Testno okolje: Branch Development, Prikaz cen: NE
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Products
LINEAR UNITS UNIMOTION
BALL SCREW DRIVEN UNITS
CTV LINEAR UNITS
MTV LINEAR UNITS
BELT DRIVEN UNITS
CTJ LINEAR UNITS
MTJ LINEAR UNITS
MTJ ECO LINEAR UNITS
MRJ LINEAR UNITS
MTJZ LINEAR UNITS
ACESSORIES FOR LINEAR UNITS
CTV ACCESSORIES
MTV ACCESSORIES
CTJ ACCESSORIES
MTJ ACCESSORIES
MTJ ECO ACCESSORIES
MTJZ ACCESSORIES
MRJ ACCESSORIES
ELECTRIC CYLINDERS UNIMOTION
ELECTRIC CYLINDERS UNIMOTION
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PNCE ACCESSORIES ELECTRIC CYLINDERS
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TRANSMISSION TECHNOLOGY
CONTROL TECHNOLOGY
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Electryic cylinder selection
Accessories select
Stroke:
s =
mm
Inclination of the x axis:
α =
°
Mounting case
Drive Cap
Profile
Front Cap
Piston Rod
Free
Fix
Simple
Free
Simple
Free
Fix
Simple
Free
Fix
Simple
ZKCE attachment position:
r
ZKCE
=
mm
Piston rod guiding
External guiding is used
Coeficient of friction:
μ =
GUH guiding unit is used
Option =
BA
BB
GUH Option
BA
: with slide bushes
BB
: with ball bushes
Load data
Mass of load:
m =
kg
Additional forces and moments
Force x:
F
x
=
N
Force y:
F
y
=
N
Force z:
F
z
=
N
Moment x:
M
x
=
Nm
Moment y:
M
y
=
Nm
Moment z:
M
z
=
Nm
Distance:
h
x
=
mm
Distance:
h
y
=
mm
Distance:
h
z
=
mm
Extended piston rod:
E =
mm
Inclination of the y axis:
β =
°
Operating temperature:
T =
°C
Acceleration of PNCE:
a
x
=
m/s
2
Acceleration of PNCE:
a
y
=
m/s
2
Acceleration of PNCE:
a
z
=
m/s
2
Cycle definition
Cycle input type
v
max
/a
max
t
tot
t
tot
/t
acc
Display charts
Maximmum travel speed:
v
max
=
0
m/s
Acceleration of piston rod:
a =
0
m/s
2
Total travel time in one direction:
t
tot
=
0
s
Acceleration time:
t
acc/dec
=
0
s
Delay time:
t
delay
=
0
s
Cycle time:
t
cycle
=
0
s
Loading case
Lifting
Feeding
Cutting
Spring compression
Mass of load is applied only in one direction
Force x is applied only in one direction
Cutting / pressing length:
lc =
mm
Advance cycle definition
Advanced cycle definition is used
Step input type
v
max
/a
max
t
tot
t
tot
/t
acc
Position:
Pos =
mm
Maximmum travel speed:
v
max
=
0
m/s
Acceleration of piston rod:
a =
0
m/s
2
Total travel time in one direction:
t
tot
=
0
s
Acceleration time:
t
acc/dec
=
0
s
Delay time:
t
delay
=
0
s
CPC
Accept step input
Cancel
Forces and moments
Mass of load:
m =
kg
Force x:
F
x
=
N
Force y:
F
y
=
N
Force z:
F
z
=
N
Moment x:
M
x
=
Nm
Moment y:
M
y
=
Nm
Moment z:
M
z
=
Nm
Distance:
h
x
=
mm
Distance:
h
y
=
mm
Distance:
h
z
=
mm
Cycle time
t
cycle
=
0
s
#
Type
Pos
Δpos
t
tot
t
acc/dec
t
delay
v
max
a
max
s
acc
s
const
t
const
m
F
x
F
y
F
z
M
x
M
y
M
z
h
x
h
y
h
z
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Add new step
Display charts
Duty cycle
Number of cycles per hour:
n
h
=
cycles/h
Working hours per day:
n
hd
=
h/day
Working days per year:
n
dy
=
days/y
Reset
All
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IDENT
PRODUCT NAME
UNIT
STOCK
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