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A transistor typically has three regions: the emitter, the base, and the collector. In a bipolar junction transistor (BJT), these regions are crucial for its operation, with the emitter injecting charge carriers, the base controlling their flow, and the collector collecting them. In a field-effect transistor (FET), the three regions consist of the source, gate, and drain. Each region plays a vital role in the transistor's functionality and performance.

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Is active is a cutoff region of transistor?

The active region of a transistor is when the transistor has sufficient base current to turn the transistor on and for a larger current to flow from emitter to collector. This is the region where the transistor is on and fully operating.


What is cutoff region in transistor?

The cutoff region is when the transistor doesn't have sufficient base current to drive a larger current from emitter to collector. Therefore, the transistor does not turn on and stays shut off.


A transistor is in active region when?

a transistor in active region when emitter junction is forward biased nd collector junction is reverse biased


What is another name for depletion mode transistor?

depletion layer depletion zone juntion region space charge region bipolar transistor field effect transistor variable capacitance diode


Why a transistor can be operated in active region?

a transistor can only work in active region cox in active region collector base junction is in reverse bias and emitter base junction is in forward bias.


What is saturation and active region in a transistor?

The output current of a transistor is controlled by the current in the 'base' input: Increasing the control current will increase the output current in a more or less linear fashion. In the saturation region, this is no longer true: The transistor is nearing the limits of how much current it can conduct, so increasing the control current further has little or no effect. When using a transistor as an amplifier, you want to stay away from the saturation region as it would distort the signal you are amplifying. When using a transistor as an on/off switch, as in digital circuits, being in the saturated region is 'on' and a normal mode of operation.


What is breakdown region?

The breakdown region of a transistor is the region where the supply voltage, Vcc, becomes so large that the collector-emitter junction of the transistor breaks down and conducts, even though there is no base current.


What is the biasing technique in transistor for it to be in active region?

For a transistor to be in active region : Base Emitter junction should be forward biased and Emitter collector junction should be reverse biased.


How the size of transistor reduced to place in a single pocessor?

transistor size depends on its channel length, that is the length of the region in which a transistor act as an electron tube. the shorter the region, the lowest the resistance, the fastest the transistor, etc... so, it is always good to scale transistor size. problem is that you have to apply a 'good' electrical field in the channel, in order to drive a good 'ON' or 'OFF' state for your transistor. that's why it's not easy to scale their size.


Does a transistor in cut-off region acts as an open switch?

No


Why transistors are designed?

For switching applications transistor is biased to operate in the saturation or cutoff region. Transistor in cutoff region will act as an open switching whereas in saturation will act as a closed switch.


Why transistor is called transfer of resistor?

Transistor=Transfer+Resistor. When Transistor operates in active region its input resistance is high and output resistance is low. So,We can consider transistor as a device which transfers its resistance from high to low. And by this property transistor amplifies input signal.