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P543, Actual bus value 1 3 – NORD Drivesystems BU0180 User Manual

Page 123

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6 Parameterisation

BU 0180 GB-0914

Pre-series version

123

Parameter

{Factory setting}

Setting value / Description / Note

Device

Supervisor

Parameter
set

P543

[-01]

...

[-03]

Actual bus value 1 3

(Actual bus value 1 … 3)

S

P

0 ... 24

{ [-01] = 1 }

{ [-02] = 4 }

{ [-03] = 9 }

The return value can be selected for bus actuation in this parameter.

NOTE: For further details, please refer to the relevant bus manual or the description for (P418).

(Values from 0% … 100% correspond to 0000

hex

… 4000

hex

)

For standardisation of the actual values: See also (Section 9.9).

[-01] = Actual bus value 1

[-02] = Actual bus value 2 (only for PPO Type 2 or 4)

[-03] = Actual bus value 3 (only for PPO Type 2 or 4)

(Definition of frequencies, see Section 9.10)

Possible values which can be set:

0 = Off

1 = Actual frequency

(x=4000

hex

*f[Hz]/(P105))

2 = Actual speed

(x=4000

hex

*n(rpm]/(P202))

3 = Current

(x=4000

hex

*I[A]/(P203))

4 = Torque current (100% = P112)

(x=4000

hex

*Iq[A]/(P112)*100/

√((P203)²+(P209)²)

5 = Digital IO status

2

6 = ... 7 Reserved

8 = Setpoint frequency

(x=4000

hex

*fs[Hz]/(P105))

9 = Error number

10 = ... 11 Reserved

12 = BusIO Out Bits 0-7

13 = ... 16 Reserved

17 = Value analog input 1,

Analog input 1 (P400[-01]),

18 = Value analog input 2,

Analog input 2 (P400[-02]),

19 = Setpoint frequency

Master value (P503)

(x=4000

hex

*fs[Hz]/(P105))

20 = Setpoint freq. from ramp master,

"Setpoint frequency from ramp master
value"

(x=4000

hex

*fsnr[Hz]/(P105))

21 = Act. freq. wo. slip master,

"Actual frequency without slip master
value"

(x=4000

hex

*f-f2[Hz]/(P105))

22 = Reserved

23 = Actual frequency with slip

"Actual frequency with slip"

(x=4000

hex

*f[Hz]/(P105))

24 = Actual frequency

master value

with slip

"Actual frequency master value with
slip"

(x=4000

hex

*f[Hz]/(P105))

2

The assignment of the digital inputs for P543 = 5

Bit 0 = DigIn 1

(FI)

Bit 1 = DigIn 2

(FI)

Bit 2 = DigIn 3

(FI)

Bit 3 = DigIn 4

(FI)

Bit 4 = PTC input

(FI)

Bit 5 = reserved

Bit 6 = DigOut 3

(DO1, 1. SK…IOE)

Bit 7 = DigOut 4

(DO2, 1. SK…IOE)

Bit 8 = DigIn 5

(DI1, 1. SK…IOE)

Bit 9 = DigIn 6

(DI2, 1. SK…IOE)

Bit 10 = DigIn 7

(DI3, 1. SK…IOE)

Bit 11 = DigIn 8

(DI4, 1. SK…IOE)

Bit 12 = DigOut 1

(FI)

Bit 13 = DigOut 2

(FI)

Bit 14 = reserved

Bit 15 = reserved