(a) Consider the characteristics of the three Resistance Temperature Detectors (RTD) types shown Figure Q1 (a), (i) A Nickle type RTD is used to measure a temperature of 200 °C. If the output resistance of the Nickle RTD is 332 Q, calculate the percentage of error in the measurement. (ii) Calculate the sensitivity of the platinum RTD. 400 350 300 250 200 Platinum 150 100 Copper 50 -200 200 400 600 800 RTD temperature (°C) RTD Resistance (2) Nickel

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(a) Consider the characteristics of the three Resistance Temperature Detectors (RTD)
types shown Figure Q1 (a),
(i) A Nickle type RTD is used to measure a temperature of 200 °C. If the output
resistance of the Nickle RTD is 332 Q, calculate the percentage of error in the
measurement.
(ii) Calculate the sensitivity of the platinum RTD.
400
350
300
a 250
200
Platinum
150
100
Copper
50
-200
200
400
600
800
RTD temperature (°C)
Figure Q1 (a)
(b) A 6-bit Flash Analog-to-Digital Converter (ADC) has an analog input range of 3.5 to
11.5 V at a frequency of 35 kHz. Calculate,
(i)
The number of comparators needed for ADC.
(ii) The Analog quantization step size.
(ii)
The minimum sampling frequency suitable for the signal.
RTD Resistance (2)
Nickel
Transcribed Image Text:(a) Consider the characteristics of the three Resistance Temperature Detectors (RTD) types shown Figure Q1 (a), (i) A Nickle type RTD is used to measure a temperature of 200 °C. If the output resistance of the Nickle RTD is 332 Q, calculate the percentage of error in the measurement. (ii) Calculate the sensitivity of the platinum RTD. 400 350 300 a 250 200 Platinum 150 100 Copper 50 -200 200 400 600 800 RTD temperature (°C) Figure Q1 (a) (b) A 6-bit Flash Analog-to-Digital Converter (ADC) has an analog input range of 3.5 to 11.5 V at a frequency of 35 kHz. Calculate, (i) The number of comparators needed for ADC. (ii) The Analog quantization step size. (ii) The minimum sampling frequency suitable for the signal. RTD Resistance (2) Nickel
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