Topic 1: FET Basics & Characteristics

Sub-subtopic: Device Comparisons & Differences

  • Theory: Write down the specific differences between BJT and FET. (2024, 2023, 2017, 2016) ✅ 2026-06-23
  • Theory: Distinguish between p-channel and n-channel JFET. (2019, 2016) ✅ 2026-06-23
  • Numerical/Sketch: Given and (e.g., ), sketch the transfer characteristics of a p-channel JFET. (2019, 2016)

Sub-subtopic: Input Impedance & Physical Behavior

  • Theory: Explain the reasons behind the higher input impedance of a FET. (2018) ✅ 2026-06-23
  • Theory: Why is the input impedance of a MOSFET so high? Explain in brief. (2021, 2019) ✅ 2026-06-23

Sub-subtopic: MOSFET Theory & Construction

  • Theory/Differences: Distinguish between depletion-type and enhancement-type MOSFETs. (2021, 2019, 2016) ✅ 2026-06-23
  • Theory: Explain the construction and operation of a depletion-type MOSFET using necessary diagrams. (2016) ✅ 2026-06-23
  • Theory: Construct an n-channel enhancement-type MOSFET and explain its basic operation. (2022) ✅ 2026-06-23

Topic 2: FET DC Biasing Configurations

Sub-subtopic: Self-Bias Configuration

  • Derivation: Prove terminal voltage equations for a JFET self-bias configuration with necessary diagrams, such as proving or . (2024, 2023, 2015) ✅ 2026-06-23
  • Numerical: Given a self-bias circuit and its component values, use the appropriate transfer curve to calculate , , , , , and . (2018, 2017, 2016, 2015)

Sub-subtopic: Voltage-Divider Bias Configuration

  • Theory: Explain the voltage divider biasing of a FET amplifier and consequently discuss the effect of the source resistor () on the resulting Q-point. (2021, 2018, 2017, 2015) ✅ 2026-06-23
  • Numerical: Determine parameters like , , , , , , and for voltage-divider JFET networks. (2023, 2021)

Sub-subtopic: Fixed-Bias Configuration

  • Theory: Write down the differences between self-bias and fixed-bias configurations of FETs. (2016) ✅ 2026-06-23

Sub-subtopic: Other/General Biasing Problems

  • Numerical: Determine , , , and for common-gate configurations. (2020)
  • Numerical: Calculate and for an n-channel JFET network given its operating points ( and ). (2022, 2019)

Topic 3: FET AC Small-Signal Analysis

Sub-subtopic: Transconductance () & Output Resistance ()

  • Derivation/Theory: Derive the mathematical definition of transconductance () and explain the effect of drain current on the transconductance factor. (2023, 2020, 2018, 2017, 2016, 2015) ✅ 2026-06-23
  • Derivation: Show mathematically that . (2015) ✅ 2026-06-23

Sub-subtopic: Common-Source Amplifiers (Self-Bias & Fixed-Bias)

  • Derivation: Prove that for a self-bias FET configuration, the voltage gain increases by a factor of when a bypass resistance is used. (2023, 2022, 2018, 2016) ✅ 2026-06-23
  • Derivation: Derive the expression of voltage gain for a self-bias configuration with an unbypassed (e.g., proving ). (2024, 2019) ✅ 2026-06-23
  • Theory/Proof: For a self-bias JFET amplifier, show that the voltage gain with unbypassed is less than the voltage gain with bypassed . (2015) ✅ 2026-06-23
  • Numerical: Calculate AC parameters (, , , , ) with and without the internal output resistance () for Fixed-bias and Self-bias networks, and comment on the effect of on the voltage gain. (2023, 2022, 2021)
  • Numerical/Design: Design a fixed-biased network to achieve a specific AC voltage gain of 10. (2022, 2019, 2018, 2015)

Sub-subtopic: Common-Gate Configuration

  • Derivation: Prove that the voltage gain for a common-gate JFET configuration. (2023, 2021, 2019, 2017)

Sub-subtopic: Source-Follower (Common-Drain) Configuration

  • Derivation: Draw a JFET source-follower configuration and its AC equivalent circuit, and prove that . (2019)
  • Numerical: Given the DC operating points ( and ) of a source-follower network, determine , , Input Impedance (), Output Impedance () with/without , and Voltage Gain () with/without . (2024, 2020, 2018, 2017, 2016)