FESTO P2 Guide Unit Eagf Instruction Manual
- June 25, 2024
- FESTO
Table of Contents
FESTO P2 Guide Unit Eagf
Product Information
Specifications:
- Product: Guide unit EAGF
- Segmentation: Guide unit, for electric cylinder
- Series: EAGF
- Size Options: 16mm, 25mm, 32mm, 40mm, 45mm, 50mm, 60mm, 63mm, 80mm, 100mm
- Stroke Options: 50mm, 100mm, 150mm, 200mm, 300mm, 320mm, 400mm
Product Usage Instructions
Installation:
- Ensure the guide unit is compatible with your electric cylinder.
- Select the appropriate size based on your application requirements.
- Mount the guide unit securely in the desired position.
Maintenance:
Regularly inspect the guide unit for any signs of wear or damage. Clean and
lubricate the guide components as needed to ensure smooth operation.
Load Capacity:
Refer to the characteristic load values provided in the datasheet to ensure
the guide unit can handle the required forces and torques in your application.
FAQ:
-
What materials are used in the construction of the Guide unit EAGF?
The Guide unit EAGF is constructed with wrought aluminum alloy for the yoke plate and housing, tempered steel for the guide component, and is RoHS- compliant. -
How can I calculate the load comparison factor for the Guide unit EAGF?
To calculate the load comparison factor, follow the equation provided in the manual when subjecting the guide unit to multiple forces and torques simultaneously.
Characteristics
At a glance
- The guide unit EAGF provides anti-twist protection for electric cylinders in the case of high-torque loads
- It offers a high level of guide precision for workpiece handling and other applications
- The interface enables simple and fast mounting on many Festo drives/axes
Product segmentation
Festo Core Range
Solves the majority of your automation tasks With the Festo Core Range, we
have selected the most important products and functions from our broad product
catalog and added the quickest delivery. the Core Range offers you the best
value with the expected high Festo quality.
- Quickest delivery, worldwide – wherever, whenever
- Expected high Festo quality
- Easy and fast to select
Diagrams
Further information → eagf
Allocation
Allocation| | | |
---|---|---|---|---
[P2]| Version P2 (EPCC)| | [V2]| Version V2 (ESBF)
|
Type code
001 | Series |
---|---|
EAGF | Guide unit, for electric cylinder |
002 | Allocation |
--- | --- |
P2 | Version P2 (EPCC) |
V2 | Version V2 (ESBF) |
003 | Guide |
--- | --- |
KF | Recirculating ball bearing guide |
004 | Size [mm] |
--- | --- |
16 | 16 |
25 | 25 |
32 | 32 |
40 | 40 |
45 | 45 |
50 | 50 |
60 | 60 |
63 | 63 |
80 | 80 |
100 | 100 |
005 | Stroke [mm] |
--- | --- |
50 | 50 |
100 | 100 |
150 | 150 |
200 | 200 |
300 | 300 |
320 | 320 |
400 | 400 |
Datasheet
Guide unit EAGF, for electric cylinder EPCC
General technical data for EAGF-P2-KF with EPCC
Size | 32 | 45 | 60 |
---|---|---|---|
Stroke | 1 … 200 mm | 1 … 300 mm | 1 … 500 mm |
Design | Guidance | ||
Guide | Recirculating ball bearing guide | ||
Displacement force | 1.6 N | 2 N | 3 N |
Max. speed | 1 m/s | ||
Max. acceleration | 25 m/s2 | ||
Reversing backlash theoretical | 0 µm | ||
Type of mounting | Via female thread | ||
Mounting position | optional |
Operating and environmental conditions for EAGF-P2-KF with EPCC
Size | 32 | 45 | 60 |
---|---|---|---|
Ambient temperature | 0 … 60°C | ||
Degree of protection | IP40 |
Corrosion resistance class
CRC 1)
| 0 – No corrosion stress
- More information: www.festo.com/x/topic/crc.
