3. Compaxis Designus & Facilis Mantea
Optionalis integratus hydrauliceus energetici pecten permittit installationem plug-and-play, telemandatum, et operationem PLC/PC.
Usus
Ferrum et Metalurgia

Imago cylindri hydraulici rotatorii dentati et cremalis 






Actuator Hydraulicus Rotatorius Dentati-Cremalis
Conspectus
Actuator hydraulicus rotatorius dentati-cremalis convertit energiam hydraulicam in motum oscillantem vel angularem. Motus reciprocans linearis cylindri hydraulici movet cremalem, quae ingreditur cum rota dentata ut rotationem bidirectionalem generet. Vis cylindri mechanice multiplicatur in torque per transmissionem cremali-dentatam, et angulus oscillationis proportionalis est cursui cremalis, efficiens 0°–720°rotationem.
Actuator constat ex stelo pinionis, pistillo dentato, corpore cylindri et systemate obsignandi. Communes fixationis formae includunt brachiolum et fixationem pedis. Formae structurales includunt designa singula et duplex dentata, quae in pluribus seriebus et magnitudinibus offeruntur ad variatas necessitates torqueas complendas. Cunei finis cursus (scil. 15° per extremum) operationem lenem praebent.
Praecipua Praestantia Perficundi
1. Magnus Torque
Torque proportionalis est pressioni operativa, et cum amplificatione mechanica systematis denticuli et pinnaculi, actuator usque ad 1,150,000 Nm (ex., UBZ320). Idoneus ad applicationes industriales gravissimas.
2. Praecisio Regulatio
Cum encoderibus rotatoris vel sensoribus displacementis facultativis, actuator systema servo clausum efficit:
UB Series Gear-Rack Rotary Actuator
Actuatores seriei UB a machina hydraulica URANUS independentia sunt elaborati et adoptati ut JB/ZQ4713-98 decies milia actuatores UB in toto orbe terrarum iam tradidimus.
Peculiaritates
・Montatio: Flangea / Pes
・Structura: Unicus gradus / Duplex gradus
・8 series × 10 foraminum dimensiones × 10 moduli
・Pressio nominalis: 16 MPa / 25 MPa / 31.5 MPa
・Pressio initiandi humilis (≤1,5 MPa), altum efficiens
・Latissimus thermorum ambitus −50°C ad +260°C
・Optima obturatio et longa vita usus
Compatibilitas fluidorum
Operatur cum oleo minerali, emulsione, aqua-glycole, estere phosphato, etc. (Specificandum cum ordinatur.)
Conservatio
Generaliter sine ulla mantientione. Lubricatio annua commendatur. Si minima effusio accidit, redige oleum in vas; obturationes mutes tantum cum torque iam non satisfacit.
Optionem Hydraulicae Machinae
Idoneum pro systematibus singulorum actuatum:
・Valvulae relief praesaturatae et fabrica impletas
・Regulatio torsiōnis indepēnscēns ad directiones CW/CCW
・Reservāculum plene clausum
・Non recommendatur pro temperiēie ambiantis 80°C
Disponuntur Designationes Personarum
Solutions personalizatas offrimus, inter quas:
1. Actuatores rotatorii Servo (pressio initiandi <0.5 MPa, ludus ≤0.02, repetibililitas ≤0.05°)
2. Torque ultra-magna (1,150,000 Nm) et micro-actuatores (<1 kg)
3. Exitus speciales: axis dualis, combinatus axis/perforatio, axis crenatus, foramen crenatum
4. Specialis fixatio: gemina forcula, flange unilateralis
5. Mechanismi fine regulationis anguli
6. Valvulae inclusae, valvulae contrapondus pro camera singula/gemina
Exempla Productorum:
1. Cylindrus Hydraulicus Oscillationis UBJZS140-172°
- Caliber: 140 mm
- Angulus: 172°
- Methodus Montandi: Supportum Pedale
- Typus: Duplicis Denticuli
- Productum: Axis Clavium Parallelum Duplex
- Diametros Axis: 145e8 mm
- Angulus Cuspidis Extremi: 12°
- Torque: 40,996 Nm
- Pressio Nominalis: 16 MPa - Pressio Experimenti: 21 MPa
- Fluidum Operans: Oleum Hydraulicum
2. Electricus Cylindrus Oscillationis UBFKD40-90°HP01
- Diameter Cylindri: 40 mm - Angulus: 90° - Torque: 2,480 Nm
- Modus Iuncturae: Flange - Genus: Cratis Singula
- Modus Emissionis: 4 Foramina Clavium Parallela φ50⁺⁰·⁰³ mm - Angulus Cuspidis Extremi: 15°
- Plica Potestatis Hydraulicae
- Pressio Nominalis: 21 MPa - Fluxus Nominalis: 1.6 L/min - Potentia Motoris: 0.75 kW, 380V AC 
3. Systema Regulandi Portae per Motorem DC UBFKD100-95°+UP16X6BEG
- Alesanus: 100 mm - Angulus: 95° - Modus Alligandi: Flangea - Genus: Crank Singularis
- Exitus: Alesanus Biforis Clavi Paralleli φ85H7 mm - Torque: 8,320 Nm - Angulus Cunei Finalis: 15°
Pastrum potentiae hydraulicae
- Pressio Rata: 16 MPa - Fluxus Ratus: 6 L/min - Potentia Motoris: 2 kW, 48V DC
- Fluidum Operans: Oleum Hydraulicum 
4. Cylindrus Oscillans pro Grui Silvestri UBTZSJ80-380°H
Alesanus: 80 mm Angulus: 380° Modus Alligandi: Fulcrum Pedale Genus: Crank Duplicatus
Modus Exeundi: Axis cum Flangea
Pressio Rata: 19 MPa Pressio Experimenti: 22 MPa Torque: 15,280 Nm Liquor Laboris: Oleum Hydraulicum
Ecce exemplaria productorum seriei UB et seriei UBZ
Actuator Hidraulicus Rotativus Ensignii et Pinnulae Series UB (JB/ZQ4713-2006)
Exemplum Selectionis: Actuator rotatorius cum connectione flangii, axes output, duplici dente recto, 8818 Nm
torquens, angulus oscillationis 368°, cuneus finalis, et unitas hydraulica P05

Tabula Specificarum Fundamentalium pro Actuatore Rotatorio Hydraulico Serie UB a Dente Recto (JB/ZQ4713-2006)
Structura |
Modus connexionis |
Model |
Diameter Cylindri (mm) |
Torque Output (Nm) (P: Pressio Operandi Mpa) |
Torque Output ad P=16 MPa (Nm) |
Volumen Olei per Gradum Rotationis (L/°) |
Velocitas Oscillationis cum Unitate Hydraulica (°/s) (Sine cuneo) |
|||||||||||
Axes Output |
Foramen Output |
P01 |
P02 |
P03 |
P04 |
P05 |
P06 |
P07 |
P08 |
P09 |
P10 |
P11 |
||||||
Singuli rastri |
Flange |
UBFZD40 |
UBFKD40 |
40 |
55 (P-1.5) |
798 |
0.00097 |
26 |
34 |
48 |
60 |
72 |
86 |
98 |
120 |
140 |
172 |
240 |
Pes |
UBJZD40 |
UBJKD40 |
||||||||||||||||
Flange |
UBFZD50 |
UBFKD50 |
50 |
98 (P-1.5) |
1421 |
0.00171 |
15 |
19 |
27 |
34 |
41 |
49 |
55 |
68 |
80 |
97 |
136 |
|
Pes |
UBJZD50 |
UBJKD50 |
||||||||||||||||
Flange |
UBFZD63 |
UBFKD63 |
63 |
171 (P-1.5) |
2480 |
0.00299 |
B |
11 |
16 |
20 |
23 |
28 |
32 |
39 |
46 |
56 |
78 |
|
Pes |
