1. Build the circuit shown in Figure 1. Apply a 500 [Hz] square wave, going from 0 [V] to 5 [V], to the input. Use the o

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answerhappygod
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1. Build the circuit shown in Figure 1. Apply a 500 [Hz] square wave, going from 0 [V] to 5 [V], to the input. Use the o

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1 Build The Circuit Shown In Figure 1 Apply A 500 Hz Square Wave Going From 0 V To 5 V To The Input Use The O 1
1 Build The Circuit Shown In Figure 1 Apply A 500 Hz Square Wave Going From 0 V To 5 V To The Input Use The O 1 (50.96 KiB) Viewed 23 times
1. Build the circuit shown in Figure 1. Apply a 500 [Hz] square wave, going from 0 [V] to 5 [V], to the input. Use the oscilloscope to determine that the signal source is set appropriately to produce this waveform. Using one probe to monitor the input and another to monitor the output, sketch the waveforms VIN(t) and vour(t) on graph paper. Line up the two plots so that they use have same ordinate (vertical axis). In other words, the two plots should be aligned vertically so that the relationship between input and output is clear. As always, show units on all scales. 0.1 μF Vin (t) www 1K02 Vout (t) Figure 1 Circuit 1. 2. Measure the time constant for the case where the input makes a transition from 0[V] to 5[V], and again for a transition from 5[V] to 0[V]. Calculate the time constants that would be expected. Are the results reasonable? Explain.
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