Output points: 16 points.
Output type: leakage type.
Rated output voltage: DC12 ~ 24V.
Max load current: 0.5A/1 point.
Protection function: have.
Common way: 16 point / public end.
Input / output occupied points: 16 points (I/O distribution: output 16 points).
External wiring connection: 18 point terminal.
The switch input and output module is a device which can collect the input / output of the switch signal,
Digital I/O modules are often called.
The switch signal is collected to the computer or the computer to send the relevant instructions through the RS-485 bus to control the switch of the switch,
Remote control switch.
Communication protocol is a standard Modbus protocol or custom protocol.
Can be isolated to obtain DC24/48/100V, AC100/200V input signal.RS-232, RS-422/485.
Transmission speed: 230.4kbps.
MC protocol.
Communication protocol support function.
Can only be used on the ch1 side.
Device for immediate communication
Communication protocol support function through Works2 GX,
Can easily set the required agreement with the other equipment communication LY40NT5P-CM.
In addition, only the communication protocol library is required to select the equipment to be carried out,
Immediate connection
LY40NT5P-CM
The creation and editing of communication protocols are simple and easy to implement, even if there is no connection equipment in the communication protocol library,
Can also simply create a corresponding protocol for communication LY40NT5P-CM.
The content of the communication protocol that can be created in the list,
Can also be simply edited. Open collector output.
Axis of control: 2.
Maximum output pulse: pulse/s 200k.
Location data: 600 data / axis.
Max link distance: 2m.
With the parameter setting, the synchronization control can be easily realized. Do not need to write complex procedures.
Start / stop with synchronous control of the shaft LY40NT5P-CM.
Synchronous control of the axis and the positioning of the axis can coexist.
Through the clutch, the movement of the main shaft can be transferred to the output shaft.
Simple implementation of synchronization control.
Cam control is more simple
Cam data can easily create a variety of patterns.
Can be simple to achieve the gear, shaft, transmission, cam and other mechanical mechanisms to replace the software synchronization control.
It is not subject to the limitation of the concept of the electronic cam control so far, and can use the cam with high degree of freedom.
The stroke, speed, acceleration and beat can be confirmed on the graph, and the setting is carried out at the same time.
Can also be through the cam data thumbnail display, easy to confirm the cam data has been created.
Can import and export the cam data in CSV format. Number of input channels: 4ch.
Input voltage: DC - 10 - 10V.
Input current: DC0 ~ 20mA.
Input voltage: 100 ~ 100mV / minute.
Input thermocouple: K, J, T, E, N, R, S, B, U, L, PL II, W5Re/W26Re.
Input temperature resistance: Pt1000, Pt100, JPt100, Pt50.
Conversion speed: 50ms/ch.
Resolution (voltage / current / micro voltage): 1/20000
Resolution (thermocouple): B, R, S, N, PL II, W5Re/W26Re:0.3,, K, E, J, T, U, L:0.1.
Temperature measuring resistance: Pt100, JPt100:0.03, /0.1, Pt1000, Pt50:0.1.
Reduce the programming time.
The digital output value can be easily converted (zoom) to any number of functions without the program.
No need to use ladder diagram conversion program, can reduce the programming time.
Zoom setting example (L60AD4-CM).
The digital output value (20000 ~ 0) of the input range 20mA ~ 4mA is scaled to the value of positive and negative 20000.
Digital filter function
Simply set the parameters, you can eliminate thee function of the redundant frequency components LY40NT5P-CM.
Can be selected from low pass filter, high pass filter, medium pass filter.
No need to filter the ladder, can reduce programming time.
In addition, the conversion value of the A/D convertted by the filter can be obtained at the same time,
Therefore, the total processing time from the conversion to the filter processing can be shortened LY40NT5P-CM.