5 profibus module, sk cu1-pbr (and sk 750e), Profibus module, sk cu1-pbr (and sk 750e), Table 4: sk cu1-pbr, overview of customer units – NORD Drivesystems BU0020 User Manual

Page 22

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PROFIBUS DP

– Supplementary manual options for NORD - Frequency Inverters

22

BU 0020 GB-2612

2.2.5 Profibus module, SK CU1-PBR (and SK 750E)

In addition to data connections, the Profibus customer units are also
equipped with conventional digital inputs and outputs. The
SK CU2-PBR can be used in both the SK 700E and the SK 750E
series.

By means of a relay contact, brake control and even warnings to
another system can be initiated.

Various digital functions can be programmed for the input. The
digital input has a 2.5V switching threshold for the evaluation of the
temperature sensor.

The bus termination resistor (R

ab

) can be switched in. For this, both

switches must be set to 'On'. A transfer rate of up to 1.5Mbit/s can
be used.

Profibus,

SK CU1-PBR

Functions

Maximum cross-

section

X6.1

Output relay

1.5 mm

2

X6.2

Digital input

1.5 mm

2

X6.3

Data cables

1.5 mm

2

X6.4

Data cables, parallel

1.5 mm

2

Detail:

DIP switch

Assembly

Description

Data

Profibus module

SK CU1-PBR

This option enables control of the SK 700E/750E via the
Profibus DP interface with the performance level DP-V0

Baud rate: up to 1.5
MBaud

1 x digital input

1 x output relay

Direct plugs, terminals
and connectors

Part No. 278200030

Table 4: SK CU1-PBR, overview of customer units

Note

The cable shield must be connected to the functional earth

3

(usually the

electrically conducting mounting plate) in order to avoid EMC interference in the
device.

With the two SK 8 shield terminals enclosed with option, the Profibus cables can be
connected to the shield bracket of the frequency inverter.

Pos: 36 /Anleitungen/Bussysteme/2. Baugruppen/Profibus [BU0020]Klemmenbelegung SK CU1-PBR @ 1\mod_1335342550420_388.docx @ 22231 @ 5 @ 1

3

In systems, electrical equipment is usually connected to a functional earth. This serves as a means to dissipate leakage and

interference currents in order to ensure EMC characteristics and must therefore be implemented according to high frequency
technology aspects.

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