50 Guidelines for planning the electrical installation
Examining the compatibility of the motor and drive
Use an asynchronous AC induction motor, permanent magnet synchronous motor, AC
induction servomotor or ABB synchronous reluctance motor (SynRM motor) with the drive.
Select the motor size and drive type from to the rating tables in chapter
on
basis of the AC line voltage and motor load. Use the DriveSize PC tool if you need to tune
the selection more in detail.
Make sure that the motor withstands the maximum peak voltage in the motor terminals.
See the
on page
. For basics of protecting the motor insulation and
bearings in drive systems, refer to section
Protecting the motor insulation and bearings
below.
Note:
•
Consult the motor manufacturer before using a motor whose nominal voltage differs
from the AC line voltage connected to the drive input.
•
The voltage peaks at the motor terminals are relative to the supply voltage of the drive,
not the drive output voltage.
•
If the motor and drive are not of the same size, consider the following operation limits
of the drive control program:
•
motor nominal voltage range 1/6 ... 2 ·
U
N
•
motor nominal current range 1/6 ... 2 ·
I
N
of the drive in DTC control and 0 ... 2 ·
I
N
in scalar control. The control mode is selected by a drive parameter.
Protecting the motor insulation and bearings
The drive employs modern IGBT inverter technology. Regardless of frequency, the drive
output comprises pulses of approximately the drive DC bus voltage with a very short rise
time. The pulse voltage can almost double at the motor terminals, depending on the
attenuation and reflection properties of the motor cable and the terminals. This can cause
additional stress on the motor and motor cable insulation.
Modern variable speed drives with their fast rising voltage pulses and high switching
frequencies can generate current pulses that flow through the motor bearings. This can
gradually erode the bearing races and rolling elements.
Optional du/dt filters protect motor insulation system and reduce bearing currents.
Common mode filters mainly reduce bearing currents. Insulated N-end (non-drive end)
bearings protect the motor bearings.
Содержание ACS880-07C
Страница 1: ... ABB INDUSTRIAL DRIVES Hardware manual ACS880 07C drives 45 to 710 kW 50 to 700 hp ...
Страница 4: ......
Страница 12: ...12 ...
Страница 28: ...28 Operation principle and hardware description General information on the cabinet layout IP22 IP42 ...
Страница 74: ...74 Electrical installation PE PE 8 PE 13 11 7 8 12 13 ...
Страница 88: ...88 Electrical installation ...
Страница 98: ...98 Control unit of frames R6 to R9 ...
Страница 110: ...110 Fault tracing ...
Страница 121: ...Maintenance 121 9 After replacing with a new fan install and reset according to the reverse order 5 3 6 3 4 8 7 7 ...
Страница 124: ...124 Maintenance 5 Remove the copper bar 6 Undo the four upper and lower nuts of the drive module ...
Страница 125: ...Maintenance 125 7 Install the sliding rail ...
Страница 132: ...132 Maintenance 9 Fasten the extraction ramp to the cabinet base with two screws 9b 9a ...
Страница 136: ...136 Maintenance ...
Страница 148: ...148 Technical data R6 Input and output cable terminal size incoming switch OT160 ...
Страница 149: ...Technical data 149 R7 Input and output cable terminal size incoming switch OT160 OT250 ...
Страница 150: ...150 Technical data R8 Input and output cable terminal size incoming switch OT160 OT250 ...
Страница 151: ...Technical data 151 R7 Input and output cable terminal size incoming switch OT315 ...
Страница 152: ...152 Technical data R8 Input and output cable terminal size incoming switch OT315 ...
Страница 153: ...Technical data 153 R9 Input and output cable terminal size incoming switch OT315 OT400 ...
Страница 154: ...154 Technical data R9 Input and output cable terminal size incoming switch OT630 ...
Страница 155: ...Technical data 155 R6 R7 R8 Input cable terminal size incoming switch OT160 OT250 option F250 ...
Страница 156: ...156 Technical data R7 R8 Input cable terminal size incoming switch OT315 option F250 ...
Страница 157: ...Technical data 157 R9 Input cable terminal size incoming switch OT315 OT400 option F250 ...
Страница 158: ...158 Technical data R9 Input cable terminal size incoming switch OT630 option F250 ...
Страница 159: ...Technical data 159 R6 R7 R8 Output cable terminal size DU DT filter option E205 ...
Страница 160: ...160 Technical data R9 Output cable terminal size DU DT filter option E205 ...
Страница 161: ...Technical data 161 R10 Input and output cable terminal size ...
Страница 162: ...162 Technical data ...
Страница 163: ...Technical data 163 ...
Страница 164: ...164 Technical data R11 Input and output cable terminal size ...
Страница 165: ...Technical data 165 ...
Страница 166: ...166 Technical data ...
Страница 172: ...172 Technical data ...
Страница 174: ...174 Dimension drawings Frame sizes R6 to R8 ...
Страница 175: ...Dimension drawings 175 Frame size R9 ...
Страница 176: ...176 Dimension drawings Frame size R10 ...
Страница 177: ...Dimension drawings 177 Frame size R11 ...
Страница 178: ...178 Dimension drawings ...
Страница 180: ...180 Safe torque off function ...