Course Title | 
   Number of Projects to be Learned | 
   Class Hours to be Learned | 
   Course Category | 
   Experiment, Practice and Training Name  | 
   Class Hours | 
   Compulsory  Course | 
   Elective Course | 
   Project Type | 
  
  
   | Mechanical Engineering Testing Technology Engineering Testing Technology | 
   5 | 
   10 | 
   Experiment | 
   Foil Strain gauge Performance and Measurement Circuit | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Comprehensive Measurement  of Displacement I | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Comprehensive Measurement  of DisplacementⅡ | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Comprehensive Measurement  of Vibration | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Comprehensive Measurement  of Speed | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Instrument Circuit | 
   3 | 
   6 | 
   Experiment | 
   Signal Operation  Circuit Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Modulation and  Demodulation Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Phase Sensitive  Detection Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Principle and Application of Microcomputer (Mechanical))A | 
   3 | 
   6 | 
   Experiment | 
   Assembly Language Design I | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
  
   | Principle and Application of Microcomputer (Mechanical))B | 
   4 | 
   8 | 
  
  
  
   | Principle and Application of Microcomputer B (Transportation) | 
   3 | 
   6 | 
   Assembly Language Design II | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Assembly Language Design III | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Principle and Application of Microcomputer C | 
   4 | 
   8 | 
   Digital Tube Display  Program Design Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Parallel Interface  Programming ExperimentI | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Microcomputer System and Interface Technology | 
   3 | 
   6 | 
   Parallel Interface  Programming ExperimentII | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Serial Interface  Programming Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Principle and Application of Microcomputer | 
   3 | 
   6 | 
   Microcomputer System Application Design | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Digital Signal Processing | 
   5 | 
   12 | 
   Experiment | 
   Program Design of Digital Signal Processing Simulation System | 
   4 | 
   √ | 
   
  | 
   Designable | 
  
  
   Research on System Response  and System Stability | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Time Domain Sampling and  Frequency Domain Sampling Program Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Spectrum Analysis Program Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Digital Filter Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Single Chip Microcomputer Technology | 
   4 | 
   8 | 
   Experiment | 
   Assembly Language Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Marquee Programming | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Car Turning Light Control  Program Design (Newly Opened) | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Industrial Sequence Control Program Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Non-destructive Testing | 
   3 | 
   6 | 
   Experiment | 
   Optical Test | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Acoustic Test | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Magnetic Test | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Automatic Control and Instrument | 
   3 | 
   6 | 
   Experiment | 
   Sensor Structure, Working Principle and Application I | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Sensor Structure, Working  Principle and Application II | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Process Control, Connection  Control Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Chemical Instrumentation and Automation | 
   4 | 
   10 | 
   Experiment | 
   Comprehensive Cognition of Process Control System | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Sensor Structure, Working  Principle and Application I | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Sensor Structure, Working  Principle and Application II | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   First-order Single Capacitor  and Tuning to Liquid PID | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Testing Technology A | 
   7 | 
   14 | 
   Experiment | 
   Electronic Scale Design | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Comprehensive Measurement  of Displacement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Eddy Current Sensor  Application Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Hall Sensor Application Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Piezoelectric and Temperature  Sensor Application Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Photoelectric Sensor  Comprehensive Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Comprehensive Experiment of  Gas Sensor and Humidity Sensor | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Robot Technology | 
   3 | 
   6 | 
   Experiment | 
   Familiar with Ability Storm Robot and Escape Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Robot Avoiding Obstacle (or Following)  and Chasing Light Experiment | 
   2 | 
   √ | 
   
