10) The curve shown is the recorded voltage output signal of a diaphragm pressure transducer subjected to a step change in input. From a static calibration, the pressure voltage relationship was found to be linear over the range I atmosphere (atm) to 4 atm with a static sensitivity of 1 V/atm. For the step test, the initial pressure was atmospheric pressure, Pa , and the final pressure was 2.38 Pa. 3. 2.5 2.75 1.5 a. Estimate the rise time, and the settling time.7 b. Calculate the ringing frequency. c. Determine the equation for the output signal as a function of time, E (t) if the system has a natural frequency of 6.48 rad/s. 0.5 1.5 2.5 3 3.5 4. ime (s) Output Signal E(1) M

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10) The curve shown is the recorded voltage output
signal of a diaphragm pressure transducer
subjected to a step change in input. From a static
calibration, the pressure voltage relationship was
found to be linear over the range I atmosphere
(atm) to 4 atm with a static sensitivity of 1 V/atm.
For the step test, the initial pressure was
atmospheric pressure, Pa , and the final pressure
was 2.38 Pa.
3.
a.75
1.5
a. Estimate the rise time, and the settling time.
b. Calculate the ringing frequency.
c. Determine the equation for the output signal as a function of time, E (t) if the system has a natural
frequency of 6.48 rad/s.
0.5
1.
1.5
2
2.5
3.5
time (s)
3.
2.
Output Signal E(1) [M
Transcribed Image Text:10) The curve shown is the recorded voltage output signal of a diaphragm pressure transducer subjected to a step change in input. From a static calibration, the pressure voltage relationship was found to be linear over the range I atmosphere (atm) to 4 atm with a static sensitivity of 1 V/atm. For the step test, the initial pressure was atmospheric pressure, Pa , and the final pressure was 2.38 Pa. 3. a.75 1.5 a. Estimate the rise time, and the settling time. b. Calculate the ringing frequency. c. Determine the equation for the output signal as a function of time, E (t) if the system has a natural frequency of 6.48 rad/s. 0.5 1. 1.5 2 2.5 3.5 time (s) 3. 2. Output Signal E(1) [M
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