Goodrive100-PV Series Solar Pump Inverter
Function
code
Full-water
P15.14
level delay
Full-water
P15.15
level wake-up
Empty-water
P15.16
level delay
Empty-water
P15.17
level wake-up
Hydraulic
P15.18
damage
Water pump
run time in
P15.19
underload
detection
P15.20
value at
underload
Name
0–10000s
Time setting on full-water level delay. (This
parameter is still valid for digital full-water
signal.)
0–10000s
Time setting on full-water level wake-up
delay. (This parameter is still valid for digital
delay
full-water signal.)
0–10000s
Time setting on empty-water level delay.
(This parameter is still valid for digital
empty-water signal.)
0–10000s
Time setting on empty-water level wake-up
delay. (This parameter is still valid for digital
delay
empty-water signal.)
0.0–100.0%
If
P15.18
invalid.
probe
If
P15.18
water level control analog signal is greater
than the value set in P15.18, the (tSF) fault
is reported and the inverter stops.
0.0–1000.0s
Duration in which the water pump runs in
underload state. In continuous underload
condition, the underload alarm (A-LL) is
state
reported when the run time is reached.
0.0%: Automatic detection on underload
0.1–100.0%
A value rather than 0.0% indicates it is
Current
determined by P15.20. 100.0% corresponds
to the motor rated current.
When
frequency minus ramp frequency is less
running
than or equal to P15.22 (lagging frequency
threshold): If the actual current value at the
actual frequency is continuously less than
Description
is 0.0%, it indicates P15.18 is
is not 0.0%, when the detected
the
absolute
value
-43-
Function parameter list
Default Modify
5s
20s
5s
20s
0.0%
60.0s
00.00%
of
target
○
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○
◎
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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