop 2(2) : 95.14
    temperature loop 2(3) : 119.99
    Heat exchange H2 : 295.4
    pressure loop He : 16.5392
    pressure loop H2 before : 40.8042
    pressure loop H2 return : 41.3214
    HPH He loop 1 : 0.0813417
    HPH He loop 2 : 0.00710569
    HPH H2 loop 3 : 0.011068
    ----
    SLI data valid? : No
    SLI horiz size mm : 0
    SLI Energy spread *10^5 : 0
    SLI x position : 0.745342
    SLI vert. size mm : 0
    SLI y position : 1.39718
    -----
    Left S2 HV
    S2 Slot0 ch0 : -2311
    S2 Slot0 ch1 : -2213
    S2 Slot0 ch2 : -2166.4
    S2 Slot0 ch3 : -2231.2
    S2 Slot0 ch4 : -1793.8
    S2 Slot0 ch5 : -2166.5
    S2 Slot0 ch6 : -1940
    S2 Slot0 ch7 : -1876.9
    S2 Slot0 ch8 : -2030.4
    S2 Slot0 ch9 : -1889.6
    S2 Slot0 ch10 : -2094
    S2 Slot0 ch11 : -1867.2
    -----
    Left S1 HV
    S1 Slot1 ch0 : -1785.4
    S1 Slot1 ch1 : -1810.5
    S1 Slot1 ch2 : -1790.9
    S1 Slot1 ch3 : -1818.4
    S1 Slot1 ch4 : -1701.1
    S1 Slot1 ch5 : -1854.8
    S1 Slot1 ch6 : -1916
    S1 Slot1 ch7 : -1701
    S1 Slot1 ch8 : -1961.6
    S1 Slot1 ch9 : -1745.9
    S1 Slot1 ch10 : -1797.9
    S1 Slot1 ch11 : -1708.3
    -----
    Left Cerenkov HV
    GCER Slot2 ch0 : -1544.3
    GCER Slot2 ch1 : -1462.1
    GCER Slot2 ch2 : -1528
    GCER Slot2 ch3 : -1453
    GCER Slot2 ch4 : -1798.1
    GCER Slot2 ch5 : -1983.6
    GCER Slot2 ch6 : -1750.5
    GCER Slot2 ch7 : -1751.1
    GCER Slot2 ch8 : -2009.9
    GCER Slot2 ch9 : -1588.6
    GCER Slot2 ch10 : -14.2
    GCER Slot2 ch11 : -20.6
    -----
    Left Pion Rejector Layer 1 HV
    PRL1 Slot3 ch0 : -860.4
    PRL1 Slot3 ch1 : -784.5
    PRL1 Slot3 ch2 : -905.8
    PRL1 Slot3 ch3 : -981.2
    PRL1 Slot3 ch4 : -731.1
    PRL1 Slot3 ch5 : -811
    PRL1 Slot3 ch6 : -1081.3
    PRL1 Slot3 ch7 : -990.8
    PRL1 Slot3 ch8 : -810.5
    PRL1 Slot3 ch9 : -790.9
    PRL1 Slot3 ch10 : -829.5
    PRL1 Slot3 ch11 : -785.3
    PRL1 Slot4 ch0 : -870.8
    PRL1 Slot4 ch1 : -901.3
    PRL1 Slot4 ch2 : -750.8
    PRL1 Slot4 ch3 : -895.9
    PRL1 Slot4 ch4 : -921.7
    PRL1 Slot4 ch5 : -821.2
    PRL1 Slot4 ch6 : -835.2
    PRL1 Slot4 ch7 : -826.4
    PRL1 Slot4 ch8 : -1190.3
    PRL1 Slot4 ch9 : -991.4
    PRL1 Slot4 ch10 : -1031.7
    PRL1 Slot4 ch11 : -861.4
    PRL1 Slot5 ch0 : -1041.1
    PRL1 Slot5 ch1 : -871
    PRL1 Slot5 ch2 : -916.2
    PRL1 Slot5 ch3 : -735.8
    PRL1 Slot5 ch4 : -890.7
    PRL1 Slot5 ch5 : -810.3
    PRL1 Slot5 ch6 : -821.1
    PRL1 Slot5 ch7 : -895.6
    PRL1 Slot5 ch8 : -741.3
    PRL1 Slot5 ch9 : -841.4
    PRL1 Slot5 ch10 : -16.5
    PRL1 Slot5 ch11 : -25.6
    -----
    Left Pion Rejector Layer 2 HV
    PRL2 Slot9 ch0 : -920.5
    PRL2 Slot9 ch1 : -880.5
    PRL2 Slot9 ch2 : -800.1
    PRL2 Slot9 ch3 : -869.9
    PRL2 Slot9 ch4 : -810.9
    PRL2 Slot9 ch5 : -941.5
    PRL2 Slot9 ch6 : -850.7
    PRL2 Slot9 ch7 : -890.6
    PRL2 Slot9 ch8 : -810.6
    PRL2 Slot9 ch9 : -780.6
    PRL2 Slot9 ch10 : -821
    PRL2 Slot9 ch11 : -851.4
    PRL2 Slot10 ch0 : -755.7
    PRL2 Slot10 ch1 : -812.4
    PRL2 Slot10 ch2 : -871
    PRL2 Slot10 ch3 : -900.8
    PRL2 Slot10 ch4 : -881.4
    PRL2 Slot10 ch5 : -871
    PRL2 Slot10 ch6 : -815.2
    PRL2 Slot10 ch7 : -824.8
    PRL2 Slot10 ch8 : -760.3
    PRL2 Slot10 ch9 : -715
    PRL2 Slot10 ch10 : -911
    PRL2 Slot10 ch11 : -781.3
    PRL2 Slot11 ch0 : -1000.7
    PRL2 Slot11 ch1 : -900.4
    PRL2 Slot11 ch2 : -850.6
    PRL2 Slot11 ch3 : -1079.9
    PRL2 Slot11 ch4 : -1050.2
    PRL2 Slot11 ch5 : -800
    PRL2 Slot11 ch6 : -860.4
    PRL2 Slot11 ch7 : -1031.3
    PRL2 Slot11 ch8 : -911.3
    PRL2 Slot11 ch9 : -880.3
    PRL2 Slot11 ch10 : -13.7
    PRL2 Slot11 ch11 : -25.5
    -----