Weights for EAGF-P2-KF with EPCC
Size | 32 | 45 | 60 |
---|---|---|---|
Basic weight for 0 mm stroke | 613 g | 1,037 g | 1,614 g |
Additional weight per 10 mm
stroke
| 7.9 g| 12.3 g| 17.8 g
Moving mass for 0 mm stroke| 170 g| 342 g| 583 g
Additional moving mass per
10 mm stroke
| 7.9 g| 12.3 g| 17.8 g
Centre of gravity of the moving mass for EAGF-P2-KF with EPCC
Size | 32 | 45 | 60 |
---|
Centre of gravity at 0 mm
stroke
| 26 mm| 25 mm| 31 mm
Centre of gravity addition of
moving mass per 10 mm
| 4.3 mm
Materials for EAGF-P2-KF with EPCC
Material yoke plate | Wrought aluminum alloy, Anodised |
---|---|
Material housing | Wrought aluminum alloy, Anodised |
Material guide component | Tempered steel, Hard-chrome-plated |
Note on materials | RoHS-compliant |
LABS (PWIS) conformity | VDMA24364 zone III |
Characteristic load values for EAGF-P2-KF with EPCC
- The indicated forces and torques refer to the guide center.
- Calculation example: see separate document
Characteristic load values for EAGF-P2-KF with EPCC, static
The indicated forces and moments refer to the guide centre.
Size | 32 | 45 | 60 |
---|---|---|---|
Max. force Fy static | 355 N | 415 N | 510 N |
Max. force Fz static | 355 N | 415 N | 510 N |
Max. torque Mx static | 13 Nm | 19 Nm | 27 Nm |
Max. torque My static | 9 Nm | 12 Nm | 20 Nm |
Max. torque Mz static | 9 Nm | 12 Nm | 20 Nm |
Characteristic load values for EAGF-P2-KF with EPCC; dynamic at a service
life of 5000 km
The indicated forces and moments refer to the guide center.
Size | 32 | 45 | 60 |
---|---|---|---|
Max. force Fy | 160 N | 320 N | 380 N |
Max. force Fz | 160 N | 320 N | 380 N |
Max. moment Mx | 6 Nm | 15 Nm | 20 Nm |
Max. moment My | 4 Nm | 10 Nm | 15 Nm |
Max. moment Mz | 4 Nm | 10 Nm | 15 Nm |
Distance X
- Size: 32/45/60
- Distance X: 54 mm/63 mm/76 mm
Calculating the load comparison factor for EAGF-P2-KF with EPCC
If the guide unit is subjected to two or more of the indicated forces and
torques at the same time, the following equation must be satisfied in addition
to the indicated maximum loads.
- F1 / M1 = dynamic value
- F2 / M2 = maximum value
Calculation of the service life for EAGF-P2-KF with EPCC
- The service life of the guide depends on the load. To be able to make an approximate statement about the service life of the guide, the graph below shows the load comparison factor fv in relation to the service life ratio q.
- These values are only theoretical. You must consult your local contact person at Festo for load comparison factors fv greater than 1.5.
- Example: The effect on the service life, deviating from the specified reference service life, can be determined using the service life ratio q:
- Assuming: Reference service life = 5000 km
- Required service life = 3000 km
- q = 3000 km/5000 km = 0.6
- The graph gives a load comparison factor fv of 1.2. This means that the permissible total load can be utilized up to 120%.
- fv > 1.5 are only theoretical comparison values.
Max. payload F and torque M as a function of projection A for EAGF-P2-KF with EPCC
- A = projection
- X = distance to center of gravity of the payload
- S = center of gravity of the payload
- M = torque
Explanation of how to read the graphs in the case of a combined load
- Determine projection (50 mm)
- Enter transverse force (50 N)
- Enter the distance from the curve
- Permitted torque is the difference between M2 and M1
Payload F and torque M as a function of projection A for EAGF-P2-KF-32 with EPCC
Payload F and torque M as a function of projection A for EAGF-P2-KF-45 with EPCC
Payload F and torque M as a function of projection A for EAGF-P2-KF-60 with EPCC
Deflection f (due to own weight) as a function of projection A for EAGF-P2-KF with EPCC
Deflection f (due to own weight) as a function of projection A for EAGF-P2-KF with EPCC
Deflection f (due to transverse force) as a function of projection A for EAGF-P2-KF with EPCC
The max. permissible transverse force must not be exceeded.
