Describe the 4-20 mA current loop used for transmitting sensor signals, including how the loop encodes the measurement and the role of supply voltage.

Study for the Instrumentation Controls Lab Exam. Use flashcards and multiple-choice questions, each with hints and explanations. Prepare efficiently and perform confidently on your upcoming test.

Multiple Choice

Describe the 4-20 mA current loop used for transmitting sensor signals, including how the loop encodes the measurement and the role of supply voltage.

Explanation:
In a 4-20 mA loop, the signal is carried by current, not by voltage. The transmitter modulates the loop current to represent the measured value, with 4 mA corresponding to minimum (or zero) and 20 mA to full scale. A resistor in the receiver converts that current into a voltage (V = I × R) that the controller or display reads. The supply voltage must be high enough to power the transmitter and provide the headroom for the load’s voltage drop; if the supply is too low, the loop cannot reach the required current levels or accurately reflect the measurement. This description matches how the 4-20 mA loop works, unlike options that describe a fixed current, PWM encoding, or pure voltage signaling over the loop.

In a 4-20 mA loop, the signal is carried by current, not by voltage. The transmitter modulates the loop current to represent the measured value, with 4 mA corresponding to minimum (or zero) and 20 mA to full scale. A resistor in the receiver converts that current into a voltage (V = I × R) that the controller or display reads. The supply voltage must be high enough to power the transmitter and provide the headroom for the load’s voltage drop; if the supply is too low, the loop cannot reach the required current levels or accurately reflect the measurement. This description matches how the 4-20 mA loop works, unlike options that describe a fixed current, PWM encoding, or pure voltage signaling over the loop.

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