Analog circuits miscellaneous


Analog circuits miscellaneous

  1. In the differentiating circuit given in the figure, function of R1 is to










  1. View Hint View Answer Discuss in Forum

    NA

    Correct Option: B

    NA


  1. Expression for the output voltage Vo in terms of the input voltage V1 and V2 in the circuit shown in the figure, assuming operational amplifier to be ideal is Vo = A1 V1 + A2 V2 Values of A1 and A2 would be respectively










  1. View Hint View Answer Discuss in Forum

    VB = V1 -
    V1
    × 11 = 0.9 V1
    110

    VA = VB = 0.9 V1
    Again
    V0 - VA
    =
    VA - V2
    100 K10 K

    V0 - 0.9 V1
    =
    0.9 V1 - V2
    10010

    ⇒ V0 = 9.9 V1 – 10 V2
    ∴ A1 = 9.9 and A2 = – 10

    Correct Option: B

    VB = V1 -
    V1
    × 11 = 0.9 V1
    110

    VA = VB = 0.9 V1
    Again
    V0 - VA
    =
    VA - V2
    100 K10 K

    V0 - 0.9 V1
    =
    0.9 V1 - V2
    10010

    ⇒ V0 = 9.9 V1 – 10 V2
    ∴ A1 = 9.9 and A2 = – 10



  1. An op-amp is open-loop gain of 105 and open-loop upper cut-off frequency of 10 Hz. If this OP-AMP is connected as an amplifier with a closed-loop gain at 100, then new uper cut-off frequency will be









  1. View Hint View Answer Discuss in Forum

    Upper cut-off frequency at closed loop gain
    = fo × (1 + βA) = 10 × 100 = 10 kHz

    Correct Option: C

    Upper cut-off frequency at closed loop gain
    = fo × (1 + βA) = 10 × 100 = 10 kHz


  1. The period of the output waveform for the circuit of figure shown, when triggered by a negative pulse is










  1. View Hint View Answer Discuss in Forum

    T = (1.1) RAC
    = 1.1(7.5 × 103) (0.1 × 10– 6) = 0.825 ms.

    Correct Option: B

    T = (1.1) RAC
    = 1.1(7.5 × 103) (0.1 × 10– 6) = 0.825 ms.



  1. For the oscillator circuit shown in the given figure, expression for the time period of oscillation can be given by (where t = RC)










  1. View Hint View Answer Discuss in Forum

    T = 2RC ln
    1 + β
    1 - β

    Here , β =
    1
    =
    R
    2R + R

    ∴ T = 2 RC ln 3 = 2 τ ln 3

    Correct Option: B

    T = 2RC ln
    1 + β
    1 - β

    Here , β =
    1
    =
    R
    2R + R

    ∴ T = 2 RC ln 3 = 2 τ ln 3