Hydraulic Cylinder Tie Rod Design: Replaces: 02.13
Hydraulic Cylinder Tie Rod Design: Replaces: 02.13
RE 17049/07.13
Replaces: 02.13
1/68
Component series 2X
Nominal pressure 160 bar (16 MPa)
S1_d
Table of contents
Contents
Features
Technical data
Information on stroke length and stroke velocity
ICS project planning software
Areas, forces, flow: Series CDT3
Overview types of mounting: Series CDT3
Ordering code: Series CDT3
Areas, forces, flow: Series CGT3
Overview types of mounting: Series CGT3
Ordering code: Series CGT3
Dimensions: Types of mounting CDT3 / CGT3
Areas, forces, flow: Series CST3
Overview types of mounting: Series CST3
Ordering code: Series CST3
Dimensions: Types of mounting CST3
Leakage oil connection/enlarged line connection
Page
2
23
4
4
5
6
7
8
8
9
10 27
28
28
29
30 39
Contents
Piston rod end E and T
Position measurement system
Tilt head (clampable): CGKA - AP 6
Clevis bracket (clampable): CLCB - AB 5
Trunnion bearing block CLTA - AT 4
Kinking, admissible stroke length
End position cushioning, Calculation example
Selection criteria for seals
Seal kits
Tightening torques
Spare parts: Series CDT3
Spare parts: Series CGT3
Spare parts: Series CST3
Weight for cylinder
Page
44
45, 46
47
48, 49
50, 51
52 55
56 60
61
62, 63
63
64
65
66
67, 68
40
www.boschrexroth.com/ics
2/68
Features
Installation dimensions according to ISO 6020-2,
DIN 24554 and NF/ISO 6020-2
13 types of mounting
Technical data (For applications outside these parameters, please consult us!)
Nominal pressure:
3/68
Technical data (For applications outside these parameters, please consult us!)
Boundary and application conditions:
The mechanical alignment of the movement axis and thus
the mounting points of hydraulic cylinder and piston rod
must be ensured. Lateral forces on the guides of piston rod
and piston are to be avoided. It may be necessary to consider the own weight of the hydraulic cylinder (MP1, MP3,
MP5, MT1, MT2 or MT4) or the piston rod.
The kinking length/kinking load of the piston rod and/or the
hydraulic cylinder must be observed (see page topic kinking).
The maximum admissible stroke velocities with regard to
the suitability/load of seals must be observed as must their
compatibility with the properties of the fluid type (see page
topic seals).
The maximum admissible velocities/kinetic energies when
moving into the end positions, also considering external
loads, must be observed.
Danger: Excess pressure
The maximum admissible operating pressure must be complied with in any operating state of the hydraulic cylinder.
Possible pressure intensification resulting from the area
ratio of annulus to piston area and possible throttling points
are to be observed.
Detrimental environmental influences, like e.g. aggressive
finest particles, vapors, high temperatures, etc. as well as
contaminations and deterioration of the hydraulic fluid are
to be avoided.
Notice: This list does not claim to be complete. In case of
questions regarding the compatibility with the medium or exceedance of the boundary or application conditions, please
contact us.
Life cycle:
Rexroth cylinders correspond to the reliability recommendations for industrial applications.
10000000 double strokes in idle continuous operation or
3000 km piston travel at 70 % of the maximum operating
pressure, without load on the piston rod, with a maximum velocity of 0.5 m/s, with a failure rate of less than 5 %.
10,0
7,5
Safety instructions:
For the assembly, commissioning and maintenance of hydraulic cylinders, the operating instructions data sheet 07100-B
have to be observed!
Service and repair works have to be performed by Bosch Rexroth
or by personnel especially trained for this purpose. No warranty
is accepted for damage as a consequence of assembly, maintenance or repair works not performed by Bosch Rexroth.
Check lists for hydraulic cylinders:
Cylinders the characteristics and/or application parameters of
which deviate from the values specified in the data sheet can
only be offered as special version upon request. For offers,
the deviations of the characteristics and/or application parameters must be described in the check lists for hydraulic cylinders (data sheet 07200).
Double-acting cylinders with continuous piston rod:
With this design type, the friction is considerably higher than
with the "CD version" with simple piston rod.
Stroke tolerances:
According to ISO 6020-2, a stroke tolerance of 0/+2 mm
is admissible for strokes up to 1250 mm; for larger strokes
please contact us.
A tolerance of 0.3 mm is possible as option, smaller tolerances are not reasonable for tie rod cylinders.
Minimum strokes:
For the "MT4" mounting, the minimum stroke is to be observed due to the trunnion width, see pages 16 and 36.
When using end position cushioning, the minimum stroke
must also be observed. With stroke lengths smaller than the
cushioning length, we recommend selecting the cylinder without end position cushioning.
Support width extension and tie rod support are possible
upon request.
Line connections:
The cylinders of series CDT3/CGT3 are supplied with pipe
thread or enlarged pipe thread according to ISO 1179-1 or
metric ISO thread according to ISO 6149-1.
The cylinders of series CST3 are supplied with pipe thread
according to ISO 1179-1 or with subplate.
5,0
3,0
1,5
0,8
0 0,15 0,2 0,3
Acceptance:
Each cylinder is tested according to Bosch Rexroth standard
and in compliance with ISO 10100: 2001.
0,5
Stroke in m
1,8
Stroke velocity:
See information on stroke length and stroke velocity, higher
stroke velocity on request.
If the extension velocity is considerably higher than the retraction velocity of the piston rod, drag-out losses of the medium
may result. If necessary, please consult us.
4/68
25
Min recommended
without cushioning
stroke in mm
with cushioning
32
40
50
63
80
100
125
160
200
30
32
46
44
50
54
56
68
73
106
Seal design M;
0.50
0.40
0.30
0.25
0.70
0.60
0.40
0.35
1.00
0.80
0.60
0.50
160 bar
Maximum velocity
(m/s)
Seal design M;
100 bar
Seal design T, S;
160 bar
30
velocity (mm/s)
Seal design T, S
5/68
Areas, forces, flow: Series CDT3 (for operating pressure up to 210 bar)
Piston
Piston rod
AL
mm
MM
mm
A1/A3
A1
cm2
A2
cm2
Flow at
0.1 m/s 2)
Force 1)
Areas
Ring
Pressure
Diff.
Pulling
A3
cm2
F1
kN
F2
kN
F3
kN
160
bar
210
bar
160
bar
25
12
18
18
1.3
2.07
4.91
1.13
2.54
3.78
2.37
32
14
22
22
1.25
1.90
8.04
1.54
3.80
6.5
2.46
12.86
4.24
16.88 6.08
40
18
22 3)
28
22 3)
28
50
22
28 3)
36
63
Diff.
On
qV1 qV2
qV3
l/min l/min l/min
Max.
available
stroke
length
(mm)
160
bar
210
bar
160
bar
210
bar
1.81
10.31 4.06
5.33
6.05
3.79
4.98
2.9
0.70
1.50
2.30
1.40
600
10.40
7.98 6.78 8.90
4.8
0.90
2.30
3.90
2.50
800
1.25
1.43
1.96
2.54 10.02
4.06
16.03
12.56 3.80 8.76 20.10
6.08 7.98 14.02 18.40
26.38
6.16
6.4
9.86 12.94 10.24 13.44
7.5
1.50
2.30
3.70
6.00
5.30
3.80
1000
28 3)
36
1.25
1.46
2.08
3.8 15.83
6.08
25.33
2.30
19.63 6.16 13.47 31.41
9.86 12.94 21.55 28.29 11.8 3.70
41.22
10.18 9.45
16.29 21.38 15.12 19.85
6.10
9.50
8.10
5.70
1200
28
36 3)
45
36 3)
45
1.25
1.48
2.04
6.16 25.01
9.86 12.94 40.02
3.70 15.00
31.17 10.18 20.99 49.87
16.29 21.38 33.58 44.08 18.7 6.10 12.60
65.46
15.90 15.27
25.44 33.39 24.43 32.07
9.50 9.20
1400
80
36
45 3)
56
45 3)
56
1.25
1.46
1.96
1700
100
45
56 3)
70
56 3)
70
1.25
1.46
1.96
2000
125
56
70 3)
90
70 3; 4)
90 4)
1.25
1.46
2.08
24.63 98.09
122.72 38.48 84.24 196.35
63.62 59.1
14.80 58.90
73.6 23.10 50.50
38.20 35.50
2300
160
70
110
110 4)
1.25
1.90
201.06
38.48 162.58
321.70
95.03 106.03
120.6
23.10 97.50
57.00 63.60
2600
200
90
140
140 4)
1.25
1.96
314.16
63.62 250.54
502.66
153.94 160.22
188.5
38.20 150.30
92.40 96.10
2700
A3
F1
F3
7.86
A1
qV3
1)
2)
Stroke velocity
3)
4)
210
bar
Off
4)
4)
4)
F2
qV1
4)
4)
4)
4)
A2
qV2
6/68
Overview types of mounting: Series CDT3 (for operating pressure up to 210 bar)
CDT3 ME5 (ISO/DIN/NF)
7/68
CD T3
Differential cylinder
Z 2X
*
Further details in
the plain text
= CD
Series
= T3
W=
B = 3; 4; 16)
A=
U=
D=
S=
K=
E = 4)
=Z
Component series
= 2X
20 to 29 unchanged installation and connection dimensions
Line connection/design
Pipe thread (ISO 1179-1)
Metric ISO thread (ISO 6149-1)
Enlarged pipe thread (ISO 1179-1)
=B
=R
=S
H = 14)
D = 15)
1
4
2
3
=1
=2
=3
=4
E = 12)
F = 5; 14)
K = 5; 15)
Comments:
1)
2)
3)
With type of mounting MS2 and piston 25 and end position cushioning, "E" is not possible
4)
1
1=
2=
3=
4=
6)
11)
12)
H=
5)
13)
T = 6)
Option 1
Without option
Leakage oil
connection
Threaded coupling,
on both sides
Seal design
Standard seal system
Reduced friction
High temperature
with reduced friction
M=
T=
S=
Option 2
Without option
Specify the piston
rod extension LY in
the clear text in mm
W=
Y=
Order example:
CDT3MP5/50/36/300Z2X/B11HHDMWW
When selecting, please observe the limitations on the
corresponding catalog pages!
