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Baumuller b maXX 5500 - Electrical Data BM565 X Acceleration Units

Baumuller b maXX 5500
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Technical Data
Instruction handbook b maXX BM5500, BM5600, BM5700
Document No.: 5.13008.10
93
of 314
3
3.4.2.3 Electrical data BM565X acceleration units
BM5650
14)
BM5651
14)
BM5652
14)
Rated input power
1)2)
86 kVA 110 kVA 139 kVA
Rated input current
1)2)
(I
eff
) 125 A 160 A 190 A
Total harmonic distortion input current
1)2)
(THD
I
) 40 %
Max. input current
2)
(I
eff
) 250 A 320 A 380 A
Rated DC link voltage
1)
540 V
DC
DC link capacitance (internal) 4230 F 5170 F 5640 F
DC link capacitance (external), permitted Refer to ZPa
ge 220
DC link discharging time (internal DC link capacitance) 80 s 100 s 120 s
Waiting time between two switching-on operations no
Output voltage
1)3)
(U
AC
) 3 x 0 V to 3 x 370 V
Output frequency at 4 kHz
13)
0 Hz to 450 Hz
Rated output current
1)5)6)7)13)
(I
AC
) at 4 kHz
4)
130 A 165 A 200 A
Rated output current
1)5)6)7)13)
(I
AC
) at 8 kHz
4)
97 A 123 A 150 A
Output peak current
1)5)6)8)13)
(I
AC
) at 4 kHz
4)
260 A 330 A 400 A
Output peak current
1)5)6)8)13)
(I
AC
) at 8 kHz
4)
194 A 264 A 300 A
Max. peak current period
8)
1.25 s
Connected load DC link terminals Max. 110 kW
Brake resistor current, permitted (Î) Max. 150 A
Brake resistor, external 5
Brake resistor threshold (Û)
11)
780 V
Brake resistor peak power 120 kW
Permitted continuous brake r
esistor power external 80 kW
Power loss referring to
power input 2100 W 2300 W 3000 W
Power loss referring t
o control voltage 75 W
Power loss of device fan
referring to 230 V
AC
9)
190 W
Current of integrated brake control Max. 8.0 A
10)
Cooling air requirement device internal space 135 m
3
/h
Requirement to the water c
ooling Refer to ZPage 59
1)
All rated values refer to a DC link voltage of 540 V, a control voltage of 24 V and an environmental temperature of 40 °C.
2)
Using the power choke listed in ZPower chokesfrom page 288 at a power supply with U
K,power supply
= 0.4 %.
3)
The output voltage is a pulsed DC voltage. The operating range refers to the RMS of the fundamental wave.
U
AC
3 0 V to 3
U
DC
2
----------- 10 V


=
without overmodulation of the PWM.

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