2 adapting the vmin boost, Adapting the vmin boost, Adapting the vmin boost ( 85) – Lenze 8400 BaseLine D User Manual

Page 85: 5motor control (mctrl)

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Lenze · 8400 BaseLine D · Reference manual · DMS 5.5 EN · 01/2014 · TD05

85

5

Motor control (MCTRL)

5.4

V/f characteristic control (VFCplus)

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

5.4.3.2

Adapting the Vmin boost

The V

min

boost (

C016

) of the motor voltage serves to select a load independent magnetising current

which is required for asynchronous motors. The torque behaviour of the motor can be optimised by

adapting the setting in

C016

.

The general linear and quadratic V/f characteristics are shown in the illustrations below. The illust-

rations show the impacts of the parameters used to adapt the characteristic shape.

[5-3]

Representation of the linear V/f characteristic (on the left) and quadratic V/f characteristic (on the right)

To set the V

min

boost, proceed as follows:

1. Operate motor in idle state at approx. 6 % of the rated motor speed.
2. Increase V

min

boost (

C016

) until the following motor current is reached:

Motor in short-time operation up to 0.5 n

N

• for self-ventilated motors: I

Motor

I

N Motor

• for forced ventilated motors: I

Motor

I

N Motor

Motor in continuous operation up to 0.5 n

N

• for self-ventilated motors: I

Motor

0.8 I

N Motor

• for forced ventilated motors: I

Motor

I

N Motor

Note!

The V

min

boost has an effect on output frequencies below the V/f base frequency (

C015

).

C00015

C00016

C00015

2

C00016

2

V

[V]

out

f [Hz]

V

(100 %)

rmot

1/N/PE AC 264 V

3/PE AC 264 V
3/PE AC 550 V

1/N/PE AC 180 V

3/PE AC 100 V
3/PE AC 320 V

C00015

C00016

V

[V]

out

f [Hz]

V

(100 %)

rmot

1/N/PE AC 264 V

3/PE AC 264 V
3/PE AC 550 V

1/N/PE AC 180 V

3/PE AC 100 V
3/PE AC 320 V

Note!

V

min

boost is automatically calculated by the motor parameter identification using the

data specified on the motor nameplate so that a no-load current of approx. 0.8 I

rated

motor

results at the slip frequency of the machine.

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