1
GATE EE 2004
MCQ (Single Correct Answer)
+5
-1.5
The digital circuit shown in figure generates a modified clock pulse at the output. Choose the correct output waveform form the options given below. GATE EE 2004 Digital Electronics - Sequential Circuits Question 3 English
A
GATE EE 2004 Digital Electronics - Sequential Circuits Question 3 English Option 1
B
GATE EE 2004 Digital Electronics - Sequential Circuits Question 3 English Option 2
C
GATE EE 2004 Digital Electronics - Sequential Circuits Question 3 English Option 3
D
GATE EE 2004 Digital Electronics - Sequential Circuits Question 3 English Option 4
2
GATE EE 2002
Subjective
+5
-0
The ripple counter shown in Fig. is made up negative edge triggered $$J$$-$$E$$ flips flops. The signal levels at $$J$$ and $$K$$ inputs of all the flip-flops are maintained at logic $$1$$. Assume that all outputs are cleared just prior to applying the clock signal. GATE EE 2002 Digital Electronics - Sequential Circuits Question 6 English

$$(a)$$ Create a table of $${Q_0},{Q_1},{Q_2}$$ and $$A$$ in the format given below for $$10$$ successive
$$\,\,\,\,\,\,\,\,$$ input cycles of the clock $$CLK1.$$
$$(b)$$ Determine the module number of the counter.
$$(c)$$ Modify the circuit of Fig. to create a modulo$$-6$$ counter using the same
$$\,\,\,\,\,\,\,$$ components used in the figure.

3
GATE EE 2001
Subjective
+5
-0
For the ring counter shown in Fig. find the steady state sequence if the initial state of the counters is $$1110\,\,(i.e.,\,\,{Q_3},{Q_2},{Q_1},{Q_0} = 1110).$$ Determine the MOD number of the counter. GATE EE 2001 Digital Electronics - Sequential Circuits Question 4 English
4
GATE EE 1998
Subjective
+5
-0
$$(a)$$ Construct the truth table for the circuit given in Figure $${Q_1},{Q_2}$$ and $${Q_3}$$ are outputs and the clock pulses are the inputs. Unused $$JK$$ inputs are assumed to be at logic $$1.$$ All flip flops are reset at power $$ON$$. GATE EE 1998 Digital Electronics - Sequential Circuits Question 5 English
$$(b)$$ Sketch the output waveforms at $${Q_1},{Q_2}$$ and $${Q_3}$$.
$$(c)$$ What function does this circuit perform.

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