1 gearbox ratio, Gearbox ratio, Gearbox – Lenze 8400 HighLine User Manual

Page 524: Ratio, 8basic drive functions (mck)

Advertising
background image

8

Basic drive functions (MCK)

8.4

Basic settings

524

Lenze · 8400 HighLine · Referenzhandbuch · DMS 10.0 EN · 06/2014 · TD05/TD14

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

8.4.1.1

Gearbox ratio

The gearbox ratio indicates the number of revolutions of the motor axis it takes for exactly one

revolution of the load axis (e.g. spindle or drive roll) to take place.

[8-7]

Schematic diagram of gearbox ratio

• In the example shown in the illustration

[8-7]

, the spindle rotates exactly once for every

58,667 rotations of the motor axis.

Specification of the gearbox ratio

• The gearbox ratio is to be defined in the form of a quotient (numerator/denominator); the data

required can be found in the technical data for the gearbox:

[8-8]

Example: Technical data relating to the gearbox (from gearbox catalogue)

Tip!
In order to specify the gearbox ratio exactly, use the number of teeth indicated on the data

sheet or in the catalogue, if possible, instead of the information on the nameplate (see

following calculation).

Example calculation on the basis of the technical gearbox data:

[8-9]

Calculation example (for 2-stage gearbox)

M

M

i = 58.667

L

EXTERTAL / Germany

GFL05-2M HCR 080-32

004 B

295 Nm
24/min (50Hz)

i = 58.667
GT/40000027

CLP 460

1196

00500038

GFL 05

i

58.667

z3

9

z1
12

z2
88

z4
72

M

M

z1

z3

z4

z2

Gearbox factor numerator (C01202/1)

z2 z4

Ч

88 72

Ч

=

=

6336

=

Gearbox factor denominator (C01202/2)

z1 z3

Ч

12 9

Ч

=

=

108

=

Advertising