  | 
   Innovative | 
  
  
   Build a Specific Path Walking  Experiment of the Car | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Microcomputer Control Technology | 
   4 | 
   8 | 
   Experiment | 
   A/D, D/A Conversion Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Integral Separation PID  Control Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Minimum Beat Control System Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Comprehensive Experiment of  Closed Loop Control of Electric Oven | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Modern Instrument Design Method | 
   2 | 
   4 | 
   Experiment | 
   Principle of ATOS Raster Scanner | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Comprehensive Experiment of  Laser Testing and Processing System | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Signals and Systems | 
   4 | 
   8 | 
   Experiment | 
   Simulation of Step Response, Impulse Response and Continuous  Time System | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Transient Response of  Circuit System | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Signal Sampling, Recovery  and Convolution | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Signal Synthesis and Decomposition | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | EDA Technology (Mechanical) | 
   5 | 
   10 | 
   Experiment | 
   Decoder Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Trigger Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Instrument EDA Technology | 
   3 | 
   6 | 
   Counter Design | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Digital Tube Display  Circuit Design | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Digital Timer Design | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | SOC System Design | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Smart Instrument | 
   3 | 
   6 | 
   Experiment | 
   Process Control  System Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Three-coordinate  Manipulator Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Automatic Quantitative  System Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Geometric Tolerance and InspectionⅠ | 
   4 | 
   8 | 
   Experiment | 
   Size Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Surface Roughness Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Geometric Error Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Gear Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Geometric Tolerance and InspectionⅡ | 
   3 | 
   6 | 
   Experiment | 
   Size Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Surface Roughness Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Geometric Error Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Interchangeability and Technical Measurement | 
   3 | 
   6 | 
   Experiment | 
   Size Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Surface Roughness Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Geometric Error Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Interchangeability and Geometric Measurement | 
   5 | 
   10 | 
   Experiment | 
   Size Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Surface Roughness Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Geometric Tolerance and Inspection B | 
   5 | 
   10 | 
   Thread Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Geometric Error Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Gear Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Engineering Graphics A | 
   3 | 
   6 | 
   Experiment | 
   Parts Mapping One | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Parts Mapping Two | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Assembly Mapping | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Engineering Graphics B | 
   2 | 
   4 | 
   Experiment | 
   Parts Mapping One | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Assembly Mapping | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Engineering Graphics C | 
   1 | 
   2 | 
   Experiment | 
   Parts Mapping One | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Chemical Drawing A | 
   1 | 
   2 | 
   Experiment | 
   Parts Mapping One | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Modern Optical Experiment I | 
   13 | 
   30 | 
   Experiment | 
   Demonstration Experiment of Basic Knowledge of Fiber Optics | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Optical Fiber and Light Source  Coupling Method | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Multimode Fiber Numerical  Aperture (NA) Measurement | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Fiber Transmission  Loss Properties and Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Fiber Splitter  Parameter Measurement | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Adjustable Optical Attenuator  and Parameter Measurement | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Fiber Isolator and  Parameter Measurement | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Fiber Optic Switch Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Principle Experiment of Wavelength  Division Multiplexing (WDM) | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | M-Z Fiber Interference Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Transmitter Extinction  Ratio Measurement | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Principle Experiment of  Erbium-doped Fiber Amplifier | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Open Circuit Audio Analog  Signal Transmission | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Semiconductor Physics | 
   1 | 
   3 | 
   Experiment | 
   Raman Spectrum Analysis of Semiconductor Materials | 
   3 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Optical Fiber Communication Technology | 
   2 | 
   5 | 
   Experiment | 
   Simple Fiber Optic System Assembly | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Simple Optical Communication  System Design | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Guided Wave Optics | 
   1 | 
   3 | 
   Experiment | 
   M-line Measurement of Optical Waveguide Refractive Index Experiment | 
   3 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Modern Optical Experiment II | 
   10 | 
   30 | 
   Experiment | 
   Laser Raman Spectroscopy Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Single Photon Counting Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Fiber Grating Sensing Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Fourier Transform  Spectroscopy Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Electronic Speckle  Interference Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Optical Transfer Function Measurement | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Laser Fluorescence  Spectroscopy Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Evaluation of Digital Lens Image Quality | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Laser Beam Analysis Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Precision Film Thickness Measurement | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Engineering Optics Foundation | 