UBJZD63 |
UBJKD63 |
||||||||||||||||
Flange |
UBFZD80 |
UBFKD80 |
80 |
302 (P-1.4) |
4409 |
0.00526 |
4.8 |
6 |
9 |
11 |
13 |
16 |
18 |
22 |
26 |
31 |
44 |
|
Pes |
UBJZD80 |
UBJKD80 |
||||||||||||||||
Flange |
UBFZD100 |
UBFKD100 |
100 |
566 (P-1.3) |
8320 |
0.00987 |
2.5 |
3 |
4.7 |
5.9 |
7 |
8.4 |
9.6 |
11 |
14 |
17 |
23 |
|
Pes |
UBJZD100 |
UBJKD100 |
||||||||||||||||
Flange |
UBFZD125 |
UBFKD125 |
125 |
994 (P-1.3) |
14612 |
0.01735 |
1.4 |
2 |
2.7 |
3.3 |
4 |
4.8 |
5.5 |
6.7 |
7.9 |
9.6 |
13 |
|
Pes |
UBJZD125 |
UBJKD125 |
||||||||||||||||
Flange |
UBFZD140 |
UBFKD140 |
140 |
1385 (P-1.2) |
20498 |
0.02418 |
1 |
1.4 |
1.9 |
2.4 |
2.9 |
3.4 |
3.9 |
4.8 |
5.6 |
6.9 |
9.6 |
|
Pes |
UBJZD140 |
UBJKD140 |
||||||||||||||||
Flange |
UBFZD160 |
UBFKD160 |
160 |
2010 (P-1.2) |
29748 |
0.03509 |
0.7 |
0.9 |
1.3 |
1.7 |
2 |
2.4 |
2.7 |
3.3 |
3.9 |
4.7 |
6.6 |
|
Pes |
UBJZD160 |
UBJKD160 |
||||||||||||||||
Flange |
UBFZD180 |
UBFKD180 |
180 |
2748 (P-1.1) |
40945 |
0.04797 |
0.5 |
0.7 |
1 |
1.2 |
1.5 |
1.7 |
2 |
2.4 |
2.8 |
3.5 |
4.9 |
|
Pes |
UBJZD180 |
UBJKD180 |
||||||||||||||||
Flange |
UBFZD200 |
UBFKD200 |
200 |
3958 (P-1.0) |
59370 |
0.06909 |
0.3 |
0.5 |
0.6 |
0.8 |
1 |
1.2 |
1.4 |
1.6 |
2 |
2.4 |
3.2 |
|
Pes |
UBJZD200 |
UBJKD200 |
||||||||||||||||
Duplex-rudus |
Flange |
UBFZS40 |
UBFKS40 |
40 |
110 (P-1.5) |
1595 |
0.00193 |
13 |
17 |
24 |
30 |
36 |
43 |
49 |
60 |
70 |
81 |
120 |
Pes |
UBJZS40 |
UBJKS40 |
||||||||||||||||
Flange |
UBFZS50 |
UBFKS50 |
50 |
196 (P-1.5) |
2842 |
0.00343 |
7.5 |
9.5 |
14 |
17 |
20 |
24 |
23 |
34 |
40 |
49 |
68 |
|
Pes |
UBJZS50 |
UBJKS50 |
||||||||||||||||
Flange |
UBFZS63 |
UBFKS63 |
63 |
342 (P-1.5) |
4959 |
0.00598 |
4 |
5.5 |
8 |
10 |
12 |
14 |
16 |
19 |
23 |
28 |
39 |
|
Pes |
UBJZS63 |
UBJKS63 |
||||||||||||||||
Flange |
UBFZS80 |
UBFKS80 |
80 |
604 (P-1.4) |
8818 |
0.01053 |
2.4 |
3 |
4.5 |
5.5 |
6.5 |
8 |
9 |
11 |
13 |
16 |
22 |
|
Pes |
UBJZS80 |
UBJKS80 |
||||||||||||||||
Flange |
UBFZS100 |
UBFKS100 |
100 |
1132 (P-1.3) |
16640 |
0.01974 |
1.3 |
1.6 |
2.3 |
3 |
3.5 |
4.2 |
4.8 |
5.9 |
7 |
8.4 |
12 |
|
Pes |
UBJZS100 |
UBJKS100 |
||||||||||||||||
Flange |
UBFZS125 |
UBFKS125 |
125 |
1988 (P-1.3) |
29224 |
0.03470 |
0.7 |
1 |
1.3 |
1.7 |
2 |
2.4 |
2.7 |
3.8 |
3.9 |
4.8 |
6.7 |
|
Pes |
UBJZS125 |
UBJKS125 |
||||||||||||||||
Flange |
UBFZS140 |
UBFKS140 |
140 |
2770 (P-1.2) |
40996 |
0.04836 |
0.5 |
0.7 |
1 |
1.2 |
1.4 |
1.7 |
2 |
2.4 |
2.8 |
3.4 |
4.8 |
|
Pes |
UBJZS140 |
UBJKS140 |
||||||||||||||||
Flange |
UBFZS160 |
UBFKS160 |
160 |
4020 (P-1.2) |
59496 |
0.07018 |
0.3 |
0.5 |
0.7 |
0.8 |
1 |
1.2 |
1.3 |
1.6 |
1.9 |
2.3 |
3.3 |
|
Pes |
UBJZS160 |
UBJKS160 |
||||||||||||||||
Flange |
UBFZS180 |
UBFKS180 |
180 |
5496 (P-1.1) |
81890 |
0.09593 |
0.2 |
0.3 |
0.5 |
0.6 |
0.7 |
0.8 |
1 |
1.2 |
1.4 |
1.7 |
2.4 |
|
Pes |
UBJZS180 |
UBJKS180 |
||||||||||||||||
Flange |
UBFZS200 |
UBFKS200 |
200 |
7916 (P-1.0) |
118740 |
0.13817 |
0.1 |
0.2 |
0.3 |
0.4 |
0.5 |
0.6 |
0.7 |
0.8 |
1 |
1.2 |
1.6 |
|
Pes |
UBJZS200 |
UBJKS200 |
||||||||||||||||
Motoris potentia unitatis hydraulicae (kW) (380V 50Hz) |
0.55 |
0.75 |
1.1 |
1.5 |
1.5 |
2 |
2 |
2.2 |
3 |
4 |
4 |
|||||||
UBFZD Actuator Hidraulicus Rotativus Seriae Singularis Cum Patella, Cum Axis Exsertus 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFZD40 |
70 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
55 |
197 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
M12×20 |
UBFZD50 |
80 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
66 |
231 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
M12×20 |
UBFZD63 |
90 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
72 |
253 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
M16×25 |
UBFZD80 |
95 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
86 |
292 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
M16×25 |
UBFZD100 |
115 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
100 |
343 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
M20×30 |
UBFZD125 |
125 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
116 |
390 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
M24×35 |
UBFZD140 |
145 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
125 |
418 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
M24×35 |
UBFZD160 |
165 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
140 |
464 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
M30×45 |
UBFZD180 |
175 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
152 |
518 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
M30×45 |
UBFZD200 |
195 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
170 |
578 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
M30×45 |
Schema Perimetrale Actuatoris Rotatorii Hydraulici Seriae Singularis Cunei, ad Flange, cum Arboris Evolutum et Unitate Potestatis Hydraulica 
UBFZS Actuator Rotatorius Hydraulicus Series Biplicis Cunei, Ad Flange, Cum Evolutione Arbores 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFZS40 |
70 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
110 |
210 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
M12×20 |
UBFZS50 |
80 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
132 |
252 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
M12×20 |
UBFZS63 |
90 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
144 |
274 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
M16×25 |
UBFZS80 |
95 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
172 |
327 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
M16×25 |
UBFZS100 |
115 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
200 |
380 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
M20×30 |
UBFZS125 |
125 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
232 |
446 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
M24×35 |
UBFZS140 |
145 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
