A nominally linear electrical output force measuring device has the following manufacturer specifications Input range...
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A nominally linear electrical output force measuring device has the following manufacturer specifications ■ Input range 0-1000 N ☐ Linearity 0.1%full scale ■ Repeatability ±0.05%full scale ■ Temperature effect on Full-scale output 24mV Hysteresis 10.08%full scale Zero balance ±1%full scale a Zero 10.002%full scale / C Span ±0.002%of reading / C The device is used in an environment where the ambient temperature is not controlled and can vary between 10 and 35 C. for an input of 200 N: A) what will be the nominal output voltage B) estimate the uncertainty due to each of the error sources that can be determined Express the uncertainties both in millivolts and as a from the specificatio percentage of reading. Measurment systems and season Iyad Hashlamon HW 23 A displacement sensor has an input range of 0.0 to 3.0 cm and a standard supply voltage V=0.5 volts. Using the calibration results given in the table, estimate: (a) The maximum non-linearity as a percentage of f.s.d. (b) The constants K, K, associated with supply voltage variations. The slope K of the ideal straight line. (c) 0.0 0.5 1.0 1.5 Displacement x cm 2.5 0.0 16.5 3.0 32.0 44.0 55.5 Output voltage millivolts (V, -0.5) Output voltage millivolts (0.6) 0.0 21.0 41.5 58.0 56.0 70.5 74,0 2.0 51.5 65.0 A nominally linear electrical output force measuring device has the following manufacturer specifications ■ Input range 0-1000 N ☐ Linearity 0.1%full scale ■ Repeatability ±0.05%full scale ■ Temperature effect on Full-scale output 24mV Hysteresis 10.08%full scale Zero balance ±1%full scale a Zero 10.002%full scale / C Span ±0.002%of reading / C The device is used in an environment where the ambient temperature is not controlled and can vary between 10 and 35 C. for an input of 200 N: A) what will be the nominal output voltage B) estimate the uncertainty due to each of the error sources that can be determined Express the uncertainties both in millivolts and as a from the specificatio percentage of reading. Measurment systems and season Iyad Hashlamon HW 23 A displacement sensor has an input range of 0.0 to 3.0 cm and a standard supply voltage V=0.5 volts. Using the calibration results given in the table, estimate: (a) The maximum non-linearity as a percentage of f.s.d. (b) The constants K, K, associated with supply voltage variations. The slope K of the ideal straight line. (c) 0.0 0.5 1.0 1.5 Displacement x cm 2.5 0.0 16.5 3.0 32.0 44.0 55.5 Output voltage millivolts (V, -0.5) Output voltage millivolts (0.6) 0.0 21.0 41.5 58.0 56.0 70.5 74,0 2.0 51.5 65.0
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