For the given logic circuit, which of the following inputs combination will make both LED-1 and LED-2 to glow?
  
1. \(A=0, B=1, C=1\)
2. \(A=1, B=0, C=0\)
3. \(A=1, B=0, C=1\)
4. \(A=1, B=1, C=0\)

Subtopic: Β Applications of PN junction |
Β 76%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

The maximum rated power of the LED is \(2~\text{mW}\) and it is used in the circuit with input voltage of \(5~\text{V}\) as shown in the figure below. The current through resistance \(R_S\) is \(0.5~\text{mA}\). The minimum value of the resistance of \(R_S\), to ensure that the LED is not damaged is: (in \(k\Omega\))
        
1. \(6\)
2. \(2\)
3. \(4\)
4. \(5\)
Subtopic: Β Applications of PN junction |
Β 58%
Level 3: 35%-60%
Please attempt this question first.
Hints
Please attempt this question first.

Two \(4\) bits binary numbers, \(A=1101\) and \(B=1010\) are given in the inputs of a logic circuit shown in figure below. The output (\(Y\)) will be:

1. \(Y=1101\)
2. \(Y=0010\)
3. \(Y=0111\)
4. \(Y=1000\)
Subtopic: Β Logic gates |
Β 78%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

advertisementadvertisement

Consider a circuit consisting of a capacitor \((20 ~\mu \text{F})\), resistor (\(100~\Omega\)) and two identical diodes as shown in figure. The resistance of diode under forward biasing condition is \(10~\Omega\). The time constant of the circuit is \(\alpha\times10^{-3}~\text{s}\). The value of \(\alpha\) is: 
                
1. \(2.2\)
2. \(2.0\)
3. \(2.1\)
4. \(2.4\)
Subtopic: Β PN junction |
Β 68%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

The output \(Y\) for the given input \(A\) and \(B\) to the circuit is:
1. 2.
3. 4.
Subtopic: Β Logic gates |
Β 50%
Level 3: 35%-60%
Please attempt this question first.
Hints
Please attempt this question first.

Refer to the logic circuit given below. For two inputs \((A=1, B=1) \text { and }(A=0, B=1) \text {,}\) output \((Y)\) will be:
     
1. \(1,0\) respectively
2. \(0,1\) respectively
3. \(0,0\) respectively
4. \(1,1\) respectively
Subtopic: Β Logic gates |
Β 77%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

advertisementadvertisement

In a semiconductor \(\mathrm{p\text-n}\) diode, the doping concentrations on \(\mathrm{p\text-}\)side and \(\mathrm{n\text-}\)side are \(10^{15}~\text{atoms/cm}^3\) and \(10^{18}~\text{atoms/cm}^3\), respectively. Which one of the following statements is true?
1. Widths of depletion region on either side of the interface are equal 
2. The depletion region widths is more on \(\mathrm{p\text-}\)side compared to that in \(\mathrm{n\text-}\)side
3. The depletion region widths is more on \(\mathrm{n\text-}\)side compared to that in \(\mathrm{p\text-}\)side
4. No depletion region forms because of unequal doping concentrations on \(\mathrm{p}\) and \(\mathrm{n\text-}\)sides
Subtopic: Β PN junction |
Β 65%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

For the given circuit (shown in part \((A)\)) the time dependent input voltage \(v_{i n}(t)\) and corresponding output \(v_{o}(t)\) are shown in part (\(B\)) and part (\(C\)), respectively. Identify the components that are used in the circuit between points \(X\) and \(Y\).
   
1. 2.
3. 4.
Subtopic: Β Applications of PN junction |
Β 70%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

If \(X\) and \(Y\) are the inputs, the given circuit works as: 
 
1. \(\mathrm{OR}\) gate
2. \(\mathrm{AND}\) gate
3. \(\mathrm{NAND}\) gate
4. \(\mathrm{NOR}\) gate
Subtopic: Β Logic gates |
Level 3: 35%-60%
Please attempt this question first.
Hints
Please attempt this question first.

advertisementadvertisement

A diode has Zener voltage of \(10~\text{V}\) and maximum power dissipation of \(0.5~\text{W},\) then the minimum resistance to be used in series with this diode for safety when it is connected to a \(25~\text{V}\) power supply is:
1. \(100~\Omega\)
2. \(250~\Omega\)
3. \(300~\Omega\)
4. \(350~\Omega\)
Subtopic: Β Applications of PN junction |
Β 62%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.