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- Proportional Derivative (PD) Control System TLC013
- Bode Plot Demonstrator TLC017
- Open Loop Control System TLC001
- Type "0" Control System TLC003
- Proportional (P) Control System TLC011
- Closed Loop Control System TLC016
- Potentiometers And Effects Of Loading TLC019
- Lead - Lag Networks (Passive & Active) TLC018
- Ratio Control System TLC007
- Rate Control System TLC008
- Series Control System TLC009
- Feed Forward Control System TLC010
- Proportional Integral (PI) Control System TLC012
- Proportional Integral Derivative (PID) Control System
- Proportional Integral Derivative (PID)
CONTROL SYSTEMS
Proportional Derivative (PD) Control System TLC013
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Derivative & Proportional Action on different Actuated Error Signals (Simulated) generated for closed loop behavior of systems
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Electronic Simulation
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Control of Derivative Time, Proportional Rate & study of its effect on the Controlled System
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Facility for Proportional (P) & Proportional Derivative (PD) Control System Experiments
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Bode Plot Demonstrator TLC017
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Frequency Response
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Gain Calculation
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Transfer Function Logarithmic Plot consisting of two graphs viz, Logarithmic of Magnitude & Phase Angle ( combined Plots are called Bode Plot ) for various Control Systems ( Type 0, 1, 2 )
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Open Loop Control System TLC001
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Electronic Simulation
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Principle & Working of a Basic Open Loop Control System
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Charging of a Capacitor with Constant Current used as Process
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Variable I/P Command, Disturbing / Error Signal & Timer with Relay
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Type "0" Control System TLC003
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Time Response Analysis for Step, Ramp & Parabolic Signal
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External Step, Ramp & Parabolic Signal Connectivity
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Calculation of Error Signal
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Time v/s Input & Time v/s Output graphs for Step & Ramp Error Signals
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Proportional (P) Control System TLC011
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Proportional Action on different Actuated Error Signals generated externally
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Control of Proportional Rate & study of its effect on the Controlled Signal
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Electronic Simulation
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Closed Loop Control System TLC016
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Principle & Working of Closed Loop Control System
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Provision to Connect / Disconnect the Load & Feedback Loop
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Provision to vary the Output Voltage
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Electronic DC Voltage Linear Series Feedback Regulator is used as the Process for easy & better
understanding
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Potentiometers And Effects Of Loading TLC019
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Ten turn Potentiometers of different values with Turn - Count Knob
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Resistive Loads for loading the Potentiometers
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Loaded Output Voltage v/s Rational Angle of Potentiometer Shaft & Loading Error v/s Rational Angle Graphs
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Calculation of Loading Error
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Lead - Lag Networks (Passive & Active) TLC018
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Verification of Frequency Response Characteristics of Lead / Lag Networks
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Verification of Theoretical & Experimental Values for Attenuation, Time Constant (T) & Phase Angle
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Active Compensating Networks such as Lead & Lag using Op - Amps with its Power Supply
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Passive Compensating Networks such as Lead & Lag
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Ratio Control System TLC007
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Principle of Ratio Control System
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Working of Ratio Control System
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Electronic Simulation
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Primary & Secondary Controller
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Selectable Proportion Constant
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Rate Control System TLC008
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Principle & Working of Rate Control System
Electronic Simulation
Effects of Derivative & Proportional Action on different Actuated Error Signals (simulated) generated for Closed Loop Behaviour of Systems
Control of Derivative Time, Proportional Rate & its effect on the Controlled System
Proportional Derivative (PD) Control System Experiment
Primary & Secondary Controller
Selectable Proportion Constant
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Series Control System TLC009
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Electronic Simulation
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Selectable Series Compensator
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External Actuating Error Signal connectivity
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Observation of Compensated output signal
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Feed Forward Control System TLC010
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Electronic Simulation
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Variable Disturbance Signal Generator
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Input Error Signal, Feedback Element & Amplifier
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Proportional Integral (PI) Control System TLC012
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Integral & Proportional action on different Actuated Error Signals generated externally
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Control of Integral Time, Proportional Rate & study of its effect on the Controlled Signal
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Electronic Simulation
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Facility for Proportional (P) & Proportional Integral (PI) Control System Experiments
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Proportional Integral Derivative (PID) Control System
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Effects of Integral, Derivative & Proportional Action on different Actuated Error Signals generated externally
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Control of Integral Time, Derivative Time & Proportional Rate, study of its effect on the Controlled Signal
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Electronic Simulation
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Facility for Proportional (P), Proportional Derivative (PD), Proportional Integral (PI), Proportional Integral Derivative (PID) Control System Experiments
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Proportional Integral Derivative (PID)
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P, PI, PD or PID Controller
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Simulated blocks, Built-in signal sources
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Open loop response of various process configurations like Combination of time constants, delays etc.
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Study of closed loop response
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P, PI, PD and PID design & performance evolution in each case
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