Files
x11ma/script/Users/steven/HOLDER5.py
gac-x11ma 99586393b5
2020-09-22 10:39:02 +02:00

877 lines
28 KiB
Python

##
#######Sample SL1-freshpowder
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL1-freshpowder/")
##open_vg13()
##
##TRY.write(14.10)
##TRZ.write(28.90)
##
##
##time.sleep(1)
#
##Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Survey', folder='XAS/2020/07/20/SL1-freshpowder/')
##
###Nickel L edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Ni', folder='XAS/2020/07/20/SL1-freshpowder/')
##
###Cobalt L edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Co', folder='XAS/2020/07/20/SL1-freshpowder/')
##
###Fluor + Fe edges
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Fe', folder='XAS/2020/07/20/SL1-freshpowder/')
##
###Manganese L edge
##nr_loops=4
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Mn', folder='XAS/2020/07/20/SL1-freshpowder/')
##
###Oxygen K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_O', folder='XAS/2020/07/20/SL1-freshpowder')
##
##
###Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_C', folder='XAS/2020/07/20/SL1-freshpowder')
##
##
##time.sleep(1)
##
##
########Sample SL1-fresh-pellet
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL1-freshpellet/")
##open_vg13()
##
##TRY.write(9.70)
##TRZ.write(28.90)
##
##
##time.sleep(1)
##
####Survey
###nr_loops=1
###for i in range(nr_loops):
### caput('X11MA-KEI10:RANGE', 7)
### caput('X11MA-KEI11:RANGE', 8)
### caput('X11MA-KEI12:RANGE', 9)
### otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Survey', folder='XAS/2020/07/20/SL1-freshpellet/')
###
###Nickel L edge
###nr_loops=2
###for i in range(nr_loops):
### caput('X11MA-KEI10:RANGE', 7)
### caput('X11MA-KEI11:RANGE', 8)
### caput('X11MA-KEI12:RANGE', 10)
### otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Ni', folder='XAS/2020/07/20/SL1-freshpellet/')
###
####Cobalt L edge
###nr_loops=1
###for i in range(nr_loops):
### caput('X11MA-KEI10:RANGE', 7)
### caput('X11MA-KEI11:RANGE', 8)
### caput('X11MA-KEI12:RANGE', 9)
### otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Co', folder='XAS/2020/07/20/SL1-freshpellet/')
###
####Fluor + Fe edges
###nr_loops=1
###for i in range(nr_loops):
### caput('X11MA-KEI10:RANGE', 7)
### caput('X11MA-KEI11:RANGE', 8)
### caput('X11MA-KEI12:RANGE', 10)
### otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Fe', folder='XAS/2020/07/20/SL1-freshpellet/')
###
####Manganese L edge
###nr_loops=4
###for i in range(nr_loops):
### caput('X11MA-KEI10:RANGE', 7)
### caput('X11MA-KEI11:RANGE', 8)
### caput('X11MA-KEI12:RANGE', 10)
### otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Mn', folder='XAS/2020/07/20/SL1-freshpellet/')
##
###Oxygen K edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_O', folder='XAS/2020/07/20/SL1-freshpellet/')
##
##
###Carbon K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_C', folder='XAS/2020/07/20/SL1-freshpellet/')
##
##
##time.sleep(1)
#
#
########Sample SL5
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL5/")
##open_vg13()
##
##TRY.write(6.00)
##TRZ.write(24.90)
##
##
##time.sleep(1)
#
###Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Survey', folder='XAS/2020/07/20/SL5/')
##
###Nickel L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Ni', folder='XAS/2020/07/20/SL5/')
##
###Cobalt L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Co', folder='XAS/2020/07/20/SL5/')
##
###Fluor + Fe edges
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Fe', folder='XAS/2020/07/20/SL5/')
##
###Manganese L edge
##nr_loops=4
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Mn', folder='XAS/2020/07/20/SL5/')
##
###Oxygen K edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_O', folder='XAS/2020/07/20/SL5/')
##
####Carbon K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_C', folder='XAS/2020/07/20/SL5/')
##
##
##time.sleep(1)
##
##
#########Sample SL4
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL4/")
##open_vg13()
##
##TRY.write(11.70)
##TRZ.write(24.30)
##
##
##time.sleep(1)
#
##Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Survey', folder='XAS/2020/07/20/SL4/')
##
###Nickel L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Ni', folder='XAS/2020/07/20/SL4/')
##
###Cobalt L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Co', folder='XAS/2020/07/20/SL4/')
##
###Fluor + Fe edges
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Fe', folder='XAS/2020/07/20/SL4/')
#
##Manganese L edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Mn', folder='XAS/2020/07/20/SL4/')
