For the oscillator resonance circuit shown in Fig. (5), derive the oscillation frequency, Feedback and open-loop gains. Vo L C I C ли ER Vs
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- The hide word is “ obtain “Figure 6 shows a circuit where feedback is provided between the drain and gate of the transistor M1 Q6 Draw the small signal equivalent circuit of the open loop circuit obtained by breaking the loop at the gate of transistor M1 (suitable for the analysis in the mid band frequency range). Consider Cg as short circuit in the model and state any assumption. (a) (b) State the necessary conditions for the oscillation to occur in the circuit. Using the conditions from (b), derive an expression for the amplifier oscillation frequency fo. (c) Derive the necessary condition for the oscillation to occur in the circuit and state if you can conclude that the circuit will oscillate when considering the values of the inductances L2 = 8 LI = 2 mH; capacitors C = 2 nF; transconductance of the transistor gml = 1.4 mS; and resistors R1 = R2 = Rs : 10 k2. (d) %3D L2 L, R, Cg. C Vout Cp M1 R2 CG Rs Cs Vss = 0 V Figure 6Assume an inverting amplifier with input resistance 1 kilohm and feedback resistance of 100 kilohm. If the op-amp has GBP = 1 MHz, what is the closed loop amplifier bandwidth?
- Given the feedback circuit below and assuming the voltage amplifier has gain A₂, input resistance R₁ and output resistance Ro, answer the following questions: + a. Loop gain b. Closed loop gain Re C. Input resistance d. Output resistance Rin м + RE A) Sketch the feedback small signal model of this circuit. (Hint: You may convert the input VIN and source resistance Rs to its Norton current equivalent if needed) B) Find the following in terms of the amplifier parameters and resistances R, and RF: RoutE AND F PLZA. Find the value of Ibq B. Find the value of Rf C. Find the value of (Re) t
- The circuit of Figure below uses current- (or shunt-) feedback bias. The Si transistor has ICEO = 0, B = 100, Rc= 2k2, Vcc = 12 V. Assume that; (VCEQ = Vcc /2). A. Find the value of Ibq B. Find the value of Rf C. Find the value of ReWhy would an oscillator of the closed-loop model be expected toprovide a more stable rhythmic output than one employing thehalf-center model?Question 3: Please write answers to all parts of the question in the separate dot points as shown What is the circuit called? Discuss all components including voltage sources. Which components determine the closed-loop gain of the circuit? Describe the slew-rate of the op-amp. Describe the Common-Mode-Rejection ratio of the op-amp? What is the unity gain bandwidth? Describe the gain bandwidth product (GBP). Describe the GBP relationship between the break (critical) frequency and the gain? What two methods calculate the max frequency? If one produces a higher value of maximum frequency than the other, which would you use as the maximum frequency?
- Design a feedback amplifier with a de gain of 10 V N and a 3-dB bandwidth of at least IO MHz. The available open-loop amplifier has a de gain of 1000 VN and - 20 dB/decade gain rolloff with frequency. Specify the minimum required F3db of the open-loop amplifier. what is the feedback factor needed?Answer the following with illustration and solutions. 1. Determine the frequency of oscillation of a three-stage ladder network oscillator in which C= 30 nF and R= 47kilo-ohms. See the example below..Complete with calculations the following 1. The mid-band Av=100, the lower critical frequency is 1kHz, the actual Av at f-10Hz is..... 2. Three stages of identical amplifier, every single stage has fi-1kHz, fi-20kHz, Av 10, the total fur. fir. AVT are...... 3. Voltage series feedback circuit with A-100, B-0.09, Zi-10ks2, Zo-100k2, the Avf, Zif, Zof are. 4. Negative feedback leads to ...... reductions. 5. An Op-Amp. with CMRR of 40dB, Ac 0.25, the Ad is...... D. 6. If Vin1= Vin2= Vin3 Vin4-3V of summing amplifier with unity gain, the Vo is.....
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