VP5000-DC/DC60, VP5000-DC/DC200-HL
Product description
Last edited 2019-02-08
by Sonja Scheunert
Filename
VP5000_DCDC60_200-HL_installation_manual_v1-4en.docx
29 / 173
VECTOPOWER
VP5000-DC/DC60
VECTOPOWER
VP5000-DC/DC200-HL
precharging (only with
VECTOPOWER
VP5000-
DC/DC200-HL)
the permissible external capacitance
must be reduced to prevent
overloading of the PTC resistors
Table 6: Electrical values for use as a boost converter
3.3.4
Electrical data - voltage ripple
The voltage ripples that occur depend on the operating mode, the operating point, and the
selected parameters of the control. Especially in the DC link [DC+/-] the voltage ripples on the
internal capacitors depend on the operating point.
VECTOPOWER
VP5000-DC/DC60
VECTOPOWER
VP5000-DC/DC200-HL
Operation as buck
converter
(U
pp
here means voltage
peak to peak)
[DC+/-] is typically below U
pp
= 10 V
[/-] is typically below U
pp
=
10 V
[DC+/-] is typically below U
pp
= 10 V
[/-] is typically below U
pp
=
10 V
Operation as a boost
converter
(U
pp
here means voltage
peak to peak)
[DC+/-] and [/-] are
typically below U
pp
= 10 V
[DC+/-] and [/-] are
typically below U
pp
= 10 V
Table 7: Electrical data - voltage ripple
3.3.5
Electrical data - [ST1] - [ST4] logical connections
[ST1] - [ST4]: General data for logical connections
VECTOPOWER
VP5000-DC/DC60
VECTOPOWER
VP5000-DC/DC200-HL
Supply voltage for signal
exchange
24
V DC (18
V…28
V)
Current for signal exchange
@ 24 V DC
Typical: 1.5 A DC
(without externally connected relays, sensors, ...)
The inrush current can be higher.
Use an external slow-blow fuse with max. 6 A DC to protect the power supply
for the signal exchange in the event of a fault.
Table 8: Electrical data - general data for [ST] - [ST4] logical connections