The circuit shown below equivalents to : B A B G1 G2 O a. NOR gate O b. NAND gate c. XOR gate O d. OR gate G3 - X
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Q: 18 of 20 K What are the expected voltages at points C and D of this circuit? O 12 V and 12 V O 0.01…
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Q: Consider the system below where G(s) 1 S-1 K = 12.376 Kh = 0.337 It k G(S) Yn Find the rise time, 5%…
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- X & DA G F2 a) For a DC Power Supply, having a voltage of 50 V, design circuits which can give the following output voltages: i) 10 Volts ii) 25 Volts iii) 45 Volts Draw the labelled circuit diagram for each output voltage value and show calculations for all. Use R1 = 4.7 kQ for one of the resistance Hint: Use voltage divider circuits, you can use any value of resistances you like. Local backup on b) Calculate the Total equivalent resistance (RT) for the circuit shown in figure 4 and draw the equivalent circuit replacing the whole network with just one Resistance (RT): 80 F3 R1 ww 1 4.1kΩ R3 2 www R2 dan 2.00ΜΩ 10092 R7 1 MQ Q F4 V1 5V 4 First Line Indent: 0 U F5 Figure 4 F6 3 R4 33092 R6 www 59092 5 F7 Exit R5 470 kQ DII F8 H 00 F9 HNow we will use this knowledge of the code structure to make an LED Blink! Refer to Task 2 (page 7) steps, schematic and code. Use a 470 22 resistor. Keep in mind that the LED's Cathode is connected to the short leg and the flat side. In this circuit the Cathode is connected to the ground. It could also be connected to +5V although this will result in inverted logic. Anode Cathode Anode (long lead) Cathode (short lead.) flat side or spot Figure 1: LED polarity, credit: (https://rctrains.co.uk/LEDs.htm) Calculate the smallest resistor value assuming a Red LED is used with a forward voltage of 1.8V. These are very conservative numbers so verify that the 470 2 resistor is larger than the calculated minimum. use Arduino write codeQuestion Vvv Full explain this question all part work u a and b. Both question solve u as pe guidelines.
- a) Draw and explain the equivalent circuit and V-I characteristics of the UJT in detail. b) A UJT circuit is shown in figure 2. The parameters of the UJT are n = 0.65 and RBB = 7 km. i. Find RBI and RB2. ii. Determine the value of VB1B2 and Vp. R₂ R₂ 400 £2 B₂ 20 100 £2 Figure 2Show formula and stepsIn step 2 you measured the voltage across each of the LEDs. This is their “forward voltage” that is referred to in the LED component page, which is the voltage required to light the LEDs. Notice that the combined forward voltage of D1 and D2 is greater than 3.3V, the LEDs will not light up at all. You should also have noticed that the forward voltage for one of the LEDS is lower than the forward voltage for the other LED. Some LEDS require less energy to light than others. Since D1 and D2 are in series, the same current will flow through each, but the different voltages across each LED reflect the different energy requirements. Finish each statement below, bears on this information and in the measurements you took in step 2 The measured forward voltage across D1 in this step is ________ The measured forward voltage across D2 in this step is ________
- When we want to create an 8x1 multiplexer using the circuit elements we have, which circuit will we need? a.) 7 pieces of 2x1 MUX b.) 2 pieces of 4x1MUX c.) 3 pieces 4x1 MUX d.) none e.) 4 pieces 2x1 MUXIn a house, a circuit often includes multiple electrical outlets which are parallel-connected to a single voltage source. Each of these circuits also contains a 15-A circuit breaker. Design a parallel-connected circuit which shows three electrical outlets con-nected to a voltage source with a circuit breaker. What is the advantage of having out-lets parallel-connected, and why is a circuit breaker connected in series with the voltage source? Why is the circuit breaker considered a necessary safety item in the circuit?C. Draw the circuit diagram of classes A, B, C, D with their efficiencies and applications?