This is the simple problem od DC load line od a diode. Using the Kirchoff's voltage law and superposition method, we can sketch the Quiescent point for A, B, C, D in the DC load line.
7) [UNDERSTAND] Print out the graphs on the next page (0 points awarded for not printing...
For the amplifier circuits in Figs.3 and 7:
a. Write an expression for the output voltage, vo, in terms of
the resistor symbols and the input voltage, vin.
---For the first circuit (Fig. 3), the feedback resistor is the
series combination of R2 and R3. Use both of these resistor symbols
in your expression.
-- For circuit 2 (Fig. 7), assume that vin = 5V and ignore
potentiometer R1 and C3.
b. Using resistor values and input voltage amplitudes, calculate...
Vs 82 BATZ IOS = eration rrent (ID) for Fig. 3 VD 5V NMOS 10 0 BAT2 R1 1000 IOS . Triode, rrent (In) for Fig. 4 Question 4: W a Find the value of Vas b If the threshold voltage of the NMOS = 0.7V, identify the region of operation for the MOSFET (i.e. Triode Saturation or Cutoff) e Write the formula to calculate Current (ID) for the circuit in Figure 3. Fig. 3 Question 5: V=5V ww a...
2. (25) You have been given an N-channel enhancement mode MOSFET to be used in the next circuits. The NMOS has the characteristics of Ky = 1.0 mA/V,20, and Vin =1.0 V. A graph o current-voltage characteristics is shown on the next page of the test. (a) Determine resistor values (R. R. Ro Rs) so that Ipo = 4 mA and lose Let Ri= R/ || R 100 K and Vas Vs. Vpp = 12 V. VID = ID. RD"...
Question 2: a) Find the value of Vgs? b) If the threshold voltage of the NMOS 0.7V, identify the region of operation for the MOSFET (i.e. Triode Saturation or Cutoff) v,= 10V SATE e) Write the formula to calculate Current (ID) for the circuit in Figure 1 Fig. 1 Question 3: a) Find the value of Vgs* b) If the threshold voltage of the NMOS 0.7V, identify the region of operation for the MOSFET (i.e. Triode, Saturation or Cutoff) c)...
Please use the graphs to answer the following questions.
Question 1.1) The forward current/voltage curve of the LED is
shown on the figures. What is the forward current IF
when the forward voltage VF is 1.5V? (Hint-See Figure 1.
(a) 4points
Question 1.2) How much forward current you need to double the
radiant intensity from the radiant intensity at 100 mA forward
current. (choose the closest number) (Hint - See Figure 1 (b)
4points)
Question 1.3) What is the forward...
Electronics-common emmitter amplifier. Pls be try to be
helpful
Im trying to study here in this book example..
However im kinda lost and i cant follow the correct answers
they got.. could someone pls help me..
I just wanna learn this, i hope u can help me learn by showin
clear and corect solutions on how to properly got the
answer..
Also especially on finding the values on the laod line
analysis, im lost.
Pls help
Any helpful help would...
Problem 7) The MOSFET of the previous problem is connected to a
circuit in the following way:
Drain and source terminals connected to a Thévenin circuit
consisting of voltage source VDD = 10 V and series
resistance RD = 2.5 k.
Gate and source terminals connected to a voltage source
vIN.
c) What are the values of vDS and iD for the MOSFET?
d) In what region does the MOSFET operate?
Problem 8) For the MOSFET and circuit...
A 400-MVA, 200-kV/20-kV, three phase Y-Y transformer has an equivalent series impedance of ZTL = 0.012 + 20.0162 per phase referred to the low-voltage side (secondary side). The transformer is supplying a three-phase load of 300-MVA, 0.8 power factor lagging at terminal voltage of 20 kV (line-to-line) on its low-voltage side (secondary side) as shown in Fig. 22. The primary is supplied from a transmission line with an impedance of ZL = 0.5 + j1.0 per phase. The line-to-neutral load...
please show steps, and solve asap
BEE 433 Electronic Circuit Design Problem Set #1 Due date: Answer the following problems and Circle the answers. 1.1 (Fig. 1.1 from the textbook) In the voltage amplifier circuit of Fig. 1.1, let vs = 100 mV, Rs = 100 k 52, Vi = 75 mV, RL = 10 S2, and vo = 2 V. If connecting a 30-S2 resistance in parallel with RL drops vo to 1.8 V, find Ri, A., and R....
Fig Qshows the one-line diagram of a three-phase power system.
As shown in Fig. Q3. the two zones are connected by a 400 MVA,
240-kV/24-kV, Ý-A three phase transformer. The Y-A three phase
transfonmer has an equivalent series impedance of ZTH - 1.2 + j1.6n
per phase referred to the high voltage side (primary side). The
three-phase power system can be studied with per unit quantities
using base values of S-500 MVA and 240 kV in zone 1.
By using...