   3 | 
   8 | 
   Experiment | 
   Design and Assembly of Telescope, Projection and Microscope Systems | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Determination of Optical System  Node and Focal Length | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Abbe Imaging Principle and  Spatial Filtering | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Modern Optoelectronic Testing Technology | 
   2 | 
   5 | 
   Experiment | 
   Measurement of Transmission Loss of Optical Waveguide | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Crystal Absorption  Spectrum Measurement | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Optoelectronic Device Preparation and Test Technology Experiment | 
   15 | 
   45 | 
   Experiment | 
   LD/LED Light Source Characteristic Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Prism Coupling Method for Measuring  Film Thickness and Refractive Index | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Measurement of Waveguide Transmission  Loss by Prism Coupling Method | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Crystal Electro-optical  Modulation Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Silicon Photocell Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Principle and Application Experiment  of Linear CCD | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Characteristic Experiment of  Photosensitive Two Junction Tube | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Pyroelectric Sensor Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Use of URE-2000/17 UV  Lithography Machine | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Processing of Fine Patterns | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Fiber Processing, Cutting  and welding Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Using Spectral Analyzer (AQ6370) and  AQ2200-211 Power Meter to  Measure Spectral Power | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Fiber Spectrometer to Measure  the Spectrum of Mercury Lamp | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Optical Multichannel  Analyzer Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Grating Monochromator Experiment | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Hydraulic and Pneumatic Transmission TechnologyⅠ | 
   6 | 
   8 | 
   Experiment | 
   Liquid Resistance Characteristics | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Hydraulic Pump Performance | 
   1 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Hydraulic and Pneumatic Transmission TechnologyⅡ | 
   5 | 
   7 | 
   Oil Pump and Motor Structure  Disassembly and Assembly | 
   1 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Relief Valve Performance | 
   1 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Hydraulic and Pneumatic Transmission TechnologyⅢ | 
   5 | 
   7 | 
   Hydraulic Valve Structure Disassembly | 
   1 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Throttle Speed Regulation Performance | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Multi-cylinder Full Pneumatic Control  Sequence Action Circuit Design | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Control Engineering Foundation | 
   3 | 
   6 | 
   Experiment | 
   Time Domain Response of a Typical Analog System | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Frequency Response of  a Typical Analog System | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Automatic Control Theory | 
   3 | 
   6 | 
   System Series Correction | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Modern Control Engineering | 
   2 | 
   4 | 
   Experiment | 
   System State Equation and Feedback | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Sampling System Analysis | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Electro-hydraulic Control Technology | 
   2 | 
   4 | 
   Experiment | 
   Cognition of Hydraulic Integrated Control Experimental Device | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Electro-hydraulic Proportional (Servo)  Closed-loop Position/Force/Speed  Computer Control | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Industrial Robot | 
   3 | 
   6 | 
   Experiment | 
   Initial Application of Robots | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | FESTO FDLG-R-3 Assembly Robot | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Mitsubishi Robot Programming Teaching | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Robot technology | 
   1 | 
   2 | 
   Experiment | 
   FANUC Assembly Robot/MPS | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Electromechanical Drive Control | 
   2 | 
   4 | 
   Experiment | 
   AC Motor Frequency Conversion Speed Regulation Control | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | MPS Control System | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Machinery Manufacturing Automation | 
   1 | 
   2 | 
   Experiment | 
   Industrial Robot | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Fluid Power Technology | 
   3 | 
   5 | 
   Experiment | 
   Disassembly and Assembly of Hydraulic Components | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Hydraulic Pump Performance, Relief  Valve Performance (Static) | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Throttle Speed Regulation,  Hydraulic System Circuit | 
   1 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Mechanical Principle and Design A | 
   4 | 
   8 | 
   Experiment | 
   Mapping and Analysis of Mechanism Motion Diagram | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Measurement of Mechanical Motion  Parameters | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   Intelligent five (four) linkage  Experiment | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Dynamic Balance of Rigid Rotor | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Balance of Mechanism on the Base | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   Mechanical Structure Innovation  Experiment | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Unit Operation and Flywheel  Adjustment | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Gear Generating Principle Experiment | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   Space Parallel Mechanism  Robot Experiment | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Mechanical Principle and Design B | 
   4 | 
   8 | 
   Experiment | 
   Belt Drive Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Measurement of Static and Dynamic  Friction Coefficient and  Crawling Motion Mechanism | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   The Measurement of the Efficiency  of Microcomputer Controlled  Machinery | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   Experiments on Hydrodynamic  Lubrication of Radial Sliding Bearings | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | On-site Teaching of Mechanical Design | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   Assembly, Disassembly and Structural  Analysis of the Reducer  (including Creative Combination  Shafting Structure Experiment) | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Bolt Connection Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Comprehensive Experiment of  Mechanical Transmission Scheme | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Sealing Performance Test | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Precision Mechanical Design | 
