Design a Class AB CMOS Amplifier Input voltage less than 1.5 V. Maximum peak output current of ± 7 mA. 140 μA of quiescent current. Unity-gain frequency of 300 kHz min. Open-loop gain >60 dB.
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A: Note: As per rule we are allowed to solve 3 sub parts.
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A: Also, Given that, β=160.
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A: Given, β=269vA=35 vQ=0.38 mA, 3.2 vR1=32 kΩR2=71 kΩRc=7kΩRE=3 kΩRsin= 1kΩvT=25 mV We know that…
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Q: For the amplifier shown in Figure 1, the BJT parameters are B 75, VgE (on) = %3D 0.7 V,VcE (sat) =…
A: The circuit is given as : The value of AC load resistance is : RAC=RC×RLRC+RL=1.05kΩ Calculation…
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Q: 2. Find the input thermal noise voltage of a receiver with a bandwidth of 3.33 kHz, with an input…
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Q: What is the quiescent output voltage of the amplifier shown below? Give your answer in Volts to 2…
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Q: how was L calculated for from calcualtions shown
A: To determine how L was calculated from the given calculations, let's analyze the steps shown in the…
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A: Given, Vcc= 12Volt, VCE=5V, β = 99 and Ic = 5mA Therefore, β =IcIB=99 IB=50.5 μA
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Q: ) The RC circuit below is hooked up to a source that provides an emf of e(t) = Vocos(wt), where Vo =…
A: a) The impedance of the circuit is, ZR2+1ω C2 Here =1002+11008×10-62=328.1Ω
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Q: Problem 8: Suppose a 75 mF capacitor has a reactance of 0.45 9. Randomized Variables C = 75 mF X =…
A: Capacitance (C) = 75 mF Reactance (X) = 0.45 Ω
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Q: For the amplifier shown in Figure 1, the BJT parameters are ß = 75, Vaz (on) = 0.7 V, VCE (sat) =…
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