- f1 = (F1 / F2) * f2
- F2 = 10 N
- A = projection of guide rod
- f1 = deflection due to transverse force
- F1 = transverse force
- F2 = standardised transverse force
- f2 = deflection due to standardised transverse force (value from graph)
Deflection f (due to transverse force) as a function of projection A for EAGF-P2-KF with EPCC
Incline a (due to torque) as a function of projection A for EAGF-P2-KF with EPCC
- a1 = (M1 / M2) * a2
- M2 = 2 Nm
- (valid for a ≤ 10°)
- A = projection of guide rod
- a1 = incline due to torque
- M1 = torque
- M2 = standardized torque
- a2 = deflection due to standardized transverse force (value from graph)
Incline a (due to torque) as a function of projection A for EAGF-P2-KF with EPCC
Option to combine EAGF-P2 with EAGF-P2 by direct mounting
- Base axis EAGF-P2-KF-45 with assembly axis EAGF-P2-KF-32
- Base axis EAGF-P2-KF-60 with assembly axis EAGF-P2-KF-45
Option to combine EAGF-P2 with EGSC/EGSS using an adapter kit
- Base axis EAGF-P2-KF-32 with assembly axis EGSC/EGSS-25
- Base axis EAGF-P2-KF-45 with assembly axis EGSC/EGSS-32
- Base axis EAGF-P2-KF-60 with assembly axis EGSC/EGSS-45
Option to combine ELGC/ELGS with EAGF-P2 by direct mounting
- Base axis ELGC/ELGS-45 with assembly axis EAGF-P2-KF-32
- Base axis ELGC/ELGS-60 with assembly axis EAGF-P2-KF-45
- Base axis ELGC/ELGS-80 with assembly axis EAGF-P2-KF-60
Option to combine EAGF-P2 with ERMO/ERMS by direct mounting
- Base axis EAGF-P2-KF-32 with assembly axis ERMO/ERMS-12
- Base axis EAGF-P2-KF-45 with assembly axis ERMO/ERMS-16
- Base axis EAGF-P2-KF-60 with assembly axis ERMO/ERMS-25
Guide unit EAGF, for electric cylinder ESBF
General technical data for EAGF-V2-KF with ESBF
Size | 32 | 40 | 50 | 63 | 80 | 100 |
---|---|---|---|---|---|---|
Stroke | 1 … 500 mm | 1 … 550 mm | ||||
Design | Guidance | |||||
Guide | Recirculating ball bearing guide | |||||
Displacement force | 15 N | 40 N | ||||
Reversing backlash theoretical | 0 µm | |||||
Type of mounting | Via female thread | |||||
Mounting position | optional |
Operating and environmental conditions for EAGF-V2-KF with ESBF
Operating and environmental conditions for EAGF-V2-KF with ESBF
Size| 32| 40| 50| 63| 80| 100
Ambient temperature| -20 … 80°C
Corrosion resistance class
CRC 1)
| 0 – No corrosion stress
- More information: www.festo.com/x/topic/crc.
Weights for EAGF-V2-KF with ESBF
Weights for EAGF-V2-KF with ESBF
Size| 32| 40| 50| 63| 80| 100
Basic weight for 0 mm stroke| 1,685 g| 2,517 g| 4,059 g| 5,525 g| 10,517 g|
13,263 g
Additional weight per 10 mm
stroke
| 18 g| 32 g| 49 g| 76 g
Moving mass for 0 mm stroke| 724 g| 1,283 g| 2,015 g| 2,560 g| 5,166 g| 6,148
g
Additional moving mass per
10 mm stroke
| 18 g| 32 g| 49 g| 76 g
Centre of gravity of the moving mass for EAGF-V2-KF with ESBF
Centre of gravity of the moving mass for EAGF-V2-KF with ESBF
Size| 32| 40| 50| 63| 80| 100
Centre of gravity at 0 mm
stroke
| 30 mm| 38 mm| 46 mm| 48 mm| 54 mm| 47 mm
Centre of gravity addition of
moving mass per 10 mm
| 4.1 mm| 4.2 mm| 4.3 mm| 4.1 mm| 3.8 mm| 3.6 mm
Materials for EAGF-V2-KF with ESBF
Materials for EAGF-V2-KF with ESBF
Material yoke plate| Steel
Material housing| Wrought aluminum alloy, Anodised
Material guide component| Tempered steel
Note on materials| RoHS-compliant
LABS (PWIS) conformity| VDMA24364-B2-L
Characteristic load values for EAGF-V2-KF with ESBF
- The indicated forces and torques refer to the guide center.
