~Get Your Files Here !/01 - Introduction/002 Basics Control Theory Concepts.mp413.65MB
~Get Your Files Here !/01 - Introduction/003 Basics Control Theory Concepts.mp410.24MB
~Get Your Files Here !/02 - The Laplace Transformation/001 Unit Step Function.mp412.63MB
~Get Your Files Here !/02 - The Laplace Transformation/002 The Exponential Function.mp414.03MB
~Get Your Files Here !/02 - The Laplace Transformation/003 Euler's formula.mp442.55MB
~Get Your Files Here !/02 - The Laplace Transformation/004 The sin function and cosine function.mp429.74MB
~Get Your Files Here !/02 - The Laplace Transformation/005 The unit impulse and The Ramp Function.mp415.16MB
~Get Your Files Here !/02 - The Laplace Transformation/006 The differential equations.mp438.27MB
~Get Your Files Here !/03 - Transfer Function/001 Stable a periodic link.mp413.85MB
~Get Your Files Here !/03 - Transfer Function/002 Stable a periodic link.mp418.1MB
~Get Your Files Here !/03 - Transfer Function/003 Unstable a periodic link.mp49.11MB
~Get Your Files Here !/03 - Transfer Function/004 Integrator.mp47.45MB
~Get Your Files Here !/03 - Transfer Function/005 Second Order Transfer Function.mp423.16MB
~Get Your Files Here !/03 - Transfer Function/006 MATLab tutorial.mp413.4MB
~Get Your Files Here !/03 - Transfer Function/007 The Idea of oscillatory link.mp413.39MB
~Get Your Files Here !/03 - Transfer Function/008 Stable oscillatory link.mp417.2MB
~Get Your Files Here !/03 - Transfer Function/009 Unstable oscillatory link.mp46.17MB
~Get Your Files Here !/03 - Transfer Function/010 Conservation oscillatory link.mp47.12MB
~Get Your Files Here !/03 - Transfer Function/011 The other Typical dynamic links.mp416.33MB
~Get Your Files Here !/03 - Transfer Function/012 Factor Zeta and his Effect on Step Responce.mp447.34MB
~Get Your Files Here !/04 - Obtaining method of Block Diagrams and State Equations from Transfer Function/001 The form with the feedback from the output.mp445.69MB
~Get Your Files Here !/04 - Obtaining method of Block Diagrams and State Equations from Transfer Function/002 Canonical Form.mp418.78MB
~Get Your Files Here !/04 - Obtaining method of Block Diagrams and State Equations from Transfer Function/003 Diagonal Form.mp423.21MB
~Get Your Files Here !/04 - Obtaining method of Block Diagrams and State Equations from Transfer Function/004 The Idea of Block Reduction.mp47.36MB
~Get Your Files Here !/05 - Modeling of Dynamic Systems/001 RLC Series Circuit.mp414.56MB
~Get Your Files Here !/05 - Modeling of Dynamic Systems/002 RLC Series Circuit.mp48.02MB
~Get Your Files Here !/05 - Modeling of Dynamic Systems/003 MATLab tutorial.mp415.08MB
~Get Your Files Here !/05 - Modeling of Dynamic Systems/004 State space.mp420.77MB
~Get Your Files Here !/05 - Modeling of Dynamic Systems/005 Molding of Mechanical System.mp415.39MB
~Get Your Files Here !/05 - Modeling of Dynamic Systems/006 MATLab tutorial.mp415.27MB
~Get Your Files Here !/05 - Modeling of Dynamic Systems/007 MATLab tutorial.mp417.67MB
~Get Your Files Here !/06 - Root Locus Plot/001 Root Locus Plot.mp453.05MB
~Get Your Files Here !/06 - Root Locus Plot/002 MATLab tutorial.mp424.49MB
~Get Your Files Here !/07 - Frequency - Response Analysis/001 Introduction.mp429.81MB
~Get Your Files Here !/07 - Frequency - Response Analysis/002 Frequency Characteristics.mp422.07MB
~Get Your Files Here !/07 - Frequency - Response Analysis/003 Frequency Characteristics.mp422.6MB
~Get Your Files Here !/07 - Frequency - Response Analysis/004 Nyquist diagram.mp422.81MB
~Get Your Files Here !/07 - Frequency - Response Analysis/005 Bode diagrams.mp419.44MB
~Get Your Files Here !/07 - Frequency - Response Analysis/006 MATLab tutorial.mp435.06MB
~Get Your Files Here !/08 - Stability analysis/001 Introduction.mp416.84MB
~Get Your Files Here !/08 - Stability analysis/002 Zero Input response.mp437.91MB