##
##Oxygen K edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_O', folder='XAS/2020/07/20/SL4/')
##
#
###Carbon K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_C', folder='XAS/2020/07/20/SL4/')
##
##time.sleep(1)
#
##
#######Sample LH2
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH2/")
##open_vg13()
##
##TRY.write(18.50)
##TRZ.write(17.60)
##
##
##time.sleep(1)
#
###Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 7)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Survey', folder='XAS/2020/07/20/LH2/')
##
###Nickel L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Ni', folder='XAS/2020/07/20/LH2/')
###
###Cobalt L edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Co', folder='XAS/2020/07/20/LH2/')
#
##Fluor + Fe edges
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Fe', folder='XAS/2020/07/20/LH2/')
##
##Manganese L edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Mn', folder='XAS/2020/07/20/LH2/')
##
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_O', folder='XAS/2020/07/20/LH2')
#
##
###Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_C', folder='XAS/2020/07/20/LH2')
##
##time.sleep(1)
##
########Sample LH1B
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH1B/")
##open_vg13()
##
##TRY.write(12.50)
##TRZ.write(15.00)
##
##
##time.sleep(1)
###
###Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 7)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Survey', folder='XAS/2020/07/20/LH1B/')
##
###Nickel L edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Ni', folder='XAS/2020/07/20/LH1B/')
#
###Cobalt L edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Co', folder='XAS/2020/07/20/LH1B/')
#
###Fluor + Fe edges
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Fe', folder='XAS/2020/07/20/LH1B/')
##
###Manganese L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Mn', folder='XAS/2020/07/20/LH1B/')
##
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_O', folder='XAS/2020/07/20/LH1B')
#
#
###Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_C', folder='XAS/2020/07/20/LH1B')
#
##time.sleep(1)
##
########Sample LH1A
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH1A/")
##open_vg13()
##
##TRY.write(12.90)
##TRZ.write(9.70)
##
##
##time.sleep(1)
##
###Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 7)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Survey', folder='XAS/2020/07/20/LH1A/')
##
###Nickel L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Ni', folder='XAS/2020/07/20/LH1A/')
#
###Cobalt L edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Co', folder='XAS/2020/07/20/LH1A/')
#
###Fluor + Fe edges
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Fe', folder='XAS/2020/07/20/LH1A/')
##
##Manganese L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Mn', folder='XAS/2020/07/20/LH1A/')
##
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_O', folder='XAS/2020/07/20/LH1A')
##
##
###Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_C', folder='XAS/2020/07/20/LH1A')
##
##time.sleep(1)
##
#######Sample LH5
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH5/")
##open_vg13()
##
##TRY.write(3.40)
##TRZ.write(16.50)
##
##
##time.sleep(1)
#
###Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Survey', folder='XAS/2020/07/20/LH5/')
#
###Nickel L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Ni', folder='XAS/2020/07/20/LH5/')
#
###Cobalt L edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Co', folder='XAS/2020/07/20/LH5/')
###
###Fluor + Fe edges
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Fe', folder='XAS/2020/07/20/LH5/')
#
###Manganese L edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Mn', folder='XAS/2020/07/20/LH5/')
##
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_O', folder='XAS/2020/07/20/LH5')
#
#
###Carbon K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_C', folder='XAS/2020/07/20/LH5')
##
##time.sleep(1)
#
########Sample LH6
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH6/")
##open_vg13()
##
##TRY.write(7.30)
##TRZ.write(10.40)
##
##
##time.sleep(1)
#
###Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 7)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Survey', folder='XAS/2020/07/20/LH6/')
##
###Nickel L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Ni', folder='XAS/2020/07/20/LH6/')
##
###Cobalt L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Co', folder='XAS/2020/07/20/LH6/')
##
###Manganese L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Mn', folder='XAS/2020/07/20/LH6/')
