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5V, UGD For the MOSFET below, USG mode of operation and the drain current ip. Assume = 0. 5V 6V Instructions: Note that this
5V, UGD For the MOSFET below, USG mode of operation and the drain current ip. Assume = 0. 5V 6V Instructions: Note that this MOSFET is a PMOS so you should use the set of equations and inequalities for PMOS. You can solve for Voy using what is given and USD by doing a KVL with USG, USD and VGD. Also note that USD = US - UD. Determine the mode of operation using USD and Vov. Solve for ip by using the equation corresponding to the mode of operation. Saturation, ip 3.15 mA Saturation, ip 5.6 mA Triode, ip = 19.25 mA Triode, ip = - mA = 6V, Cox (W) = 0.7 (A), IV+ |= 2V. Find the 1.8 mA 5V, VGD For the MOSFET below, USG mode of operation and the drain current ip. Assume = 0. 5V 6V Instructions: Note that this MOSFET is a PMOS so you should use the set of equations and inequalities for PMOS. You can solve for Voy using what is given and USD by doing a KVL with USG, USD and VGD. Also note that USD = US - VD. Determine the mode of operation using USD and Vov. Solve for ip by using the equation corresponding to the mode of operation. Saturation, ip 3.15 mA Saturation, ip 5.6 mA Triode, ip = 19.25 mA Triode, ip = - mA = 6V, Cox (W) = 0.7 (A), IV+ |= 2V. Find the 1.8 mA
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