忡 -OV | 10 k0 V
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- Replace the diode, D1, with the constant voltage model. V1=3.5 V, R1 = 2kΩ , R2 = 3kΩ , R3 = 3kΩ , VON = 0.7 V i) Find the value for V2 by applying the constant voltage model to D1 ii) Find ID, IR1, IR2, IR3(a) Find the Q-point for the Zener diode shown (b) Repeat if RZ =100 Ω.A silicon diode is forward biased at 1.1 V. Find the resulting diode current. Note: T = 25 C, IS = 1pA, n = 1
- Chemistry With the use of a suitable equation calculate the current flowing in a standard diode when a forward voltage of 3 v is applied. Take I0 to 1.5 x 10-12 A.cm-2 at room temperature of 300 KFor the diodes on the below, calculate the currents I1, I2 and I3 using the modified diode model (non-ideal, VD = 0.7V).What is output value of the circuit below when input in negative half cycle, suppose Vi= 20 Vp.p, VR1=5, VR2= 3 and ideal diode
- a. Determine VL, IL, and IR for the network of below if RL=180 ohms b. Repeat part (a) if RL=470 ohms c. Determine the value of RL that will establish maximum power condition for the Zener diode. d. Determine the minimum value of RL to ensure that the Zener diode is the the "on" state.Calculate the reverse current of P-N diode, if a forward current of 10mA is flowing through it if supplied with 0.7V at 26.5°C room temperature. Assume ideality factor, n=2. a. 3nA b. 2.56nA c 13.05nA d. 2.5nAFind the voltage(E) and current(I) of the diode in: a) 1st approximation b) 2nd approximation. If Diode is 0.7 V c) 3rd approximation. With an internal resistance of 2 ohms.