3.1 Name ONE type of field-effect transistor (FET) - NSC Electrical Technology Electronics - Question 3 - 2021 - Paper 1
Question 3
3.1 Name ONE type of field-effect transistor (FET).
3.2 Refer to FIGURE 3.2 below and answer the questions that follow.
3.2.1 Identify the type of MOSFET used in t... show full transcript
Worked Solution & Example Answer:3.1 Name ONE type of field-effect transistor (FET) - NSC Electrical Technology Electronics - Question 3 - 2021 - Paper 1
Step 1
Identify the type of MOSFET used in this circuit.
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Answer
The type of MOSFET used in this circuit is likely an n-channel MOSFET, which is commonly used for amplifying and switching applications.
Step 2
Name ONE application of a MOSFET other than an amplifier.
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One application of a MOSFET other than an amplifier is in digital switching circuits, where it acts as a switch to control the flow of current.
Step 3
Label regions Y and Z.
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Region Y is the negative resistance region, while region Z is the forward-active region in the UJT characteristic curve.
Step 4
Label point D.
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Point D corresponds to the point where the device transitions from the cut-off region to the saturation region, indicating the start of conduction.
Step 5
With reference to reverse leakage current, explain what happens at cut-off point B.
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At cut-off point B, the reverse leakage current is minimal, which means that the unijunction transistor is in a non-conductive state, effectively blocking any significant current flow.
Step 6
Name FOUR characteristics of an ideal operational amplifier.
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Four characteristics of an ideal operational amplifier are:
Infinite open-loop gain.
Infinite input impedance.
Zero output impedance.
Infinite bandwidth.
Step 7
Calculate the voltage gain in FIGURE 3.5.
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The voltage gain (A_v) of a non-inverting amplifier is calculated using the formula:
Av=1+RNRF
Substituting the values, we get:
Av=1+10kΩ50kΩ=6.
Step 8
Calculate the output voltage.
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The output voltage (Vout) can be calculated using the formula:
Vout=Av×VIN
Substituting the values, we find:
Vout=6×1.5V=9V.
Step 9
Describe the effects of decreasing the feedback resistor.
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Decreasing the feedback resistor RF will increase the voltage gain of the amplifier, possibly pushing it closer to saturation. This may affect stability and linearity in the output signal.
Step 10
Identify pin 2.
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Pin 2 on the 555 timer IC is the Trigger pin.
Step 11
Explain the function of pin 6 (threshold) on a 555 IC.
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The function of pin 6 (threshold) on a 555 IC is to monitor the voltage level of the timing capacitor. When this voltage exceeds 2/3 of the supply voltage, it resets the flip-flop and consequently the output state.
Step 12
State the voltage parameters between which a 555 timer can operate.
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The 555 timer IC can operate from power supply voltages of between +5 V and +18 V.
Step 13
Explain the astable mode of operation of a 555 timer.
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In astable mode, the 555 timer continuously toggles between its high and low states, generating a square wave output. This mode is often used for clock pulses and timers.