helper_scan_func: only need to modify while loop functionality; TODO after: modify for loop
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@ -414,20 +414,21 @@ def LCR_scan_func(handle:int, init_voltage:float, final_voltage:float,
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# TODO: edit the helper_scan_func and scanning loop below, after this, the code should be complete!
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# NOTE: helper function for the scanning loop
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def helper_scan_func(idx, voltage_val, instr=handle, sleep=2):
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# TODO: edit code block below for the LCR controller
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# read the actual voltage and print it out
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# actual_voltage_val = sep_num_from_units(query_no_echo(instr, 'IMAG?'))[0]*0.1 # convert kG to T
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def helper_scan_func(idx, voltage_val, instr=handle, sleep=2): # TODO: idx argument possibly redundant for Dasha's code
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# => enable V1 preset => set voltage for V1 preset
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klcSetChannelEnable(handle, 1)
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# initialise actual_voltage_val variable
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actual_voltage_val = [0]
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klcGetVoltage1(handle, actual_voltage_val)
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print(f'Actual output voltage: {actual_voltage_val[0]} V,', f'Target output voltage: {voltage_val} V')
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klcSetVoltage1(handle, voltage_val)
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print(f'Actual magnet strength: {actual_voltage_val} T,', f'Target magnet strength: {voltage_val} T')
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while abs(actual_voltage_val - voltage_val) > 0.0001: # if the actual voltage is not reached, keep
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# TODO: change the while loop for Dasha's code!!
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while abs(actual_voltage_val[0] - voltage_val) > 0.0005: # check if target voltage is reached, if not, wait
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time.sleep(sleep) # little break
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actual_bval = sep_num_from_units(query_no_echo(instr, 'IMAG?'))[0]*0.1
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# update the actual bval
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print(f'Actual magnet strength: {actual_voltage_val} T,', f'Target magnet strength: {voltage_val} T')
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print(f'Actual output voltage: {actual_voltage_val[0]} V,', f'Target output voltage: {voltage_val} V')
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#scanning loop
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for i, bval in enumerate(voltage_lst):
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