<param>
<name>Gain (dB)</name>
<key>gain</key>
+ <value>0</value>
<type>real</type>
</param>
<sink>
<key>frequency</key>
<type>real</type>
</param>
- <param>
+ <param>
<name>LO Offset (Hz)</name>
<key>lo_offset</key>
<value>float('inf')</value>
<param>
<name>Gain (dB)</name>
<key>gain</key>
+ <value>0</value>
<type>real</type>
</param>
<source>
self.$(id).set_frequency_b($frequency_b, verbose=True)
self.$(id).set_gain_a($gain_a)
self.$(id).set_gain_b($gain_b)
+#if $lo_offset_a() != float('inf')
+self.$(id).set_lo_offset_a($lo_offset_a)
+#end if
+#if $lo_offset_b() != float('inf')
+self.$(id).set_lo_offset_b($lo_offset_b)
+#end if
##################################################
## Flex RF A
##################################################
<type>int</type>
</param>
<param>
- <name>Frequency A</name>
+ <name>Frequency A (Hz)</name>
<key>frequency_a</key>
<type>real</type>
</param>
<param>
- <name>Frequency B</name>
+ <name>Frequency B (Hz)</name>
<key>frequency_b</key>
<type>real</type>
</param>
<param>
- <name>Gain A</name>
+ <name>LO Offset A (Hz)</name>
+ <key>lo_offset_a</key>
+ <value>float('inf')</value>
+ <type>real</type>
+ <hide>#if $lo_offset_a() == float('inf') then 'part' else 'none'#</hide>
+ <option>
+ <name>Default</name>
+ <key>float('inf')</key>
+ </option>
+ </param>
+ <param>
+ <name>LO Offset B (Hz)</name>
+ <key>lo_offset_b</key>
+ <value>float('inf')</value>
+ <type>real</type>
+ <hide>#if $lo_offset_b() == float('inf') then 'part' else 'none'#</hide>
+ <option>
+ <name>Default</name>
+ <key>float('inf')</key>
+ </option>
+ </param>
+ <param>
+ <name>Gain A (dB)</name>
<key>gain_a</key>
+ <value>0</value>
<type>real</type>
</param>
<param>
- <name>Gain B</name>
+ <name>Gain B (dB)</name>
<key>gain_b</key>
+ <value>0</value>
<type>real</type>
</param>
<!--
<doc>
The USRP sink inputs 128 Megasamples per second / interpolation.
+Input amplitude should be between 0 and 32767.
+
Flex RF boards only: The "Transmit Setting" must be configured. \
When set to "Enable" the transmitter is always on. \
When set to "Auto Transmit/Receive", the transmitter is disabled while receiving.
self.$(id).set_frequency_a($frequency_a, verbose=True)
self.$(id).set_frequency_b($frequency_b, verbose=True)
self.$(id).set_gain_a($gain_a)
-self.$(id).set_gain_b($gain_b)</make>
+self.$(id).set_gain_b($gain_b)
+#if $lo_offset_a() != float('inf')
+self.$(id).set_lo_offset_a($lo_offset_a)
+#end if
+#if $lo_offset_b() != float('inf')
+self.$(id).set_lo_offset_b($lo_offset_b)
+#end if</make>
<callback>set_decim_rate($decimation)</callback>
<callback>set_frequency_a($frequency_a)</callback>
<callback>set_frequency_b($frequency_b)</callback>
<type>int</type>
</param>
<param>
- <name>Frequency A</name>
+ <name>Frequency A (Hz)</name>
<key>frequency_a</key>
<type>real</type>
</param>
<param>
- <name>Frequency B</name>
+ <name>Frequency B (Hz)</name>
<key>frequency_b</key>
<type>real</type>
</param>
<param>
- <name>Gain A</name>
+ <name>LO Offset A (Hz)</name>
+ <key>lo_offset_a</key>
+ <value>float('inf')</value>
+ <type>real</type>
+ <hide>#if $lo_offset_a() == float('inf') then 'part' else 'none'#</hide>
+ <option>
+ <name>Default</name>
+ <key>float('inf')</key>
+ </option>
+ </param>
+ <param>
+ <name>LO Offset B (Hz)</name>
+ <key>lo_offset_b</key>
+ <value>float('inf')</value>
+ <type>real</type>
+ <hide>#if $lo_offset_b() == float('inf') then 'part' else 'none'#</hide>
+ <option>
+ <name>Default</name>
+ <key>float('inf')</key>
+ </option>
+ </param>
+ <param>
+ <name>Gain A (dB)</name>
<key>gain_a</key>
+ <value>0</value>
<type>real</type>
