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 |