
FR500D Series Special Purpose Inverter for Elevator
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5,Trial run in normal mode, switch to normal operation mode for testing, to improve the comfort by
adjusting acceleration & deceleration (F03.00, F03.01) and S curve time (F03.11)
2.2 Two multi-step speed terminal elevator controller
High speed is controlled by one of terminals’ on-off, another terminal is for the control of leveling
speed or 0 speed according to different controller. The wiring is as below:
R
T
U
V
W
M
R1A
R1B
R1C
DI1
Up
Brake
FR500D
S
3-Phase 380VAC
DI2
Down
DI3
High Speed
DI4
DI5
Inspection
R
2
A
R
2
B
R
2
C
KM2
KM2
DI6
Base Block
+
PB
Resistance
24V
Y1
DI7
COM
COM
Fault
Elevator
Controller
KM1
Leveling/Zero Speed
Fig. 2-2 Wiring of two multi-step speed terminal elevator controller
To complete the wiring of controller, elevator and motor, no need R2 & Y1 wiring if the controller is
without operation contactor (KM20) and fault signal receive. Then commissioning procedure as below
1,To set high speed and leveling speed, which are switched through these two terminals. If the
terminal signals of the controller are high speed signal and leveling speed signal, related setting
parameter is as below:
F12.00= 0
F12.01=High speed
F12.02= Leveling speed
If the terminal signals of the controller are high speed signal and 0 speed signal, related setting
parameter is as below:
F12.00= Leveling speed
F12.01=High speed
F12.02= 0
2, To set maintenance speed. Maintenance speed and leveling speed will be common in some
elevator controllers, if no maintenance signal output, no need wiring for maintenance; If maintenance
signal output available, the speed can be set via function code
H00.13=Maintenance speed
3,Base block signal, no need wiring of base block if base block signal is not available in elevator
controller; If base block is available, most of elevator controllers provide normally closed signal, if so
need to set DI7 in anti-logic as below
F04.14=00010
4,Maintenance operation testing. The elevator controller switched to maintenance operation mode,