Capture the display of a Rigol DS1000Z series oscilloscope by LAN using LXI SCPI commands
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Rigol_functions.py 1.4KB

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  1. __author__ = 'RoGeorge'
  2. import time
  3. def get_memory_depth(tn):
  4. # Define number of horizontal grid divisions for DS1054Z
  5. h_grid = 12
  6. # ACQuire:MDEPth
  7. tn.write("ACQ:MDEP?")
  8. mdep = tn.read_until("\n", 1)
  9. # if mdep is "AUTO"
  10. if mdep == "AUTO\n":
  11. # ACQuire:SRATe
  12. tn.write("ACQ:SRAT?")
  13. srate = tn.read_until("\n", 1)
  14. # TIMebase[:MAIN]:SCALe
  15. tn.write("TIM:SCAL?")
  16. scal = tn.read_until("\n", 1)
  17. # mdep = h_grid * scal * srate
  18. mdep = h_grid * float(scal) * float(srate)
  19. # return mdep
  20. return float(mdep)
  21. # return maximum achieved stop point, or 0 for wrong input parameters
  22. # if achieved == requested, then set the start and stop waveform as n1_d and n2_d
  23. def is_waveform_from_to(tn, n1_d, n2_d):
  24. # read current
  25. # WAVeform:STARt
  26. tn.write("WAV:STAR?")
  27. n1_c = float(tn.read_until("\n", 1))
  28. # WAVeform:STOP
  29. tn.write("WAV:STOP?")
  30. n2_c = float(tn.read_until("\n", 1))
  31. if (n1_d > n2_d) or (n1_d < 1) or (n2_d < 1):
  32. # wrong parameters
  33. return 0
  34. elif n2_d < n1_c:
  35. # first set n1_d then set n2_d
  36. tn.write("WAV:STAR " + str(n1_d))
  37. time.sleep(1)
  38. tn.write("WAV:STOP " + str(n2_d))
  39. time.sleep(1)
  40. else:
  41. # first set n2_d then set n1_d
  42. tn.write("WAV:STOP " + str(n2_d))
  43. time.sleep(1)
  44. tn.write("WAV:STAR " + str(n1_d))
  45. time.sleep(1)
  46. # read achieved n2
  47. tn.write("WAV:STOP?")
  48. n2_a = float(tn.read_until("\n", 1))
  49. if n2_a < n2_d:
  50. # restore n1_c, n2_c
  51. is_waveform_from_to(tn, n1_c, n2_c)
  52. # return n2_a
  53. return n2_a