Consider the ideal shunt-series amplifier shown in Figure 12.9. The parameters are
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Microelectronics: Circuit Analysis and Design
- Multistage amplifier Solve the following using the given parameters below:arrow_forwardQ2 Calculate the voltage gain, output voltage, input impedance, and output impedance for the cascade amplifier of Figure. Ipss V, = -5 B = 450 = 18 +20 V 22 k2 0.5 uF 2.4 k 15 kQ 0.5uF ImV pss 0.05 uF 4.7 ka 3.3 M0 680 0 # 100 uF = 100 uFarrow_forward1- a) Draw the circuit of a V-I converter and derive an expression for the output current in terms of input voltage. b) Draw the neat diagram of analog multiplier using log-antilog amplifiers and explain its operationarrow_forward
- Vi2 Vi1 R2 www ww R1 VA İR4 Vcc Vee R4 ww R3 io [mA] Vref For the difference amplifier shown in the figure, the values of the components used in the circuit are as follows: Vi14.07 [V], V₁2=8.87 [V], Vref= -0.9 [V], Vcc=+50 [V], Vee = -50 [V], R₁ = 16882 [2], R₂ = 16882 [2], R3 = 26008 [2], R4 = 26008[2]. Calculate: the output voltage of the Op-Amp Vo: the voltage at the point A VA: the output current io: the current passing through R4 İR4: the current supplied by the power supply V₁1 11= [V] [V] - Vo [mA] [mA]arrow_forwardUse the following circuit to design an oscillator of 5 kHz output. The amplifier used in this oscillator is multistage C.S. with source resistance amplifier. The design must be with minimum No. of stages. Use the following FET parameters Id=2mA, gm=2.5 ms and rds = 40kN. Use VDD = 24V L R Vo Viarrow_forward1. The input signal in Figure 1(a) is applied to the comparator in Figure 1(b).Draw the output showing its proper relationship to the input signal. Assume the maximum output levels of the comparator are (+/-)12 V. Values of R₁ and R₂ are as follows. (a) R₁ = 8 K Ohm, R₂ = 12 K Ohm (b) R₁ = 12 K Ohm, R₂ = 8 K Ohm n Figure 1(a) 5 V- Vin 0 2. Find Output Voltage Vour for the circuit in figure - 2, below. R₁ VINI = +1 VOM 100 K Ohm R₂ VIN2 = +2 VOM 200 K Ohm R3 VIN3+3 VC www 300 K Ohm R4 VIN4+4 VO www 400 K Ohm R₂ www 50 K Ohm +10 Volt Figure - 2 Figure 1(b) VOUT Voutarrow_forward
- A boost converter has an input voltage Vb=5V. The average load current is lo=0.5A. The switching frequency is 25 kHz. Suppose that a regulator is added (L=.15 mH and C=0.22 mF) and that the current is continuous. If the average output voltage is Vo =15V, then the critical values of L and C for the considered boost converter are equal to: Select one: O a. 0.133mH and 0.88UF O b.0.0665 mH and 0.44UF c. 0.133mH and 0.44UF d. None of thesearrow_forwardA type II compensator implementation for the above Buck converter is shown below. Ce2 Vout Cet HH Ret Vctrl R2 E/A Vset What should be the voltage Vref in the above type II compensator to produce 5V DC output if R# = 4k and R2=1k. а. Vet b. Write the small signal gain equation (-ctrl) between Vetrl and Vout- out с. Does R2 present in the above gain equation. Please add some explanation. d. How many poles and how many zeros are produced by this type II compensator?arrow_forwardI need the answer as soon as possiblearrow_forward
- Q2) for the amplifier shown in Figure 1) Determine the voltage gain (Av) and the current Gain (Ai) 2) Determine The input and output resistance 3) Determine The output voltage Vout 4) Draw The Ac load line 5) Draw the AC equivalent circuit 6) Determine the maximum input voltage (Vi(p-p)) for maximum output voltage (Vo(p-p)) without distortion. HH Vi-20 mv RB 56 kQ +₁ D B = 50 - 10 V HH RE 1kQ Vou RL • 10 Ω ww11arrow_forwardQuestion: The circuit below, Figure 1, shows an amplifier with a diode in the feedback. The amplifier can be considered to be ideal. The diode has a threshold voltage of 0.6 V. The values for the components are R1 is 1 k0, R2 = R3 = 9 k. Determine the transfer function of this circuit. Vin ww R1 R2 www R3 741 D1 Voutarrow_forwardA single stage amplifier has a voltage gain of 60. The collector load RC = 50092 and the input impedance is 1k02. Calculate the overall gain when two such stages are cascaded through R-C coupling.arrow_forward
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