The programmable controller tr*ning device integrates programmable logic controllers, programming software, simulation control experiment hanging boxes, and physical objects. It can intuitively conduct basic instruction tr*ning of PLC , and multiple widely used PLC practical application simulation experiments and physical control It also provides good conditions for high-level design and development experiments. Able to complete multiple electrical control experiments.
This tr*ning device is suitable for majors such as mechanical and electrical equipment installation and m*ntenance, electromechanical technology application, electrical operation and control, electrical technology application, electronic and electrical application and m*ntenance in higher vocational colleges and vocational schools, as well as "Programmable Controller" for non-mechanical and electrical majors. Technology", "Electrical and PLC Control Technology", "PLC and its Application", etc. It is also suitable for PLC practical operation and skill appr*sal assessment in technical schools, vocational tr*ning schools, vocational education centers and appr*sal stations.
2. Features:
1. The device adopts a component structure, and it is convenient to replace the experimental modules. If you need to expand the functions or develop new experiments, you only need to add the experimental module hanging box, and it will never be eliminated.
2. Using Siemens programmable controller and modular design, different control systems can be formed according to different needs.
3. Network teaching experiment of PLC host: Equipped with RS485 network communication (CC-Link communication can also be selected, the price is negotiable), the teacher's computer (master station) conducts direct communication experiments with the PLC host (slave station) respectively (ie. 1:N communication), any PLC host (master station) conducts direct communication experiments with the PLC host (slave station) (ie, N:N communication).
3. Technical performance
1. AC power supply: three-phase five-wire AC 380 V±10% 50Hz;
2. Temperature: -10~50℃; Environmental humidity: ≤90% without water condensation;
3. Machine power consumption: ≤1.0 kVA;
4. Safety protection measures: The desktop of the tr*ning platform is made of high-insulation, high-strength, and high-temperature-resistant materials. It has grounding protection and leakage protection functions, and its safety complies with relevant national standards. Use high-insulation safety sockets and high-strength safety experimental wires with insulating sheaths
5. Overall dimensions: 1600mm×730mm×1700mm
4. Basic configuration
1. Power module: Three-phase four-wire 380V AC power supply supplies power to the device after passing through the *r switch. The grid voltmeter monitors the grid voltage and is equipped with fuse protection. The power supply of the control panel is controlled by a leakage protection switch and a start-stop switch; three-phase There are one set of four-wire 380V and single-phase 220V power supplies. The output is controlled by a start-stop switch and is protected by a fuse.
2. DC voltage: 24V, +5V output, 0~±10V adjustable output; DC current: 4~50mA adjustable output;
3. Tr*ning table: The tr*ning table has an aluminum-wood structure, and the desktop is made of fireproof, waterproof, and wear-resistant high-density board; the cabinet is equipped with drawers for placing tools and information, and the computer desk is designed as a joint.
4. Timer and alarm recorder indicator light; selector switch, buzzer and relay unit; voltmeter range 0~30V, accuracy 0.5 level; ammeter range 0~30mA, accuracy 0.5 level;
5. Host tr*ning component: Siemens S7-1200 CPU1214C, 14 inputs/10 outputs, integrated 2AI. Integrated Ethernet interface, supports Profinet. Comes with programming cable.
6. Experimental stool: The stool surface is made of imported PP injection molding, the color is off-white; the middle tube is a round tube with a diameter of 50mm and a wall thickness of 1.2mm; the decorative cover is made of ABS injection molding.
7. Three-phase asynchronous motor: 380V/180W; speed: 1400r/min
8. Attachments: Each equipment should be equipped with experimental instructions.
9. PLC tr*ning components: four-way answering machine control, traffic light automatic control, four-story elevator control, vending machine control, robot automatic control, liquid mixing device automatic control, automatic washing machine control, light of the sky tower, level four Conveyor belt control, m*l sorting control.
10. Virtual simulation system
1. M*ntenance of electricians , electronic motors and vocational qualification tr*ning assessment simulation software
This software is in apk format and can be used on PC or mobile. This software can set faults manually or automatically. This software can manually set fault points through the green box in the circuit diagram (you can set up to 39 fault points), you can also automatically set one random fault point, two random fault points, three random fault points, four random fault points, and five random fault points through the system. It has functions such as toolbox, component library, magnifying glass, circuit diagram, etc. You can choose a multimeter for testing through the toolbox, select appropriate components through the component library, and clearly understand each component and circuit through the magnifying glass. This software allows students to understand the working principle and circuit structure of the motor star-delta start control circuit through the setting of faults in the motor star-delta start control circuit and various investigations.
