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ELEC 5555/4555 VLSI CIRCUIT SIMULATION ELEC 5555/4555 VLSI CIRCUIT SIMULATION Apply method developed in Chapter 7 to gen

Posted: Fri Apr 29, 2022 9:05 am
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Elec 5555 4555 Vlsi Circuit Simulation Elec 5555 4555 Vlsi Circuit Simulation Apply Method Developed In Chapter 7 To Gen 1
Elec 5555 4555 Vlsi Circuit Simulation Elec 5555 4555 Vlsi Circuit Simulation Apply Method Developed In Chapter 7 To Gen 1 (76.34 KiB) Viewed 24 times
ELEC 5555/4555 VLSI CIRCUIT SIMULATION ELEC 5555/4555 VLSI CIRCUIT SIMULATION Apply method developed in Chapter 7 to generate symbolic transfer function (F = Vout/Vin) of circuit shown: 1- A Matlab project only (and no ORCAD). 2- Must use method discussed in class related to chapter 7 for transfer function generation: 3- Use MNF single graph by inspection to generate linear system 4- Apply polynomial interpolation of numerator and the denominator of the transfer function. 5. No credit for any other approaches or methods. d) Accurately show graph of F = N(S)/D(s) in unit of DB with X-axis in log10 with 2 orders of magnitude in the range of 0.1 Hz - 10 Hz. Use at least 50 data points per decade. e) Submit executable m.file of your own work. f) Duplicate and copied projects will get substantial lower grade. 1 an TH 27 1 Vout Grading: a) Show the derivation of linear system by using MNF-single graph (TX=W). b) Accurately tabulate D, F, and N for discrete frequencies of unit circle used. You can generate your own table, but the format must be like the Table shown below (F=N/D): Vin 1 Lu w 0.5 1 7C 33 D 1 c) Accurately tabulate the coefficients of the polynomials for numerator, and the coefficients of the polynomial for denominator. You can generate your own table, but the format must be like the Table shown below: Resistors are in unit of Ohms Caps are in Farads OpAmps are ideal Polynomial's Constant term 1"order term 20 order term 3rd order term Numerator Denominator