- Calculation example: see separate document
Characteristic load values for EAGF-V2-KF with ESBF, static
The indicated forces and moments refer to the guide center.
Size | 32 | 40 | 50 | 63 | 80 | 100 |
---|---|---|---|---|---|---|
Max. force Fy static | 1,020 N | 1,260 N | 1,600 N | 3,120 N | ||
Max. force Fz static | 1,020 N | 1,260 N | 1,600 N | 3,120 N | ||
Max. torque Mx static | 38 Nm | 55 Nm | 83 Nm | 95 Nm | 231 Nm | 268 Nm |
Max. torque My static | 46 Nm | 65 Nm | 89 Nm | 115 Nm | 259 Nm | 267 Nm |
Max. torque Mz static | 46 Nm | 65 Nm | 89 Nm | 115 Nm | 259 Nm | 267 Nm |
Characteristic load values for EAGF-V2-KF with ESBF, dynamic at a service
life of 5000 km
The indicated forces and moments refer to the guide center.
Size | 32 | 40 | 50 | 63 | 80 | 100 |
---|---|---|---|---|---|---|
Max. force Fy | 750 N | 1,000 N | 1,260 N | 2,300 N | ||
Max. force Fz | 750 N | 1,000 N | 1,260 N | 2,300 N | ||
Max. moment Mx | 28 Nm | 44 Nm | 65 Nm | 75 Nm | 170 Nm | 198 Nm |
Max. moment My | 34 Nm | 52 Nm | 70 Nm | 90 Nm | 191 Nm | 197 Nm |
Max. moment Mz | 34 Nm | 52 Nm | 70 Nm | 90 Nm | 191 Nm | 197 Nm |
Distance X
- Size: 32/40/50/63/80/100
- Distance X: 83 mm/85 mm/99 mm/117 mm/142 mm/145 mm
Calculating the load comparison factor for EAGF-V2-KF with ESBF
If the guide unit is subjected to two or more of the indicated forces and
torques at the same time, the following equation must be satisfied in addition
to the indicated maximum loads.
- F1 / M1 = dynamic value
- F2 / M2 = maximum value
Calculation of the service life for EAGF-V2-KF with ESBF
- The service life of the guide depends on the load. To be able to make an approximate statement about the service life of the guide, the graph below shows the load comparison factor fv with the service life ratio q.
- These values are only theoretical. You must consult your local contact person at Festo for load comparison factors fv greater than 1.5.
- Example: The effect on the service life, deviating from the specified reference service life, can be determined using the service life ratio q:
- Assuming: Reference service life = 5000 km
- Required service life = 3000 km
- q = 3000 km/5000 km = 0.6
- The graph gives a load comparison factor fv of 1.2. This means that the permissible total load can be utilized up to 120%.
- fv > 1.5 are only theoretical comparison values.
Max. payload F and torque M as a function of projection A for EAGF-V2-KF with ESBF
- A = projection
- X = distance to center of gravity of the payload
- S = center of gravity of the payload
- M = torque
Explanation of how to read the graphs in the case of a combined load
- Determine projection (50 mm)
- Enter transverse force (50 N)
- Enter the distance from the curve
- Permitted torque is the difference between M2 and M1
Payload F and torque M as a function of projection A for EAGF-V2-KF-32 with ESBF
Payload F and torque M as a function of projection A for EAGF-V2-KF-40 with ESBF
Payload F and torque M as a function of projection A for EAGF-V2-KF-50 with ESBF
Payload F and torque M as a function of projection A for EAGF-V2-KF-63 with ESBF
Payload F and torque M as a function of projection A for EAGF-V2-KF-80 with ESBF
Payload F and torque M as a function of projection A for EAGF-V2-KF-100 with ESBF
Deflection f (due to own weight) as a function of projection A for EAGF-V2-KF with ESBF
Deflection f (due to own weight) as a function of projection A for EAGF-V2-KF with ESBF
Deflection f (due to transverse force) as a function of projection A for EAGF-V2-KF with ESBF
- The max. permissible transverse force must not be exceeded.
