ratter Question 26 A differential capacitive sensor is interfaced using an op-amp circuitishown in the figure below. The parallel plate. approximation can be used for the sensor capacitors with D=200...


A differential capacitive sensor is interfaced using an op amp circuit shown in the figure below. The parallel plate
approximation can be used for the sensor capacitors with D=200um L=0.000175 as the dimensions of the sensor
x=7.58e008 as the lateral displacement. accordingly, find the ratio
of the total capacitance change to the original
capacitance (Co) of the sensor?


ratter<br>Question 26<br>A differential capacitive sensor is interfaced using an op-amp circuitishown in the figure below. The parallel plate.<br>approximation can be used for the sensor capacitors with D=200 um. L=0.000175 as the dimensinns of the sensor and<br>x=7.58e 008 as the lateral displacement, accordingly, find the ratio of the total capacitance chan to the original<br>capacitance (C) of the sensor?<br>Not yet<br>anowered<br>Marked out of<br>4.0<br>T Fag<br>question<br>6.<br>C1<br>13<br>14<br>21<br>20<br>21<br>C2<br>Lx<br>U<br>Select one<br>O.08e-4<br>0217e4<br>

Extracted text: ratter Question 26 A differential capacitive sensor is interfaced using an op-amp circuitishown in the figure below. The parallel plate. approximation can be used for the sensor capacitors with D=200 um. L=0.000175 as the dimensinns of the sensor and x=7.58e 008 as the lateral displacement, accordingly, find the ratio of the total capacitance chan to the original capacitance (C) of the sensor? Not yet anowered Marked out of 4.0 T Fag question 6. C1 13 14 21 20 21 C2 Lx U Select one O.08e-4 0217e4

Jun 10, 2022
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