Measurement system is desired to have a phase shift that varies linearly with frequency. TRUE OR FLASE
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- Measurement system is desired to have a phase shift that varies linearly with frequency.. True Falsea) A rotary incremental encoder is used to measure the rotational speed of a shaft. The encoder disk is connected to the shaft directly and the sensor signal is fed into a frequency counter. The frequency counter is able to measure a frequency from 0 to 16kHz with the accuracy of 0.5Hz and the maximum speed of the shaft is 10000 rpm. i. Determine the required number of slots of the encoder disk in order to measure the maximum range of the shaft speed. What is the smallest change of speed detectable by the encoder and frequencv counter system as proposed in c(i) ? ii. iii. What are the advantages and disadvantages of increasing the nurnver or siots o be higher than that of c(i) ? What are the advantages and disadvantages of decreasing the nuniuei ui Siots to iv. be lower than that of c(i) ? b) Describe and briefly explain the advantages of instrumentation amplimiers over differentiai amplifiers and the areas of applications of instrumentation amplifiers. c) An LVDT with primary voltage…The ability of the instrument to give same output for same input when the conditions are same is known as O a. Reproducibility O b. Accuracy O. Repeatability O d. Resolution
- The ability of the instrument to give same output for same input when the conditions are different is known as O a. Reproducibility Ob. Resolution O. Accuracy O d. Repeatability Jis used to convert resistance value into voltage value. response is the response of a system after the transient response.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 DQ.11 - Consider the positions servomechanism is shown in figure below. Assume the following numerical values for the system constant are. Kp = gain of potentiometer detector = 7.64 v/ rad, Kb= back e. m. f. constant =5.5*10-2 V/rad/sec K; = motor torque constant = 6*10–5 Nm/A C = 4*10-2 Nm/ (rad /sec). Determine the natural frequency and damping ratio of the system. Ra = armature winding resistant =2 2, Ka=Gain of amplifier = 10 Jm = 1*10-5 Kg.m2. J =4.4*103 Kg.m2 n = gear ratio=1/10, Neglect Cm and la Amp. %₂ ဦးအောင်မျိုာနစ် နှစ် DH 0050 constant N₁
- The control system employs microcontroller to control the variables then it is called as direct digital control system. Select one: True False- Consider the positions servomechanism is shown in figure below. Assume the following numerical values for the system constant are. Kp = gain of potentiometer detector = 7.64 v/ rad, Kb = back e. m. f. constant -5.5*10-2 V/rad/sec K₁ = motor torque constant = 6*10-5 Nm/A C₁ = 4*10-2 Nm/ (rad /sec). Determine the natural frequency and damping ratio of the system. Amp. % Ra= armature winding resistant =20, Ka=Gain of amplifier =10 Jm= 1*10-5 Kg.m². J₁=4.4*10-³ Kg.m² n = gear ratio=1/10, Neglect Cm and la constant 0050 N₁ DILVDT can be used as the primary sensing element . Select one: True O False
- Subject Name: Theory and design for Mechanical measurementIII.Question and Answer 1.Understand the given Physical process control diagram and explain the working of the system. Actual level Reference Controller Measurement level System H Pump Tank Liquid Level Control System Electronics Coach 2. Understand the given Industrial process control system and convert it in to Block diagram (draw neatly) 4-20 mA signal FC 4-20 mA signal FY FT 3-15 PSI signal FV Pump Pipe InstrumentationTools.comWhich statement is true in the case of the term "Precision". The closeness of output readings when the same input is applied repetitively over a short period of time and there is no change in observer. O The closeness of output readings when the same input is applied repetitively over a short period of time when there is change in time of measurement. O The closeness of output readings when the same input is applied repetitively over a short period of time when there is change in location. O The closeness of output readings when the same input is applied repetitively over a short period of time when there is change in condition of measurement.