01 Introduction to Y1 multi-function output port
The multi-function output port Y1 is an output terminal of the frequency converter and has rich functions. The Y1 output port outputs a 24V active signal, which is used to control small relays, starters and other original components, and can be used as a part of electrical system control.
Step:
Multi-function terminal wiring diagram:
Multifunctional digital output terminal function table:
Set Value | Function | Set Value | Function |
0 | No Output | 20 | PID feedback reaches the lower limit |
1 | The inverter is running (RUN) | 21 | Analog level detection ADT1 |
2 | Output frequency reached (FAR) | 22 | Analog level detection ADT2 |
3 | Output frequency detection FDT1 | 24 | Undervoltage status |
4 | Output frequency detection FDT2 | 26 | The set time is reached |
5 | Reversing operation (REV) | 27 | Running at zero speed |
6 | Jog running | 38 | Loading |
7 | Frequency converter fault/protection action | 40 | Current Reaches |
8 | The inverter is ready for operation (READY) | 41 | Torque reached |
9 | Upper limit frequency reached | 42 | The speed reaches |
10 | Lower limit frequency reached | 47 | PLC output |
11 | Reaching current limit | 59 | Sleep indication |
12 | Reaches the overvoltage stall voltage | 67 | Brake control |
13 | Simple PLC cycle completed | 68 | New material detection output |
14 | Set count value reached | 69 | FDT1 lower bound (pulse) |
15 | The specified count value is reached | 70 | FDT2 lower bound (impulse) |
16 | Height reached (arrived in meters) | 71 | FDT1 lower bound (invalid during pulse and JOG) |
17 | Motor overload warning | 72 | FDT2 lower bound (invalid during pulse and JOG) |
18 | Frequency converter overheating warning | 73 | Output current exceeds limit |
19 | PID feedback reaches upper limit |
Video demonstration:
02 Introduction to analog output function
The analog output function refers to converting the voltage, current, frequency and other parameter values processed inside the frequency converter into analog electrical signals (such as voltage signals or current signals) related to the controlled object through the circuit, and outputting them to the external control system middle. These analog signals can be directly used for monitoring, adjustment, feedback, etc. of the control system to improve the automation and control accuracy of the system.
Step:
Analog multi-function output terminal function table:
Set Value | Function | Illustrate |
0 | Operating frequency (absolute value) | 0.00Hz-Fmax corresponds to output 0.0%-100.0% |
1 | Set frequency (absolute value) | 0.00Hz-Fmax corresponds to output 0.0%-100.0% |
2 | Output torque (absolute value) | 0.0%-200.0% corresponds to output 0.0%-100.0% |
3 | Set torque (absolute value) | 0.0%-200.0% corresponds to output 0.0%-100.0% |
4 | Output current | 0.0A-2*le corresponds to output 0.0%-100.0% |
5 | Output voltage | 0.0V-1.5*Ue corresponds to output 0.0%-100.0% |
6 | Bus voltage | 0V-about 2.63*Ue corresponding output 0.0%-100.0% (That is, the 220V driver’s 579V corresponds to an output of 100.0%, the 380V driver’s 1000V corresponds to an output of 100.0%, and drivers with different voltage levels have the same output voltage at rated voltage. |
7 | Output power | 0.00kW-2*Pe corresponds to output 0.0%-100.0% |
8 | AI1 | Output the actual input voltage instead of the offset result 0.0%-100.0% corresponding to the output 0.0%-100.0% |
9 | AI2 | |
12 | High frequency pulse input (100% corresponds to 100.00kHz) | F02.26-F02.28 corresponds to output 0.0%-100.0% |
13 | Communication given 1 | Communication is given through the M1 terminal, and the communication address is 701AH. |
14 | Count value | 0-F16.03 corresponds to output F16.10-F16.11 |
15 | Length value | 0-F16.01 corresponds to output F16.10-F16.11 |
16 | PID output percentage | ‘-100.0%-100.0% corresponds to output 0.0%-100.0% |
18 | PID feedback | ‘-100.0%-100.0% corresponds to output 0.0%-100.0% |
19 | PID given | ‘-100.0%-100.0% corresponds to output 0.0%-100.0% |
Video demonstration:
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