14)
15)
16)
8/68
Areas, forces, flow: Series CGT3 (for operating pressure up to 160 bar)
Piston
Piston
rod
AL
mm
MM
mm
12
18
14
22
18
22 3)
28
22
28 3)
36
28
36 3)
45
36
45 3)
56
45
56 3)
70
56
70 3)
90
70
110
90
140
25
32
40
50
63
80
100
125
160
200
Areas
Force at
160 bar 1)
Flow at
0.1 m/s 2)
A3
cm2
F3
kN
qV3
l/min
3.78
2.37
6.50
4.24
10.02
8.77
6.40
15.83
13.48
9.45
25.01
20.99
15.27
40.08
34.36
25.63
62.64
53.91
40.06
98.09
84.23
59.10
162.58
106.03
250.54
160.22
6.04
3.78
10.40
6.79
16.03
14.02
10.25
25.33
21.56
15.13
40.02
33.59
24.43
64.14
54.98
41.02
100.21
86.26
64.09
156.94
134.77
94.56
260.12
169.64
400.86
256.35
2.3
1.4
3.9
2.5
6.0
5.3
3.8
9.5
8.1
5.7
15.0
12.6
9.2
24.0
20.6
15.4
37.6
32.3
24.0
58.9
50.5
35.5
97.5
63.6
150.3
96.1
1)
2)
Stroke velocity
3)
800
1000
1200
1400
1700
A3
F3
F3
A3
qV3
qV3
2000
2300
2600
2700
Overview types of mounting: Series CGT3 (for operating pressure up to 160 bar)
CGT3 ME5
see page 10, 11
CGT3 MS2
see page 14, 15
CGT3 MT4
see page 16, 17
CGT3 MT1
see page 18, 19
CGT3 MX1
see page 20, 21
CGT3 MX3
see page 22, 23
CGT3 MX5
see page 24, 25
9/68
10) =
Z 2X
*
Further details in
the plain text
CG
Series
= T3
Types of mounting
Rectangular flange at head
= ME5
Foot mounting
= MS2
1) = MT4
Trunnion in center
Trunnion at head
= MT1
Extended tie rods, on both sides = MX1
Extended tie rods, at head
= MX3
Tapped hole at head
= MX5
W=
Y=
W=
B = 3; 4; 16)
A=
M=
T=
S=
=Z
Component series
= 2X
20 to 29 unchanged installation and connection dimensions
Line connection/design
Pipe thread (ISO 1179-1)
Metric ISO thread (ISO 6149-1)
Enlarged pipe thread (ISO 1179-1)
Line connection/position at head
see page 41
View to piston rod
=B
=R
=S
U=
D=
S=
K=
E = 4)
1
4
2
3
=1
=2
=3
=4
H=
D=
E = 12)
F = 5)
Comments:
1)
3)
With type of mounting MS2 and piston 25 and end position cushioning, "E" is not possible
4)
5)
10)
Not standardized
12)
14)
16)
K = 5)
Option 1
Without option
Leakage oil
connection
Threaded coupling,
on both sides
Seal design
Standard seal system
Servo quality/reduced friction
High temperature with
reduced friction
End position cushioning
see pages 56 to 60
Without
On both sides, self-adjusting
Head side, self-adjusting
Base side, self-adjusting
On both sides, adjustable
H=
1
1=
2= 4
3=
4=
Option 2
Without option
Specify the piston
rod extension LY in
the clear text in mm
Order example:
CGT3ME5/80/56/400Z2X/B11HHDMWW
When selecting, please observe the limitations on the
corresponding catalog pages!
10/68
CDT3 ME5
GA
SF
4
E
7)
UO
EE
DT
TO
RD
RD0,2
MM
KK
X
1
3)
VL
VE
WF
CGT3 ME5
SF
GF
9)
B
R
2
... = position of the line connections
ZB+X*
6)
PJ +X*
FB
7)
13)
SF
KK
MM
3)
3)
ZK +X*
ZM+2xX*
4
E
PJ+X*
CDT3 ME6
SF
WL
H
7)
UO
TO
DT
EE
KK
MM
3)
A
WH
GF
GA
FB
ZJ+X*
AL
F
max
FB
H13
GF 9)
R
JS13
TO
JS13
UO
max
VE
max
VL
min
ZB
max
ZJ
1
ZK
1
ZM
2
25
10
5,5
25
27
51
65
16
121
114
138
154
32
10
6,6
26,5
33
58
70
22
137
128
151
177
40
10
11
38
41
87
110
22
166
153
172
196
50
16
14
38
52
105
130
25
176
159
183
207
63
16
14
38
65
117
145
29
185
168
190
223
80
20
18
45
83
149
180
29
212
190
216
246
100
22
18
45
97
162
200
32
225
203
230
265
125
22
22
58
126
208
250
32
260
232
254
289
160
25
26
58
155
253
300
32
279
245
270
302
200
25
33
76
190
300
360
32
336
299
324
356
11/68
50
63
80
100
125
160
200
AL
90
M42x2
56
86
75
15
70
M48x2
63
67
60
15
110
M48x2
63
106
92
18
90
M64x3
85
86
75
15
140
M64x3
85
136
125
18
E
EE
25 40 1,5 G 1/4
32 45 1,5 G 1/4
40 63 1,5 G 3/8
50 75 1,5 G 1/2
63 90 1,5 G 1/2
80 115 1,5 G 3/4
100 130 2 G 3/4
125 165 2
G1
160 205 2
G1
200 245 2 G 1 1/4
AL
DT
EE
DT
GA
H 5)
25
25
28
34
34
42
42
47
47
58
M14x1,5
M14x1,5
M18x1,5
M22x1,5
M22x1,5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46,5
48
52,5
57,5
57,5
67
70
73,5
80,5
101
5
5
22,5
25
33,5
33,5
35,5
41
43
51,5
55,5
76
= Piston
MM = Piston rod
X*
= Stroke length
1)
2)
3)
Line connection/
position
1
2
3
4
M14x1.5
18
16.5
14
5
M16x1.5
22
20.5
18
5
M16x1.5
22
20.5
18
5
M20x1.5
28
26
22
7
7
22
26
28
M20x1.5
8
30
34
36
M27x2
M27x2
36
34
30
8
M33x2
45
43
36
10
M33x2
45
43
36
10
M42x2
56
54
46
10
M42x2
56
54
46
10
M48x2
63
68
60
15
M48x2 14)
63
67
60
15
85
86
75
15
M64x3 14)
M80x3 14)
95
106
92
18
136
125
18
M100x3 14) 112
Position H
ME5 head
ME6 base
1
1
1
1
3
3
3
3
PJ 10) PJ 11)
1,25 1,25
53
64,5
56
68,5
73
77
74
78
80
81
93
93
101
101
117
117
130
130
165
165
WF
2
25
35
35
41
48
51
57
57
57
57
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
RD
f8
38
38
42
42
62
62
62
74
74
74
75
88
88
82
105
105
92
125
125
105
150
150
125
170
150
210
Y 10)
2
50
60
62
67
71
77
82
86
86
98
Y 11)
2
38,5
47,5
58
63
70
77
82
86
86
98
5)
6)
7)
9)
10)
11)
12)
13)
CG design: Piston rod marked with groove, only admissible for 50 bar tensile load
14)
12/68
DT
7)
6)
1
E
MS
EP
EE
X
Z
2
3
.
max
CX
E
MM
3)
EX
3
WH
GA
LT
XO+X*
MM
SF
KK
KK
SF
40 200
3
max
.
PJ+X*
CDT3 MP5
WL
EX
LT
min
XO
1,5
10 0.12
16
130
20
11
14 0.12
20
148
22.5
EP
h13
MS
max
AL
CX
25
12 0.008
32
16 0.008
40
20 0.012
13
16 0.12
25
178
29
50
25 0.012
17
20 0.12
31
190
33
63
30 0.012
19
22 0.12
38
206
40
80
40 0.012
23
28 0.12
48
238
50
100
50 0.012
30
35 0.12
58
261
62
125
60 0.015
38
44 0.15
72
304
80
160
80 0.015
47
55 0.15
92
337
100
200
100 0.020
57
70 0.20
116
415
120
13/68
50
63
80
100
125
160
200
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
M12x1.25
16
13
12
5
14
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
22
M16x1.5
22
20.5
18
5
28 12)
M16x1.5
22
26
22
7
M20x1.5
28
26
22
7
36
M16x1.5
22
34
30
8
M27x2
36
34
30
8
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
56
M42x2
56
53
46
10
70 12)
M48x2 14)
63
67
60
15
90
M42x2
56
86
75
15
85
86
75
15
M64x3 14)
70
M48x2
63
67
60
15
110
95
106
92
18
M48x2
63
106
92
18
M80x3 14)
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
AL
EE
DT
EE
DT
GA
H 5)
25
32
40
50
63
80
100
125
160
200
40 1.5
45 1.5
63 1.5
75 1.5
90 1.5
115 1.5
130 2
165 2
205 2
245 2
G 1/4
G 1/4
G 3/8
G 1/2
G 1/2
G 3/4
G 3/4
G1
G1
G 1 1/4
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46.5
48
52.5
57.5
57.5
67
70
73.5
80.5
101
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
Y
2
50
60
62
67
71
77
82
86
86
98
10)
MM = Piston rod
12)
X*
14)
AL
= Piston
= Stroke length
1)
2)
3)
5)
6)
7)
14/68
WH
SF
1
E
GA
6)
7)
DT
EE
CDT3 MS2
MM
KK
E/2
ST
LH
3)
AO
A
AU
B
3
AR
SS+X*
XS
TS
ZJ+X*
SB
US
CGT3 MS2
SF
PJ+X*
6)
7)
13)
SV+X*
3)
ZK+X*
KC
XS
3)
CO
XS
ZM+2xX*
X
Z
SB
KK
MM
SF
3+0,5
0
SS / SV
A
AL
CO
N9
25
WL
LH
h10
SB
H13
SS
1,25
ST
SV
1
TS
JS13
US
max
XS
2
ZJ
1
ZK
1
ZM
2
AO
AU
12
KC
+ 0,2
0
3
19
6.6
72
8.5
87
54
72
33
114
138
154
18
28.5
32
12
22
72
12.5
87
63
84
45
128
151
177
20
28
40
12
31
11
97
12.5
105
83
103
45
153
172
196
20
32.5
50
12
4.5
37
14
91
19
99
102
127
54
159
183
207
29.5
28
63
16
4.5
44
18
85
26
92
124
161
65
168
190
223
33
24.5
80
16
57
18
104
26
110
149
186
68
190
216
246
39
28
100
16
63
26
101
32
107
172
216
79
203
230
265
44
26
125
20
82
26
131
32
131
210
254
79
232
254
289
44
29.5
160
101
33
130
38
130
260
318
86
245
270
302
54
26.5
200
122
39
172
44
172
311
381
92
299
324
356
60
41
15/68
50
63
80
100
125
160
200
AL
25
32
40
50
63
80
100
125
160
200
AL
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
M12x1.25
16
13
12
5
14
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
22
M16x1.5
22
20.5
18
5
28 12)
M16x1.5
22
26
22
7
M20x1.5
28
26
22
7
36
M16x1.5
22
34
30
8
M27x2
36
34
30
8
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
56
M42x2
56
53
46
10
70 12)
M48x2 14)
63
67
60
15
90
M42x2
56
86
75
15
85
86
75
15
M64x3 14)
70
M48x2
63
67
60
15
110
95
106
92
18
M48x2
63
106
92
18
M80x3 14)
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
E
EE
40 1.5
G 1/4
45 1.5
G 1/4
63 1.5
G 3/8
75 1.5
G 1/2
G 1/2
90 1.5
115 1.5 G 3/4
130 2
G 3/4
165 2
G1
205 2
G1
245 2 G 1 1/4
DT
EE
DT
GA
H 5)
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46.5
48
52.5
57.5
57.5
67
70
73.5
80.5
101
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
= Piston
MM = Piston rod
X*
= Stroke length
1)
2)
