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Small-update
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Typo fix
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Lightsaver7 committed Apr 12, 2023
2 parents 0ce3c90 + 9ac7d88 commit fa0b5bc
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18 changes: 1 addition & 17 deletions signal_proc/1. Intro to Red Pitaya.rst
Expand Up @@ -23,12 +23,6 @@ Configure the Red Pitaya for a Loopback configuration (SMA cables tied between t
:width: 75%

Fig. 1: Red Pitaya in Loopback Configuration

.. image:: media/image1.01.jpeg
:name: Red Pitaya in Loopback Configuration
:width: 75%

Fig. 1: Red Pitaya in Loopback Configuration

Measure the Period of a waveform – Time Domain
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Expand All @@ -39,23 +33,20 @@ Configure the output of the red pitaya for a 1500Hz Sinusoid as shown in Fig. 2.

.. image:: media/image1.02.png
:name: Configuration for measuring period/frequency
.. :align: center

Fig. 2: OUT1 Configuration for measuring period/frequency

Configure the trigger for a negative edge trigger with zero level and normal trigger mode as shown in Fig. 3.

.. image:: media/image1.03.png
:name: Trigger Configuration
.. :align: center

Fig. 3: Trigger Configuration

Enable OUT1. You should now see a figure close to the following

.. image:: media/image1.04.png
:name: Target output for 1500 Hz Sinusoid with negative edge triggering
.. :align: center

Fig. 4: Target output for 1500 Hz Sinusoid with negative edge triggering

Expand All @@ -71,8 +62,7 @@ Period can also be measured by the red pitaya itself, under the meas command by
This is shown in Fig. 5.

.. image:: media/image1.05.png
:name: Measured waveform vs Cursor measurement
.. :align: center
:name: Measured waveform vs Cursor measurement

Fig. 5: Measured waveform vs Cursor measurement

Expand All @@ -92,7 +82,6 @@ Once again, the Red pitaya can also calculate this by selecting the “FREQ” m

.. image:: media/image1.06.png
:name: Frequency Measurement added
.. :align: center

Fig. 6: Frequency Measurement added

Expand All @@ -103,15 +92,13 @@ Select output 2, and select the second output to be a 1500 Hz sine wave with a 4

.. image:: media/image1.07.png
:name: Second channel configuration
.. :align: center

Fig. 7: Second channel configuration

Configure the trigger for a single shot acquisition as shown in Fig. 8.

.. image:: media/image1.08.png
:name: Trigger configuration
.. :align: center

Fig. 8: Trigger configuration

Expand Down Expand Up @@ -180,7 +167,6 @@ With the same setup as 2.5.1, change OUT1 to produce a SQUARE, as shown in Fig.

.. image:: media/image1.11.png
:name: Configured for SQUARE output
.. :align: center

Fig. 10: OUT1 Configured for SQUARE output

Expand All @@ -201,7 +187,6 @@ With the same setup as 2.5.1, change OUT1 to produce a SAWU, as shown in Fig. 11

.. image:: media/image1.12.png
:name: Configured for SAWU output
.. :align: center

Fig. 11: OUT1 Configured for SAWU output

Expand All @@ -223,7 +208,6 @@ With the same setup as 2.5.1, change OUT1 to produce a PWM, as shown in Fig. 12.

.. image:: media/image1.13.png
:name: Configured for SAWU output
.. :align: center

Fig. 12: OUT 1 configured for PWM output

Expand Down
6 changes: 2 additions & 4 deletions teaching/teaching.rst
Expand Up @@ -14,11 +14,9 @@ Whether you are a student, hobbyist, or a professional, this guide provides a co
.. toctree::
:maxdepth: 1

./Measuring ucertainty.rst
./Measuring Uncertainty.rst
./Measuring Capacitance.rst
./Measuring Inductance.rst
./Measuring frequency.rst
./Measuring Frequency.rst
./test_and_measure.rst
./measure_tech.rst
./test_and_measure.rst
./measure_tech.rst

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