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Calculate the required values of resistors R1-R8. Both MOSFETs should be operating in the saturation region. Show your calculations. Include a table in your report

Calculate the required values of resistors R1-R8. Both MOSFETs should be operating in the saturation region. Show your calculations. Include a table in your report listing the calculated resistance values and the calculated gate voltages vG.

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nVDD R5 R1 1k 1k R6 1k R4 1k nDN nSP VDD M1 M2 5Vdc NGN nGP nnMOS ppMOS nSN nDP R7 R3 1k 1k R8 R2 1k 1k Figure 5: NMOS and PMOS transistors connected to a DC voltage source and resistor networks to simulate the operating (bias) point. (a) Calculate the required values of resistors R1-R8. Both MOSFETs should be operating in the saturation region. Show your calculations. Include a table in your report listing the calculated resistance values and the calculated gate voltages ug (b) Select resistance values in the schematic. You are limited to the E24 (5% toler- ance) preferred value series for the resistances (1.0, 1.1, 1.2, 1.3, 1.5, 1.6, 1.8, 2.0, 2.2, 2.4, 2.7, 3.0, 3.3, 3.6, 3.9, 4.3, 4.7, 5.1, 5.6, 6-2, 6.8, 7.5, 8.2, 9.1). Example valid values would be 47 92, 9.1 k 2, 180 MA, etc.. Choose values that are close to your calculated resistances. nVDD R5 R1 1k 1k R6 1k R4 1k nDN nSP VDD M1 M2 5Vdc NGN nGP nnMOS ppMOS nSN nDP R7 R3 1k 1k R8 R2 1k 1k Figure 5: NMOS and PMOS transistors connected to a DC voltage source and resistor networks to simulate the operating (bias) point. (a) Calculate the required values of resistors R1-R8. Both MOSFETs should be operating in the saturation region. Show your calculations. Include a table in your report listing the calculated resistance values and the calculated gate voltages ug (b) Select resistance values in the schematic. You are limited to the E24 (5% toler- ance) preferred value series for the resistances (1.0, 1.1, 1.2, 1.3, 1.5, 1.6, 1.8, 2.0, 2.2, 2.4, 2.7, 3.0, 3.3, 3.6, 3.9, 4.3, 4.7, 5.1, 5.6, 6-2, 6.8, 7.5, 8.2, 9.1). Example valid values would be 47 92, 9.1 k 2, 180 MA, etc.. Choose values that are close to your calculated resistances

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