</param>
<param>
- <name>Gain B</name>
+ <name>Gain B (dB)</name>
<key>gain_b</key>
+ <value>0</value>
<type>real</type>
</param>
<!--
#end if
#if $transmit.auto_tr
self.$(id).set_auto_tr(True)
+#end if
+#if $lo_offset() != float('inf')
+self.$(id).set_lo_offset($lo_offset)
#end if</make>
+ <callback>set_lo_offset($lo_offset)</callback>
<callback>set_interp_rate($interpolation)</callback>
<callback>set_frequency($frequency)</callback>
<callback>set_gain($gain)</callback>
<type>int</type>
</param>
<param>
- <name>Frequency</name>
+ <name>Frequency (Hz)</name>
<key>frequency</key>
<type>real</type>
</param>
<param>
- <name>Gain</name>
+ <name>LO Offset (Hz)</name>
+ <key>lo_offset</key>
+ <value>float('inf')</value>
+ <type>real</type>
+ <hide>#if $lo_offset() == float('inf') then 'part' else 'none'#</hide>
+ <option>
+ <name>Default</name>
+ <key>float('inf')</key>
+ </option>
+ </param>
+ <param>
+ <name>Gain (dB)</name>
<key>gain</key>
+ <value>0</value>
<type>real</type>
</param>
<param>
<doc>
The USRP sink inputs 128 Megasamples per second / interpolation.
+Input amplitude should be between 0 and 32767.
+
Flex RF boards only: The "Transmit Setting" must be configured. \
When set to "Enable" the transmitter is always on. \
When set to "Auto Transmit/Receive", the transmitter is disabled while receiving.
#end if
self.$(id).set_decim_rate($decimation)
self.$(id).set_frequency($frequency, verbose=True)
-self.$(id).set_gain($gain)</make>
+self.$(id).set_gain($gain)
+#if $lo_offset() != float('inf')
+self.$(id).set_lo_offset($lo_offset)
+#end if</make>
+ <callback>set_lo_offset($lo_offset)</callback>
<callback>set_decim_rate($decimation)</callback>
<callback>set_frequency($frequency)</callback>
<callback>set_gain($gain)</callback>
<type>int</type>
</param>
<param>
- <name>Frequency</name>
+ <name>Frequency (Hz)</name>
<key>frequency</key>
<type>real</type>
</param>
<param>
- <name>Gain</name>
+ <name>LO Offset (Hz)</name>
+ <key>lo_offset</key>
+ <value>float('inf')</value>
+ <type>real</type>
+ <hide>#if $lo_offset() == float('inf') then 'part' else 'none'#</hide>
+ <option>
+ <name>Default</name>
+ <key>float('inf')</key>
+ </option>
+ </param>
+ <param>
+ <name>Gain (dB)</name>
<key>gain</key>
+ <value>0</value>
<type>real</type>
</param>
<param>
frequency=frequency,
verbose=verbose,
)
+ def set_lo_offset_a(self, lo_offset): self._subdev_a.set_lo_offset(lo_offset)
+ def set_lo_offset_b(self, lo_offset): self._subdev_b.set_lo_offset(lo_offset)
def set_gain_a(self, gain): self._subdev_a.set_gain(gain)
def set_gain_b(self, gain): self._subdev_b.set_gain(gain)
frequency=frequency,
verbose=verbose,
)
+ def set_lo_offset_a(self, lo_offset): self._subdev_a.set_lo_offset(lo_offset)
+ def set_lo_offset_b(self, lo_offset): self._subdev_b.set_lo_offset(lo_offset)
def set_gain_a(self, gain): self._subdev_a.set_gain(gain)
def set_gain_b(self, gain): self._subdev_b.set_gain(gain)
def set_enable_a(self, enable): self._subdev_a.set_enable(enable)
self._get_u().set_decim_rate(int(decim))
if self._no_hb: #set the BW to half the sample rate
self._subdev.set_bw(self._get_u().converter_rate()/decim/2)
+ def set_lo_offset(self, lo_offset): self._subdev.set_lo_offset(lo_offset)
def set_frequency(self, frequency, verbose=False):
self._set_frequency(
chan=0, #ddc0
frequency=frequency,
verbose=verbose,
)
+ def set_lo_offset(self, lo_offset): self._subdev.set_lo_offset(lo_offset)
def set_gain(self, gain): self._subdev.set_gain(gain)
def set_enable(self, enable): self._subdev.set_enable(enable)
def set_auto_tr(self, auto_tr): self._subdev.set_auto_tr(auto_tr)