Startup
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18
script/Ni_energy.py
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18
script/Ni_energy.py
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#set pol c+
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#otf 840 890 1 delay 5
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#file Ni_plus
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#start
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set_pol_cplus(offset = None)
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wait_beam()
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set_file('Ni_plus')
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otf(start=840, end=890, time=1, delay=5)
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#set pol c-
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#otf 840 890 1 delay 5
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#file Ni_minus
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#start
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set_pol_cminus(offset = None)
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wait_beam()
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set_file('Ni_minus')
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otf(start=840, end=890, time=1, delay=5)
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85
script/scan_vertical.py
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85
script/scan_vertical.py
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#Script imported from: scan_vertical.xml
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#TODO: Set the diplay names of positioners and detectors
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scan = ManualScan(['p2', 'vertical'], ['ADC1', 'ADC2', 'polarization', 'polangle', 'temperature', 'ringCurrent', 'energy', 'ADC3', 'ADC1_norm'] , [770.0, 10.0], [778.0, 23.0], [1, 26])
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scan.start()
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#Creating channels: dimension 1
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#ArrayPositioner p2
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p2 = Channel('X07MA-PHS-E:GO.A', type = 'd')
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p2Readback = Channel('X07MA-PGM:CERBK', type = 'd')
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#Creating channels: dimension 2
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#RegionPositioner vertical
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vertical = Channel('X07MA-ES1-MAG:TRY1', type = 'd')
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#ScalarDetector ADC1
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ADC1 = Channel('X07MA-ES1-AI:SIGNAL0', type = 'd')
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#ScalarDetector ADC2
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ADC2 = Channel('X07MA-ES1-AI:SIGNAL1', type = 'd')
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#ScalarDetector polarization
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polarization = Channel('X07MA-ID:MODE', type = 'd')
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#ScalarDetector polangle
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polangle = Channel('X07MA-ID:ALPHA', type = 'd')
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#ScalarDetector temperature
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temperature = Channel('X07MA-PC-TC:STS:T1', type = 'd')
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#ScalarDetector ringCurrent
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ringCurrent = Channel('ARIDI-PCT:CURRENT', type = 'd')
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#ScalarDetector energy
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energy = Channel('X07MA-PHS-E:GO.A', type = 'd')
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#ScalarDetector ADC3
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ADC3 = Channel('X07MA-ES1-AI:SIGNAL2', type = 'd')
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#Dimension 1
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#ArrayPositioner p2
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for setpoint1 in (778, 770):
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p2.put(setpoint1, timeout=None) # TODO: Set appropriate timeout
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readback1 = p2Readback.get()
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if abs(readback1 - setpoint1) > 0.1 : # TODO: Check accuracy
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raise Exception('Actor p2 could not be set to the value ' + str(setpoint1))
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#Dimension 2
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#Dimension Pre-actions
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caput('X07MA-OP-VG13:WT_SET', '1')
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#RegionPositioner vertical
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for setpoint2 in frange(10.0, 23.0, 0.5, True):
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vertical.put(setpoint2, timeout=None) # TODO: Set appropriate timeout
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readback2 = vertical.get()
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if abs(readback2 - setpoint2) > 0.25 : # TODO: Check accuracy
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raise Exception('Actor vertical could not be set to the value ' + str(setpoint2))
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sleep( 0.5 ) # Settling time
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#Detector ADC1
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detector1 = ADC1.get()
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#Detector ADC2
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detector2 = ADC2.get()
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#Detector polarization
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detector3 = polarization.get()
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#Detector polangle
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detector4 = polangle.get()
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#Detector temperature
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detector5 = temperature.get()
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#Detector ringCurrent
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detector6 = ringCurrent.get()
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#Detector energy
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detector7 = energy.get()
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#Detector ADC3
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detector8 = ADC3.get()
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#Manipulation ADC1_norm
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#Variable Mappings
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c = detector1
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d = detector2
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#TODO: Move, if needed, this import to the file header: import math
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ADC1_norm = c/d
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scan.append ([setpoint1, setpoint2], [readback1, readback2], [detector1, detector2, detector3, detector4, detector5, detector6, detector7, detector8, ADC1_norm])
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#Closing channels
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vertical.close()
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ADC1.close()
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ADC2.close()
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polarization.close()
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polangle.close()
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temperature.close()
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ringCurrent.close()
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energy.close()
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ADC3.close()
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p2.close()
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p2Readback.close()
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scan.end()
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