GCSE Revision Aid: This resource is designed to support your revision and may contain errors. If you find a discrepancy with your class teaching, your teacher is correct β please let us know at gcserevise@scott.scottrix.co.uk.
E13: Comparator Circuits
WJEC Eduqas C690QS
Comparators, threshold detection, Schmitt trigger and hysteresis
Comparator Circuits
Comparators, threshold detection, Schmitt trigger and hysteresis
Key Fact: A comparator compares two input voltages and switches its output to indicate which is higher; no negative feedback is used.
Key Fact: When V+ > Vβ, the output goes to positive saturation; when V+ < Vβ, the output goes to negative saturation.
Key Fact: A simple comparator has a single threshold voltage; the output switches when the input crosses this level.
Key Fact: Noise on the input signal can cause a simple comparator to chatter (switch rapidly) near the threshold.
Key Fact: A Schmitt trigger uses positive feedback to create two different threshold voltages: upper (V_UT) and lower (V_LT).
Key Fact: Hysteresis is the difference between the upper and lower thresholds; it prevents output chatter caused by input noise.
Key Fact: The output only switches high when the input rises above V_UT, and only switches low when the input falls below V_LT.
Key Fact: For an inverting Schmitt trigger with reference voltage Vref and feedback resistors R1, R2: V_UT and V_LT depend on the resistor divider and supply rails.
Key Fact: The hysteresis voltage (V_H) = V_UT β V_LT; a wider hysteresis gives greater noise immunity but less sensitivity.
Key Fact: Positive feedback in a Schmitt trigger accelerates the switching transition, producing a clean, fast output edge.
Key Fact: Comparators are used in level detectors, zero-crossing detectors, window comparators and oscillator circuits.
Key Fact: A Schmitt trigger can also be built with a transistor circuit or as a dedicated IC (e.g. 74HC14).
π Key Vocabulary and Concepts
For Comparator Circuits, you must know:
Comparator: A circuit that compares two voltages and switches its output to indicate which input is larger.
Schmitt trigger: A comparator with positive feedback that introduces hysteresis, having two threshold voltages.
Hysteresis: The difference between the upper and lower switching thresholds; prevents noise-induced output chatter.
Upper threshold (V_UT): The input voltage at which the output switches from low to high in a Schmitt trigger.
Lower threshold (V_LT): The input voltage at which the output switches from high to low in a Schmitt trigger.
Positive feedback: Feedback that reinforces the output state, accelerating switching and creating hysteresis.
β Practice Questions
Q: Explain why a simple comparator can produce a chattering output when the input signal is noisy.
Q: A Schmitt trigger has V_UT = 4 V and V_LT = 2 V. What is the hysteresis voltage?
Q: State the role of positive feedback in a Schmitt trigger.
Q: A comparator has V+ = 3.2 V and Vβ = 3.0 V. What is the output state?
Q: Give two applications of comparator circuits.
β Answers
Noise causes the input to cross the single threshold repeatedly, making the output switch rapidly between states.
V_H = V_UT β V_LT = 4 β 2 = 2 V.
Positive feedback creates two distinct threshold voltages (hysteresis), accelerates switching transitions and eliminates output chatter.
Since V+ > Vβ, the output is at positive saturation (high).
Level detection (e.g. over-temperature alarm) and zero-crossing detection (e.g. in signal processing or timing circuits).
π― Exam Tips
When drawing a Schmitt trigger, clearly show the positive feedback resistor from output to non-inverting input.
Label both threshold voltages (V_UT and V_LT) on the transfer characteristic and state the hysteresis value.
Explain hysteresis using the analogy: the output 'remembers' its previous state until the opposite threshold is crossed.
For calculations, always state the hysteresis formula: V_H = V_UT β V_LT.
Distinguish between a simple comparator (one threshold) and a Schmitt trigger (two thresholds with hysteresis).
π Exam Technique
GCSE Electronics Exam Tips β Comparator Circuits:
1. For Comparator Circuits questions, use correct electronic symbols and terminology
2. Always show your working in calculations, including units at each step
3. When analysing circuits, state which law or rule you are applying first
4. For evaluation questions on Comparator Circuits, compare component choices and consider cost, reliability and tolerance
5. Draw circuit diagrams neatly with conventional symbols
β οΈ Common Errors
β Confusing positive feedback in a Schmitt trigger with negative feedback.β A Schmitt trigger uses positive feedback to create hysteresis; negative feedback would eliminate the switching behaviour.
β Assuming a comparator has a single switching threshold like a Schmitt trigger.β A simple comparator has one threshold; a Schmitt trigger has two thresholds (V_UT and V_LT) with hysteresis.
β Forgetting that comparator outputs saturate at the supply rail voltages.β The output saturates near +Vsat or βVsat (the supply rails), not at the input voltage level.
β Thinking hysteresis reduces sensitivity is always a disadvantage.β Greater hysteresis improves noise immunity; the trade-off is reduced sensitivity to small signal changes near the threshold.
βοΈ Model Answer
Full-Mark Response
Explain the operation of a Schmitt trigger comparator circuit and describe how hysteresis eliminates output chatter.
A Schmitt trigger is a comparator circuit that uses positive feedback to create two distinct threshold voltages: an upper threshold (V_UT) and a lower threshold (V_LT). When the input rises above V_UT, the output switches to its high state and remains high until the input falls below V_LT. Similarly, when the input falls below V_LT, the output switches low and remains low until the input rises above V_UT again. This dual-threshold behaviour creates hysteresis (V_H = V_UT β V_LT), which means the circuit has memory of its previous output state. Hysteresis eliminates output chatter because small noise fluctuations around a single threshold cannot cause repeated switching β the input must move fully through the hysteresis window to change the output state. Positive feedback also accelerates the switching transition, producing clean, fast output edges. The hysteresis width can be adjusted by choosing appropriate feedback resistor values: a wider hysteresis gives greater noise immunity at the cost of reduced sensitivity.
π AO Deep Dive
Assessment Objective Analysis
AO1 (Knowledge & Understanding): Demonstrate knowledge and understanding of comparator circuits, including electronic components, circuit theory and systems concepts relevant to WJEC Eduqas C690QS.
AO2 (Application): Apply knowledge and understanding of comparator circuits to analyse, design and construct electronic circuits and systems.
AO3 (Evaluation): Evaluate electronic circuits and systems, making reasoned judgements about design choices, performance and practical considerations, constructing supported arguments.