250 |
482 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
M24×35 |
UBFZS160 |
165 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
280 |
538 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
M30×45 |
UBFZS180 |
175 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
304 |
596 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
M30×45 |
UBFZS200 |
195 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
340 |
656 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
M30×45 |
Schema Perimetrale Actuatoris Rotatorii Hydraulici Seriae Biplicis Cunei, ad Flange, cum Arboris Evolutum et Unitate Potestatis Hydraulica 
UBFKD Actuator Rotatorius Hydraulicus Series Singularis Cunei, Ad Flange, Cum Evacuatione Foraminis 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFKD40 |
50 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
55 |
197 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
M12×20 |
UBFKD50 |
60 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
66 |
231 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
M12×20 |
UBFKD63 |
65 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
72 |
253 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
M16×25 |
UBFKD80 |
70 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
86 |
292 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
M16×25 |
UBFKD100 |
85 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
100 |
343 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
M20×30 |
UBFKD125 |
90 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
116 |
390 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
M24×35 |
UBFKD140 |
105 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
125 |
418 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
M24×35 |
UBFKD160 |
120 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
140 |
464 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
M30×45 |
UBFKD180 |
125 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
152 |
518 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
M30×45 |
UBFKD200 |
140 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
170 |
578 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
M30×45 |
Schema Perimetrale Actuatoris Rotatorii Hydraulici Seriae Singularis Cunei, ad Flange, cum Evacuatione Foraminis et Unitate Potestatis Hydraulica 
UBFKS Actuator Rotatorius Hydraulicus Series Biplicis Cunei, Ad Flange, Cum Evacuatione Foraminis 
α: Oscillationis angulus, secundum clientis postulationes determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Ad altiorem praecisionem vel anguli fine regulatio, specificanda est ordinatione.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFKS40 |
50 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
110 |
210 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
M12×20 |
UBFKS50 |
60 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
132 |
252 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
M12×20 |
UBFKS63 |
65 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
144 |
274 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
M16×25 |
UBFKS80 |
70 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
172 |
327 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
M16×25 |
UBFKS100 |
85 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
200 |
380 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
M20×30 |
UBFKS125 |
90 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
232 |
446 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
M24×35 |
UBFKS140 |
105 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
250 |
482 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
M24×35 |
UBFKS160 |
120 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
280 |
538 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
M30×45 |
UBFKS180 |
125 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
304 |
596 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
M30×45 |
UBFKS200 |
140 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
340 |
656 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
M30×45 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Duplex-Dentatorum, Cum Orificio in Flange, Una Cum Unitate Potestatis Hydraulicus 
UBJZD Impositus Pedale, Cum Axis Transmissorius, Serie Simplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJZD40 |
70 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
55 |
188 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
UBJZD50 |
80 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
66 |
215 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
UBJZD63 |
90 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
72 |
236 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
UBJZD80 |
95 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
86 |
267 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
UBJZD100 |
115 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
100 |
306 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
UBJZD125 |
125 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
116 |
354 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
UBJZD140 |
145 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
125 |
377 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
UBJZD160 |
165 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
140 |
415 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
UBJZD180 |
175 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
152 |
475 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
UBJZD200 |
195 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
170 |
520 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Simplex-Dentatorum, Impositi Pedale, Cum Axis Transmissorius, Una Cum Unitate Potestatis Hydraulicus 
UBJZS Impositus Pedale, Cum Axis Transmissorius, Serie Duplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJZS40 |
