miller effect वाक्य
उदाहरण वाक्य
मोबाइल
- It is commonly used for small-signal devices in radio frequency applications where biasing the drain-side gate at constant potential reduces the gain loss caused by Miller effect, replacing two separate transistors in cascode configuration.
- That is why it is used to form emitter-coupled amplifiers ( avoiding Miller effect ), phase splitter circuits ( obtaining two inverse voltages ), ECL gates and switches ( avoiding transistor saturation ), etc.
- In that case the input impedance of the mirror may be affected by the Miller Effect because of \ scriptstyle C _ { \ mu 3 }, although the low input impedance of the mirror mitigates this effect.
- The tiny junction and stray capacitances between the base and collector terminals of a Darlington transistor, for example, may be drastically increased by the Miller effects due to its high gain, lowering the high frequency response of the device.
- Ordinarily these effects show up only at frequencies much higher than the roll-off due to the Miller capacitance, so the analysis presented here is adequate to determine the useful frequency range of an amplifier dominated by the Miller effect.
- Consequently, one way to minimize the Miller effect upon bandwidth is to use a low-impedance driver, for example, by interposing a voltage follower stage between the driver and the amplifier, which reduces the apparent driver impedance seen by the amplifier.
- "' John Milton Miller "'( 22 June 1882 & ndash; 17 May 1962 ) was a noted American electrical engineer, best known for discovering the Miller effect and inventing fundamental circuits for quartz crystal oscillators ( Miller oscillators ).
- The switch-off time of your circuit drawn is prolonged by the Miller effect, see Common source # Bandwidth and the supply voltage must not exceed the transistor's V GSmax . talk ) 13 : 56, 27 June 2016 ( UTC)
- The Miller effect negatively affects the performance of the common source amplifier in the same way ( and has similar solutions ) . When an AC signal is applied to the transistor amplifier it causes the base voltage VB to fluctuate in value at the AC signal.
- These arrangements explain important circuit phenomena about modifying impedance ( Miller effect, virtual ground, bootstrapping, negative impedance, etc . ) and help in designing and understanding various commonplace circuits ( feedback amplifiers, resistive and time-dependent converters, negative impedance converters, etc . ).
- The present example with " A v " frequency independent shows the implications of the Miller effect, and therefore of " C C ", upon the frequency response of this circuit, and is typical of the impact of the Miller effect ( see, for example, common source ).
- The present example with " A v " frequency independent shows the implications of the Miller effect, and therefore of " C C ", upon the frequency response of this circuit, and is typical of the impact of the Miller effect ( see, for example, common source ).
- That is, assuming the output " R-C " product, " C L " ( " R o / / R L " ), corresponds to a frequency well above the low frequency pole, the accurate form of the Miller capacitance must be used, rather than the Miller effect, the Miller capacitance is given by
- The rest of them have additional impedance connected in series to the input : voltage-to-current converter ( transconductance amplifier ), inverting amplifier, summing amplifier, inductive integrator, capacitive differentiator, capacitive-resistive differentiator, inductive-resistive differentiator, etc . The inverting integrators from this list are examples of useful and desired applications of the Miller effect in its extreme manifestation.
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