The given figure is an RC lowpass filter with excitation vin() and response vout (). Let R= 10 Q and C= 10 µF. i(t) R Vin (1) + V. (t) out nd the numerical value of h(500µs). ne numerical value of h(500µs) is
The given figure is an RC lowpass filter with excitation vin() and response vout (). Let R= 10 Q and C= 10 µF. i(t) R Vin (1) + V. (t) out nd the numerical value of h(500µs). ne numerical value of h(500µs) is
Introductory Circuit Analysis (13th Edition)
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Transcribed Image Text:The given figure is an RC lowpass filter with excitation \( v_{in}(t) \) and response \( v_{out}(t) \). Let \( R = 10 \, \Omega \) and \( C = 10 \, \mu F \).
The diagram illustrates a simple RC lowpass filter circuit. It consists of:
- A resistor (R) with resistance \( R = 10 \, \Omega \).
- A capacitor (C) with capacitance \( C = 10 \, \mu F \).
- The input voltage is denoted by \( v_{in}(t) \).
- The output voltage is labeled as \( v_{out}(t) \).
- The current \( i(t) \) flows through the circuit.
Find the numerical value of \( h(500\mu s) \).
The numerical value of \( h(500\mu s) \) is \_\_\_\_.
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