70 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
110 |
215 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
UBJZS50 |
80 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
132 |
257 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
UBJZS63 |
90 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
144 |
279 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
UBJZS80 |
95 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
172 |
332 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
UBJZS100 |
115 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
200 |
385 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
UBJZS125 |
125 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
232 |
451 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
UBJZS140 |
145 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
250 |
487 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
UBJZS160 |
165 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
280 |
543 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
UBJZS180 |
175 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
304 |
601 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
UBJZS200 |
195 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
340 |
661 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Duplex-Dentatorum, Impositi Pedale, Cum Axis Transmissorius, Una Cum Unitate Potestatis Hydraulicus 
UBJKD Impositus Pedale, Cum Axis Transmissorius, Serie Duplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJKD40 |
50 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
55 |
188 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
UBJKD50 |
60 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
65 |
215 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
UBJKD63 |
65 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
72 |
236 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
UBJKD80 |
70 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
86 |
267 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
UBJKD100 |
85 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
100 |
306 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
UBJKD125 |
90 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
116 |
354 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
UBJKD140 |
105 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
125 |
377 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
UBJKD160 |
120 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
140 |
415 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
UBJKD180 |
125 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
152 |
475 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
UBJKD200 |
140 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
170 |
520 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Simplex-Dentatorum, Impositi Pedale, Cum Foramine Incluso, Una Cum Unitate Potestatis Hydraulicus

UBJKS Impositus Pedale, Cum Foramine Incluso, Serie Duplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJKS40 |
50 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
110 |
215 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
UBJKS50 |
60 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
132 |
257 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
UBJKS63 |
65 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
144 |
279 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
UBJKS80 |
70 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
172 |
332 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
UBJKS100 |
85 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
200 |
385 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
UBJKS125 |
90 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
232 |
451 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
UBJKS140 |
105 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
250 |
487 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
UBJKS160 |
120 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
280 |
543 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
UBJKS180 |
125 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
304 |
601 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
UBJKS200 |
140 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
340 |
661 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
Schema Lineamentorum Actuatoris Rotatorii Hydraulici Seriei Cunei Bipedalis, cum Orificio et Cuneis Gemellis, una cum Unitate Potestatis Hydraulicae

Unitas Potestatis Hydraulicae Actuatoris Rotatorii Seriei Cunei et Pini Uncinati UB
I. Schema Lineamentorum

Imago cylindri hydraulici rotatorii dentati et cremalis 






Actuator Hydraulicus Rotatorius Dentati-Cremalis
Conspectus
Actuator hydraulicus rotatorius dentati-cremalis convertit energiam hydraulicam in motum oscillantem vel angularem. Motus reciprocans linearis cylindri hydraulici movet cremalem, quae ingreditur cum rota dentata ut rotationem bidirectionalem generet. Vis cylindri mechanice multiplicatur in torque per transmissionem cremali-dentatam, et angulus oscillationis proportionalis est cursui cremalis, efficiens 0°–720°rotationem.
Actuator constat ex stelo pinionis, pistillo dentato, corpore cylindri et systemate obsignandi. Communes fixationis formae includunt brachiolum et fixationem pedis. Formae structurales includunt designa singula et duplex dentata, quae in pluribus seriebus et magnitudinibus offeruntur ad variatas necessitates torqueas complendas. Cunei finis cursus (scil. 15° per extremum) operationem lenem praebent.
Praecipua Praestantia Perficundi
1. Magnus Torque
Torque proportionalis est pressioni operativa, et cum amplificatione mechanica systematis denticuli et pinnaculi, actuator usque ad 1,150,000 Nm (ex., UBZ320). Idoneus ad applicationes industriales gravissimas.
