Draw the two circuit configurations of a power pole of 2 assuming the bi-positional switch made by transistor and diode in each of the two allowed positions.
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Draw the two circuit configurations of a power pole of 2 assuming the bi-positional switch made...
A toggle switch may be connected to the input of a CPLD in two configurations. Draw circuit sketches of these two cases and explain how the CPLD may read the switch input to determine if the switch is OPEN using an “IF….” VHDL statement
3. Assuming ideal sources, explain which circuit configurations are allowed and which are not. For the allowed circuits find the currents through and voltages across all circuit components. 3A If? 2A 4A 2Ω 62 42 A 40 Skt2 32 7V 1ον 5V 40 90 7E2 GV 3Ω 5( 2 12
Given: A MOSFET is used in a switching power-pole found in Fig. 2-4a of the text. The operating conditions are as follows: Vin 35V, 6 A, the switching frequency fs 300 kHz, and the duty ratio d 0.4 a) Consider the diode in the power pole. Assuming an offset voltage forward bias model of the free-wheeling diode in which VM 1.2 V, calculate the average forward power loss in the diode HINT: Consider Eq. 2A-1 b) In the diode reverse...
In this part of the term paper, design a single-phase switch-mode DC power supply with a forward converter. Provide answers to the questions below Please combine the single-phase full-wave rectifier from part two of your term paper with a forward converter to produce a switch-mode DC power supply, as shown below. The output of the bridge rectifier serves as input to the forward converter L1 Np: N BH621BH62 D, V1 Load C1 100p 45 Vrms D3 BH62 18H62 D4 Control...
e. 95% of 100 QUESTIONS Switch Selection turn on and turn off control Power dextronics Circuit function by using semiconductor devices as watches, thereby controlling or modifying a voltage or current When these devices (eg diodes, thystors, transtors, etc) are Operated as a match they are characterized by having the two Bateson and deally being ther a short circuitor an open Circuit One basic d ance between the power electronic uching dences is how they are tumed on and off,...
2 Calculate the following quantities in the circuit below, assuming the switch is open. Switch a) Equivalent capacitance Ceq b) Charge stored in the capacitor C2 c) Potential difference in the capacitor C2. d) Potential energy stored in the capacitor C2 Now the switch is closed. Find the following quantities. e) Equivalent capacitance Ceq f) Charge stored in the capacitor C g) Potential difference in the capacitor C2. b) Potential energy stored in the capacitor C2
2 Calculate the following quantities in the circuit below, assuming the switch is open Switch 8-12V Now the switch is closed. Find the following quantities e) Equivalent capacitance Ceq. f) Charge stored in the capacitor C2. g) Potential difference in the capacitor C2. h) Potential energy stored in the capacitor C2. Show transcribed image text
2 Calculate the following quantities in the circuit below, assuming the switch is open. Switch С 2-6 F a) Equivalent capacitance Ceq b) Charge stored in the capacitor C2. c) Potential difference in the capacitor C2. d) Potential energy stored in the capacitor C2 Now the switch is closed. Find the following quantities e) Equivalent capacitance Ceq. f) Charge stored in the capacitor C2. g) Potential difference in the capacitor C2 h) Potential energy stored in the capacitor C2
you have two different transistor a PNP and the other NPN ,one power supply ,one led (1.5 V),many resistors . Design a touch switch circuit and label the values of the Vcc and resistors on your design and explain how it work briefly. note :you must use the two transistors you can not use only one
#1 (30) For the transistor circuit below, with V. 012 3 45678 9 2 345 67 8 9 a) Draw four IV-curves for VG 1,2,3,4,5 b) On the left graph, find the Q-point of the transistor by using graphical load line analysis or analytically, but the grade will be 5p less. c) With this Q-point, determine if the transistor operates as amplifier or as a switch (explain). d) On the right graph, build the VTC of the transistor in this...