Yaskawa G7 Drive User Manual

Page 326

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Individual Functions

6-

109

* 1. Initial/Default settings vary based on drive capacity. Values shown here are for 200-240V class 0.4kW drives.
* 2. The setting range is 10% to 200% of the drive's rated current. Values shown here are for 200-240V class 0.4kW drives.
* 3. The setting range will vary based on drive capacity. Values shown here are for 200-240V class 0.4kW drives.

E2-03

Motor No-Load
Current

Sets the magnetizing current of
the motor as a percentage of full
load amps (E2-01). This value is
automatically set during rotational
Auto-Tuning.

0.00

to

1.89

*3

1.20 A

*1

No

A

A

A

A

A

No-Load
Current

E2-04

Number of
Motor Poles

Sets the number of motor poles.
This value is automatically set
during Auto-Tuning.

2 to 48

4 poles

No

No

Q

No

Q

Q

Number of
Poles

E2-05

Motor Line-to-
Line Resistance

Sets the phase-to-phase motor
resistance in ohms. This value is
automatically set by
Auto-Tuning.

0.000

to

65.000

9.842

Ω

*1

No

A

A

A

A

A

Term
Resistance

E2-06

Motor Leakage
Inductance

Sets the voltage drop due to motor
leakage inductance as a
percentage of motor rated voltage.
This value is automatically set
during Auto-Tuning.

0.0

to

40.0

18.2%

*1

No

No

No

A

A

A

Leak
Inductance

E2-07

Motor Iron-core
Saturation
Coefficient 1

Sets the motor iron saturation
coefficient at 50% of magnetic
flux. This value is automatically
set during rotational
Auto-Tuning.

0.00

to

0.50

0.50

No

No

No

A

A

A

Saturation
Comp1

E2-08

Motor Iron-core
Saturation
Coefficient 2

Sets the motor iron saturation
coefficient at 75% of magnetic
flux. This value is automatically
set during rotational
Auto-Tuning.

0.00

to

0.75

0.75

No

No

No

A

A

A

Saturation
Comp2

E2-10

Motor Iron
Loss for Torque
Compensation

Sets the motor iron loss in watts
(W).

0

to

65535

14 W

*1

No

A

A

No

No

No

Tcomp Iron
Loss

Parameter

Number

Name

Description

Setting
Range

Factory

Setting

Change

during

Operation

Control Methods

Display

V/f

V/f

with

PG

Open

Loop

Vector

1

Flux

Vector

Open

Loop

Vector

2

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