3)
5)
6)
7)
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
Y
2
50
60
62
67
71
77
82
86
86
98
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
AR
13.5
14
22.5
19.5
17.5
23
20
29.5
26.5
41
12)
13)
CG design: Piston rod marked with groove, only admissible for 50 bar tensile load
14)
16/68
CDT3 MT4
WH
TK
GA
6)
1
E
DT
EE
7)
SF
PJ +X*
3)
XV 9)
B
TM
ZB +X*
CGT3 MT4
SF
UW
TD
MM
KK
6)
PJ +X*
7)
UM
3
13)
SF
3)
ZK +X*
ZM + 2 xX*
X
KK
MM
SF
3)
WH
LY
WL
XV 9)
AL
TD
f8
TK
max
TM
h14
UM
h15
UW
max
X*
min
XV
min
XV
max
ZB
max
ZK
1
ZM
2
25
12
20
48
68
43
74
80 + Hub
121
138
154
32
16
25
55
79
53
88
89 + Hub
137
151
177
40
1.6
20
30
76
108
74
95
104 + Hub
166
172
196
50
1.6
25
40
89
129
81
105
105 + Hub
176
183
207
63
32
50
100
150
97
10
117
107 + Hub
185
190
223
80
2.5
40
60
127
191
124
12
130
118 + Hub
212
216
246
100
2.5
50
70
140
220
137
18
142
124 + Hub
225
230
265
125
3.2
63
90
178
278
175
25
157
132 + Hub
260
254
289
160
3.2
80
110
215
341
221
40
171
131 + Hub
279
270
302
200
3.2
100
130
279
439
281
48
202
154 + Hub
336
324
356
17/68
50
63
80
100
125
160
200
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
M12x1.25
16
13
12
5
14
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
22
M16x1.5
22
20.5
18
5
28 12)
M16x1.5
22
26
22
7
M20x1.5
28
26
22
7
36
M16x1.5
22
34
30
8
M27x2
36
34
30
8
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
56
M42x2
56
53
46
10
70 12)
M48x2 14)
63
67
60
15
90
M42x2
56
86
75
15
85
86
75
15
M64x3 14)
70
M48x2
63
67
60
15
110
95
106
92
18
M48x2
63
106
92
18
M80x3 14)
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
AL
EE
DT
EE
DT
GA
H 5; 11)
25
32
40
50
63
80
100
125
160
200
40 1.5
45 1.5
63 1.5
75 1.5
90 1.5
115 1.5
130 2
165 2
205 2
245 2
G 1/4
G 1/4
G 3/8
G 1/2
G 1/2
G 3/4
G 3/4
G1
G1
G 1 1/4
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46.5
48
52.5
57.5
57.5
67
70
73.5
80.5
101
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
Y
2
50
60
62
67
71
77
82
86
86
98
9)
MM = Piston rod
11)
X*
12)
13)
CG design: Piston rod marked with groove, only admissible for 50 bar tensile load
14)
AL
= Piston
= Stroke length
1)
2)
3)
5)
6)
7)
18/68
1
UT
TC 9)
DT
EE
PJ+X*
GA
6)
SF
7)
CDT3 MT1
XG
6)
PJ+X*
7)
13)
X
C
SF
KK
MM
ZK+X*
3)
ZM+2xX*
WH
6)
GA
SF
3)
TD
KK
MM
X
4
XJ+X*
E 9)
7)
1
UT
TC 9)
DT
EE
PJ+X*
CDT3 MT2
WL
3)
3
... = position of the line connections
ZB+X*
SF
E 9)
3)
CGT3 MT1
TD
KK
MM
ZB+X*
AL
TC
h14
TD
f8
UT
h15
XG
2
XJ
1,25
ZB
max
ZK
1
ZM
2
25
13
38
12
58
44
101
121
138
154
32
13
44
16
68
54
115
137
151
177
40
19
1.6
63
20
95
57
134
166
172
196
50
19
1.6
76
25
116
64
140
176
183
207
63
19
89
32
139
70
149
185
190
223
80
23
2.5
114
40
178
76
168
212
216
246
100
28
2.5
127
50
207
71
187
225
230
265
125
51
3.2
165
63
265
75
209
260
254
289
160
40
3.2
203
80
329
75
230
279
270
302
200
53
4.5
241
100
401
85
276
336
324
356
19/68
50
63
80
100
125
160
200
AL
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
M12x1.25
16
13
12
5
14
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
22
M16x1.5
22
20.5
18
5
28 12)
M16x1.5
22
26
22
7
M20x1.5
28
26
22
7
36
M16x1.5
22
34
30
8
M27x2
36
34
30
8
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
56
M42x2
56
53
46
10
70 12)
M48x2 14)
63
67
60
15
90
M42x2
56
86
75
15
85
86
75
15
M64x3 14)
70
M48x2
63
67
60
15
110
95
106
92
18
M48x2
63
106
92
18
M80x3 14)
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
E
EE
EE
DT
GA
DT
MT1
25
32
40
50
63
80
100
125
160
200
AL
40 1.5
45 1.5
63 1.5
75 1.5
90 1.5
115 1.5
130 2
165 2
205 2
245 2
G 1/4
G 1/4
G 3/8
G 1/2
G 1/2
G 3/4
G 3/4
G1
G1
G 1 1/4
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
= Piston
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
MT2
46.5
48
52.5
57.5
57.5
67
70
74.9
86.4
106.4
9)
H 5)
73.5
80.5
101
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
Y
2
50
60
62
67
71
77
82
86
86
98
MM = Piston rod
12)
X*
13)
CG design: Piston rod marked with groove, only admissible for 50 bar tensile load
14)
= Stroke length
1)
2)
3)
5)
6)
7)
20/68
DT
EE
6)
BB
H5)
DT
EE
BB
3; 9)
PJ + X*
DD
CDT3 MX1
SF
VD
GA
WH
PJ + X*
DT
EE
BB
m
DT
EE
6)
... = position of
the line connections
7)
3;9)
DD
BB
TG
E
3
ZJ + X*
Y
CGT3 MX1
AA
TG
7)
KK
MM
3; 9)
KK
MM
VD
SF
SF
VD
GA
WH
WH + X*
ZK + X*
ZM + 2xX*
13)
KK
MM
SF
WL
AL
AA
BB 9)
+3
TG
js13
VD
ZJ
1,25
ZK
1
ZM
2
25
40
19
28.3
114
138
154
32
47
24
33.2
12
128
151
177
40
59
35
41.7
12
153
172
196
50
74
46
52.3
159
183
207
63
91
46
64.3
13
168
190
223
80
117
59
82.7
190
216
246
100
137
59
96.9
10
203
230
265
125
178
81
125.9
232
254
289
160
219
92
154.9
245
270
302
200
269
115
190.2
299
324
356
21/68
50
63
80
100
125
160
200
AL
25
32
40
50
63
80
100
125
160
200
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
14
M12x1.25
16
13
12
5
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
5
18
20.5
22
22
M16x1.5
7
22
26
28
M20x1.5
7
22
26
28 12)
22
M16x1.5
8
30
34
36
M27x2
8
30
34
22
36
M16x1.5
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
10
46
53
56
56
M42x2
M48x2 14)
15
60
70 12)
67
63
15
75
15
86
75
56
86
90
M42x2
85
M64x3 14)
70
M48x2
63
67
60
15
110
M48x2
63
106
92
18
M80x3 14)
95
106
92
18
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
DD
EE
M5x0.8
40 1.5 G 1/4
M6x1
45 1.5 G 1/4
M8x1
63 1.5 G 3/8
M12x1.25 75 1.5 G 1/2
M12x1.25 90 1.5 G 1/2
M16x1.5 115 1.5 G 3/4
M16x1.5 130 2 G 3/4
M22x1.5 165 2
G1
M27x2
205 2
G1
M30x2
245 2 G 1 1/4
DT
EE
DT
GA
H 5)
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46.5
48
52.5
57.5
57.5
67
70
73.5
80.5
101
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
4
5
6.5
10
10
13
13
18
22
24
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
Y
2
50
60
62
67
71
77
82
86
86
98
9)
MM = Piston rod
12)
X*
13)
CG design: Piston rod marked with groove, only admissible for 50 bar tensile load
14)
AL
= Piston
= Stroke length
1)
2)
3)
5)
6)
7)
22/68
3)
DT
EE
6)
E
H5)
CDT3 MX2
BB
TG
AA
DD
KK
MM
SF
7)
TG
AA
DD
DT
EE
6)
KK
VD
WH
ZJ + X*
ZB + X*
Y
CGT3 MX3
BB
TG
E
PJ + X*
DT
EE
DT
EE
6)
7)
13)
SF
3)
KK
KK
DD
3; 9)
J
n
MM
GA
MM
3
... = position of the line connections
SF
MM
TG
PJ + X*
DT
EE
BB
3; 9)
ZJ + X*
Y
CDT3 MX3
GA
WH
H5)
VD
VD
SF
A
GA
GA
WH
WH + X*
ZK + X*
ZM + 2xX*
SF
WL
AL
AA
BB 9)
+3
TG
js13
VD
ZB
max
ZJ
1
ZK
1
ZM
2
25
32
40
50
63
80
100
125
160
200
40
47
59
74
91
117
137
178
219
269
19
24
35
46
46
59
59
81
92
115
28.3
33.2
41.7
52.3
64.3
82.7
96.9
125.9
154.9
190.2
6
12
12
9
13
9
10
9
7
7
121
137
166
176
185
212
225
260
279
336
114
128
153
159
168
190
203
232
245
299
138
151
172
183
190
216
230
254
270
324
154
177
196
207
223
246
265
289
302
356
23/68
50
63
80
100
125
160
200
AL
25
32
40
50
63
80
100
125
160
200
AL
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
M12x1.25
16
13
12
5
14
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
22
M16x1.5
22
20.5
18
5
28 12)
M16x1.5
22
26
22
7
M20x1.5
28
26
22
7
36
M16x1.5
22
34
30
8
M27x2
36
34
30
8
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
56
M42x2
56
53
46
10
70 12)
M48x2 14)
63
67
60
15
90
M42x2
56
86
75
15
85
86
75
15
M64x3 14)
70
M48x2
63
67
60
15
110
95
106
92
18
M48x2
63
106
92
18
M80x3 14)
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
DD
EE
M5x0.8
40 1.5 G 1/4
M6x1
45 1.5 G 1/4
M8x1
63 1.5 G 3/8
M12x1.25 75 1.5 G 1/2
M12x1.25 90 1.5 G 1/2
M16x1.5 115 1.5 G 3/4
M16x1.5 130 2 G 3/4
M22x1.5 165 2
G1
M27x2
205 2
G1
M30x2
245 2 G 1 1/4
DT
EE
DT
GA
H 5)
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46.5
48
52.5
57.5
57.5
67
70
73.5
80.5
101
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
4
5
6.5
10
10
13
13
18
22
24
= Piston
9)
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
Y
2
50
60
62
67
71
77
82
86
86
98
MM = Piston rod
12)
X*
13)
CG design: Piston rod marked with groove, only admissible for 50 bar tensile load
14)
= Stroke length
1)
2)
3)
5)
6)
7)
24/68
SF
1
E
DT
EE
PJ +X*
6)
GA
7)
CDT3 MX5
AA
TG
KK
MM
3)
VD
3
B
BG
ZJ +X*
TG
ZB +X*
CGT3 MX5
SF
RT
6)
PJ +X*
7)
SF
3)
3)
ZK+X*
13)
ZM+2xX*
X
KK
MM
SF
WL
AL
AA
BG
min
RT
6H
TG
js13
VD
ZB
max
ZJ
1,25
ZK
