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- Determine the rate of change of the output voltage in response to a single pulse input to the integrator circuit shown in Fig. 9.15 (i).(Solved)
(i) Determine the rate of change of the output voltage in response to a single pulse input to the integrator circuit shown in Fig. 9.15 (i).
(ii) Draw the output waveform.
![inte51682019248.png](/questions/uploads/inte51682019248.png)
Date posted: August 16, 2019. Answers (1)
- Determine the lower frequency limit (critical frequency) for the integrator circuit shown in Fig. 9.14.(Solved)
Determine the lower frequency limit (critical frequency) for the integrator circuit shown in Fig. 9.14.
![inte41682019248.png](/questions/uploads/inte41682019248.png)
Date posted: August 16, 2019. Answers (1)
- Fig. 9.13 (i) shows the OP-amp integrator and the square wave input. Find the output voltage.(Solved)
Fig. 9.13 (i) shows the OP-amp integrator and the square wave input. Find the output voltage.
![inte31682019248.png](/questions/uploads/inte31682019248.png)
Date posted: August 16, 2019. Answers (1)
- What is the Critical Frequency of Integrators?(Solved)
What is the Critical Frequency of Integrators?
Date posted: August 16, 2019. Answers (1)
- Explain the Circuit Analysis and Output voltage of an OP-Amp Integrator(Solved)
Explain the Circuit Analysis and Output voltage of an OP-Amp Integrator
Date posted: August 16, 2019. Answers (1)
- Define OP-Amp Integrators and Differentiators(Solved)
Define OP-Amp Integrators and Differentiators
Date posted: August 16, 2019. Answers (1)
- Give the Applications of Summing Amplifiers(Solved)
Give the Applications of Summing Amplifiers
Date posted: August 16, 2019. Answers (1)
- Explain what Summing Amplifiers are and how it works(Solved)
Explain what Summing Amplifiers are and how it works
Date posted: August 16, 2019. Answers (1)
- Two voltages of + 0.6V and – 1.4 V are applied to the two input resistors of a summing amplifier.(Solved)
Two voltages of + 0.6V and – 1.4 V are applied to the two input resistors of a summing amplifier. The respective input resistors are 400 kilo-ohms and 100 kilo-ohms and feedback resistor is 200 kilo-ohms. Determine the output voltage.
Date posted: August 16, 2019. Answers (1)
- Determine the output voltage for the summing amplifier shown in Fig. 9.6(Solved)
Determine the output voltage for the summing amplifier shown in Fig. 9.6
![slew616820191200.png](/questions/uploads/slew616820191200.png)
Date posted: August 16, 2019. Answers (1)
- Determine the output voltage for the summing amplifier shown in Fig. 9.5.(Solved)
Determine the output voltage for the summing amplifier shown in Fig. 9.5.
![slew516820191200.png](/questions/uploads/slew516820191200.png)
Date posted: August 16, 2019. Answers (1)
- Determine the output voltage for the summing amplifier in Fig. 9.4.(Solved)
Determine the output voltage for the summing amplifier in Fig. 9.4.
![slew4a16820191200.png](/questions/uploads/slew4a16820191200.png)
Date posted: August 16, 2019. Answers (1)
- Show an OP-Amp with Negative Feedback(Solved)
Show an OP-Amp with Negative Feedback
Date posted: August 16, 2019. Answers (1)
- What is the Frequency Response of an OP-Amp?(Solved)
What is the Frequency Response of an OP-Amp?
Date posted: August 16, 2019. Answers (1)
- The amplifier in Fig. 7.44 is being used to amplify an input signal to a peak output voltage of 100 mV. What is the maximum...(Solved)
The amplifier in Fig. 7.44 is being used to amplify an input signal to a peak output voltage of 100 mV. What is the maximum operating frequency of the amplifier?
![slew1a16820191200.png](/questions/uploads/slew1a16820191200.png)
Date posted: August 16, 2019. Answers (1)
- Determine the maximum operating frequency for the circuit shown in Fig. 7.44. The slew rate is 0.5 V/µs.(Solved)
Determine the maximum operating frequency for the circuit shown in Fig. 7.44. The slew rate is 0.5 V/μs.
![slew1a16820191200.png](/questions/uploads/slew1a16820191200.png)
Date posted: August 16, 2019. Answers (1)
- What is the definition of Slew Rate?(Solved)
What is the definition of Slew Rate?
Date posted: August 16, 2019. Answers (1)
- An OP-amp has a gain-bandwidth product of 1.5 MHz. (Solved)
An OP-amp has a gain-bandwidth product of 1.5 MHz. Find the operating bandwidth for the following closed-loop gains (i) ACL = 1 (ii) ACL = 10 (iii) ACL = 100.
Date posted: August 16, 2019. Answers (1)
- An OP-amp has a gain-bandwidth product of 15 MHz. Determine the bandwidth of OP- amp when ACL = 500. Also find the maximum value of...(Solved)
An OP-amp has a gain-bandwidth product of 15 MHz. Determine the bandwidth of OP- amp when ACL = 500. Also find the maximum value of ACL when f2 = 200 kHz.
Date posted: August 16, 2019. Answers (1)
- Explain the Output Voltage from OP-Amp(Solved)
Explain the Output Voltage from OP-Amp
Date posted: August 16, 2019. Answers (1)