Project # 3 (Use a FET op-amp) You’ve been working with an implementation team to build the following components of a system: The system consists of a DC power supply, filters, instrumentation amplifier, one-state system and A/D converter.  Build an AC/DC dual power supply circuit that draws a 55Vp-p sinusoidal voltage, to provide a dc output voltage of +10 V. Find the proper data sheet of the IC regulator and specify ranges of output current and voltage. Full analysis of voltages and currents should be included. What modifications would you recommend to draw more current while maintaining same output voltage?  Build a 4th order Butterworth LP filters that cover a signal range 10kHz and a gain of 100V/V each. Use C = 0.01µF with proper values of R’s. Record your findings and include plots (magnitude and phase. Calculate the roll-off of the filter.  Build an instrumentation amplifier having a differential gain of 50V/V. Choose the right differential input and common input signals to find the o

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Project # 3 (Use a FET op-amp) You’ve been working with an implementation team to build the following components of a system: The system consists of a DC power supply, filters, instrumentation amplifier, one-state system and A/D converter.  Build an AC/DC dual power supply circuit that draws a 55Vp-p sinusoidal voltage, to provide a dc output voltage of +10 V. Find the proper data sheet of the IC regulator and specify ranges of output current and voltage. Full analysis of voltages and currents should be included. What modifications would you recommend to draw more current while maintaining same output voltage?  Build a 4th order Butterworth LP filters that cover a signal range 10kHz and a gain of 100V/V each. Use C = 0.01µF with proper values of R’s. Record your findings and include plots (magnitude and phase. Calculate the roll-off of the filter.  Build an instrumentation amplifier having a differential gain of 50V/V. Choose the right differential input and common input signals to find the o

Project # 3 (Use a FET op-amp)
You've been working with an implementation team to build the following components of a system:
The system consists of a DC power supply, filters, instrumentation amplifier, one-state system
and A/D converter.
Build an AC/DC dual power supply circuit that draws a 55Vp-p sinusoidal voltage, to
provide a de output voltage of ±10 V. Find the proper data sheet of the IC regulator and
specify ranges of output current and voltage. Full analysis of voltages and currents should
be included. What modifications would you recommend to draw more current while
maintaining same output voltage?
Build a 4th order Butterworth LP filters that cover a signal range 10klz
and a gain of 100V/V each. Use C= 0.01µF with proper values of R's.
Record your findings and include plots (magnitude and phase. Calculate the roll-off of the
filter.
Build an instrumentation amplifier having a differential gain of 50V/v. Choose the right
differential input and common input signals to find the outputs and analyze the CMRR of the
amplifier. What is the key component in the amplifier to increase or decrease the gain?
Includes plots from the MultisimTM to all inputs and outputs.
• Build a square wave generator with 50% duty cycle using 555 timer. The system should have
4 different freguencies from 1kHz up to 10kHz. Discuss and analyze the system in detail
• Build a3-bit Flash A/D converter. Discuss the quantization error, resolution, # of comparators
and the priority encoder circuit. Show your final outputs.
Transcribed Image Text:Project # 3 (Use a FET op-amp) You've been working with an implementation team to build the following components of a system: The system consists of a DC power supply, filters, instrumentation amplifier, one-state system and A/D converter. Build an AC/DC dual power supply circuit that draws a 55Vp-p sinusoidal voltage, to provide a de output voltage of ±10 V. Find the proper data sheet of the IC regulator and specify ranges of output current and voltage. Full analysis of voltages and currents should be included. What modifications would you recommend to draw more current while maintaining same output voltage? Build a 4th order Butterworth LP filters that cover a signal range 10klz and a gain of 100V/V each. Use C= 0.01µF with proper values of R's. Record your findings and include plots (magnitude and phase. Calculate the roll-off of the filter. Build an instrumentation amplifier having a differential gain of 50V/v. Choose the right differential input and common input signals to find the outputs and analyze the CMRR of the amplifier. What is the key component in the amplifier to increase or decrease the gain? Includes plots from the MultisimTM to all inputs and outputs. • Build a square wave generator with 50% duty cycle using 555 timer. The system should have 4 different freguencies from 1kHz up to 10kHz. Discuss and analyze the system in detail • Build a3-bit Flash A/D converter. Discuss the quantization error, resolution, # of comparators and the priority encoder circuit. Show your final outputs.
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