2. Praecisio Regulatio
Cum encoderibus rotatoris vel sensoribus displacementis facultativis, actuator systema servo clausum efficit:
UB Series Gear-Rack Rotary Actuator
Actuatores seriei UB a machina hydraulica URANUS independentia sunt elaborati et adoptati ut JB/ZQ4713-98 decies milia actuatores UB in toto orbe terrarum iam tradidimus.
Peculiaritates
・Montatio: Flangea / Pes
・Structura: Unicus gradus / Duplex gradus
・8 series × 10 foraminum dimensiones × 10 moduli
・Pressio nominalis: 16 MPa / 25 MPa / 31.5 MPa
・Pressio initiandi humilis (≤1,5 MPa), altum efficiens
・Latissimus thermorum ambitus −50°C ad +260°C
・Optima obturatio et longa vita usus
Compatibilitas fluidorum
Operatur cum oleo minerali, emulsione, aqua-glycole, estere phosphato, etc. (Specificandum cum ordinatur.)
Conservatio
Generaliter sine ulla mantientione. Lubricatio annua commendatur. Si minima effusio accidit, redige oleum in vas; obturationes mutes tantum cum torque iam non satisfacit.
Optionem Hydraulicae Machinae
Idoneum pro systematibus singulorum actuatum:
・Valvulae relief praesaturatae et fabrica impletas
・Regulatio torsiōnis indepēnscēns ad directiones CW/CCW
・Reservāculum plene clausum
・Non recommendatur pro temperiēie ambiantis 80°C
Disponuntur Designationes Personarum
Solutions personalizatas offrimus, inter quas:
1. Actuatores rotatorii Servo (pressio initiandi <0.5 MPa, ludus ≤0.02, repetibililitas ≤0.05°)
2. Torque ultra-magna (1,150,000 Nm) et micro-actuatores (<1 kg)
3. Exitus speciales: axis dualis, combinatus axis/perforatio, axis crenatus, foramen crenatum
4. Specialis fixatio: gemina forcula, flange unilateralis
5. Mechanismi fine regulationis anguli
6. Valvulae inclusae, valvulae contrapondus pro camera singula/gemina
Exempla Productorum:
1. Cylindrus Hydraulicus Oscillationis UBJZS140-172°
- Caliber: 140 mm
- Angulus: 172°
- Methodus Montandi: Supportum Pedale
- Typus: Duplicis Denticuli
- Productum: Axis Clavium Parallelum Duplex
- Diametros Axis: 145e8 mm
- Angulus Cuspidis Extremi: 12°
- Torque: 40,996 Nm
- Pressio Nominalis: 16 MPa - Pressio Experimenti: 21 MPa
- Fluidum Operans: Oleum Hydraulicum
2. Electricus Cylindrus Oscillationis UBFKD40-90°HP01
- Diameter Cylindri: 40 mm - Angulus: 90° - Torque: 2,480 Nm
- Modus Iuncturae: Flange - Genus: Cratis Singula
- Modus Emissionis: 4 Foramina Clavium Parallela φ50⁺⁰·⁰³ mm - Angulus Cuspidis Extremi: 15°
- Plica Potestatis Hydraulicae
- Pressio Nominalis: 21 MPa - Fluxus Nominalis: 1.6 L/min - Potentia Motoris: 0.75 kW, 380V AC 
3. Systema Regulandi Portae per Motorem DC UBFKD100-95°+UP16X6BEG
- Alesanus: 100 mm - Angulus: 95° - Modus Alligandi: Flangea - Genus: Crank Singularis
- Exitus: Alesanus Biforis Clavi Paralleli φ85H7 mm - Torque: 8,320 Nm - Angulus Cunei Finalis: 15°
Pastrum potentiae hydraulicae
- Pressio Rata: 16 MPa - Fluxus Ratus: 6 L/min - Potentia Motoris: 2 kW, 48V DC
- Fluidum Operans: Oleum Hydraulicum 
4. Cylindrus Oscillans pro Grui Silvestri UBTZSJ80-380°H
Alesanus: 80 mm Angulus: 380° Modus Alligandi: Fulcrum Pedale Genus: Crank Duplicatus
Modus Exeundi: Axis cum Flangea
Pressio Rata: 19 MPa Pressio Experimenti: 22 MPa Torque: 15,280 Nm Liquor Laboris: Oleum Hydraulicum
Ecce exemplaria productorum seriei UB et seriei UBZ
Actuator Hidraulicus Rotativus Ensignii et Pinnulae Series UB (JB/ZQ4713-2006)
Exemplum Selectionis: Actuator rotatorius cum connectione flangii, axes output, duplici dente recto, 8818 Nm
torquens, angulus oscillationis 368°, cuneus finalis, et unitas hydraulica P05

Tabula Specificarum Fundamentalium pro Actuatore Rotatorio Hydraulico Serie UB a Dente Recto (JB/ZQ4713-2006)
Structura |
Modus connexionis |
Model |
Diameter Cylindri (mm) |
Torque Output (Nm) (P: Pressio Operandi Mpa) |
Torque Output ad P=16 MPa (Nm) |
Volumen Olei per Gradum Rotationis (L/°) |
Velocitas Oscillationis cum Unitate Hydraulica (°/s) (Sine cuneo) |
|||||||||||
Axes Output |
Foramen Output |
P01 |
P02 |
P03 |
P04 |
P05 |
P06 |
P07 |
P08 |
P09 |
P10 |
P11 |
||||||
Singuli rastri |
Flange |
UBFZD40 |
UBFKD40 |
40 |
55 (P-1.5) |
798 |
0.00097 |
26 |
34 |
48 |
60 |
72 |
86 |
98 |
120 |
140 |
172 |
240 |
Pes |
UBJZD40 |
UBJKD40 |
||||||||||||||||
Flange |
UBFZD50 |
UBFKD50 |
50 |
98 (P-1.5) |
1421 |
0.00171 |
15 |
19 |
27 |
34 |
41 |
49 |
55 |
68 |
80 |
97 |
136 |
|
Pes |
UBJZD50 |
UBJKD50 |
||||||||||||||||
Flange |
UBFZD63 |
UBFKD63 |
63 |
171 (P-1.5) |
2480 |
0.00299 |
B |
11 |
16 |
20 |
23 |
28 |
32 |
39 |
46 |
56 |
78 |
|
Pes |
UBJZD63 |
UBJKD63 |
||||||||||||||||
Flange |
UBFZD80 |
UBFKD80 |
80 |
302 (P-1.4) |
4409 |
0.00526 |
4.8 |
6 |
9 |
11 |
13 |
16 |
18 |
22 |
26 |
31 |
44 |
|
Pes |
UBJZD80 |
UBJKD80 |
||||||||||||||||
Flange |
UBFZD100 |
UBFKD100 |
100 |
566 (P-1.3) |
8320 |
0.00987 |
2.5 |
3 |
4.7 |
5.9 |
7 |
8.4 |
9.6 |
11 |
14 |
17 |
23 |
|
Pes |
UBJZD100 |
UBJKD100 |
||||||||||||||||
Flange |
UBFZD125 |
UBFKD125 |
125 |
994 (P-1.3) |
14612 |
0.01735 |
1.4 |
2 |
2.7 |
3.3 |
4 |
4.8 |
5.5 |
6.7 |
7.9 |
9.6 |
13 |
|
Pes |
UBJZD125 |
UBJKD125 |
||||||||||||||||
Flange |
UBFZD140 |
UBFKD140 |
140 |
