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KATANA S610M Inverter Specialized for Elevator Manual
In During the process of shaft self-learning, the system will alarm the shaft self-learning failure when it detects the position
deviation of the forced exchange switch between installation position and the system designed position.It can be seen from
F21.02~F21.07 that the distance of each forced exchange switch needs to be adjusted.If F21.02~F21.07 is negative value, it
indicates that distance of the forced deceleration switch is shorter and needs to be adjusted opposite the direction of the end
station, or increase the average acceleration and deceleration rate (F20.07).If F21.02~F21.07 is positive, it indicates that the
distance of the forced deceleration switch is longer, so it needs to be adjusted to the direction of the end station, or reduce
the average acceleration and deceleration rate (F20.07).
F21.08
Switch-on time of leveling switch
0~200ms
2
When the elevator leads the leveling of every floor is not precise due to certain factors, and also every time is
over-leveling, , namely the sill of car door is higher than hall door during upward-running, or the sill of car door is lower
than hall door during downward-running, can increase this parameter to realize precise leveling.
F21.09
Disposition method of the first-class
forced exchange
0~1
0
0: normal disposition, installation distance of the first-level forced exchange switch does not allow to lower than the
minimum value required;
1: No warning when height of the first-level forced exchange switch is too low during shaft learning. Emergency stop when
according to the learning height to calculate forced exchange speed limit and motion. This function is mainly to solve the
problem of forced exchange cross-floors of high-speed elevator.
F21.10
Interval of double-leveling photo-switch
0~600mm
300
When the double-level photoelectric switch is adopted, this parameter is used to record the distance between the
photoelectric switches of the upper and lower levels after the successful learning of the shaft.
F21.11
Height of upward forced deceleration
switch 1
00.000~60.000m
0
F21.12
Height of upward forced deceleration
switch 2
00.000~60.000m
0
F21.13
Height of upward forced deceleration
switch 3
00.000~60.000m
0
F21.14
Height of downward forced deceleration
switch 1
00.000~60.000m
0
F21.15
Height of downward forced deceleration
switch 2
00.000~60.000m
0
F21.16
Height of downward forced deceleration
switch 3
00.000~60.000m
0
F21.11~F21.13 respectively represents the distance from upward first-class ~ third-class forced deceleration switch to
leveling location of up end station.
F21.14~F21.16 respectively represents the distance from downward first-class ~ third-class forced deceleration switch to
leveling location of down end station.
F21.17
Decelerate of upward forced deceleration
switch 1
0.020~2.000 m/s
2
1.200
F21.18
Decelerate of upward forced deceleration
switch 2
0.020~2.000 m/s
2
1.000
F21.19
Decelerate of upward forced deceleration
switch 3
0.020~2.000 m/s
2
0.900
F21.20
Decelerate
of
downward
forced
deceleration switch 1
0.020~2.000 m/s
2
1.200
F21.21
Decelerate
of
downward
forced
deceleration switch 2
0.020~2.000 m/s
2
1.000
F21.22
Decelerate
of
downward
forced
deceleration switch 3
0.020~2.000 m/s
2
0.900
F21.17~F21.19, F21.20~F21.22 respectively indicate the maximum deceleration speed when the elevator meets difreent
classes upper and lower forced deceleration switches, and perform forced deceleration. The above parameters are
automatically generated by the program after shaft self-learning.