The maximum supply voltage is 0.707 V
stron For the circuit depicted in Fig. 4.64, calculate the maximum value of Var that produces...
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For the BJT bias circuit shown, what value of Rc in kilohms is needed to allow the maximum possible peak-to-peak signal swing on the collector without clipping? Use Vcc-9V, Vee--7V, Vb-1.2V, and Re -9.9k2. Assume that to keep the transistor in the forward-active region, the base-collector junction cannot be forward biased. Use B 20 and Vbe(on) 0.7V. Neglect the effects of base-width modulation. Vcc...
5.31. The circuit of Fig. 5.124 must be designed for maximum gain while maintaining O, in the active mode. I VA = 10 V and Var 0.8 V, calculate the required bias current. 5.33 TVcc = 3 V 1k2 5000 Figure 5.124
For the BJT bias circuit shown, what value of Rc in kilohms is needed to allow the maximum possible peak-to-peak signal swing on the collector without clipping? Use Vcc = 8V, Vee = -6V, Vb = 2.0v, and Re = 9.1k02. Assume that to keep the transistor in the forward-active region, the base- collector junction cannot be forward biased. Use B = 65 and Vbelon) = 0.7V. Neglect the effects of base-width modulation. VCC 芒Vs windows
Q.11. Calculate the base, collector and emitter currents for the circuit given in Fig. 01. Also, determine the value of the voltage drop between collecter and emitter (Ve). Assume that the transistor is in active region and the value current amplification factor is 200. Given that the base-emitter voltage V is 0.7 V. Vcc - 10V 21 Ves = 4V W 220 KS2 Fig. Q11
In solving the problems, assume constant-voltage model for transistors. In case that base-emitter voltage is not specified, use 0.75V for VBEoN of NPN transistors and VEB. oN of PNP transistors. Using the constant voltage model, you will not need to use the given values for L.. Compute the bias point of the circuits depicted in Fig. 5.109. Assume β-100. s 6 x 10-16 A, and VA Hint: you are supposed to find the collector current and to check if the...
Q5: In the following circuit, identical diodes Dl and D2 use constant voltage drop (CVD) model. VD,ON = 800 mV, R1 = 1 K. Determine the change in Vout if Vin changes from +2.4V to +2.5V. (Hint: use small signal model) Vin - DR Nyu out 'out 1K12 z Q6: The following BJT circuit has VBE = 0.8V, VA = 10V, Vcc = 2.5V. The amplifier must be designed for maximum small signal voltage gain Ay, while maintaining Q1 operating...
4.19
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4.17. A transistor gives a transconductance collector c of 1/13 Ω with base-emitter voltage of 800 mV. Calculate the value of Is of the transistor where a i the small still equa 4.18. Determine the operating point and e small-signal oolin : 4.57. 4.22. The coll of the circuits shown in Fig. 4.57. Assume Is -8x10-10 A, β 100, and 4.19. Determine the operating point and the small-signal model of Q1 for each of varies fr...
4.5 The circuit of Fig. P4.5 is the CMOS counterpart of the bipolar version of Fig. 4.2, and its analysis follows a line of reasoning similar to Example 4.1. Let Mi have kn 400 μΑΛ72, V,,-1 .0 V, and λ,- 1/(25 V), and let M. have kp = 175 μΑ/V, V,,- -0.75 V. and λ,-1/(20 V). (a) If VpD5 V and the FETs are biased at 200 μΑ, estimate vomin) and vo(max), t and upper limits of the linear output...
5.29 A power supply is an instrument or circuit that produces a steady voltage similar to a battery. A good power supply produces an almost constant voltage and has almost zero Thevenin resistance. In the power supply of Fig. 5-28a there is an adjustment for changing the output voltage from 10 to 30 V. This being the case, what is the minimum load power with a 100-0 load? The maximum load power? 5.30 What current rate should the fuse of...
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Recall the Offset Nulling Circuit that you used to zero out the offset of the LM741 OpAmp in L2002B, shown in Figure 1(a). An external 10 k2 potentiometer was applied across the emitter terminals of the current mirror formed by Q5 and Q6 in Figure 1(b), which can be thought of as making an adjustment to collector currents Ics and Ics such that Ics-Ics exactly A simplified version of that current mirror...