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Using an IRF MOSFET, and dual +/- 7.5 Volt rails, design, simulate and build a common source amplifier that has a total power supply percent-distribution of 40/30/30, and a drain current

of ID = 25 mA. Use a 1 kHz 100 mVpk sin wave, to measure the open circuit voltage gain Avo. Notes: ● You may adjust the amplitude as needed to correctly measure the open circuit voltage gain Avo. Add a luF bypass capacitor across Rs and any other capacitors needed to correctly measure Avo. Calculations (25 pts) VG= VD Vs = = Measurements (25 pts) VG= = VD Vs = Simulation (25 pts) VG= VD VS Draw your schematic (25 pts). will provide the calculations, check the next file for the calculations/n De bi asing. 14F Ns = NGS IKH 2 loomv VG. VPk-PK NDS = NG = 5V ND= 12.5V Assume Saturation region operation. NDS> VGS-Yt (VE= IV) Ro= очки. VD = Na Us= US = 2.5V RG I 15 V H NG 0.1 кл {0.1kn 15V 15-011 × 25= 12.5V. RD 25 MA 5V No. 25 ×0.1= 2.5V 5-2.5 = 2.5V > Vt. 12.5 2.5 = lov. ovs Vs D Rs =0₂ lok~. Smell signal model + RD 9mvgs VGS Qvin & the Day fo Vout. Vout= - Im Vgs Rp = - 9m Vin RD - 9m RD. - 21D RD Vov - 2x 25 Vas-vz Avo= Us = US = XRD UG = 5+ 0.05 V UD = -3.33 ( 5 ± 0.05) OV + 2.5V = 2. SV 11 2x25 (2.5-1) x 0. 1. 3.33 V/v NG = 4.95v to 5.05V. UD = -16.4835 v to -16.8165 V √S= 2.5 V Schematic!- IK H2 loomv Vрк-рк. +151 0.1ku 0.1kn IMF

Fig: 1