4 (a) The Pt100 RTD has a resistance of 100 2 at 0°C. A simple cireuit shown in Figure Q.4a with R1 = 100 Q and V; = 9 V is connected to the RTD. When the temperature increases, the RTD resistance, Rr changes and the relationship is expressed in the following equation. R7 = Ro(1+« AT), ¤o= 0.00385 R1 Vs Pt100 Vo Figure Q.4a Pt100 circuit i. Calculate the voltage output Vo at temperature 50 °C and 100 °C. ii. Sketch the graph for output Vo versus temperature of the Pt100 from temperature range from 0 °C to 100 °C.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q.4 (a) The Pt100 RTD has a resistance of 100 2 at 0°C. A simple circuit shown in
Figure Q.4a with R1 = 100 2 and V; = 9 V is connected to the RTD. When the
temperature increases, the RTD resistance, Rr changes and the relationship is
expressed in the following equation.
Rp = Ro(1+« AT), <o= 0.00385
R1
Vs
Pt100
Vo
Figure Q.4a Pt100 circuit
i. Calculate the voltage output Vo at temperature 50 °C and 100 °C.
ii. Sketch the graph for output Vo versus temperature of the Pt100 from
temperature range from 0 °C to 100 °C.
Transcribed Image Text:Q.4 (a) The Pt100 RTD has a resistance of 100 2 at 0°C. A simple circuit shown in Figure Q.4a with R1 = 100 2 and V; = 9 V is connected to the RTD. When the temperature increases, the RTD resistance, Rr changes and the relationship is expressed in the following equation. Rp = Ro(1+« AT), <o= 0.00385 R1 Vs Pt100 Vo Figure Q.4a Pt100 circuit i. Calculate the voltage output Vo at temperature 50 °C and 100 °C. ii. Sketch the graph for output Vo versus temperature of the Pt100 from temperature range from 0 °C to 100 °C.
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