   5 | 
   10 | 
   Experiment | 
   Mechanical Structure Cognition | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   Measurement of Mechanical  Motion Parameters | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Fundamentals of Mechanical Design | 
   5 | 
   10 | 
   Unit Operation and Flywheel Adjustment | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Belt Drive Experiment | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Fundamentals of Mechanical Engineering A | 
   5 | 
   10 | 
   Disassembly, Assembly and Structure Analysis of Reducer | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Mechanical structure  Innovation Experiment | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Gear Generation Principle Experiment | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Space Parallel Mechanism Robot Experiment | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Comprehensive Experiment of Mechanical Design | 
   2 | 
   15 | 
   Experiment | 
   Analysis of Structure, Principle  and Function of Modern  Electromechanical System | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Robotics and Application Development | 
   11 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Mechanical System Design | 
   3 | 
   6 | 
   Experiment | 
   Cognition of Mechanical Systems | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Transmission System Design | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Actuator Design | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Mechanical Dynamics | 
   3 | 
   6 | 
   Experiment | 
   Dynamic Balance Experiment of Crank Slider Mechanism | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Hammering Method to Measure  Natural Frequency of Cantilever Beam | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Resonance Experiment of  Eccentric Motor System | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Single Chip Microcomputer Application System | 
   4 | 
   8 | 
   Experiment | 
   Operation and Use of Single Chip Microcomputer Experimental System | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Data Sorting | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | I /O Port Application | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Timer/Counter, Interrupt Application | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Thermal Energy and Power Engineering Testing Technology | 
   3 | 
   6 | 
   Experiment | 
   Sensor Calibration | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Calibration Data Processing | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Sensor Structure Analysis | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Mechanical Design | 
   3 | 
   6 | 
   Experiment | 
   Printer Function System Analysis | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Functional System Analysis  of Coin Sorting Machine | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Product Functional Principle Design | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Creative Design of Electromechanical Model | 
   3 | 
   30 | 
   Public Elective Courses | 
   Mechanism and Drive Components Recognition and Structural Assembly | 
   8 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Sensor, Controller and Interface  Technology and Programming Application | 
   8 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Integrated Creative Design  of Fischertechnik Model | 
   14 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Fundamentals of Mechanical Manufacturing Technology A | 
   5 | 
   10 | 
   Experiment | 
   Geometric Angle Measurement of Cutting Tools A | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Factors Affecting Cutting Force | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Special Fixture Analysis A | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Computer-aided Error  Measurement and Analysis A | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Machine Tool Spindle Rotation  Accuracy Inspection A | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Fundamentals of Mechanical manufacturing technologyB | 
   2 | 
   4 | 
   Experiment | 
   Geometric Angle Measurement of Cutting Tools B | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Universal Fixture | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   The Influence of Cutting  Amount on Surface Roughness | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Automobile Manufacturing Technology | 
   2 | 
   4 | 
   Experiment | 
   Special Fixture Analysis B | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Statistical analysis  of Processing Errors B | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Machine Tool Spindle Rotation  Accuracy Inspection B | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Power Machinery and Equipment Manufacturing Technology | 
   2 | 
   4 | 
   Experiment | 
   Special Fixture Analysis C | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Computer-aided Error  Measurement and Analysis C | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Machine Tool Spindle  Rotation Accuracy Inspection C | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Mechanical Manufacturing Equipment Design | 
   2 | 
   4 | 
   Experiment | 
   Machine Tool Noise Test A | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Transmission and Structure  of Ordinary Lathe A | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Modular Fixture A | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Precision and Special Processing | 
   2 | 
   4 | 
   Experiment | 
   Laser Cutting | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Laser Marking | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   Wire Electrical  Dischage Machining (WEDM) | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Advanced Manufacturing Technology | 
   1 | 
   4 | 
   Experiment | 
   Fused Deposition Manufacturing | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Rapid Prototyping Technology and Application | 
   1 | 
   4 | 
   Experiment | 
   Rapid Prototyping Experiment of FDM and SLS | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Plastic Forming Equipment | 
   1 | 
   2 | 
   Experiment | 
   Thermoplastic Injection Molding A | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Mold Manufacturing Technology | 
   2 | 
   4 | 
   Experiment | 
   Programming and Simulation Drawing of CNC WEDM | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   The Selection of Electrical  Standards for EDM Machine Tools | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Evaluation of Processed  Surface Quality of EDM | 
  