1
ZM
2
25
40
M5x0.8
28.3
121
114
138
154
32
47
M6x1
33.2
12
137
128
151
177
40
59
12
M8x1.25
41.7
12
166
153
172
196
50
74
18
M12x1.75
52.3
176
159
183
207
63
91
18
M12x1.75
64.3
13
185
168
190
223
80
117
24
M16x2
82.7
212
190
216
246
100
137
24
M16x2
96.9
10
225
203
230
265
125
178
27
M22x2.5
125.9
260
232
254
289
160
219
32
M27x3
154.9
279
245
270
302
200
269
40
M30x3.5
190.2
336
299
324
356
25/68
50
63
80
100
125
160
200
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
M12x1.25
16
13
12
5
14
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
22
M16x1.5
22
20.5
18
5
28 12)
M16x1.5
22
26
22
7
M20x1.5
28
26
22
7
36
M16x1.5
22
34
30
8
M27x2
36
34
30
8
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
56
M42x2
56
53
46
10
70 12)
M48x2 14)
63
67
60
15
90
M42x2
56
86
75
15
85
86
75
15
M64x3 14)
70
M48x2
63
67
60
15
110
95
106
92
18
M48x2
63
106
92
18
M80x3 14)
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
AL
EE
DT
EE
DT
GA
H 5)
25
32
40
50
63
80
100
125
160
200
40 1.5
45 1.5
63 1.5
75 1.5
90 1.5
115 1.5
130 2
165 2
205 2
245 2
G 1/4
G 1/4
G 3/8
G 1/2
G 1/2
G 3/4
G 3/4
G1
G1
G 1 1/4
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46.5
48
52.5
57.5
57.5
67
70
73.5
80.5
101
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
AL
= Piston
MM = Piston rod
X*
= Stroke length
1)
2)
3)
5)
6)
7)
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
Y
2
50
60
62
67
71
77
82
86
86
98
12)
13)
CG design: Piston rod marked with groove, only admissible for 50 bar tensile load
14)
26/68
PJ+X*
DT
MM
3)
1
E
EW
MR
CDH9
KK
10)
EE
SF
6)
A
GA
WH
... = position of
the line connections
XC+X*
CDT3 MP1
SF
CDf8
3)
9)
GA
XC+X*
PJ +X*
DT
H
MR
A
WL
MM
KK
SF
6)
EE
SF
10)
MM
WH
KK
UB
CB
3)
AL
CB
A16
CD
H9; f8
EW
h14
L
min
MR
max
UB
max
XC
1,25
25
12
10
12
13
12
25
127
32
16
12
16
19
17
34
147
40
20
14
20
19
17
42
172
50
30
20
30
32
29
62
191
63
30
20
30
32
29
62
200
80
40
28
40
39
34
83
229
100
50
36
50
54
50
103
257
125
60
45
60
57
53
120
289
160
70
56
70
63
59
140
308
200
80
70
80
82
78
160
381
27/68
50
63
80
100
125
160
200
18
M10x1.25
14
16.5
14
5
M14x1.5
18
16.5
14
5
14
M12x1.25
16
13
12
5
22
M12x1.25
16
20.5
18
5
M16x1.5
22
20.5
18
5
18
M14x1.5
18
16.5
14
5
22 12)
M14x1.5
18
20.5
18
5
M16x1.5
22
20.5
18
5
28
M14x1.5
18
26
22
7
M20x1.5
28
26
22
7
5
18
20.5
22
22
M16x1.5
7
22
26
28
M20x1.5
7
22
26
28 12)
22
M16x1.5
8
30
34
36
M27x2
8
30
34
22
36
M16x1.5
28
M20x1.5
28
26
22
7
36 12)
M20x1.5
28
34
30
8
M27x2
36
34
30
8
45
M20x1.5
28
43
36
10
M33x2
45
43
36
10
8
30
34
36
36
M27x2
10
36
43
45
M33x2
10
36
43
45 12)
36
M27x2
10
46
54
56
M42x2
10
46
54
36
56
M27x2
45
M33x2
45
43
36
10
56 12)
M33x2
45
54
46
10
M42x2
56
54
46
10
70
M33x2
45
68
60
15
M48x2
63
68
60
15
10
46
53
56
56
M42x2
M48x2 14)
15
60
70 12)
67
63
15
75
15
86
75
56
86
90
M42x2
85
M64x3 14)
70
M48x2
63
67
60
15
110
M48x2
63
106
92
18
M80x3 14)
95
106
92
18
90
M64x3
85
86
75
15
140
112
136
125
18
M64x3
85
136
125
18
M100x3 14)
AL
EE
DT
EE
DT
GA
H 5)
25
32
40
50
63
80
100
125
160
200
40 1.5
45 1.5
63 1.5
75 1.5
90 1.5
115 1.5
130 2
165 2
205 2
245 2
G 1/4
G 1/4
G 3/8
G 1/2
G 1/2
G 3/4
G 3/4
G1
G1
G 1 1/4
25
25
28
34
34
42
42
47
47
58
M14x1.5
M14x1.5
M18x1.5
M22x1.5
M22x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
21
21
26
29
29
34
34
43
43
52
46.5
48
52.5
57.5
57.5
67
70
73.5
80.5
101
5
5
22.5
25
33.5
33.5
35.5
41
43
51.5
55.5
76
PJ
1,25
53
56
73
74
80
93
101
117
130
165
WH
2
15
25
25
25
32
31
35
35
32
32
B
f9
24
30
26
34
30
34
42
34
42
50
42
50
60
50
60
72
60
72
88
72
88
108
88
133
108
163
Y
2
50
60
62
67
71
77
82
86
86
98
9)
MM = Piston rod
10)
X*
12)
14)
AL
= Piston
= Stroke length
1)
2)
3)
5)
6)
7)
28/68
Areas, forces, flow: Series CST3 (for operating pressure up to 160 bar)
1)
Areas
Piston
Piston
rod
Area
ratio
Piston
Rod
Ring
Pressure
Diff.
Pulling
Off
Diff.
On
AL
mm
MM
mm
A1/A3
A1
cm2
A2
cm2
A3
cm2
F1
kN
F2
kN
F3
kN
qV1
l/min
qV2
l/min
qV3
l/min
40
28
1.96
12.56
6.16
6.40
20.11
9.85
10.25
7.5
3.7
3.8
50
28 3)
36
1.46
2.08
19.63
6.16
10.18
13.48
9.45
31.42
9.85
16.29
21.56
15.13
11.8
3.7
6.1
8.1
5.7
63
36 3)
45
1.48
2.04
31.17
10.18
15.90
20.99
15.27
49.88
16.29
25.45
33.59
24.43
18.7
6.1
9.5
12.6
9.2
80
45 3)
56
1.46
1.96
50.26
15.90
24.63
34.36
25.63
80.42
25.45
39.41
54.98
41.02
30.2
9.5
14.8
20.6
15.4
100
56
70
1.46
1.96
78.54
24.63
38.48
53.91
40.06
125.66
39.41
61.58
86.26
64.09
47.1
14.8
23.1
32.3
24.0
125
70 3)
90
1.46
2.08
122.72
38.48
63.62
84.23
59.10
196.35
61.58
101.79
134.77
94.56
73.6
23.1
38.2
50.5
35.5
160
70
110
1.25
1.90
201.06
38.48
95.03
162.58
106.03
321.70
61.58
152.05
260.12
169.64
120.6
23.1
57.0
97.5
63.6
200
90
140
1.25
1.96
314.16
63.62
153.94
250.54
160.22
502.65
101.79
246.30
400.86
256.35
188.5
38.2
92.4
150.3
96.1
3)
2)
Stroke velocity
3)
A3
F1
F3
A1
qV3
F2
A2
qV1
Overview types of mounting: Series CST3 (only for operating pressure up to 160 bar)
CST3 ME5
CST3 MP5
CST3 MS2
CST3 MT4
CST3 MX5
see page 38, 39
qV2
29/68
Z 2X
*
Further details in
the plain text
Differential cylinder
with position measure10) = CS
ment system
Series
Option 2
V = Prepared for position
measurement system
C=
Analog output
4-20 mA
F = Analog output 0-10 V
D=
Digital output SSI
= T3
Option 1
Position measurement
system (magnetostrictive)
without mating connector
Mating connector separate
order see page 46
T=
=Z
M=
T=
S=
Component series
= 2X
20 to 29 unchanged installation and connection dimensions
Line connection/design
Pipe thread (ISO 1179-1)
Subplate size 6
Subplate size 10
Subplate size 16
=B
P
8) = T
8; 15) = U
8; 9) =
2
3
U=
D=
F=
K=
H=
Order example:
CST3ME5/50/36/300Z2X/P11HDUTTD
When selecting, please observe the limitations on
the corresponding catalog pages!
Comments:
1)
8)
9)
Only up to piston 80 mm
10)
Not standardized
11)
15)
1=
2= 4
3=
4=
H=
=1
=2
=3
=4
Seal design
Standard seal system
Servo quality/reduced friction
High temperature with
reduced friction
2
3
30/68
Y
F
SF
PJ +X*
GA
GB
7)
4
E
13)
6)
VL
VE
WF
6)
B
R
FB
L5
ZK +X*
line connections
KK
MM
SF
R
TO
AL MM PJ 10) PJ 11)
1,25 1,25 JS13 JS13
73
77
41
87
14)
9)
GF
EE
DT
TO
UO
D1
E
RD
RD0,2
MM
KK
WL
UO
max
VE
max
VL
min
ZK
1
L5
D1
max
X*
max
X*
min
without
subplate
X*
min
with
subplate
110
22
195
600
50
50
40
28
50
28
36
74
78
52
105
130
25
194
500
800
63
36
45
80
81
65
117
145
29
205
82
96
650
1000
45
80
45
56
93
93
83
149
180
29
234
82
96
800
1200
32
100
56
70
101
101
97
162
200
32
248
82
96
1000
1370
57
125
70
90
117
117
126
208
250
32
260.5
82
96
1200
1420
35
160
70
110
130
130
155
253
300
32
272.5
82
96
1000
1410
20
20
200
90
140
160
160
190
300
360
32
329
82
96
1300
1350
20
20
31/68
AL
MM
KK 1)
40
28
28
36
36
45
45
56
56
70
70
90
70
110
90
140
M14x1.5
M16x1.5
M16x1.5
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M48x2
M48x2
M64x3
M64x3
50
63
80
100
125
160
200
AL
40
50
63
80
100
125
160
200
AL
F
max
10
16
16
20
22
22
25
25
FB
H13
11
14
14
18
18
22
26
33
DIN / ISO 1)
A 1)
C
max
18
26
22
26
22
34
28
34
28
43
36
43
36
54
45
54
45
68
56
86
63
67
63
106
85
86
85
136
SF
WL
KK 2)
22
22
30
30
36
36
46
46
60
75
60
92
75
125
7
7
8
8
10
10
10
10
15
15
15
18
15
18
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M42x2
M48x2
M48x2
M64x3
M80x3
M100x3
A 2)
max
28
28
36
36
45
45
56
56
63
63
85
95
112
ISO 2)
C
SF
WL
26
26
34
34
43
43
54
54
68
67
86
106
136
22
22
30
30
36
36
46
46
60
60
75
92
125
7
7
8
8
10
10
10
10
15
15
15
18
18
GF 9)
EE
DT
GA
GB
38
38
38
45
45
58
58
76
63 1.5
75 1.5
90 1.5
115 1.5
130 2
165 2
205 2
245 2
G 3/8
G 1/2
G 1/2
G 3/4
G 3/4
G1
G1
G 1 1/4
28
34
34
42
42
47
47
58
52.5
57.5
57.5
67
70
80
83
101
75.5
68.5
72.5
85
88
73.5
80.5
101
= Piston
7)
WF
2
35
41
48
51
57
57
57
57
B
f9
42
42
50
50
60
60
72
72
88
88
108
88
133
108
163
Y 10)
2
62
67
71
77
82
86
86
98
RD
f8
62
74
74
88
88
105
105
125
125
150
150
125
170
150
210
Y 11)
2
58
63
70
77
82
86
86
98
MM = Piston rod
9)
X*
10)
11)
13)
1)
14)
2)
6)
= Stroke length
32/68
SF
PJ +X*
7)
10)
DT
6)
11)
MS
L2
EE
CX
E
MM
H1
KK
A
WH
GA
LT
XO1+X*
1
E
EP
3
.
max
KK
MM
3
max
.
