import ch.psi.pshell.epics.ChannelDouble as ChannelDouble A1 = ChannelDouble("delay", "S20SY02-MKAC020:TCS-Pul0-TDELAY-K") S1 = ChannelDouble("x1", "S20SY02-DBPM080:X1") S2 = ChannelDouble("y1", "S20SY02-DBPM080:Y1") A1.initialize() S1.initialize() S2.initialize() A1_init = A1.read() A1i = 489.837 A1f = 409.837 step = 2.2408963585434175 lat = 0.21 nav = 5 plt = plot(None, title="Output")[0] plt.clear() plt.setStyle(plt.Style.ErrorY) plt.addSeries(LinePlotErrorSeries("Sensor1", Color.red)) def after_sample(record, scan): plt.getSeries(0).appendData(record.positions[0], record.values[0].mean, record.values[0].stdev) try: S1_averager = create_averager(S1, nav, lat) S2_averager = create_averager(S2, nav, lat) S2_averager.monitored=True time.sleep(1.0) r = lscan(A1, (S1_averager, S2_averager), A1i, A1f, step, latency=0.5, after_read = after_sample) Act1 = r.getPositions(0) S1mean = [val.mean for val in r.getReadable(0)] S1rms = [val.stdev for val in r.getReadable(0)] S2mean = [val.mean for val in r.getReadable(1)] S2rmsn = [val.stdev for val in r.getReadable(1)] finally: A1.write(A1_init) A1.close() S1.close() S2.close()