- f1 = (F1 / F2) * f2
- F2 = 10 N
- A = projection of guide rod
- f1 = deflection due to transverse force
- F1 = transverse force
- F2 = standardized transverse force
- f2 = deflection due to standardized transverse force (value from graph)
Deflection f (due to transverse force) as a function of projection A for EAGF-V2-KF with ESBF
Incline a (due to torque) as a function of projection A for EAGF-V2-KF with ESBF
- a1 = (M1 / M2) * a2
- M2 = 2 Nm
- (valid for a ≤ 10°)
- A = projection of guide rod
- a1 = incline due to torque
- M1 = torque
- M2 = standardised torque
- a2 = deflection due to standardised transverse force (value from graph)
Incline a (due to torque) as a function of projection A for EAGF-V2-KF with ESBF
Dimensions
Dimensions – Guide units EAGF, for electric cylinders EPCC
- Download CAD data a www.festo.com.
| B1| B2| B3| B4
±0,1
| B5
±0,05
| B6
±0,1
| B7| B8| B9| B10
±0,05
| D1
⌀
| D2
⌀ H8
---|---|---|---|---|---|---|---|---|---|---|---|---
EAGF-32| 100| 98| 75| 50| 30| 24| 42| 33| 16| 50| 8| 7
EAGF-45| 120| 118| 90| 50| 33| 22,5| 58| 46| 24| 58| 10| 7
EAGF-60| 135| 133| 105| 58| 40| 34| 73| 61| 30| 73| 12| 7
| D3| D4
⌀
| D5
⌀
| D6
⌀ H8
| D7| D8
⌀
| D9
⌀
| D10
⌀ H8
| D11
⌀
| D12
⌀ H8
| D13
⌀
| D14
---|---|---|---|---|---|---|---|---|---|---|---|---
EAGF-32| M5| 8| 4,5| 7| M5| 8| 4,5| 7| 8| 7| 5| M3
EAGF-45| M5| 10| 5,5| 7| M5| 10| 5,5| 7| 10| 7| 5,5| M3
EAGF-60| M5| 11| 6,6| 7| M5| 10| 5,5| 7| 10| 7| 5,5| M4
| H1| H2| H3| H4
±0,1
| H5
±0,05
| H6
±0,05
| H7| H8| L1| L2| L3
±0,05
| L4
---|---|---|---|---|---|---|---|---|---|---|---|---
EAGF-32| 40| 28| 26| 24| 16| 20| 26| 4,1| 102| 75| 50| 54
EAGF-45| 51| 37| 35| 35| 20| 25| 32,5| 5,5| 116| 85| 58| 63
EAGF-60| 60| 39| 37| 42| 25| 25| 40,5| 6,9| 139| 105| 73| 76
| L5| L6| L7
±0,05
| L8
±0,05
| T1
+0,1
| T2| T3
+0,1
| T4| T5| T6
+0,1
| T7| T8
+0,1
| T9
---|---|---|---|---|---|---|---|---|---|---|---|---|---
EAGF-32| 34| 15| 34| 20| 1,6| 8,5| 1,6| 12| 4,4| 1,6| 4,4| 1,6| 7
EAGF-45| 47| 19| 47| 25| 1,6| 12| 1,6| 12| 7| 1,6| 5,7| 1,6| 7
EAGF-60| 63| 22| 73| 25| 1,6| 10| 1,6| 10| 7| 1,6| 5,5| 1,6| 9
Dimensions – Guide units EAGF, for electric cylinders ESBF
- Download CAD data a www.festo.com.