SF
WL
3
EX
AL
MM
CX
EP
h13
EX
LT
min
XO1
1,5
MS
max
X*
max
X*
min
without
subplate
X*
min
with
subplate
40
28
20 0.012
13
16 0.12
25
348
29
390
50
50
28
36
25 0.012
17
20 0.12
31
365
33
325
520
50
63
36
45
30 0.012
19
22 0.12
38
383
40
420
650
45
80
45
56
40 0.012
23
28 0.12
48
410
50
520
780
32
100
56
70
50 0.012
30
35 0.12
58
436
62
650
940
57
125
70
90
60 0.015
38
44 0.15
72
487
80
780
1240
35
160
70
110
80 0.015
47
55 0.15
92
528
100
650
1410
20
20
200
90
140
100 0.020
57
70 0.20
116
632
120
850
1350
20
20
33/68
AL
MM
40
28
28
36
36
45
45
56
56
70
70
90
70
110
90
140
50
63
80
100
125
160
200
KK
1)
M14x1.5
M16x1.5
M16x1.5
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M48x2
M48x2
M64x3
M64x3
DIN / ISO 1)
A
C
max
18
26
22
26
22
34
28
34
28
43
36
43
36
54
45
54
45
68
56
86
63
67
63
106
85
86
85
136
1)
SF
WL
22
22
30
30
36
36
46
46
60
75
60
92
75
125
7
7
8
8
10
10
10
10
15
15
15
18
15
18
KK
2)
2)
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M42x2
M48x2
M48x2
M64x3
M80x3
M100x3
A
max
28
28
36
36
45
45
56
56
63
63
85
95
112
AL
H1
L2
EE
DT
GA
40
50
63
80
100
125
160
200
40
45.5
53
65.5
73
90.5
110.5
130.5
43.5
49
55
68
78
101
120.5
157
63 1.5
75 1.5
90 1.5
115 1.5
130 2
165 2
205 2
245 2
G 3/8
G 1/2
G 1/2
G 3/4
G 3/4
G1
G1
G 1 1/4
28
34
34
42
42
47
47
58
52.5
57.5
57.5
67
70
73.5
80.5
101
33.5
33.5
35.5
41
43
51.5
55.5
76
AL
= Piston
MM = Piston rod
X*
= Stroke length
2)
ISO 2)
C
SF
WL
26
26
34
34
43
43
54
54
68
67
86
106
136
22
22
30
30
36
36
46
46
60
60
75
92
125
7
7
8
8
10
10
10
10
15
15
15
18
18
PJ
1,25
73
74
80
93
101
117
130
165
WH
2
25
25
32
31
35
35
32
32
B
f9
42
42
50
50
60
60
72
72
88
88
108
88
133
108
163
Y
2
62
67
71
77
82
86
86
98
6)
7)
10)
11)
34/68
WH
1
E
PJ +X*
GA
6)
7)
GB
13)
DT
EE
D1
MM
KK
E/ 2
X
4
ST
LH
14)
CO
KC
3)
SV +X*
XS
3
TS
ZK +X*
L5
SB
US
SF
SB
KK
MM
SV
WL
3+0,5
0
AL
CO
N9
KC
+0,2
0
LH
h10
PJ
1,25
SB
H13
ST
SV
1
TS
JS13
US
max
40
12
31
73
11
12.5
106.5
83
103
50
12
4.5
37
74
14
19
99.5
102
127
63
16
4.5
44
80
18
26
91.5
124
161
80
16
57
93
18
26
110.5
149
186
100
16
63
101
26
32
106.5
172
216
125
20
82
117
26
32
131
210
254
160
30
101
130
33
38
130
260
318
200
40
122
160
39
44
172
311
381
35/68
MM
40
28
28
36
36
45
45
56
56
70
70
90
70
110
90
140
50
63
80
100
125
160
200
KK
DIN / ISO 1)
A
C
max
18
26
22
26
22
34
28
34
28
43
36
43
36
54
45
54
45
68
56
86
63
67
63
106
85
86
85
136
1)
1)
M14x1.5
M16x1.5
M16x1.5
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M48x2
M48x2
M64x3
M64x3
SF
WL
22
22
30
30
36
36
46
46
60
75
60
92
75
125
7
7
8
8
10
10
10
10
15
15
15
18
15
18
KK
2)
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M42x2
M48x2
M48x2
M64x3
M80x3
M100x3
2)
A
max
28
28
36
36
45
45
56
56
63
63
85
95
112
ISO 2)
C
SF
WL
26
26
34
34
43
43
54
54
68
67
86
106
136
22
22
30
30
36
36
46
46
60
60
75
92
125
7
7
8
8
10
10
10
10
15
15
15
18
18
B
f9
42
42
50
50
60
60
72
72
88
88
108
88
133
108
163
EE
DT
GA
GB
40
63 1.5
G 3/8
28
52.5
50
75 1.5
G 1/2
34
57.5
63
90 1.5
G 1/2
34
57.5
72.5
32
71
80
115 1.5
G 3/4
42
67
85
31
77
100
130 2
G 3/4
42
70
88
35
82
125
165 2
G1
47
73.5
73.5
35
86
160
205 2
G1
47
80.5
80.5
32
86
200
245 2
G 1 1/4
58
101
101
32
98
AL
68.5
25
67
MM
XS
2
ZK
1
L5
D1
max
X*
max
X*
min
without subplate
X*
min
with subplate
40
28
45
195
600
50
50
28
36
54
194
500
800
50
63
36
45
65
205
82
96
650
1000
45
80
45
56
68
234
82
96
800
1200
32
100
56
70
79
248
82
96
1000
1370
57
125
70
90
79
254
82
96
1200
1420
35
160
70
110
86
270
82
96
1000
1410
20
20
200
90
140
92
324
82
96
1300
1350
20
20
= Piston
MM = Piston rod
= Stroke length
Y
2
62
AL
AL
X*
75.5
WH
2
25
2)
6)
7)
13)
14)
36/68
CST3 MT4
PJ+X*
WH
SF
6)
GA
TK
7)
GB
1
E
DT
EE
13)
14)
XV 9)
ZK+X*
B
TM
L5
UM
3
... = position of
the line connections
KK
MM
SF
WH
LY
AL
WL
XV 9)
MM
TD
E
UW
D1
MM
KK
13)
X*
min
XV min
2
XV max
2
X*
min
XV min
2
XV max
2
X*
max
ZK
1
L5
D1
max
40
28
95
104 + Hub
50
95
76 + Hub
390
195
50
28
36
105
105 + Hub
50
105
77 + Hub
325
520
194
63
36
45
10
117
107 + Hub
45
117
82 + Hub
420
650
205
82
96
80
45
56
12
130
118 + Hub
35
130
96 + Hub
520
780
234
82
96
100
56
70
18
142
124 + Hub
57
142
101 + Hub
650
940
248
82
96
125
70
90
25
157
132 + Hub
63
157
94 + Hub
780
1240
254
82
96
160
70
110
40
171
131 + Hub
74
171
97 + Hub
650
1410
270
82
96
200
90
140
48
202
154 + Hub
73
202
129 + Hub
850
1350
324
82
96
37/68
AL
MM
40
28
28
36
36
45
45
56
56
70
70
90
70
110
90
140
50
63
80
100
125
160
200
KK
DIN / ISO 1)
A
C
max
18
26
22
26
22
34
28
34
28
43
36
43
36
54
45
54
45
68
56
86
63
67
63
106
85
86
85
136
1)
1)
M14x1.5
M16x1.5
M16x1.5
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M48x2
M48x2
M64x3
M64x3
40
PJ
1,25
73
TK
max
30
TM
h14
76
UM
h15
108
UW
max
74
50
74
40
89
129
81
63
80
50
100
150
97
AL
SF
WL
22
22
30
30
36
36
46
46
60
75
60
92
75
125
7
7
8
8
10
10
10
10
15
15
15
18
15
18
KK
2)
2)
A
max
28
28
36
36
45
45
56
56
63
63
85
95
112
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M42x2
M48x2
M48x2
M64x3
M80x3
M100x3
ISO 2)
C
SF
WL
26
26
34
34
43
43
54
54
68
67
86
106
136
22
22
30
30
36
36
46
46
60
60
75
92
125
7
7
8
8
10
10
10
10
15
15
15
18
18
EE
DT
GA
GB
1.2
TD
f8
20
63 1.5
G 3/8
28
52.5
1.6
25
75 1.5
G 1/2
34
57.5
1.6
32
90 1.5
G 1/2
34
B
f9
42
42
50
50
60
60
72
72
88
88
108
88
133
108
163
75.5
WH
2
25
Y
2
62
68.5
25
67
57.5
72.5
32
71
80
93
60
127
191
124
2.4
40
42
67
85
31
77
100
101
70
140
220
137
2.4
50
130 2
G 3/4
42
70
88
35
82
125
117
90
178
278
175
3.2
63
165 2
G1
47
73.5
73.5
35
86
160
130
110
215
341
221
3.2
80
205 2
G1
47
80.5
80.5
32
86
200
160
130
279
439
281
3.2
100
245 2 G 1 1/4
58
101
101
32
98
AL
= Piston
MM = Piston rod
X*
= Stroke length
2)
6)
7)
9)
13)
14)
38/68
WH
SF
1
E
PJ +X*
Y
6)
GA
7)
GB
DT
13)
EE
14)
VD
BG
ZK +X*
TG
D1
KK
MM
L5
RT
TG
3
... = position of
the line connections
KK
MM
SF
WL
AL
MM
BG
min
PJ
1,25
RT
6H
TG
js13
VD
ZK
1
X*
max
X*
min
without
subplate
X*
min
with
subplate
40
28
12
73
M8x1.25
41.7
12
195
600
50
50
28
36
18
74
M12x1.75
52.3
194
500
800
50
63
36
45
18
80
M12x1.75
64.3
13
205
650
1000
45
80
45
56
24
93
M16x2
82.7
234
800
1200
32
100
56
70
24
101
M16x2
96.9
10
248
1000
1370
57
125
70
90
27
117
M22x2.5
125.9
254
1200
1420
35
160
70
110
32
130
M27x3
154.9
270
1000
1410
20
20
200
90
140
40
160
M30x3.5
190.2
324
1300
1350
20
20
39/68
AL
MM
KK 1)
40
28
28
36
36
45
45
56
56
70
70
90
70
110
90
140
M14x1.5
M16x1.5
M16x1.5
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M48x2
M48x2
M64x3
M64x3
50
63
80
100
125
160
200
DIN / ISO 1)
A 1)
C
max
18
26
22
26
22
34
28
34
28
43
36
43
36
54
45
54
45
68
56
86
63
67
63
106
85
86
85
136
SF
WL
KK 2)
22
22
30
30
36
36
46
46
60
75
60
92
75
125
7
7
8
8
10
10
10
10
15
15
15
18
15
18
M20x1.5
M20x1.5
M27x2
M27x2
M33x2
M33x2
M42x2
M42x2
M48x2
M48x2
M64x3
M80x3
M100x3
A 2)
max
28
28
36
36
45
45
56
56
63
63
85
95
112
ISO 2)
C
SF
WL
26
26
34
34
43
43
54
54
68
67
86
106
136
22
22
30
30
36
36
46
46
60
60
75
92
125
7
7
8
8
10
10
10
10
15
15
15
18
18
B
f9
42
42
50
50
60
60
72
72
88
88
108
88
133
108
163
AL
L5
D1
max
EE
DT
GA
GB
WH
2
Y
2
40
63 1.5
G 3/8
28
52.5
75.5
25
62
50
75 1.5
G 1/2
34
57.5
68.5
25
67
63
82
96
90 1.5
G 1/2
34
57.5
72.5
32
71
80
82
96
115 1.5
G 3/4
42
67
85
31
77
100
82
96
130 2
G 3/4
42
70
88
35
82
125
82
96
165 2
G1
47
73.5
73.5
35
86
160
82
96
205 2
G1
47
80.5
80.5
32
86
200
82
96
245 2
G 1 1/4
58
101
101
32
98
AL
= Piston
MM = Piston rod
X*
= Stroke length
2)
6)
7)
13)
14)
40/68
E3
AL
25
32
40
50
63
80
100
100
125
125
160
160
200
200
MS2, MT4
ME6, MP5
Y2
Y3
MM
45
70
56
90
70
110
90
140
0
0
0
14.5
16
16
16
16
16
18
16
16
16
24
25.5
35.5
36
39
45.5
48
52
55
54
57
54
54
55
61
10.5
10.5
11
G1/8
ME5
E3
Y2
29.5
32
36
17
18
22
34
43
27
30
30
45
45
45
47
45
45
35
45
47
52
59
62
68
68
68
68
68
68
68
72
Y2
AL
EE
H1
Y
2
PJ
1.25
SW
25
32
40
50
63
80
100
125
160
200
G3/8
G3/8
G1/2
G3/4
G3/4
G1
G1
G11/4
G11/4
G11/2
20
20
23
29
29
33
33
39
50
60
62
67
71
77
82
86
86
98
53
56
73
74
80
93
101
117
130
165
27
27
32
41
41
46
46
60
9
9
11
14
14
18
18
23
SW (hexagon)
PJ + stroke
EE
a
H1
41/68
L3
1R
4O
2O
4U
2U
3L
L4
L2
1L
3
E1
E2
CDT3 / CST3
Mounting
MP5. MT4.
