Question / Draw an accelerometer sensitivity curve and discuss the useful frequency range. In thesame plot also show the effect of increased accelerometer mass? (Please answer it in very easy way easy to rememeber for revsison )
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Question / Draw an accelerometer sensitivity curve and discuss the useful frequency range. In the
same plot also show the effect of increased accelerometer mass?
(Please answer it in very easy way easy to rememeber for revsison )
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- The ratio of the amplitude of the output signal divided by the input signal in a static calibration is called A/V Pre rage Next Page D3. The results of a simple calibration of pressure transducer and its specification are shown in Figure 1 and Table 1. The sensitivity of the pressure sensor is 0.5 V/kPa (given by manufacturer) and the linear curve fit for the upscale calibration is given as y = 0.51x +0.02 . a) Calculate the hysteresis and linearity errors for this calibration. b) Please discuss either the pressure transducer can now be used for the actual measurement or not. Table 1: Pressure tansducer specification Оperation Input range 0- 5 kPa + 15 V 0 - 2.5 V Excitation Output range Performance Linearity error ± 3 % Hysteresis Less than + 15% Sensitivity error + 5% Thermal sensitivity error + 0.02% / °C Temperature range 0 - 50 °C 2.5 upacale mesurement downscale measurement 0.5 0.5 3.5 pressure, kPa Оприt, voltage ((V) Upscale Input, pressure (kPa) Downscale 0.00 0.00 1 0.53 0.48 2 1.05 0.94 3 1.62 1.45 4 2.12 1.95 5 2.50 2.50 Figure 1: Calibration results (plot and tabulated data)In calibration of instrument the 0.055 percent of the calibration span what does it mean. If let say the range of pressure transmitter is 0 - 250 psi. Can you shown me the calibration results using 0.055 percnt calibration span.
- Please attempt only if you are 100% Sure , Don't provide random solution. R=MSR+(VSR×LC) , Isn't it?Subject: Mechanical MeasurementsGIVEN FRONT AND SIDE VIEW, SKETCH THE MISSING VIEW ALSO DRAW THE ISOMETRICVIEW USING AUTO CAD -16 MATL - SAE 1050 Ø8 3-101 R 10 R 25 FØ16.1 R 25 R 28 Ø 20. R 10 Ø 12.5 R 13 Connector.
- Question 4A signal is made up of 3 sine waves of equal amplitude with frequencies F1 = 180 hz, F2 = 1200 Hz, and F3 = 2500 Hz. This signal is monitored using a DAQ and plotted on a FFT. The DAQ settings are Fsample = 4000 Hz, Nsample = 10,000. 1). Draw the resulting measured FFT below. 2). Draw the resulting measured FFT if the signal is passed through an analog Low Pass filter with a cutoff frequency of Fc = 400 Hz prior to measurement.subject(control engneering) pls show full steps sir take your time sir
- A temperature sensor Pt100 has a rage from -200C to 850C as shown in the figure. Considering the function is linear, find the sensitivity of the sensor? How can we ?improve the sensitivity of this sensor Resistance vs. Temperature- Pt100 (385) 400 350 300 250 200 150 100 50 -200 100 100 200 300 400 50 600 700 800 900 Temperature ["c) Resistance [Ohms]You need to run some vibrations tests and your lab has an accelerometer (2nd order system) that has a natural frequency (resonance) at 3,000 Hz and damping ratio of 0.05. The vibrations you wish to measure are in the range of 100 - 1,200 Hz. a. What are the amplitude error (in %) and phase shift (in degrees) expected at the upper end of the vibration frequency range (1,200 Hz)? b. What is the maximum frequency that you can measure to have no more than 1% error in the amplitude of the reading? c. Is this a suitable choice of accelerometer for this measurement? Why or why not?Answer the following questions, to test your understanding of sampling frequency and bit depth. 1. You are part of new automobile design team, and are responsible for designing the sensor data collection system. The specification of the data collection system is that is must be capable of receiving data with a resolution down to 0.1% of full scale (1 part in 1000) for any given sensor. For example, suppose the driver pushes the gas pedal, the motion of which is read by an electronic sensor such that the range of motion is defined from 0 (not pressed) to 1 (fully pressed). If you want 0.1 % accuracy, you need 1000 possible data values between 0 and 1. How many bits do you need to represent data to 0.1% accuracy? Insert a picture of your work.