| B1
–0,3
| B2| B3
±0,2
| B4
±0,2
| B5
±0,2
| D1
@
| D2
@
h6
| D3
@
| D4
@
| D5
@
H8
| D6| D7
---|---|---|---|---|---|---|---|---|---|---|---|---
EAGF-32| 50| 45| 32,5| 32,5| 32,5| 44| 12| 11| 6,6| 34| M6| M6
EAGF-40| 58| 54| 38| 38| 38| 48| 16| 11| 6,6| 39| M8| M6
EAGF-50| 70| 63| 46,5| 46,5| 46,5| 60| 20| 15| 9| 45| M8| M8
EAGF-63| 85| 80| 56,5| 56,5| 56,5| 60| 20| 15| 9| 52| M16| M8
EAGF-80| 105| 100| 72| 72| 72| 78| 25| 18| 11| 60| M18| M10
EAGF-100| 130| 120| 89| 89| 89| 78| 25| 18| 11| 70| M18| M10
| D8| H1
–0,5
| H2| H3
±0,2
| H4
±0,2
| H5
±0,2
| H6| H7
±0,2
| KK| L1
±1
| L2
---|---|---|---|---|---|---|---|---|---|---|---
EAGF-32| M6| 97| 90| 78| 32,5| 74| 50,5±0,3| 61| M10x1,25| 154,8| 125
EAGF-40| M6| 115| 110| 84| 38| 87| 58,5±0,3| 69| M12x1,25| 172,8| 140
EAGF-50| M8| 137| 130| 100| 46,5| 104| 70,5±0,3| 85| M16x1,5| 187,8| 150
EAGF-63| M8| 152| 145| 105| 56,5| 119| 85,5±0,3| 100| M16x1,5| 219,8| 182
EAGF-80| M10| 189| 180| 130| 72| 148| 106+1/–0,6| 130| M20x1,5| 257,8| 215
EAGF-100| M10| 213| 200| 150| 89| 172| 131+1/–0,6| 150| M20x1,5| 262,8| 220
| L4| L5| L6| L7| L8
±0,2
| L9
±0,2
| L11| L12| T1| T2| ß1
---|---|---|---|---|---|---|---|---|---|---|---
EAGF-32| 24| 76| 12| 4,3| 32,5| 78| 24| 12| 14| 6,5| 15
EAGF-40| 28| 81| 15| 11| 38| 84| 27| –| 14| 6,5| 15
EAGF-50| 34| 79| 15| 18,8| 46,5| 100| 30| 37| 16| 9| 19
EAGF-63| 34| 111| 15| 15,3| 56,5| 105| 30| –| 16| 9| 19
EAGF-80| 40| 128| 20| 21| 72| –| 39| –| 20| 11| 27
EAGF-100| 40| 128| 20| 24,5| 89| –| 39| –| 20| 11| 27
Dimensions – Screw-in depth of the piston rod for the electric cylinder ESBF
- Download CAD data a www.festo.com.
- EAGF-…
- ESBF-…
- The dimensions L3 and L10 are only valid in combination with screw-in depth L13.