MP1. MP3.
MX1. MX2.
MX3. MX5
ME5
MS2
MT1
MT2
ME6
CGT3
Line conBleeding
Leakage oil Throttle valve
Head
Head Base
nection Head Base
1)
1)
1)
1
2
3
4
1
2
3
4
1
2
3
4
1
2
3R
4
1L
2O
2
3
4
1
2
3
4
1
2O
1
2
3
4
1R
1R
3L
3L
1
3R
4U
1L
2O
3R
1L
1L
3R
4O
3R
4U
1L
2O
3R
4U
1L
2O
4O
1
3
1
3
1
2
3
4
3L
1R
2
4
2
3
4
1
2
4
3L
1R
2
3
4
1
1
3
1
2
3
4
3R
1L
3R
1L
3R
4U
1L
2O
3R
1L
3R
1L
3R
1L
1L
3R
Bleeding
Leakage oil
Throttle valve
Head 1 Head 2 Head 1 Head 2 Head 1 Head 2
MT4.
MX1.
MX3
ME5
MS2
MT1
1)
Bleeding
2
3
4
1
2
3R
4
1L
2O
4
1
2
3
4
1
2
3
4O
1
2
3
4
1R
1R
3L
3L
1
1
2
3
4
1
2
3
4
1
3R
4U
1L
2O
3R
1L
1L
3R
4O
3L
4O
1R
2U
3L
4O
1R
2U
2O
3L
1R
4
2
3R
1L
3L
1R
2)
Protrusion 3 mm
3)
AL
F
Head/base
offset
3)
F1
F1
SW
L1
Connection Connection Allen (Head)
1/3
2/4
wrench
MT1 MS2
L1
F1
Center offset
L2
(Base)
E1
(Head)
E2
(Base)
Dimension
L3
L4
ME5
25
11.5
5 2)
12
12
48
57 + Hub
32
12.5
5 2)
12
12
57.5
61 + Hub
40
10
10
10
10
5.5
5.5
61.5
74 + Hub
50
10
10
10
10
10
10
67
74 + Hub
63
14
14
14
14
15
15
72
78 + Hub
80
10
10
10
10
14
14
81
85 + Hub
100
12
12
12
12
13
13
86
93 + Hub
125
22
22
91.5
109 + Hub
160
30
30
93.5
115 + Hub
200
30
30
114
128 + Hub
42/68
D1
SW
SW
Threaded coupling
D1
Fuse
SW
D2
25 and 32
G1/8
not secured
G1/8
40 and 63
G1/8
secured
G1/8
80 to 200
G1/4
secured
G1/4
20
M16x2
max. 39
Bleed screw
AL
G1/4
19
D1
43/68
Subplates for valve mounting dimensions and porting pattern (dimensions in mm)
VY
DY
CY
EY
DY
MX5
ME5, MS2, MT4
Size 6
Porting pattern according
to ISO 4401
Size 10
Porting pattern according
to ISO 4401
LG
35,6
L2
G1/2
T
TB
G1/2
P
b3
b2
19,5
35
14,1
Y B
L1
G3/4
X
62,5
TA
b1
70
125
G3/4
125
Size 16
Porting pattern according
to ISO 4401
27,5
G1
52,5
85
VY
CY
EY
MP5
G3/4
13,2
60
AL
CY
Size 6
EY
VY
DY
CY
EY
VY
DY
Size 10
LG
L1
L2
b1
b2
b3
CY
Size 16
EY
VY
DY
40
15
15
85
8.5
35.5
70
35
13
50
15
15
85
8.5
35.5
70
35
13
63
15
15
85
8.5
35.5
70
35
13
80
35
13
15
15
85
8.5
35.5
70
100
20
110
27
52
125
62.5 39.5
79.7 144.7
20
125
20
110
27
52
125
20
160
20
110
27
52
125
20
200
20
110
27
52
125
20
104
44/68
Weight: Subplates
AL
Size 6
in kg
Size 10
in kg
Size 16
in kg
40
2.3
2.3
50
2.3
2.3
63
2.3
2.3
80
2.3
2.3
100
7.0
9.8
125
7.0
9.8
160
7.0
9.8
200
7.0
9.8
Trunnion T
NV
ND
NE
AF
WH/WF
AL
MM
25
32
18
22
18
28
22
36
28
45
36
56
45
70
56
90
70
110
90
140
40
50
63
80
100
125
160
200
Stroke 2)
min
14
17
20
36
27
56
33
61
47
64
0
0
0
30
5
45
35
67
KF
AF
NV
M12x1.25
M16x1.5
M12x1.25
M20x1.5
M16x1.5
M27x2
M20x1.5
M33x2
M27x2
M42x2
M33x2
M48x2
M42x2
M64x3
M48x2
M80x3
M64x3
M100x3
18
22
18
28
22
36
28
45
36
56
45
63
56
85
63
95
85
112
17
21
17
25
21
33
25
42
33
53
42
67
53
86
67
106
86
136
15
18
15
22
18
30
22
36
30
46
36
60
46
75
60
92
75
125
1)
2)
MM
NB
NC
KF
MM
NB
h13
18
22.4
18
28
22.4
35.5
28
45
35.5
56
45
78
56
106
78
136
NC
h13
11.2
14
11.2
18
14
22.4
18
28
22.4
35.5
28
45
35.5
65
45
70
ND / NE
h13 / H11
10
8
12.5
10
16
12.5
20
16
25
20
30
25
35
30
45
0.5
0.5
0.5
0.8
0.5
0.8
0.8
1.2
0.8
1.2
1.2
1.5
1.5
1.5
1.5
1.5
p max. 1)
bar
160
160
105
190
95
160
105
160
90
160
100
160
90
160
90
160
bar
Analog output
V
Load resistance
Resolution
0 to 10
5
unlimited
Analog output
mA
Load resistance
Resolution
4 to 20
0 to 500
unlimited
Digital output
Direction of measurement
Linearity
(absolute accuracy)
160
5
asynchronously forward
Analog
%
mm
Digital
%
mm
%
mm
Reproducibility
Hysteresis
mm
Supply voltage
V DC
0.004
24 (10 % with analog output)
mA
100
Residual ripple
% s-s
Current consumption
V DC
mA
Residual ripple
% s-s
Current consumption
Protection class
IP 67
Operating temperature
Sensor electronics
Temperature coefficient
Voltage
ppm/C
70
Current
ppm/C
90
Sensor electronics
IP 65
C
40 to +75
45/68
46/68
1)
Pin assignment
Position measurement system (analog output)
Connector (view to pin side)
2
6
4
3
4
Pin
Cable
Signal / current
Signal / voltage
gray
4 20 mA
0 10 V
pink
DC ground
DC ground
yellow
not used
not used
green
DC ground
DC ground
brown
+24 V DC
(+20 % / 15 %)
+24 V DC
(+20 % / 15 %)
white
DC ground (0 V)
DC ground (0 V)
Pin
Cable
Signal / SSi
gray
Data ()
pink
Data (+)
yellow
Clock (+)
green
Clock ()
brown
+24 V DC(+20 % / 15 %)
white
DC ground (0 V)
not used
47/68
EN
EU
LF
CN
3
CH
2)
AX
1)
KK
MA
Type
CGKA 12 3)
CGKA 16 4)
CGKA 20 4)
CGKA 25
CGKA 30
CGKA 40
CGKA 50
CGKA 60
CGKA 80
CGKA 100
CGKD 100 5)
CGKD 125 5)
Material no.
KK
AX b
min
C
max
CH
js13
15 17
17 21
19 25
23 30
29 36
37 45
46 55
57 68
64 90
86 110
96 110
113 135
40
45
55
65
80
100
125
160
205
240
210
262
42 12 0,008 10 0,12
48 16 0,008 14 0,12
58 20 0,012 16 0,12
68 25 0,012 20 0,12
85 30 0,012 22 0,12
105 40 0,012 28 0,12
130 50 0,012 35 0,12
150 60 0,012 44 0,12
185 80 0,015 55 0,15
240 100 0,02 70 0,2
210 100 H7 100 h12
260 125 H7 125 h12
CN
EN
EU
max
8
11
13
17
19
23
30
38
47
57
84
102
MA 7) m 8) C0 9)
Nm
kg (head)
kN
16
9,5 0,15 17
20
9,5 0,25 28,5
25
23 0,43 42,5
30
23 0,73 67
35
46
1,3 108
45
46
2,3 156
58
80
4,4 245
68 195 8,4 380
82 6) 385 15,6 585
116 660 28
865
98 385 28 1060
120 385 43 1200
LF
min
Fadm 10)
kN
Note:
Geometry and dimensions may differ depending on the manufacturer.
In case of combination with other mounting elements, the usability must be checked.
1)
2)
Related bolt h6
Cannot be re-lubricated
Can be re-lubricated via lubricating hole
Tilt head according to ISO 8132, related bolt m6
Dimensions may differ from the standard depending on the
manufacturer
MA = tightening torque
The tilt head must always be screwed against the
shoulder of the piston rod. Afterwards, the clamping
screws have to be tightened applying the specified
tightening torque.
3)
4)
5)
6)
7)
8)
9)
C0
10)
6,3
10,5
15,7
24,7
39,9
57,6
90,4
140,2
215,9
319,2
391,1
442,8
48/68
LO
KL
1)
SR
CG
CF
KC
LJ
FM
LG
HB
FO
CO
RE
TA
UJ
GL
UK
Type
Material no.
CLCB 12
CLCB 16
CLCB 20
CLCB 25
CLCB 30
CLCB 40
CLCB 50
CLCB 60
CLCB 80
CLCB 100
R900326960
R900327372
R900327373
R900326961
R900327374
R900327375
R900327376
R900327377
R900327378
R900327379
Nominal
force
kN
8
12,5
20
32
50
80
125
200
320
500
CF
K7 1)
CP
h14
12
16
20
25
30
40
50
60
80
100
30
40
50
60
70
80
100
120
160
200
CG
+ 0,1
+ 0,3
10
14
16
20
22
28
35
44
55
70
CO
N9
FO
js14
FM
js11
GL
js13
HB
10
16
16
25
25
36
36
50
50
63
16
18
20
22
24
24
35
35
35
35
40
50
55
65
85
100
125
150
190
210
46
61
64
78
97
123
155
187
255
285
9
11
14 3)
16 3)
18 3)
22
30
39
45
48
15
18
20
24
26
33
48
60
80
80
49/68
Type
CLCB 12
CLCB 16
CLCB 20
CLCB 25
CLCB 30
CLCB 40
CLCB 50
CLCB 60
CLCB 80
CLCB 100
KC
+ 0,3
0
3,3
4,3
4,3
5,4
5,4
8,4
8,4
11,4
11,4
12,4
KL
LG
LJ
LO
RE
js13
SL
SR
max.