1385 (P-1.2) |
20498 |
0.02418 |
1 |
1.4 |
1.9 |
2.4 |
2.9 |
3.4 |
3.9 |
4.8 |
5.6 |
6.9 |
9.6 |
|
Pes |
UBJZD140 |
UBJKD140 |
||||||||||||||||
Flange |
UBFZD160 |
UBFKD160 |
160 |
2010 (P-1.2) |
29748 |
0.03509 |
0.7 |
0.9 |
1.3 |
1.7 |
2 |
2.4 |
2.7 |
3.3 |
3.9 |
4.7 |
6.6 |
|
Pes |
UBJZD160 |
UBJKD160 |
||||||||||||||||
Flange |
UBFZD180 |
UBFKD180 |
180 |
2748 (P-1.1) |
40945 |
0.04797 |
0.5 |
0.7 |
1 |
1.2 |
1.5 |
1.7 |
2 |
2.4 |
2.8 |
3.5 |
4.9 |
|
Pes |
UBJZD180 |
UBJKD180 |
||||||||||||||||
Flange |
UBFZD200 |
UBFKD200 |
200 |
3958 (P-1.0) |
59370 |
0.06909 |
0.3 |
0.5 |
0.6 |
0.8 |
1 |
1.2 |
1.4 |
1.6 |
2 |
2.4 |
3.2 |
|
Pes |
UBJZD200 |
UBJKD200 |
||||||||||||||||
Duplex-rudus |
Flange |
UBFZS40 |
UBFKS40 |
40 |
110 (P-1.5) |
1595 |
0.00193 |
13 |
17 |
24 |
30 |
36 |
43 |
49 |
60 |
70 |
81 |
120 |
Pes |
UBJZS40 |
UBJKS40 |
||||||||||||||||
Flange |
UBFZS50 |
UBFKS50 |
50 |
196 (P-1.5) |
2842 |
0.00343 |
7.5 |
9.5 |
14 |
17 |
20 |
24 |
23 |
34 |
40 |
49 |
68 |
|
Pes |
UBJZS50 |
UBJKS50 |
||||||||||||||||
Flange |
UBFZS63 |
UBFKS63 |
63 |
342 (P-1.5) |
4959 |
0.00598 |
4 |
5.5 |
8 |
10 |
12 |
14 |
16 |
19 |
23 |
28 |
39 |
|
Pes |
UBJZS63 |
UBJKS63 |
||||||||||||||||
Flange |
UBFZS80 |
UBFKS80 |
80 |
604 (P-1.4) |
8818 |
0.01053 |
2.4 |
3 |
4.5 |
5.5 |
6.5 |
8 |
9 |
11 |
13 |
16 |
22 |
|
Pes |
UBJZS80 |
UBJKS80 |
||||||||||||||||
Flange |
UBFZS100 |
UBFKS100 |
100 |
1132 (P-1.3) |
16640 |
0.01974 |
1.3 |
1.6 |
2.3 |
3 |
3.5 |
4.2 |
4.8 |
5.9 |
7 |
8.4 |
12 |
|
Pes |
UBJZS100 |
UBJKS100 |
||||||||||||||||
Flange |
UBFZS125 |
UBFKS125 |
125 |
1988 (P-1.3) |
29224 |
0.03470 |
0.7 |
1 |
1.3 |
1.7 |
2 |
2.4 |
2.7 |
3.8 |
3.9 |
4.8 |
6.7 |
|
Pes |
UBJZS125 |
UBJKS125 |
||||||||||||||||
Flange |
UBFZS140 |
UBFKS140 |
140 |
2770 (P-1.2) |
40996 |
0.04836 |
0.5 |
0.7 |
1 |
1.2 |
1.4 |
1.7 |
2 |
2.4 |
2.8 |
3.4 |
4.8 |
|
Pes |
UBJZS140 |
UBJKS140 |
||||||||||||||||
Flange |
UBFZS160 |
UBFKS160 |
160 |
4020 (P-1.2) |
59496 |
0.07018 |
0.3 |
0.5 |
0.7 |
0.8 |
1 |
1.2 |
1.3 |
1.6 |
1.9 |
2.3 |
3.3 |
|
Pes |
UBJZS160 |
UBJKS160 |
||||||||||||||||
Flange |
UBFZS180 |
UBFKS180 |
180 |
5496 (P-1.1) |
81890 |
0.09593 |
0.2 |
0.3 |
0.5 |
0.6 |
0.7 |
0.8 |
1 |
1.2 |
1.4 |
1.7 |
2.4 |
|
Pes |
UBJZS180 |
UBJKS180 |
||||||||||||||||
Flange |
UBFZS200 |
UBFKS200 |
200 |
7916 (P-1.0) |
118740 |
0.13817 |
0.1 |
0.2 |
0.3 |
0.4 |
0.5 |
0.6 |
0.7 |
0.8 |
1 |
1.2 |
1.6 |
|
Pes |
UBJZS200 |
UBJKS200 |
||||||||||||||||
Motoris potentia unitatis hydraulicae (kW) (380V 50Hz) |
0.55 |
0.75 |
1.1 |
1.5 |
1.5 |
2 |
2 |
2.2 |
3 |
4 |
4 |
|||||||
UBFZD Actuator Hidraulicus Rotativus Seriae Singularis Cum Patella, Cum Axis Exsertus 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFZD40 |
70 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
55 |
197 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
M12×20 |
UBFZD50 |
80 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
66 |
231 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
M12×20 |
UBFZD63 |
90 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
72 |
253 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
M16×25 |
UBFZD80 |
95 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
86 |
292 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
M16×25 |
UBFZD100 |
115 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
100 |
343 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
M20×30 |
UBFZD125 |
125 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
116 |
390 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
M24×35 |
UBFZD140 |
145 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
125 |
418 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
M24×35 |
UBFZD160 |
165 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
140 |
464 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
M30×45 |
UBFZD180 |
175 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
152 |
518 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
M30×45 |
UBFZD200 |
195 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
170 |
578 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
M30×45 |
Schema Perimetrale Actuatoris Rotatorii Hydraulici Seriae Singularis Cunei, ad Flange, cum Arboris Evolutum et Unitate Potestatis Hydraulica 
UBFZS Actuator Rotatorius Hydraulicus Series Biplicis Cunei, Ad Flange, Cum Evolutione Arbores 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFZS40 |
70 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
110 |
210 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
M12×20 |
UBFZS50 |
80 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
132 |
252 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
M12×20 |
UBFZS63 |
90 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
144 |
274 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
M16×25 |
UBFZS80 |
95 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
172 |
327 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
M16×25 |
UBFZS100 |
115 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
200 |
380 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
