experimental version busing the built-in DAC (kinda broken)
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@@ -2,6 +2,9 @@
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## GEX v1.0.0 on STM32F072-HUB
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## built Jun 15 2018 at 13:45:28
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# Overwrite this file to change settings.
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# Press the LOCK button to save them to Flash.
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[UNITS]
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# Create units by adding their names next to a type (e.g. DO=A,B),
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# remove the same way. Reload to update the unit sections below.
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@@ -31,7 +34,7 @@ TOUCH=
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# Simple PWM output
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PWMDIM=
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# Two-channel analog output with waveforms
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DAC=
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DAC=dac
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[SPI:spi@2]
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# Peripheral number (SPIx)
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@@ -55,7 +58,7 @@ first-bit=MSB
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# SS port name
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port=A
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# SS pins (comma separated, supports ranges)
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pins=4
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pins=3
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[ADC:adc@4]
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# Enabled channels, comma separated
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@@ -73,7 +76,7 @@ frequency=1000
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# - defines the maximum pre-trigger size (divide by # of channels)
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# - captured data is sent in half-buffer chunks
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# - buffer overrun aborts the data capture
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buffer_size=512
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buffer_size=800
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# Enable continuous sampling with averaging
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# Caution: This can cause DAC output glitches
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@@ -81,4 +84,17 @@ averaging=N
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# Exponential averaging coefficient (permil, range 0-1000 ~ 0.000-1.000)
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# - used formula: y[t]=(1-k)*y[t-1]+k*u[t]
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# - not available when a capture is running
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avg_factor=800
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avg_factor=80
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[DAC:dac@1]
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# Enabled channels (1:A4, 2:A5)
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ch1_enable=Y
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ch2_enable=N
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# Enable output buffer
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ch1_buff=Y
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ch2_buff=Y
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# Superimposed noise type (NONE,WHITE,TRIANGLE) and nbr. of bits (1-12)
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ch1_noise=NONE
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ch1_noise-level=3
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ch2_noise=NONE
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ch2_noise-level=3
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@@ -7,6 +7,8 @@ from matplotlib import pyplot as plt
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import gex
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import time
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use_native_dac = True
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class ADG:
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def __init__(self, client:gex.Client):
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self.client = client
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@@ -68,9 +70,12 @@ with gex.Client(gex.TrxRawUSB()) as client:
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# Frequency sweep parameters
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f_0 = 5
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#f_0 = 5
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#f_1 = 5000
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#f_step = 15
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f_0 = 10
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f_1 = 5000
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f_step = 15
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f_step = 50
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# Retry on failure
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retry_count = 5
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@@ -91,6 +96,15 @@ with gex.Client(gex.TrxRawUSB()) as client:
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adc = gex.ADC(client, 'adc')
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dac = None
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gen = None
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if use_native_dac:
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print('Using native GEX DAC')
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dac = gex.DAC(client, 'dac')
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dac.waveform(1, 'SINE')
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else:
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print('Using AD9833 via SPI')
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gen = ADG(client)
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gen.initialize()
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@@ -99,7 +113,10 @@ with gex.Client(gex.TrxRawUSB()) as client:
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last_db = None
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for f in range(f_0, f_1, f_step):
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#dac.set_frequency(1, f)
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if use_native_dac:
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dac.set_frequency(1, f)
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else:
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gen.set_frequency(f)
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max_allowed_shift_db += allowed_shift_compensation
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@@ -148,6 +165,7 @@ with gex.Client(gex.TrxRawUSB()) as client:
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y1 = np.max(t[:,0]) - np.min(t[:,0])
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y2 = np.max(t[:,1]) - np.min(t[:,1])
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print("\x1b[90mU %f, Y %f\x1b[0m" % (y1, y2))
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gain_raw = y2/y1
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gain_db = 20*math.log10(gain_raw)
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@@ -179,6 +197,9 @@ with gex.Client(gex.TrxRawUSB()) as client:
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if not suc:
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last_db = last_db_in_fail
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if use_native_dac:
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dac.dc(1, 2000)
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else:
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gen.wfm_dc()
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t = np.reshape(np.array(table), [int(len(table) / 3), 3])
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