2. Virtual spectrum analyzer, logic analyzer, oscilloscope, and three-meter simulation software:
This software is in apk format and can be used on PC or mobile terminals. The functions of this software are: resistance measurement, AC voltage measurement (measuring transformer, if the multimeter burns out when measuring the transformer, black smoke will emit prompts and can reset the multimeter), determine the polarity of the transistor, measure the DC voltage (the light turns on when the ammeter is turned on), measure the DC current, and determine the quality of the capacitor. This software can drag the red and black pen tips at will. When the two pen tips are dragged and positioned on the object to be measured, a red circle will be displayed. If the positioning is not accurate, no red circle will be displayed, and when incorrect operations are performed (such as the wrong range selected, If the measured data is wrong, etc.), the meter pointer will be unresponsive, prompting errors and re-measurement, etc. This multimeter can select AC voltage range, DC voltage range, resistance range, current range, resistance adjustment to 0, and can enlarge the display data. Clearly view the measured data size. Students can learn the correct use of multimeters through this software.
3. Microcontroller , PLC programmable design and control virtual simulation software:
This software is developed based on unity3d and has built-in experimental steps, experimental instructions, circuit diagrams, component lists, connection lines, power on, circuit diagrams, scene reset, return and other buttons. After the connections and codes are correct, you can start/stop, The forward movement and reverse movement buttons operate the 3D machine tool model to move. In the connected line state, the 3D machine tool model can be enlarged/reduced and translated.
1. Relay control: Read the experiment instructions and enter the experiment. By reading the circuit diagram, select the relays, thermal relays, switches and other components in the component list and drag and drop them into the electrical cabinet. The limiters are placed in the three-dimensional On the machine tool model, you can choose to cover it, and some component names can be renamed. Then click the Connect Line button to connect terminals to terminals. After successfully connecting the machine tool circuit, choose to turn on the power and proceed. If the component or line An error box will pop up if there is a connection error, and the scene can be reset at any time.
2. PLC control: The experiment is the same as relay control, with the addition of PLC control function. After the connection is completed, enter the program writing interface through the PLC coding button, and write two programs, forward and reverse, with a total of 12 ladder diagram symbols. The writing is completed. Finally, select Submit for program verification. After the verification is successful, turn on the power for operation. Error boxes will pop up for component, line connection, and code errors, and the scene can be reset at any time.
3. Single-chip microcomputer control: The experiment is the same as relay control, with the addition of single-chip microcomputer control function. After the connection is completed, enter the programming interface through the C coding button, enter the correct C language code, and after successful submission and verification, turn on the power for operation, components, lines If there are connection or code errors, an error box will pop up, and the scene can be reset at any time.
5. Practical tr*ning projects
1. AND, OR, non-logical function experiment
2. Timer and counter function experiments
3. Jump and branch function experiments
4. Shift register experiment
5. Data processing function experiment
6. Differential and bit operation experiments
7. Four-way transponder control experiment
8. Traffic light automatic control experiment
9. Four-story elevator control experiment
10. Vending machine control experiment
11. Robot automatic control experiment
12. Automatic control experiment of liquid mixing device
13. Automatic washing machine control experiment
14. Sky Tower Light Experiment
15. Four-level conveyor belt control experiment
16. M*l sorting control experiment
17. Three-phase squirrel cage asynchronous motor inching control and self-locking control (actual object)
18. Three-phase squirrel cage asynchronous motor linkage forward and reverse control (actual object)
19. Three-phase squirrel-cage asynchronous motor with delayed forward and reverse control (actual object)
20. Three-phase squirrel cage asynchronous motor Y/△ conversion starting control (actual object)
6. Configuration list
serial number |
name |
model |
quantity |
unit |
1. |
Experimental screen |
1 |
tower |
|
2. |
Power control box |
Steel spray |
1 |
tower |
3. |
Experiment table |
Aluminum wood structure |
1 |
open |
4. |
PLC host |
CPU1214C, 14 inputs/10 outputs, integrated 2AI |
1 |
tower |
5. |
Student stool |
plastic steel structure |
2 |
open |
6. |
Communication Cable |
1 |
strip |
|
7. |
Experimental components |
Four-way answering machine control, traffic light automatic control, four-story elevator control, vending machine control, robot automatic control, liquid mixing device automatic control, automatic washing machine control, sky tower light, four-level conveyor belt control, m*l sorting control |
1 |
set |
8. |
software |
Siemens programming software and demonstration programs |
1 |
set |
9. |
manual |
Experimental guidance |
1 |
book |
10. |
motor |
380V/180W |
1 |
tower |
11. |
Special wire |
Experimental connection line 50CM self-locking line |
20 |
strip |
15CM self-locking thread |
10 |
strip |
||
System cabling |
1 |
strip |
||
12 |
Computer (prepared by user) |
Dual-core/4G/integrated graphics/500G hard drive/19-inch display/keyboard and mouse set |
1 |
tower |
Hot-selling product: Electrician tr*ning bench
Wechat scan code follow us
24-hour hotline+86 18916464525
Phone18916464525
ADD:Factory 414, District A, No. 6, Chongnan Road, Songjiang Science and Technology Park, Shanghai ICP: Sitemap