... | ... | @@ -19,7 +19,7 @@ Figure 16, shows the schematic of stage 3. It includes the op-amp and the amplif |
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image::https://es.technikum-wien.at/openlab/openlab_wiki/wikis/img/sig_proc_osci_hardware/sig_proc_osci_hardware_stage3.PNG[caption="Figure 1: ",title="Schematic of stage 3 of the OpenLab oscilloscope front end",align="center"]
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image::https://es.technikum-wien.at/openlab/openlab_wiki/wikis/img/sig_proc_osci_hardware/sig_proc_osci_hardware_stage3.PNG[caption="Figure 1: ",title="Schematic of stage 3 of the OpenLab oscilloscope front-end",align="center"]
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... | ... | @@ -27,7 +27,7 @@ The gain level is selected by changing the ratio of the voltage divider of the n |
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image::https://es.technikum-wien.at/openlab/openlab_wiki/wikis/img/sig_proc_osci_hardware/sig_proc_osci_hardware_stage3_OPV.PNG[caption="Figure 2: ",title="Schematic of a non inverting op amp circuit (simplification of stage 3)",align="center"]
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image::https://es.technikum-wien.at/openlab/openlab_wiki/wikis/img/sig_proc_osci_hardware/sig_proc_osci_hardware_stage3_OPV.PNG[caption="Figure 2: ",title="Schematic of a non-inverting op-amp circuit (simplification of stage 3)",align="center"]
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... | ... | @@ -35,7 +35,7 @@ By applying the formula of a standard non-inverting op-amp, the gain level (AV) |
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image::https://es.technikum-wien.at/openlab/openlab_wiki/wikis/img/sig_proc_osci_hardware/sig_proc_osci_hardware_stage3_formula.PNG[caption="Formula 1: ",title="Formula for calculating the gain level of a standard non inverting op amp",align="center"]
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image::https://es.technikum-wien.at/openlab/openlab_wiki/wikis/img/sig_proc_osci_hardware/sig_proc_osci_hardware_stage3_formula.PNG[caption="Formula 1: ",title="Formula for calculating the gain level of a standard non-inverting op-amp",align="center"]
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