Goodrive100-PV Series Solar Pump Inverter
Function
code
Boost module
P07.11
temperature
Inverter module
P07.12
temperature
Inverter electricity
P07.15
consumption
high-order bits
Inverter electricity
P07.16
consumption
low-order bits
P07.27
Current fault type 0: No fault
Previous fault
P07.28
Previous 2 fault
P07.29
Previous 3 fault
P07.30
Previous 4 fault
P07.31
Previous 5 fault
P07.32
Previous 6 fault
P07.57
Previous 7 fault
P07.58
Name
0: Valid only for keypad control
1: Valid both for keypad and terminal control
2: Valid both for keypad and communication
control
3: Valid for all control modes
When the inverter is configured with the
boost module, this function code displays
the temperature of this module. This
function code is valid only in the AC mode.
This function code is invalid in the PV mode.
-20.0–120.0° C
-20.0–120.0° C
Used to display the electricity consumption
of the inverter.
Inverter
P07.15*1000 +
Setting range of P07.15: 0–65535kWh
(*1000)
Setting range of P07.16: 0.0–999.9 kWh
1: Inverter unit U-phase protection (OUt1)
type
2: Inverter unit V-phase protection (OUt2)
3: Inverter unit W-phase protection (OUt3)
4: Overcurrent during acceleration (OC1)
type
5: Overcurrent during deceleration (OC2)
6: Overcurrent during constant speed
type
running (OC3)
7: Overvoltage during acceleration (OV1)
type
8: Overvoltage during deceleration (OV2)
9: Overvoltage during constant speed
running (OV3)
type
10: Bus undervoltage (UV)
11: Motor overload (OL1)
type
12: Inverter overload (OL2)
13: Phase loss on input side (SPI)
type
14: Phase loss on output side (SPO)
Description
electricity
consumption
P07.16
-36-
Function parameter list
Default Modify
●
●
●
=
●
●
●
●
●
●
●
●
●
Need help?
Do you have a question about the Goodrive100-PV Series and is the answer not in the manual?
Questions and answers
I want to connect a low water level sensor to GD100-PV invt how it supposed to do
The low water level sensor should be connected to the INVT Goodrive100-PV Series inverter at the designated terminal. Based on the standard wiring diagram:
1. Identify the low water level switch terminals.
2. Connect the common terminal of the sensor to the COM terminal on the inverter.
3. Connect the sensor output to the appropriate input terminal (e.g., S1 or S4) on the inverter.
4. Ensure wiring is secure and correctly configured according to the installation guidelines.
This setup allows the inverter to receive signals from the low water level sensor and respond accordingly.
This answer is automatically generated
@Hamse Ismael