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| Both sides previous revision Previous revision Next revision | Previous revision | ||
| electrical_engineering_and_electronics_2:block08 [2026/05/16 19:12] – mexleadmin | electrical_engineering_and_electronics_2:block08 [2026/05/19 02:12] (current) – mexleadmin | ||
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| Line 703: | Line 703: | ||
| \end{align*} | \end{align*} | ||
| - | with the numbers: | + | we get: |
| \begin{align*} | \begin{align*} | ||
| \underline{I}_R | \underline{I}_R | ||
| Line 740: | Line 740: | ||
| \underline{U} &= 12~{\rm V}\angle 0^\circ \\ | \underline{U} &= 12~{\rm V}\angle 0^\circ \\ | ||
| \underline{I}_R &= 1.2~{\rm mA}\angle 0^\circ \\ | \underline{I}_R &= 1.2~{\rm mA}\angle 0^\circ \\ | ||
| - | \underline{I}_L & | + | \underline{I}_L & |
| - | \underline{I}_C & | + | \underline{I}_C & |
| \underline{I} &= 1.2~{\rm mA}\angle 0^\circ | \underline{I} &= 1.2~{\rm mA}\angle 0^\circ | ||
| \end{align*} | \end{align*} | ||
| + | |||
| + | {{drawio> | ||
| + | |||
| # | # | ||
| </ | </ | ||
| Line 765: | Line 768: | ||
| The input reactive power is: | The input reactive power is: | ||
| \begin{align*} | \begin{align*} | ||
| - | Q = 0 | + | Q = 0 ~\rm var |
| \end{align*} | \end{align*} | ||
| Line 786: | Line 789: | ||
| \begin{align*} | \begin{align*} | ||
| P &= 14.4~{\rm mW} \\ | P &= 14.4~{\rm mW} \\ | ||
| - | Q &= 0 \\ | + | Q &= 0 ~{\rm var}\\ |
| S &= 14.4~{\rm mVA} | S &= 14.4~{\rm mVA} | ||
| \end{align*} | \end{align*} | ||
| Line 836: | Line 839: | ||
| \begin{align*} | \begin{align*} | ||
| I & | I & | ||
| - | \varphi_I &\approx | + | \varphi_I &= -89.8 ... ^\circ |
| \end{align*} | \end{align*} | ||
| Line 845: | Line 848: | ||
| <WRAP half column> | <WRAP half column> | ||
| # | # | ||
| + | |||
| + | |||
| \begin{align*} | \begin{align*} | ||
| \underline{U} &= 12~{\rm V}\angle 0^\circ \\ | \underline{U} &= 12~{\rm V}\angle 0^\circ \\ | ||
| \underline{I}_R &= 1.2~{\rm mA}\angle 0^\circ \\ | \underline{I}_R &= 1.2~{\rm mA}\angle 0^\circ \\ | ||
| - | \underline{I}_L & | + | \underline{I}_L & |
| - | \underline{I}_C & | + | \underline{I}_C & |
| - | \underline{I} & | + | \underline{I} & |
| \end{align*} | \end{align*} | ||
| + | |||
| + | {{drawio> | ||
| + | |||
| + | |||
| # | # | ||
| </ | </ | ||
| Line 862: | Line 871: | ||
| # | # | ||
| + | |||
| + | <WRAP right> | ||
| + | |||
| Many power electronic converters generate harmonics of the grid frequency. | Many power electronic converters generate harmonics of the grid frequency. | ||
| Line 883: | Line 895: | ||
| \end{align*} | \end{align*} | ||
| - | 1. Give the complex input impedance of the harmonic trap. | + | 1. Give the formula of the complex input impedance of the harmonic trap. |
| <WRAP group> | <WRAP group> | ||
| <WRAP half column rightalign> | <WRAP half column rightalign> | ||
| Line 920: | Line 932: | ||
| </ | </ | ||
| - | 2. How large must $L_{\rm trap}$ be so that the 5th harmonic is suppressed? | + | 2. How large must $L_{\rm trap}$ be so that the 5th harmonic is suppressed |
| <WRAP group> | <WRAP group> | ||
| <WRAP half column rightalign> | <WRAP half column rightalign> | ||
| Line 970: | Line 982: | ||
| </ | </ | ||
| - | 3. How large is the complex input impedance for the fundamental frequency $\nu=1$? | + | 3. How large is the complex input impedance for the fundamental frequency |
| <WRAP group> | <WRAP group> | ||
| <WRAP half column rightalign> | <WRAP half column rightalign> | ||
| Line 1115: | Line 1127: | ||
| f_5=250~{\rm Hz} | f_5=250~{\rm Hz} | ||
| \end{align*} | \end{align*} | ||
| + | |||
| + | {{drawio> | ||
| + | |||
| # | # | ||
| </ | </ | ||