M20×30 |
UBFZS125 |
125 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
232 |
446 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
M24×35 |
UBFZS140 |
145 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
250 |
482 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
M24×35 |
UBFZS160 |
165 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
280 |
538 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
M30×45 |
UBFZS180 |
175 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
304 |
596 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
M30×45 |
UBFZS200 |
195 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
340 |
656 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
M30×45 |
Schema Perimetrale Actuatoris Rotatorii Hydraulici Seriae Biplicis Cunei, ad Flange, cum Arboris Evolutum et Unitate Potestatis Hydraulica 
UBFKD Actuator Rotatorius Hydraulicus Series Singularis Cunei, Ad Flange, Cum Evacuatione Foraminis 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFKD40 |
50 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
55 |
197 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
M12×20 |
UBFKD50 |
60 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
66 |
231 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
M12×20 |
UBFKD63 |
65 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
72 |
253 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
M16×25 |
UBFKD80 |
70 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
86 |
292 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
M16×25 |
UBFKD100 |
85 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
100 |
343 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
M20×30 |
UBFKD125 |
90 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
116 |
390 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
M24×35 |
UBFKD140 |
105 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
125 |
418 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
M24×35 |
UBFKD160 |
120 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
140 |
464 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
M30×45 |
UBFKD180 |
125 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
152 |
518 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
M30×45 |
UBFKD200 |
140 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
170 |
578 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
M30×45 |
Schema Perimetrale Actuatoris Rotatorii Hydraulici Seriae Singularis Cunei, ad Flange, cum Evacuatione Foraminis et Unitate Potestatis Hydraulica 
UBFKS Actuator Rotatorius Hydraulicus Series Biplicis Cunei, Ad Flange, Cum Evacuatione Foraminis 
α: Oscillationis angulus, secundum clientis postulationes determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Ad altiorem praecisionem vel anguli fine regulatio, specificanda est ordinatione.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
M2 × Profunditas Foraminis |
UBFKS40 |
50 |
95 |
75 |
105 |
140 |
160 |
164 |
184 |
110 |
210 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
M12×20 |
UBFKS50 |
60 |
105 |
85 |
125 |
146 |
185 |
170 |
210 |
132 |
252 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
M12×20 |
UBFKS63 |
65 |
115 |
95 |
140 |
164 |
200 |
194 |
232 |
144 |
274 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
M16×25 |
UBFKS80 |
70 |
125 |
100 |
150 |
175 |
225 |
205 |
257 |
172 |
327 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
M16×25 |
UBFKS100 |
85 |
145 |
120 |
165 |
194 |
265 |
234 |
306 |
200 |
380 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
M20×30 |
UBFKS125 |
90 |
155 |
130 |
170 |
230 |
285 |
274 |
334 |
232 |
446 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
M24×35 |
UBFKS140 |
105 |
180 |
150 |
200 |
240 |
305 |
286 |
354 |
250 |
482 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
M24×35 |
UBFKS160 |
120 |
200 |
170 |
220 |
255 |
330 |
315 |
390 |
280 |
538 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
M30×45 |
UBFKS180 |
125 |
220 |
180 |
240 |
330 |
380 |
390 |
440 |
304 |
596 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
M30×45 |
UBFKS200 |
140 |
240 |
200 |
260 |
365 |
440 |
425 |
500 |
340 |
656 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
M30×45 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Duplex-Dentatorum, Cum Orificio in Flange, Una Cum Unitate Potestatis Hydraulicus 
UBJZD Impositus Pedale, Cum Axis Transmissorius, Serie Simplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJZD40 |
70 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
55 |
188 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
UBJZD50 |
80 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
66 |
215 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
UBJZD63 |
90 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
72 |
236 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
UBJZD80 |
95 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
86 |
267 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
UBJZD100 |