~Get Your Files Here !/08 - Stability analysis/003 Direct Method of Stability Analysis.mp454.45MB
~Get Your Files Here !/08 - Stability analysis/004 Direct Method of Stability Analysis.mp418.94MB
~Get Your Files Here !/08 - Stability analysis/005 Hurwitz Stability Criterion.mp425.29MB
~Get Your Files Here !/08 - Stability analysis/006 Nyquist Stability Criterion.mp443.62MB
~Get Your Files Here !/08 - Stability analysis/007 Routh Stability Criterion.mp422.04MB
~Get Your Files Here !/08 - Stability analysis/008 Example.mp49.31MB
~Get Your Files Here !/09 - Bode Plot/001 Stable a periodic link Bode Plot.mp447.65MB
~Get Your Files Here !/09 - Bode Plot/002 Stable a periodic link Nyquist Plot.mp422.16MB
~Get Your Files Here !/09 - Bode Plot/003 Unstable a periodic link Bode Plot.mp420.31MB
~Get Your Files Here !/09 - Bode Plot/004 Unstable a periodic link Nyquist Plot.mp49.42MB
~Get Your Files Here !/09 - Bode Plot/005 Integrator Bode Plot.mp47.13MB
~Get Your Files Here !/09 - Bode Plot/006 Integrator Nyquist Plot.mp49.26MB
~Get Your Files Here !/09 - Bode Plot/007 Stable oscillatory link Bode Plot.mp434.56MB
~Get Your Files Here !/09 - Bode Plot/008 MATLab tutorial.mp427.26MB
~Get Your Files Here !/10 - Lag, Lead & Lag-Lead compensation by Root Locus Method/001 Lead Compensation part 1.mp485.62MB
~Get Your Files Here !/10 - Lag, Lead & Lag-Lead compensation by Root Locus Method/002 MATLab tutorial.mp4166.24MB
~Get Your Files Here !/10 - Lag, Lead & Lag-Lead compensation by Root Locus Method/003 MATLab tutorial.mp428.76MB
~Get Your Files Here !/10 - Lag, Lead & Lag-Lead compensation by Root Locus Method/004 Lag Compensation part 1.mp438.73MB
~Get Your Files Here !/10 - Lag, Lead & Lag-Lead compensation by Root Locus Method/005 Lag-Lead Compensation.mp436.22MB
~Get Your Files Here !/10 - Lag, Lead & Lag-Lead compensation by Root Locus Method/006 MATLab tutorial.mp489.89MB
~Get Your Files Here !/11 - Lag, Lead & Lag-Lead compensation by Bode Plot Method/001 Introduction.mp424.41MB
~Get Your Files Here !/11 - Lag, Lead & Lag-Lead compensation by Bode Plot Method/002 Lead Compensation part 1.mp445.41MB
~Get Your Files Here !/11 - Lag, Lead & Lag-Lead compensation by Bode Plot Method/003 MATLab tutorial.mp455.7MB
~Get Your Files Here !/11 - Lag, Lead & Lag-Lead compensation by Bode Plot Method/004 Lag Compensation part 1.mp427.2MB
~Get Your Files Here !/11 - Lag, Lead & Lag-Lead compensation by Bode Plot Method/005 MATLab tutorial.mp448.83MB
~Get Your Files Here !/12 - PID Controller (Proportional-Integral-derivative Compensation)/001 Tuning P (Proportional) Controller.mp413.74MB
~Get Your Files Here !/12 - PID Controller (Proportional-Integral-derivative Compensation)/002 Tuning PD & PI Controller.mp416.47MB
~Get Your Files Here !/12 - PID Controller (Proportional-Integral-derivative Compensation)/003 Tuning PID Controller.mp412.67MB
~Get Your Files Here !/12 - PID Controller (Proportional-Integral-derivative Compensation)/004 MATLab tutorial.mp480.32MB
~Get Your Files Here !/13 - Ziegler - Nichols Rules for Tuning PID Controller/001 First Method Part 1.mp423.16MB
~Get Your Files Here !/13 - Ziegler - Nichols Rules for Tuning PID Controller/002 MATLab tutorial.mp4139.87MB
~Get Your Files Here !/13 - Ziegler - Nichols Rules for Tuning PID Controller/003 Second Method Part 1.mp426.95MB
~Get Your Files Here !/13 - Ziegler - Nichols Rules for Tuning PID Controller/004 MATLab tutorial.mp471.58MB
~Get Your Files Here !/14 - Examples/001 Bode Plot Part 1.mp421.96MB
~Get Your Files Here !/14 - Examples/002 MATLab tutorial.mp425.67MB
~Get Your Files Here !/14 - Examples/003 Bode Plot Part 2.mp436.47MB
~Get Your Files Here !/14 - Examples/004 MATLab tutorial.mp415.47MB
~Get Your Files Here !/14 - Examples/005 MATLab tutorial.mp49.54MB
~Get Your Files Here !/14 - Examples/006 MATLab tutorial.mp415.24MB
~Get Your Files Here !/14 - Examples/007 Factor Zeta and his Effect on Bode Diagram.mp444.47MB