Difference between revisions of "DAQ Tasks for Spring 2015 Commissioning Run"

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###*** Use mode 8 data sample data regularly
 
###*** Use mode 8 data sample data regularly
 
###*** Develop algorithm for determining new bias values
 
###*** Develop algorithm for determining new bias values
+
# '''Scalers'''
 
+
## Rates need to be in agreement with TDC/ADC rates
Scalers
+
## Stand-alone GUI for reading values (exists already anything new needed?)
rates need to be in agreement with TDC/ADC rates
+
# '''Measure discriminator threshold with flash & w/o flash'''
stand-alone GUI for reading values (exists already anything new needed?)
+
## Align flash, TDC and scaler rates
 
+
## If all devices have common threshold the gain needs to be adjusted to align all
Measure discriminator threshold with flash & w/o flash
+
## Check thresholds with flash wave form data
align flash, TDC and scaler rates
+
# '''SiPM monitoring'''
if all devices have common threshold the gain needs to be adjusted to align all
+
## Design procedure for estimating photo-electrons per MeV (PID & tracking needed)
check thresholds with flash wave form data
+
## System for storing results in a database
 
+
# '''Efficiency Monitoring'''
SiPM monitoring
+
## Time resolution: monitor time resolution (internal time differences between detectors)
    design procedure for estimating photo-electrons per MeV (PID & tracking needed)
+
## Energy resolution: monitor standard dedx data
    system for storing results in a database
+
## Signal attenuation: determine attenuation parameters. Monitor parameter variation as a function of time/rate
 
+
## Efficiency: determine efficiency using tracking formation.
 
+
## System for storing time resolution, attenuation parameters and efficiency parameters in CCCDB
Efficiency Monitoring:
+
# '''Timing calibration'''
  time resolution: monitor time resolution (internal time differences between detectors)
+
## Time-walk calibration: develop automatic procedure, monitor parameters
  energy resolution: monitor standard dedx data
+
## Signal shape characterization: regular sampling of signal shapes
  signal attenuation: determine attenuation parameters. Monitor parameter variation as a function of time/rate
+
# '''Run preparations'''
  efficiency: determine efficiency using tracking formation.
+
## Establish standard procedure for data taking
  system for storing time resolution, attenuation parameters and efficiency parameters in CCCDB
+
## Update online monitoring system
 
+
## Review existing histograms
Timing calibration
+
## Suggest additions
      time-walk calibration: develop automatic procedure, monitor parameters
+
# '''Procedure during experiment'''
      signal shape characterization: regular sampling of signal shapes
+
## Assess ST status: rates, efficiencies
     
+
## Alarm handler: prepare actions according to various alarm handler events
 
+
Run preparations:
+
  establish standard procedure for data taking
+
  update online monitoring system
+
  review existing histograms
+
  suggest additions
+
 
+
Procedure during experiment:
+
  assess ST status: rates, efficiencies
+
  alarm handler: prepare actions according to various alarm handler events
+

Revision as of 15:20, 3 March 2015

  1. Minimum requirement for ST event with good timing:
    • ADC
    • TDC
    • Matched particle track
  2. Thresholds:
    1. Scalers:
      • Individual threshold for each channels or common threshold : determine
      • Control of thresholds
      1. TDC:
        • Individual threshold for each channels or common threshold : determine
        • Control of thresholds
      2. ADC:
        • Individual threshold for each channels or common threshold : determine
        • Control of thresholds
      • If ADC or TDC work with common threshold all gains need to be matched to assure uniform discrimination
  3. Flash ADCs Pedestals:
    1. Automatic procedure for measuring pedestals
    2. On-demand when DAQ idle
    3. As part of special pedestal trigger
    4. As a part of regular data taking
    5. System for storing results in a database
    6. System for tracking changes over time
    7. Semi-automatic procedure for setting pedestals
    8. Make available for download after approval
  4. ST Channels
    1. Develop gain matching procedure
    2. Develop threshold setting procedure
    3. Do a threshold curve for gain matched system
  5. Bias Voltage
    1. System for storing current values in a database (currently stored in EPICS (?), connection to CCDB?)
      1. Start with FIU bench-measurement values
      2. Measuring relative gains of SiPM as a function of bias voltage:
        • Use tracking & PID to select minimum ionizing & attenuation correction
        • Measure pedestal dependence on Bias Voltage
      3. System for gain matching for SiPM:
        • Bias voltage settable for individual detectors
        • Develop gain matching procedure using bias voltage:
          • Select common criteria for event selection (position, partilce type, momentum)
            • Minimum ionizing
            • Use mode 8 data sample data regularly
            • Develop algorithm for determining new bias values
  6. Scalers
    1. Rates need to be in agreement with TDC/ADC rates
    2. Stand-alone GUI for reading values (exists already anything new needed?)
  7. Measure discriminator threshold with flash & w/o flash
    1. Align flash, TDC and scaler rates
    2. If all devices have common threshold the gain needs to be adjusted to align all
    3. Check thresholds with flash wave form data
  8. SiPM monitoring
    1. Design procedure for estimating photo-electrons per MeV (PID & tracking needed)
    2. System for storing results in a database
  9. Efficiency Monitoring
    1. Time resolution: monitor time resolution (internal time differences between detectors)
    2. Energy resolution: monitor standard dedx data
    3. Signal attenuation: determine attenuation parameters. Monitor parameter variation as a function of time/rate
    4. Efficiency: determine efficiency using tracking formation.
    5. System for storing time resolution, attenuation parameters and efficiency parameters in CCCDB
  10. Timing calibration
    1. Time-walk calibration: develop automatic procedure, monitor parameters
    2. Signal shape characterization: regular sampling of signal shapes
  11. Run preparations
    1. Establish standard procedure for data taking
    2. Update online monitoring system
    3. Review existing histograms
    4. Suggest additions
  12. Procedure during experiment
    1. Assess ST status: rates, efficiencies
    2. Alarm handler: prepare actions according to various alarm handler events