Related Concepts: FET biasing - 3 types | FET biasing concepts | FET bias part 2 note

Based on Chapter 7 (FET Biasing) and the provided Exam Question Bank, here are the comprehensive, exam-oriented notes for Common-Gate, Depletion-type MOSFET, and Enhancement-type MOSFET biasing.


FET Biasing (Part 2)

1. Common-Gate Configuration

Definition: A configuration where the Gate is grounded, the input signal is applied to the Source, and the output is taken from the Drain. It is the FET equivalent of the Common-Base BJT configuration.

Circuit Description:

  • Gate (G): Grounded directly.
  • Source (S): Connected to a resistor and typically a supply voltage (provides bias current).
  • Drain (D): Connected to and the positive supply .

Key Equations (DC Analysis)

  1. Input Loop (): Applying KVL to the source loop: Since : [Note: This is a linear equation (). Plot this line on the transfer curve to find the Q-point].
  2. Output Loop ():
  3. Terminal Voltages:

Step-by-Step Numerical Method

  1. Plot the Transfer Curve: Use Shockley’s equation ().
  2. Plot the Bias Line: Use the equation .
    • Intercept 1: Set .
    • Intercept 2: Set .
  3. Find Q-Point: The intersection gives and .
  4. Calculate Output: Substitute into the output loop equations.

Exam Trend Analysis (PYQ)

  • Relevance: High.
  • Common Question Type: Numerical problems asking for [Sources 154-160].
  • PYQ Reference:
    • 2020 & 2021: Determine operating points for Common Gate configuration (Calculation).
    • Note: Be careful with the polarity of . The equation assumes is entered as a magnitude.

2. Depletion-Type MOSFET Biasing

Definition: A MOSFET constructed with a physical channel that can operate in both Depletion Mode (negative ) and Enhancement Mode (positive ).

Working Principle:

  • Negative : Repels electrons, depleting the channel (reduces ).
  • Positive : Attracts electrons, enhancing the channel (increases above ).
  • Gap: The layer ensures A regardless of polarity.

Key Equations

The DC analysis is identical to JFETs because both use Shockley’s Equation.

Step-by-Step Numerical Method

  1. Select Method: You can use Fixed-Bias, Self-Bias, or Voltage-Divider Bias steps exactly as used for JFETs.
  2. Plotting Difference: When drawing the transfer curve, extend the curve into the positive region (for n-channel).
    • Standard Points: , , , (positive side).
    • Example: If , calculate for to plot the enhancement region.

Exam Trend Analysis (PYQ)

  • Relevance: Medium (Theoretical focus).
  • Common Question Type: Comparison and Theory.
  • PYQ Reference:
    • 2021, 2019: β€œDistinguish between depletion type and enhancement type MOSFET.”
    • 2016: β€œExplain construction and operation of depletion type MOSFET.”

3. Enhancement-Type MOSFET Biasing

Definition: A MOSFET with no physical channel. Current only flows when exceeds a threshold voltage ( or ).

Important Condition: Shockley’s Equation is NOT valid. Current Equation: Where constant is determined by a datasheet coordinate ():

A. Feedback Biasing Arrangement

Circuit Description: A resistor is connected directly from the Drain to the Gate. Working Principle (Stabilization):

  • Since , there is no voltage drop across .
  • Therefore, and .
  • Feedback: If increases decreases (due to ) decreases decreases. This stabilizes the Q-point.

Key Equations:

  1. Bias Line (KVL): (Because ).
  2. Device Equation:

Step-by-Step Numerical Method:

  1. Calculate : Use given and .
  2. Plot Transfer Curve: Plot . (Start at , go up).
  3. Plot Bias Line: Plot .
    • Intercepts: and .
  4. Find Q-Point: Intersection of the curve and line.

B. Voltage-Divider Biasing

Circuit Description: Standard divider at the gate. Key Equations:

  1. Gate Voltage: .
  2. Input Loop: .
  3. Output Loop: .

Exam Trend Analysis (PYQ)

  • Relevance: Medium/High.
  • Common Question Type: Construction, Operation, and Calculation.
  • PYQ Reference:
    • 2022: β€œConstruct an n-channel enhancement-type MOSFET and explain its basic operation.”
    • 2016: β€œDifferences between enhancement and depletion MOSFET.”

Summary of Exam-Critical Equations

ConfigurationDevice Equation (Curve)Network Equation (Line)
Common-Gate
Depletion MOSSame as JFET (Fixed/Self/Divider)
Enhancement Feedback
Enhancement Divider