  
   | Stamping Process and Die Design | 
   1 | 
   2 | 
   Experiment | 
   Stamping Die Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Plastic Molding Process and Mold Design | 
   1 | 
   2 | 
   Experiment | 
   Plastic Mold Disassembly | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Machinery Manufacturing Automation | 
   2 | 
   4 | 
   Experiment | 
   Industrial Robot Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Collaborative Manufacturing  System Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Mechanical Fault Diagnosis Technology | 
   2 | 
   6 | 
   Experiment | 
   Mechanical Vibration Test  and Fault Diagnosis | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Machine Tool Noise Test  and Failure Analysis | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Comprehensive Experiment of Mechanical Manufacturing | 
   5 | 
   15 | 
   Experiment | 
   Reverse Engineering  Product Development A | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   CAD/CAM Practice of  Complex Products A | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Special Processing Technology A | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | CIMS Integration Technology | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Rapid Product Development A | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Laser Welding Technology | 
   1 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Comprehensive Experiment of Mold Design and Manufacturing | 
   5 | 
   15 | 
   Experiment | 
   Reverse Engineering  Product Development B | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | CAD/CAM Practice of Complex Products B | 
   4 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Special Processing Technology B | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Thermoplastic Injection Molding B | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Rapid Product Development B | 
   3 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Mechanical and Electrical Equipment Design | 
   2 | 
   4 | 
   Experiment | 
   Machine Noise Test B | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Transmission and Structure  of Ordinary LatheB | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Modular fixture B | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Electromechanical Drive Control A | 
   5 | 
   10 | 
   Experiment | 
   Practical Machine Tool Electrical Control | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   Single-phase Bridge Rectifier  Circuit Experiment | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Electromechanical Drive Control B | 
   3 | 
   6 | 
   DC Motor Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Handling Robot Control | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Automatic Feeding and Loading Control | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   AC Motor Frequency Conversion  Speed Regulation Control | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Control Motor Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | MPS Control System Experiment | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Numerical Control Technology | 
   2 | 
   4 | 
   Experiment | 
   CNC Milling Machine  Programming and Operation A | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Interpolation Principle  and Servo Control A | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Automatic Programming and Processing A | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Electric Servo and CNC Technology | 
   3 | 
   6 | 
   Experiment | 
   CNC Lathe Programming and Operation A | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   CNC Milling Machine  Programming and Operation B | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Interpolation Principle  and Servo Control B | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Automatic Programming and Processing B | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Servo System Characteristics | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | Single Chip Microcomputer Application System Design | 
   3 | 
   6 | 
   Experiment | 
   P1 Port Lighting Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Industrial Sequence Control Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Stepper Motor Control Experiment | 
   2 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Keyboard Display Experiment | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   | 8255 Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | A/D Conversion Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | D/A Conversion Experiment | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | CNC Machine Tool Servo and Detection Technology | 
   4 | 
   8 | 
   Experiment | 
   Encoder Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Resolver Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   | Stepping Motor Test | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | AC Servo Motor Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | CNC Principle and System | 
   3 | 
   6 | 
   Experiment | 
   Tool Compensation Principle Experiment | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Point-by-point Comparison  Method Interpolation Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Digital Integration Method  Interpolation Experiment | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Stepping Motor Automatic Speed  Up and Down Experiment | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Motion Control Technology | 
   2 | 
   4 | 
   Experiment | 
   The Measurement of Parameters and Link Characteristics of Thyristor  DC Speed Regulation System | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Research on Static Characteristics  of Irreversible Single Closed Loop  DC Speed Control System | 
   2 | 
   √ | 
   