TA
js13
UJ
UK
m 2)
kg
8
8
10
10
13
16
19
20
26
30
28
37
39
48
62
72
90
108
140
150
29
38
40
49
63
73
92
110
142
152
56
74
80
98
120
148
190
225
295
335
55
70
85
100
115
135
170
200
240
300
40
50
62
72
85
100
122
145
190
235
12
16
20
25
30
40
50
60
80
100
40
55
58
70
90
120
145
185
260
300
75
95
120
140
160
190
240
270
320
400
60
80
90
110
135
170
215
260
340
400
0,6
1,3
2,1
3,2
6,5
12,0
23,0
37,0
79,0
140,0
Note:
Geometry and dimensions may differ depending on the manufacturer.
In case of combination with other mounting elements, the usability must be checked.
1)
2)
3)
50/68
"A"
l1
1)
CR
or
1)
KC
l2
FK
FN
HB
CO
TH
UL
AL
25
32
40
FS
NH
2)
l3 x 45
"A"
Type
FK
js12
38
45
55
FN FS HB KC NH TH
max js14 H13 +0,3 max js14
0
55
8
9
3,3 17 3) 40
65
10
11
4,3
21
50
80
10
11
4,3
21
60
Note:
Geometry and dimensions may differ depending on the manufacturer.
In case of combination with other mounting elements, the usability must be checked.
AL
1)
2)
3)
= Kolben-
4)
5)
UL
max
63
80
90
l1
l2
l3
m 5)
kg
25 25 1
0,5
30 30 1
0,9
40 38 1,5 1,35
51/68
"A"
l1
CR
1)
or
1)
l2
KC
FK
FN
HB
CO
TH
UL
AL
Type
Material no.
50
63
80
100
125
160
200
CLTA 25
CLTA 32
CLTA 40
CLTA 50
CLTA 63
CLTA 80
CLTA 100
R901071368
R901071377
R901071380
R901071385
R901071395
R901071398
R901071400
FS
NH
2)
l3 x 45
"A"
Nominal CR CO
force
H7 N9
kN 4)
32
25 25
50
32 25
80
40 36
125
50 36
200
63 50
320
80 50
500
100 63
FK
js12
65
75
95
105
125
150
200
FN FS HB KC NH TH
max js14 H13 +0,3 max js14
0
90
12 14 3) 5,4
26
80
110 15 18 3) 5,4
33 110
140 16
22
8,4
41 125
150 20
26
8,4
51 160
195 25
33 11,4 61 200
230 31
39 11,4 81 250
300 42
52 12,4 101 320
Note:
Geometry and dimensions may differ depending on the manufacturer.
In case of combination with other mounting elements, the usability must be checked.
AL
1)
2)
3)
= Kolben-
4)
5)
l3
m 5)
kg
110 56 45 1,5
150 70 52 2
170 88 60 2,5
210 90 72 2,5
265 136 87 3
325 160 112 3,5
410 200 150 4,5
2,4
5,0
8,5
15
30
59
131
UL
max
l1
l2
52/68
Kinking
The admissible stroke length with flexibly guided load and
a factor of 3.5 for safety against kinking can be seen from the
relevant table. For other installation positions of the cylinder,
the admissible stroke length must be interpolated. Admissible
stroke length for non-guided load on request.
Kinking calculations are carried out according to the following formulas:
1. Calculation according to Euler
2EI
F=
if > g
LK2
2. Calculation according to Tetmajer
d 2 (335-0,62 )
F=
if g
4
Explanation:
E = bodule of elasticity in N/mm2
= 2.1 x 105 for steel
l = geometrical moment of inertia in mm4
d4
for circular cross-section =
= 0.0491 d 4
64
= 3.5 (safety factor)
LK = free kinking length in mm (depending on the type of
mounting see sketches A, B, C)
d = piston rod in mm
= slenderness ratio
4 LK
E
=
g =
d
0.8 Re
Re = yield strength of the piston rod material
LK = 0.7 L
LK = L
LK = 2 L
40
50
63
80
100
125
160
200
0
115
315
115
370
160
310
465
205
420
620
280
560
770
380
695
945
480
850
1150
595
1065
1445
730
1715
945
2120
90
125
375
125
440
175
350
580
220
475
790
305
645
995
415
800
1225
540
1000
1550
685
1290
2110
850
2450
1140
2700
32
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
70 bar
45
120
330
120
385
165
320
485
210
430
650
285
580
810
390
715
995
495
880
1210
615
1105
1535
755
1815
985
2255
1)
25
MM
AL
53/68
40
50
63
80
100
125
160
200
90
530
600
555
800
750
1000
1000
895
1200
1200
1160
1400
1400
1525
1700
1700
1910
2000
2000
2300
2300
2300
2600
2600
2700
2700
210 bar
45 90
600
600
600
780
790
800
610
610
620
1000 1000 1000
795
800
815
1200 1200 1200
Installation position
0
1)
45
90
1)
32
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
0
500
600
525
800
700
975
1000
835
855
1200
1060
1400
1400
1370
1700
1700
1685
2000
2000
2075
2300
2300
2515
2600
2700
2700
70 bar
45
510
600
535
800
715
1000
1000
850
1200
1200
1086
1400
1400
1405
1700
1700
1735
2000
2000
2140
2300
2300
2595
2600
2700
2700
1)
25
MM
AL
1)
Adm. stroke
length
40
50
63
80
100
125
160
200
90
200
535
205
625
290
480
825
355
645
1115
470
865
1390
630
1025
1700
805
1295
2000
1015
1640
2300
1255
2600
1680
2700
210 bar
45 90
275
280
285
320
325
330
230
430
230
435
235
445
315
580
315
590
320
610
430
725
430
735
440
765
535
885
540
900
550
940
Installation position
0
1)
45
675
680
695
1115 1130 1185
90
1)
32
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
0
190
455
195
535
265
430
670
330
570
885
435
755
1095
585
890
1340
725
1090
1615
900
1340
2035
1100
2410
1420
2700
70 bar
45
190
470
200
555
270
445
700
335
590
925
445
780
1145
595
920
1400
745
1130
1700
925
1395
2150
1300
2550
1470
2700
1)
25
MM
AL
855
865
890
1480 1510 1605
1720 1755 1875
2195 2250 2240
1)
Adm. stroke
length
54/68
40
50
63
80
100
125
160
200
0
130
330
135
390
180
305
485
230
410
645
310
550
800
415
675
980
515
825
1185
640
1015
1495
785
1770
1015
2190
90
135
390
140
455
200
340
600
245
465
815
335
630
1025
450
780
1260
575
980
1585
730
1240
2110
905
2505
1210
2700
90
330
600
345
800
475
760
1000
570
1015
1200
750
1335
1400
995
1675
1700
1270
2000
2000
1595
2300
2300
1965
2600
2610
2700
1)
32
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
70 bar
45
130
340
135
405
185
315
505
235
425
675
315
565
840
425
700
1030
530
855
1245
660
1060
1580
810
1870
1055
2325
1)
25
MM
AL
40
50
63
80
100
125
160
200
210 bar
45 90
445
450
455
520
520
530
385
685
390
690
390
705
515
915
520
925
525
955
Installation position
0
1)
45
1)
32
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
0
325
600
335
800
460
690
1000
550
905
1200
715
1175
1400
940
1465
1700
1190
1790
2000
1480
2190
2300
1805
2600
2340
2700
70 bar
45
325
600
335
800
465
705
1000
555
930
1200
725
1210
1400
955
1510
1700
1210
1850
2000
1505
2270
2300
1840
2600
2400
2700
695
695
705
1135 1150 1190
860
865
880
1385 1405 1460
1085 1095 1115
1740 1765 1850
90
1)
25
MM
AL
1)
Adm. stroke
length
55/68
40
50
63
80
100
125
160
200
90
540
600
565
800
755
1000
1000
910
1200
1200
1170
1400
1400
1545
1700
1700
1935
2000
2000
2300
2300
2300
2600
2600
2700
2700
210 bar
45 90
600
600
600
790
800
800
620
625
635
1000 1000 1000
810
815
830
1200 1200 1200
Installation position
0
1)
45
90
1)
32
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
0
510
600
535
800
710
990
1000
850
1200
1200
1080
1400
1400
1390
1700
1700
1710
2000
2000
2100
2300
2300
2540
2600
2700
2700
70 bar
45
520
600
545
800
725
1000
1000
865
1200
1200
1100
1400
1400
1425
1700
1700
1760
2000
2000
2165
2300
2300
2600
2600
2700
2700
1)
25
MM
AL
1)
Adm. stroke
length
40
50
63
80
100
125
160
200
90
220
585
230
685
315
520
895
390
700
1200
520
940
1400
690
1160
1700
885
1465
2000
1110
1835
2300
1370
2600
1825
2700
210 bar
45 90
295
295
310
345
350
365
245
450
250
460
255
480
335
605
340
620
350
655
465
765
470
780
490
835
580
930
585
950
610
1025
Installation position
0
1)
45
1)
32
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
0
195
445
205
525
270
435
645
335
580
845
445
760
1045
590
940
1275
725
1145
1530
885
1380
1900
1080
2250
1375
2700
70 bar
45
200
465
210
550
280
455
680
350
600
895
460
795
1105
610
980
1350
755
1200
1625
925
1450
2025
1130
2395
1445
2700
730
740
770
1170 1195 1300
90
1)
25
MM
AL
915
935
980
1525 1570 1745
1780 1835 2045
2245 2325 2660
1)
Adm. stroke
length
56/68
Cushioning capacity:
When decelerating masses via the end position cushioning, the
structural-inherent cushioning capacity must not be exceeded.