##
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_O', folder='XAS/2020/07/20/LH6')
##
##
##time.sleep(1)
#
#######Sample LH3
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH3/")
##open_vg13()
##
##TRY.write(7.50)
##TRZ.write(18.00)
###
##
##time.sleep(1)
###
##Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 7)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Survey', folder='XAS/2020/07/20/LH3/')
#
##Nickel L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Ni', folder='XAS/2020/07/20/LH3/')
###
###Cobalt L edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Co', folder='XAS/2020/07/20/LH3/')
##
###Manganese L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Mn', folder='XAS/2020/07/20/LH3/')
##
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_O', folder='XAS/2020/07/20/LH3')
#
##
##Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_C', folder='XAS/2020/07/20/LH3')
#
##time.sleep(1)
##
#######Sample LH4
#set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH4/")
#open_vg13()
#
#TRY.write(18.50)
#TRZ.write(11.10)
##
##
#time.sleep(1)
##
###Survey
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 7)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Survey', folder='XAS/2020/07/20/LH4/')
##
##Nickel L edge
#nr_loops=1
#for i in range(nr_loops):
# caput('X11MA-KEI10:RANGE', 7)
# caput('X11MA-KEI11:RANGE', 8)
# caput('X11MA-KEI12:RANGE', 9)
# otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Ni', folder='XAS/2020/07/20/LH4/')
###
###Cobalt L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Co', folder='XAS/2020/07/20/LH4/')
#
###Manganese L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Mn', folder='XAS/2020/07/20/LH4/')
##
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_O', folder='XAS/2020/07/20/LH4/')
##
#
###Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_C', folder='XAS/2020/07/20/LH4/')
##
##time.sleep(1)
##
########Sample SL3
set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL3/")
open_vg13()
TRY.write(18.20)
TRZ.write(26.20)
time.sleep(1)
###Survey
nr_loops=1
for i in range(nr_loops):
caput('X11MA-KEI10:RANGE', 7)
caput('X11MA-KEI11:RANGE', 7)
caput('X11MA-KEI12:RANGE', 9)
otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Survey', folder='XAS/2020/07/20/SL3/')
####Nickel L edge
#nr_loops=1
#for i in range(nr_loops):
# caput('X11MA-KEI10:RANGE', 7)
# caput('X11MA-KEI11:RANGE', 8)
# caput('X11MA-KEI12:RANGE', 10)
# otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Ni', folder='XAS/2020/07/20/SL3/')
###Cobalt L edge
#nr_loops=2
#for i in range(nr_loops):
# caput('X11MA-KEI10:RANGE', 7)
# caput('X11MA-KEI11:RANGE', 8)
# caput('X11MA-KEI12:RANGE', 10)
# otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Co', folder='XAS/2020/07/20/SL3/')
###Fluor + Fe edges
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Fe', folder='XAS/2020/07/20/SL3/')
##
###Manganese L edge
##nr_loops=4
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Mn', folder='XAS/2020/07/20/SL3/')
##
###Oxygen K edge
nr_loops=1
for i in range(nr_loops):
caput('X11MA-KEI10:RANGE', 7)
caput('X11MA-KEI11:RANGE', 8)
caput('X11MA-KEI12:RANGE', 9)
otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_O', folder='XAS/2020/07/20/SL3/')
#
##
###Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_C', folder='XAS/2020/07/20/SL3/')
##
##time.sleep(1)
##
########Sample LH7
##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH7/")
##open_vg13()
##
##TRY.write(2.40)
##TRZ.write(20.90)
###
###
##time.sleep(1)
##
###Survey
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 7)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Survey', folder='XAS/2020/07/20/LH7/')
#
###Nickel L edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Ni', folder='XAS/2020/07/20/LH7/')
##
###Cobalt L edge
##nr_loops=2
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Co', folder='XAS/2020/07/20/LH7/')
###
###Fluor + Fe edges
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Fe', folder='XAS/2020/07/20/LH7/')
##
###Manganese L edge
##nr_loops=4
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Mn', folder='XAS/2020/07/20/LH7/')
#
###Oxygen K edge
##nr_loops=1
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 9)
## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_O', folder='XAS/2020/07/20/LH7')
##
#
###Carbon K edge
##nr_loops=3
##for i in range(nr_loops):
## caput('X11MA-KEI10:RANGE', 7)
## caput('X11MA-KEI11:RANGE', 8)
## caput('X11MA-KEI12:RANGE', 10)
## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_C', folder='XAS/2020/07/20/LH7')
#
#time.sleep(1)
#
#
#close_vg13()
#
#