Related Concepts: lab 7 darlington

Based on Laboratory Exercise 15: Darlington Pair from your manual (note: this is a second experiment numbered 15 in the manual, appearing after Exercise 23), here is the revision note.


1) Experiment Snapshot

Experiment Title: Darlington Pair (High Current Gain Amplifier)

Objective(s):

  • Verify that the current gain of a Darlington pair is much greater than that of a single transistor emitter follower.
  • Calculate and compare the input impedance of a Darlington emitter follower vs. a single transistor emitter follower.

Core Principle / Theory:

  • Darlington Configuration: Two transistors connected in cascade (collectors tied together, emitter of Q1 feeds base of Q2).
  • Super Beta: The total current gain () is the product of the individual gains: .
  • Input Impedance: Extremely high, calculated as .
  • Output Impedance: Very low.

Key Formula(s):

  • Emitter Current:
  • Current Gain ():
  • Input Impedance: (where is the emitter load resistor)

2) Apparatus Setup

Connection / Block Diagram:

  • Part A (Single Transistor): Common Collector setup. Potentiometer controls Base Current (). Output taken from Emitter across Load ().
  • Part B (Darlington): Two transistors (Q1, Q2) connected as a Darlington pair. Emitter of Q1 Base of Q2. Collectors tied to . Output taken from Q2 Emitter across Load ().
  • Supply: DC.

Precautions:

  • Meter Placement: Ensure the microammeter is in series with the base to measure correctly.
  • Range: Use a low voltage range (e.g., 2.5V or 10V) for measuring as it might be small.
  • Wiring: Verify the Darlington connections; the Base of Q2 must only connect to the Emitter of Q1 (no external bias resistors at that junction).

3) Procedure

Part A: Single Transistor Gain (Reference)

  1. Connect the single emitter follower (Fig 15-2). .
  2. Adjust Potentiometer to set Base Current () to 4 A.
  3. Measure Voltage across Emitter Resistor (). Record it.
  4. Adjust to increase Base Current () to 8 A.
  5. Measure and record new .
  6. Calculate for both steps and determine Current Gain ().

Part B: Darlington Pair Gain 7. Connect the Darlington circuit (Fig 15-3). 8. Adjust to set Base Current () to 2 A. 9. Measure Voltage across Emitter Resistor (). Record it. 10. Adjust to increase to 4 A. 11. Measure and record new . 12. Calculate and Darlington Current Gain.

Part C: Input Impedance 13. Calculate theoretical Input Impedance for both circuits using .


4) Data Taken / Measurements

Table Template:

ParameterSingle Transistor (Part A)Darlington Pair (Part B)Unit
Step 1
Input 42A
Load Resistor
Output ________________Vdc
Calc A
Step 2
Input 84A
Output ________________Vdc
Calc A
Results
A
________________A
Current Gain________________-

5) Calculations

  1. Emitter Current:
  2. Current Gain (Experimental): (Manual Example: Single ; Darlington )
  3. Input Impedance: (Manual Example: Single ; Darlington )

6) Results & Outcome

  • Single Transistor: Showed moderate current gain ().
  • Darlington Pair: Showed massive current gain (). The gain is roughly the square of the single stage gain (if ).
  • Input Impedance: The Darlington pair presented a much higher input impedance () compared to the single stage ().

7) Why This Outcome Happens (Reasoning)

  • Multiplication of Beta: In a Darlington pair, the emitter current of the first transistor becomes the base current of the second (). Since , the total gain is .
  • High Input Impedance: Resistance at the emitter is β€œreflected” back to the base multiplied by the current gain. Since the gain is huge, the reflected resistance () is huge.
  • Trade-off: While gain is high, the voltage drop from base to output is higher ( to ) compared to a single transistor ().

8) Viva / Lab Test Quick Prep

Q1: What is the main advantage of a Darlington pair? A: Extremely high current gain and very high input impedance.

Q2: What is the approximate total beta () if two identical transistors with are used? A: .

Q3: Why is the input impedance of a Darlington pair so high? A: Because the load resistance is multiplied by the total beta () when viewed from the base.

Q4: What is a disadvantage regarding the Base-Emitter voltage in a Darlington pair? A: It has double the voltage drop () because there are two junctions in series.

Q5: How are the collectors connected in a standard Darlington pair? A: The collectors are tied together and connected to the supply.

Common Mistakes:

  • Calculation Error: Forgetting to convert units (e.g., subtracting A from mA without conversion) when calculating gain.
  • Resistor ID: Confusing the load resistor () used in Part A with () used in Part B.