  | 
   Designable | 
  
  
   Double Closed Loop Tyristor  Irreversible DC Speed Control System | 
   2 | 
   
  | 
   √ | 
   Basic | 
  
  
   Double Closed Loop Three-phase  Asynchronous Motor Voltage and  Speed Regulation System | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | CNC Machining and Programming Technology | 
   2 | 
   4 | 
   Experiment | 
   CNC Lathe Programming and Operation B | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   CNC Milling Machine  Programming and Operation C | 
   2 | 
   √ | 
   
  | 
   Basic | 
  
  
   Interpolation Principle  and Servo Control C | 
   2 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Automatic Programming and Processing C | 
   2 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Electronic Circuit Design and Production | 
   3 | 
   40 | 
   Modern Engineering Training | 
   PCB Schematic and Layout Design | 
   16 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Electronic System Design | 
   16 | 
   √ | 
   
  | 
   Designable | 
  
  
   Electronic Circuit Board  Production and Assembly | 
   8 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Comprehensive Training of Test System | 
   3 | 
   40 | 
   Modern Engineering Training | 
   Comprehensive Training of Test System | 
   16 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   Comprehensive Training of  Modern Instrument Design | 
   12 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Robot Comprehensive Training | 
   12 | 
   
  | 
   √ | 
   Comprehensive | 
  
  
   | Comprehensive Training of Single Chip Machine Application System | 
   4 | 
   40 | 
   Modern Engineering Training | 
   Design of Single Chip  Microcomputer Display System | 
   8 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Single-chip Audio System Design | 
   12 | 
   √ | 
   
  | 
   Designable | 
  
  
   Single-chip Electromechanical  System Design | 
   8 | 
   √ | 
   
  | 
   Designable | 
  
  
   | 3D8 Light Cube Creative Design | 
   12 | 
   
  | 
   √ | 
   Creative | 
  
  
   | Independent Innovation Design | 
   12 | 
   
  | 
   √ | 
   Designable | 
  
  
   | Electromechanical Integrated Control Training | 
   3 | 
   40 | 
   Modern Engineering Training | 
   Electrical Control Comprehensive Training | 
   10 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Pneumatic and Hydraulic  Comprehensive Training | 
   10 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   Comprehensive Training of Modular  Manufacturing System | 
   20 | 
   √ | 
   
  | 
   Comprehensive | 
  
  
   | Digital Design and Manufacturing Project Practice A | 
   1 | 
   40 | 
   Modern Engineering Training | 
   3D Digital Modeling of  Complex Products (Engines or  Other Typical Products) | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Product CAID Development | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   Rapid Development of  Reverse Engineering Products | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | CAE Analysis and Simulation | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | CAM CNC Automatic Programming | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Digital Design and Manufacturing Project PracticeB | 
   1 | 
   40 | 
   Modern Engineering Training | 
   Mold CAD (3D Digital Modeling) | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | CAE Analysis and Simulation of Typical Processes | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Rapid Prototyping of Molds | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | CAM CNC Automatic Programming | 
   40 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Digital Design and Manufacturing Project PracticeC | 
   3 | 
   40 | 
   Modern Engineering Training | 
   3D Modeling and Design Training of Parts | 
   14 | 
   √ | 
   
  | 
   Designable | 
  
  
   Comprehensive Training of  CNC Programming and Machining | 
   20 | 
   √ | 
   
  | 
   Designable | 
  
  
   | Digital Measurement of Parts | 
   6 | 
   √ | 
   
  | 
   Designable  |