| L3| L10| L13
±0,2
---|---|---|---
EAGF-32| 70,2±1| 9,2±1,5| 15
EAGF-40| 79,3±1| 5,3±1,5| 16
EAGF-50| 96,1±0.9| 10,1±1,5| 24
EAGF-63| 96,3±1| 10,3±1,6| 24
EAGF-80| 121,1±1,1| 14,1±1,8| 30
EAGF-100| 126,1±1,1| 14,1±1,8| 30
Ordering Data
Guide units EAGF, for electric cylinder EPCO
| Size| Stroke| Part no.| Type
| 32| 1 … 200 mm| 8158030| EAGF-P2-KF- 32-
50 mm| 8158032| EAGF-P2-KF-32-50
100 mm| 8158029| EAGF-P2-KF-32-100
150 mm| 8158027| EAGF-P2-KF-32-150
200 mm| 8158028| EAGF-P2-KF-32-200
45| 1 … 300 mm| 8158133| EAGF-P2-KF- 45-
50 mm| 8158131| EAGF-P2-KF-45-50
100 mm| 8158123| EAGF-P2-KF-45-100
150 mm| 8158125| EAGF-P2-KF-45-150
200 mm| 8158127| EAGF-P2-KF-45-200
300 mm| 8158130| EAGF-P2-KF-45-300
60| 1 … 500 mm| 8158150| EAGF-P2-KF- 60-
100 mm| 8158138| EAGF-P2-KF-60-100
150 mm| 8158140| EAGF-P2-KF-60-150
200 mm| 8158142| EAGF-P2-KF-60-200
300 mm| 8158031| EAGF-P2-KF-60-300
Guide units EAGF, for electric cylinder ESBF
| Size| Stroke| Part no.| Type
| 32| 1 … 500 mm| 3038083| EAGF-V2-KF-32-
100 mm| 2782679| EAGF-V2-KF-32- 100
200 mm| 2782818| EAGF-V2-KF-32- 200
320 mm| 2782885| EAGF-V2-KF-32- 320
400 mm| 2782923| EAGF-V2-KF-32- 400
40| 1 … 500 mm| 3038089| EAGF-V2-KF-40-
100 mm| 2782939| EAGF-V2-KF-40- 100
200 mm| 2782976| EAGF-V2-KF-40- 200
320 mm| 2783047| EAGF-V2-KF-40- 320
400 mm| 2783080| EAGF-V2-KF-40- 400
50| 1 … 500 mm| 3038094| EAGF-V2-KF-50-
100 mm| 2783639| EAGF-V2-KF-50- 100
200 mm| 2784152| EAGF-V2-KF-50- 200
320 mm| 2784164| EAGF-V2-KF-50- 320
400 mm| 2784184| EAGF-V2-KF-50- 400
63| 1 … 500 mm| 2608521| EAGF-V2-KF-63-
100 mm| 1725842| EAGF-V2-KF-63- 100
200 mm| 1725843| EAGF-V2-KF-63- 200
320 mm| 1725844| EAGF-V2-KF-63- 320
400 mm| 1725845| EAGF-V2-KF-63- 400
80| 1 … 550 mm| 2608528| EAGF-V2-KF-80-
100 mm| 1725846| EAGF-V2-KF-80- 100
200 mm| 1725847| EAGF-V2-KF-80- 200
320 mm| 1725848| EAGF-V2-KF-80- 320
400 mm| 1725849| EAGF-V2-KF-80- 400
100| 1 … 550 mm| 2608532| EAGF-V2-KF-100-
100 mm| 1725850| EAGF-V2-KF-100- 100
200 mm| 1725851| EAGF-V2-KF-100- 200
320 mm| 1725852| EAGF-V2-KF-100- 320
400 mm| 1725853| EAGF-V2-KF-100- 400
Accessories
Centring pin ZBS-4 for guide unit with electric cylinder EPCC
| Description| Material sleeve| Size of pack| Product weight| Part no.| Type
| For size 32| High-alloy stainless steel| 10| 0.5 g| 562959| ZBS-
4
Centering sleeve ZBH-5 for guide unit with electric
cylinder EPCC
| Description| Material sleeve| Size of pack| Product weight| Part no.| Type
| For size 45| Steel| 10| 1 g| 8146543| ZBH-5-B
Centering sleeve ZBH-7 for guide unit with electric
cylinder EPCC
| Description| Material sleeve| Size of pack| Product weight| Part no.| Type
| For sizes 32, 45,
60
| Steel| 10| 1 g| 8146544| ZBH-7-B
Adapter kit EHAA for guide unit with electric
cylinder EPCC (for mounting the mini slide EGSC,
EGSS on the yoke plate)
Description| Product weight| Part no.| Type
For size 32| 56 g| 8158473| EHAA-D-L2-32-L2-25
For size 45| 60 g| 8066713| EHAA-D-L2-32-L2-32
For size 60| 136 g| 8066714| EHAA-D-L2-45-L2-45
Read User Manual Online (PDF format)
Read User Manual Online (PDF format) >>