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CL1Y4-R1B2 Screw terminal type output module MITSUBISHI CL1Y4-R1B2
Brand: MITSUBISHI
Name: Screw terminal type output module
Model: CL1Y4-R1B2
Output type: relay output.
Output points: 4 points.
OFF leakage current: -.
Output protection function: No.
Rated load voltage / current: DC30V/AC250V/2A.
External connection: 2 wire.
Screw terminal table type.
Minimum size of industry.
The connection object at a glance with terminal cover plate.
Input module for public end of positive pole and negative pole.
Terminal table structure capable of connecting with 2 wire type sensor and load in the same condition.
Can be installed along the 6 direction.

Input type: DC input, positive common end.
Input points: 8 points.
Enter the response time: 0.2ms the following.
Rated input voltage / current: DC24V/5mA.
External connection: 3 wire.
Fast connector type.
Simple wiring through quick connector.
Can be installed along the 6 direction.
MITSUBISHI PLC program simulation debugging
The basic idea of program simulation debugging is,
In order to facilitate the form of simulation to generate the actual state of the scene,
Create the necessary environmental conditions for the operation of the program MITSUBISHI CL1Y4-R1B2 CL1Y4-R1B2
Depending on the way the field signals are generated,
The simulation debugging has two forms of hardware simulation and software simulation. Screw, 2 piece type terminal
Thermocouple Input module MITSUBISHI CL1Y4-R1B2.
Number of channels: 8 channels.
Number of stations: 4 stops.
Station type: remote equipment station.
MITSUBISHI PLC online debugging.
On-line debugging is the process that will through the simulation debugging to further carry on the on-line unification to adjust.
On-line debugging process should be step by step,
From MITSUBISHI PLC only connected to the input device, and then connect the output device, and then connect to the actual load and so on and so on step by step MITSUBISHI CL1Y4-R1B2.
If you do not meet the requirements, the hardware and procedures for adjustment.
Usually only need to modify the part of the program can be.
MITSUBISHI PLC hardware implementation
Hardware implementation is mainly for the control cabinet and other hardware design and field construction MITSUBISHI Screw terminal type output module MITSUBISHI Screw terminal type output module.
Design control cabinet and the operating table and other parts of the electrical wiring diagram and wiring diagram.
Electrical interconnection diagram of each part of the design system.
According to the construction drawings of the site wiring, and carry out a detailed inspection.
Because the program design and hardware implementation can be carried out at the same time,
So the design cycle of the MITSUBISHI PLC control system can be greatly reduced MITSUBISHI Screw terminal type output module. Enter 8 points: 24VDC.
4 wire type.
Response time: 1.5ms.
Output 8 points: 24VDC.
Transistor output.
Waterproof connector type.
MITSUBISHI PLC hardware implementation
Hardware implementation is mainly for the control cabinet and other hardware design and field construction.
Design control cabinet and the operating table and other parts of the electrical wiring diagram and wiring diagram.
Electrical interconnection diagram of each part of the design system.
According to the construction drawings of the site wiring, and carry out a detailed inspection.
Because the program design and hardware implementation can be carried out at the same time,
So the design cycle of the MITSUBISHI PLC control system can be greatly reduced.
MITSUBISHI PLC online debugging.
On-line debugging is the process that will through the simulation debugging to further carry on the on-linee unification to adjust CL1Y4-R1B2.
On-line debugging process should be step by step,
From MITSUBISHI PLC only connected to the input device, and then connect the output device, and then connect to the actual load and so on and so on stepp by step MITSUBISHI CL1Y4-R1B2.
If you do not meet the requirements, the hardware and procedures for adjustment.
Usually only need to modify the part of the program can be.


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