Energy determination
E=
1
2
m v2
1 Retract (A): E =
1 Extend (B): E =
1
2
1
2
mv2 mg la
1 Extend (A): E =
mv2 + mg la
1 Retract (B): E =
[Nm]
[joule]
[kg]
[m/s]
Max. velocity
[m/s2]
9.81
Ia
[m]
1
2
1
2
mv2 mg la sin
mv2 + mg la sin
57/68
25
32
40
50
63
12
18
14
22
18
22 12)
28
22
28 12)
36
28
36 12)
45
15
15
16
16
23
23
23
22
22
22
25
25
25
Ia in mm
Head
Base
15
15
16
16
23
23
23
22
22
22
25
25
25
m in kg
Piston
0.15
0.2
0.25
0.4
0.6
0.6
0.7
0.8
1.2
1.4
1.7
2.0
(kg/100 mm)
Rod
0.1
0.2
0.12
0.3
0.2
0.3
0.5
0.3
0.5
0.8
0.5
0.8
1.2
(m/s)
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.4
0.4
0.4
v max
1)
Cylinder
80
100
12)
160
200
56
45
70
56
90
70
110
90
140
Ia in mm
27
27
27
28
28
28
33
33
33
38
38
57
57
Base
27
27
27
28
28
28
46
46
46
46
46
64
64
45
70
12)
Head
36
56
125
12)
m in kg
Piston
2.6
3.6
4.7
5.3
6.3
8.0
9.2
11
16
20
30
38
(kg/100 mm)
Rod
0.8
1.2
2.0
1.2
3.0
2.0
5.0
3.0
7.5
5.0
12
v max1)
(m/s)
0.4
0.4
0.4
0.3
0.3
0.3
0.3
0.3
0.3
0.25
0.25
0.25
0.25
1)
12)
EU
energy absorbing
Emax
vU
stroke velocity
vmax
vU
vmax
EU = Emax
125
200
125200
2
1
0
40
25100
60
70
80 100 120
Pressure p in bar
140
160
58/68
Extend
Retract
m
m
100000
10000
200
1000
160
125
100
80
63
50
40
100
32
25
90
160 x
70
125 x
56
100 x
45
80 x 3
6
63 x 2
8
50 x 2
2
40 x 1
8
1000
100
32 x 1
4
25 x 1
2
10
10
200 x
10000
Energy E in joule
Energy E in joule
100000
20
40
60
80
100
120 140
160
Pressure p in bar
20
40
60
80
100
120 140
160
Pressure p in bar
Retract
m
10000
100000
125 x
200 x 140
10000
Energy E in joule
100 x
56
80 x 4
5
63 x 3
6
50 x 2
8
40 x 2
2
1000
Energy E in joule
70
100
160 x 110
125 x 90
100 x 70
80 x 56
63 x 45
50 x 36
40 x 28
1000
32 x 22
25 x 18
100
10
10
20
40 60
80 100 120
Pressure p in bar
140 160
20
40 60
80 100 120
Pressure p in bar
140 160
59/68
100000
10000
90
160 x
70
125 x
56
100 x
45
80 x 3
6
63 x 2
8
50 x 2
2
40 x 1
8
1000
100
125 x
70
100 x
56
80 x 4
5
63 x 3
6
50 x 2
2
40 x 2
2
1000
Energy E in joule
Energy E in joule
10000
200 x
32 x 1
25 x 1
100
10
10
20
40
60
80
100
120 140
160
Pressure p in bar
Energy E in joule
200 x 140
1000
160 x 110
125 x 90
100 x 70
80 x 56
63 x 45
50 x 36
40 x 28
32 x 22
25 x 18
100
10
20
40
60
80
100 120
Pressure p in bar
20
40
60
80
100 120
Pressure p in bar
100000
10000
140 160
140 160
60/68
Calculation example
When designing cylinder dimensions, 3 criteria are
to be considered:
Force
tg j = 0,4
Kinking
Cushioning capacity
A1
tg j = 0,4
A3
m = 2200 kg
m = 2200 kg
a = 30
a = 30
pr = 15 bar
pk = 100 bar
Example:
Stroke time = 2 seconds
Load friction coefficient = tg = 0.4 (estimated)
Available pressure pk = 100 bar
Return flow pressure pr = 15 bar
A1 = piston surface, A3 = piston ring surface
= surface ratio A1 / A3, see page 5
m = total moved mass, v = velocity
la = cushioning length, see page 57
To be determined:
Piston and piston rod diameter
Extend piston rod:
Total efficiency = 1 2
1 = cylinder efficiency = 0.9 (estimated)
2 = system efficiency
pk A1 pr A3
pr
15
=1
=
= 0,88
pk 1)
pk A1
100 1.25
A1
ok
Str
A3
ME 6
2 =
0m
0
e5
pk = 100 bar
pr = 15 bar
Force required to move the mass:
F = frictional force plus potential energy
= tg m g cos + m g sin
= 0.4 2200 9.81 0.866 + 2200 9.81 0.5 = 18270 N
= 18.27 kN
This theoretical force 18.27 kN with = 0.79 results in a required force = 23.13 kN and thus, a cylinder piston diameter =
63 mm is necessary for pk = 100 bar, see page 5
Retract piston rod:
F = frictional force minus potential energy
= tg m g cos m g sin
= 0.4 2200 9.81 0.866 2200 9.81 0.5
= 3315 N = 3.3 kN
no force problem during retraction
Test of kinking length:
For pk = 100 bar and cylinder 63 / 28, the table on page 55
results in a maximum admissible stroke = 385 mm:
So the cylinder kinks
There are 2 possibilities:
Select piston rod diameter 45,
max. admissible stroke = 1140 mm, i.e. kinking-proof
Change the type of mounting, e.g. MS2
with a maximum admissible stroke = 915 mm
61/68
Function/velocity...
Medium/temperature
Seal versions
Work and environmental conditions
++
++
++
+/
++
+/
++
++
++
++
++ 2)
Extended ambient and rod temperature in the area of the piston rod
from +80 C to +120 C
++
++
++
++
++
++
++
++
++
++
++
++
++
++
++
++
Zero point control, hardly any amplitude, frequency max. 5 Hz, not longer than 5 minutes
3)
+/
++
++
++
++
++
+ = good
2)
3)
4)
= unsuitable
Generally, a medium temperature of approx. 40 C is recommended. The specified values are to be regarded as
guidelines; depending on the application, it may be necessary to check the suitability of the seal system.
62/68
Seal kits
Seal kit complete
AL
25
32
40
50
63
80
100
125
160
200
MM
12
18
14
22
18
22
28
22
28
36
28
36
45
36
45
56
45
56
70
56
70
90
70
110
90
140
MM
40
50
63
80
100
125
160
200
1)
28
R961008006
R961008032
R961008058
28
R961008008
R961008034
R961008060
36
R961008009
R961008035
R961008061
36
R961008011
R961008037
R961008063
45
R961008012
R961008038
R961008064
45
R961008014
R961008040
R961008066
56
R961008015
R961008041
R961008067
56
R961008017
R961008043
R961008069
70
R961008018
R961008044
R961008070
70
R961008020
R961008046
R961008072
90
R961008021
R961008047
R961008073
70
R961008022
R961008048
R961008074
110
R961008023
R961008049
R961008075
90
R961008024
R961008050
R961008076
140
R961008025
R961008051
R961008077
AL
= Piston
MM = Piston rod
1)
Seal kits
Only for subplate mounting
Subplates
Size
M, T
R961008236
R961008239
10, 16
R961008237
R961008240
AL
M, T
40
R961008156
R961008161
50
R961008157
R961008162
63
R961008158
R961008163
80
R961008159
R961008164
100
R961008160
R961008165
125
R961008222
R961008221
160
R961008223
R961008225
200
R961008224
R961008226
Tightening torques
AL
25
32
MM
12
18
14
22
MX1/2
5,5
6,5
20
12
50
37
60
40
125
90
190
100
400
240
800
450
1250
600
18
40
22
28
22
50
28
36
28
63
36
45
36
80
45
56
45
100
56
70
56
125
70
90
160
200
70
110
90
140
63/68
64/68
9 10 11
Piston seals
M, T, S for piston 25 63
T, S
T, S
125 200
T, S
1
2
3
4
5
6
7
8
9
10
11
Piston rod
Guide socket
Piston rod seal
Cylinder head
Cylinder pipe
Damping bush
Piston
Piston seal
Cylinder base
Nut
Tie rod
4 2 3 9 10
Piston seals
M, T, S for piston 25 63
T, S
T, S
125 200
T, S
1
2
3
4
5
6
7
8
9
Piston rod
Guide socket
Piston rod seal
Cylinder head
Cylinder pipe
Damping bush
Piston
Piston seal
Nut
10 Tie rod
65/68
66/68
10
16
11
12
13 14
15
Piston seals
40 100
M, T, S for piston 40 63
T, S
125 200
T, S
1 Piston rod
2 Guide socket
3
4
5
6
Cylinder head
Piping
Cylinder pipe
Piston
7 Subplate
8 Position measurement
system
9 Protective pipe
10 Piston rod seal
11 Piston seal
12
13
14
15
16
Insulating socket
Solenoid
Cylinder base
Connection pipe
Tie rod
67/68
25
32
40
50
63
80
100
125
160
200
MM
AL
CDT3 / CGT3
12
18
14
22
18
22 12)
28
22
28 12)
36
28
36 12)
45
36
45 12)
56
45
56 12)
70
56
70 12)
90
70
110
90
140
MX2, MX3,
MT1, MT2
MX5
(in case of
Stroke
MX1, ME5,
ME6, MP3,
(in case of
MP5
MT4
CGT3 with100 mm
MS2
MP1
CGT3 without MT2)
out MX2)
CDT3 CGT3 CDT3 CGT3 CDT3 CGT3 CDT3 CGT3 CDT3 CGT3 CDT3 CGT3 CDT3 CGT3
1.1
1.2
1.1
1.0
1.3
1.4
1.0
1.1
1.1
1.2
0.4
0.5
1.2
1.4
1.2
1.1
1.4
1.6
1.1
1.3
1.2
1.4
0.6
0.8
1.5
1.6
1.6
1.4
1.8
1.9
1.4
1.5
1.5
1.6
0.5
0.6
1.6
1.9
1.7
1.5
1.9
2.2
1.5
1.8
1.6
1.9
0.6
0.9
3.4
3.6
3.4
3.2
4.1
4.3
3.1
3.3
3.2
3.4
0.8
1.0
3.4
3.8
3.4
3.2
4.1
4.5
3.1
3.5
3.2
3.6
0.9
1.2
3.5
4.0
3.5
3.3
4.2
4.7
3.2
3.7
3.3
3.8
1.1
1.6
5.3
5.7
5.3
4.9
6.6
7.0
4.8
5.2
4.9
5.3
1.1
1.4
5.4
6.0
5.4
6.7
7.3
4.9
5.5
5
5.6
1.3
1.8
5.5
6.4
5.5
5.1
6.8
7.7
5.0
5.9
5.1
6.0
1.6
2.4
7.7
8.3
7.7
7.3
9.2
9.8
7.0
7.6
7.3
7.9
1.4
1.9
7.9
8.8
7.8
7.4
9.3
10.3
7.1
8.1
7.4
8.4
1.7
2.5
8.2
9.7
8.0
7.6
9.5
11
7.3
8.8
7.6
9.1
2.2
3.4
14
15
14
14
18
19
12
13
15
15
2.2
3.0
14
16
14
14
17
20
13
14
14
16
2.6
3.8
15
17
15
15
19
21
14
16
15
17
3.3
5.2
20
22
20
20
24
26
19
20
22
24
3.3
4.5
20
23
20
19
24
27
18
21
22
25
4.1
6.1
21
25
21
21
25
29
19
23
23
27
5.1
8.1
38
41
39
38
46
49
35
39
43
46
6.3
8.2
38
43
39
38
46
51
35
41
43
48
7.3
10.3
39
46
40
39
48
55
37
44
44
51
9.3
14
62
68
67
63
78
83
59
65
64
69
8.7
12
64
75
69
65
80
91
61
72
67
79
13.2
21
112
124
120
115
147
158
107
118
114
126
13.4
18
115
137
123
117
149
171
109
131
117
138
20.5
33
12)
68/68
MM
ME5, MS2
MP5
MT4
MX5
Stroke 100 mm
40
28
28 12)
36
36 12)
45
45 12)
56
56 12)
70
70 12)
90
70
110
90
140
3.5
5.4
5.5
7.9
8.2
14
15
20
21
38
39
62
64
112
115
3.8
5.8
5.9
8.5
8.7
16.1
17.3
21.8
24.1
43.7
44.8
72.5
74.8
132
134.5
4.2
6.7
6.8
9.3
9.5
17
19
24
25
46
48
78
80
147
149
3.2
4.9
5.0
7.1
7.3
13
14
18
19
35
37
59
61
107
109
1.1
1.3
1.6
1.7
2.2
2.6
3.3
4.1
5.1
7.3
9.3
8.7
13.2
13.4
20.5
50
63
80
100
125
160
200
12)
Bosch Rexroth AG
Zum Eisengieer 1
97816 Lohr am Main, Germany
Phone +49 (0) 93 52 / 18-0
documentation@boschrexroth.
dewww.boschrexroth.de
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may not be reproduced or given to third parties without its consent.
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must be remembered that our products are subject to a natural process
of wear and aging.