In the circuit of Fig. 5.116, determine the maximum value of R2 that guarantees operation of Q1 in the active mode. Assume β= 100, I S = 10 −17 A, and V A = ∞.
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In the circuit of Fig. 5.116, determine the maximum value of R2 that guarantees operation of Q1 in the active mode. Assume β= 100, I S = 10 −17 A, and V A = ∞.
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- Refer to figure. Determine ID. * Si Si +20 Vo H 14 IN Tiao lp 5.6 kQ O 24.4 mA O O A O 12.2 mA O 33.3 mA in VoIf the measured values of R1 = 323.1 Q, R2 = 324.2 Q and R3 = 324.7 Q, calculate the difference in measured R compared to your calculation of equivalent R in Ohms? KIT NO. 1PASCO EM-8622 SCIentfic CYRCUIT EXPERIMENT TENMA 72-7780 1079 A C Auto Range 6000 Counte True RMS Multimeter ANGE MAX/MIN RELA Hz/% DILIGHT SELECTIVR.C Hz% mA H Am Hz% ONCV 60A. CE A (10mviA) VOHZC ww COM FUSED FUB RICalculate the output voltage for the circuit given. The value of input voltage can be taken as 2mV, load resistor has a value of 10K Ohm and Beta has a value of 100. You MUST include the value of re' in the calculations. Please make wave-forms at each point. Vcc +20V Rc 3.3 kN C3 33 k2 out I µF RE 330 N ER2 10 ΚΩ RE2 330 2 C2 10 μF
- 17. At what anode voltage (VA) will each PUT in Figure 11–60 begin to conduct? VB VB +20 V +9 V R2 47 kN R2 VAO VAO 12 kN R3 10 kΩ R3 47 kΩ 470 Ω 330 Ω (a) (b)Useful constants: k=9.00×109 N.m2/C2 ε0= 8.85×10-12 C2/N.m2 µ0=4π×10-7 T.m/A mp=1.67×10-27 kg me=9.11×10-31 kg e=1.6×10-19 C g=10.0 m/s2You will calculate the time constant for the circuit shown in the illustration below using Equation 1-1: AC source 4 w 1000 HH Figure 1-3 Calculate the RC time constant C1 1pF 1-6 What is the time constant of this circuit, in milliseconds (ms)?
- Q1: The voltage wave is on 20 μF capacitor. Find and Draw 1. v (V) | 20 1 1 1 -t (ms) 0 25 50 75 100 125 150 175 -20 Balsan Q2: Determ E* For a clamper circuit, if the input is the blue waveform and the output is the red one. Scale 5V/Div. Determine the correct operation circuit XPG1 MA S a 1 C1 10μF XFC1 AVAFE HH D1 1N4001 VI 5V 3 R1 $10k C1 10μF XFG1 50 2 D1 1N4001* V1 6V C1 10μF D1 1N4001 V1 10V R1 Σ10kΩ R1 >10K 3 O 1 O 2Sol this Q fast plz
- Construct the circuit in Figure 1 without the capacitors. Use R1 = 1kohm. Adjust the value of R2 such that the Vout is 25% less than Vin. Table 1 Table 2 Question 1 Question 2 Vi Computed R2 R1 R2 1000/3 ohms Vo Input a 5Vpp square wave to your circuit. Sweep the frequency of the input from 100 Hz to 10kHz Frequency (Hz) Vout (Vpp) 100 500 1000 5000 10000 What did you notice when changing the frequency? How does the frequency affect the output of your circuit? Try changing the value of R2. What happens when you increase R2? When you decrease?10 نقاط :choose the correct value of the current passing throw -j100 40+j50 -j100 60 0.262- 15 0.147443.43 B O 5.854445.83 A ww 007s71. What is the dielectric?