Differences

This shows you the differences between two versions of the page.

Link to this comparison view

Both sides previous revision Previous revision
Next revision
Previous revision
lab05_en:inverting_op-amp_photo_diode_as_current_source [2026/04/27 13:47] mexleadminlab05_en:inverting_op-amp_photo_diode_as_current_source [2026/04/28 16:13] (current) mexleadmin
Line 11: Line 11:
 \\ \\
 <imgcaption Fig-110_inverting_op-amp_photo_diode_diagramms | Inverting Op-Amp: Diagramms of BPW 34 S> </imgcaption>\\ <imgcaption Fig-110_inverting_op-amp_photo_diode_diagramms | Inverting Op-Amp: Diagramms of BPW 34 S> </imgcaption>\\
 +\\
 +\\
 +\\
 +\\
 \\ \\
 \\ \\
Line 31: Line 35:
 \\ \\
 Complete the arrows in the circuit diagram in <imgref Fig-100_inverting_op-amp_photo_diode>.\\ Complete the arrows in the circuit diagram in <imgref Fig-100_inverting_op-amp_photo_diode>.\\
 +\\
 Calculate $R_{\rm 2}$ so that $U_{\rm OUT}$ = 5 V at 300 lx.  Calculate $R_{\rm 2}$ so that $U_{\rm OUT}$ = 5 V at 300 lx. 
 Take a resistor from the E6 series that is as close as possible to the calculated value.\\ Take a resistor from the E6 series that is as close as possible to the calculated value.\\
 Also enter the values for $I_{\rm 1}$, $I_{\rm 2}$, $U_{\rm 2}$ and $U_{\rm OUT}$.\\ Also enter the values for $I_{\rm 1}$, $I_{\rm 2}$, $U_{\rm 2}$ and $U_{\rm OUT}$.\\
 +\\
 +\\
 \\ \\
 \\ \\
Line 115: Line 122:
 \\ \\
 {{drawio>lab05:Table-1_inverting_op-amp_photo_diode.svg}}\\ {{drawio>lab05:Table-1_inverting_op-amp_photo_diode.svg}}\\
-<tabcaption lab05:Table-1_inverting_op-amp_photo_diode | Photodiode measured and calculated values> </tabcaption> +<tabcaption lab05:Table-1_inverting_op-amp_photo_diode | Photodiode measured and calculated values> </tabcaption>\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\ 
 +\\