115 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
100 |
306 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
UBJZD125 |
125 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
116 |
354 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
UBJZD140 |
145 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
125 |
377 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
UBJZD160 |
165 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
140 |
415 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
UBJZD180 |
175 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
152 |
475 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
UBJZD200 |
195 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
170 |
520 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Simplex-Dentatorum, Impositi Pedale, Cum Axis Transmissorius, Una Cum Unitate Potestatis Hydraulicus 
UBJZS Impositus Pedale, Cum Axis Transmissorius, Serie Duplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJZS40 |
70 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
110 |
215 |
154 |
6 |
20 |
233+1.54α |
79 |
M22×1.5 |
UBJZS50 |
80 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
132 |
257 |
163 |
6 |
22 |
254+1.75α |
90 |
M22×1.5 |
UBJZS63 |
90 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
144 |
279 |
190 |
6 |
25 |
275+1.92α |
100 |
M27×2 |
UBJZS80 |
95 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
172 |
332 |
212 |
8 |
25 |
328+2.09α |
105 |
M27×2 |
UBJZS100 |
115 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
200 |
385 |
244 |
8 |
32 |
370+2.51α |
129 |
M33×2 |
UBJZS125 |
125 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
232 |
451 |
284 |
8 |
32 |
417+2.83α |
139 |
M42×2 |
UBJZS140 |
145 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
250 |
487 |
290 |
10 |
36 |
423+3.14α |
161 |
M42×2 |
UBJZS160 |
165 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
280 |
543 |
314 |
10 |
40 |
484+3.49α |
183 |
M48×2 |
UBJZS180 |
175 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
304 |
601 |
380 |
12 |
45 |
578+3.77α |
195 |
M48×2 |
UBJZS200 |
195 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
340 |
661 |
438 |
12 |
45 |
610+4.40α |
215 |
M48×2 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Duplex-Dentatorum, Impositi Pedale, Cum Axis Transmissorius, Una Cum Unitate Potestatis Hydraulicus 
UBJKD Impositus Pedale, Cum Axis Transmissorius, Serie Duplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJKD40 |
50 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
55 |
188 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
UBJKD50 |
60 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
65 |
215 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
UBJKD63 |
65 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
72 |
236 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
UBJKD80 |
70 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
86 |
267 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
UBJKD100 |
85 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
100 |
306 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
UBJKD125 |
90 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
116 |
354 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
UBJKD140 |
105 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
125 |
377 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
UBJKD160 |
120 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
140 |
415 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
UBJKD180 |
125 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
152 |
475 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
UBJKD200 |
140 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
170 |
520 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
Schema Perimetrale Rotatorii Hydraulicus Actuatoris Serie Simplex-Dentatorum, Impositi Pedale, Cum Foramine Incluso, Una Cum Unitate Potestatis Hydraulicus

UBJKS Impositus Pedale, Cum Foramine Incluso, Serie Duplex-Dentatorum Rotatorius Hydraulice Motor 
α: Angulus oscillationis, secundum petitiones clientis determinatus (in intervallo 0° ad 720°, cum tolerantia anguli ±1°). Pro maioris praecisionis vel adjustmenti finae anguli, quaeso specifica cum ordinatio.
Model |
φ1 |
φ2 |
φ3 |
L1 |
L2 |
L3 |
L4 |
L5 |
L6 |
L7 |
L8 |
L9 |
L10 |
L11 |
L12 |
M1 |
UBJKS40 |
50 |
13.5 |
75 |
105 |
140 |
160 |
110 |
25 |
110 |
215 |
154 |
6 |
14 |
233+1.54α |
57.6 |
M22×1.5 |
UBJKS50 |
60 |
13.5 |
85 |
125 |
146 |
185 |
131 |
25 |
132 |
257 |
163 |
6 |
18 |
254+1.75α |
68.8 |
M22×1.5 |
UBJKS63 |
65 |
17.5 |
95 |
140 |
164 |
200 |
142 |
35 |
144 |
279 |
190 |
6 |
18 |
275+1.92α |
73.8 |
M27×2 |
UBJKS80 |
70 |
17.5 |
100 |
150 |
175 |
225 |
168 |
35 |
172 |
332 |
212 |
8 |
20 |
328+2.09α |
79.8 |
M27×2 |
UBJKS100 |
85 |
22 |
120 |
165 |
194 |
265 |
195 |
35 |
200 |
385 |
244 |
8 |
22 |
370+2.51α |
95.8 |
M33×2 |
UBJKS125 |
90 |
26 |
130 |
170 |
230 |
285 |
228 |
40 |
232 |
451 |
284 |
8 |
25 |
417+2.83α |
100.8 |
M42×2 |
UBJKS140 |
105 |
26 |
150 |
200 |
240 |
305 |
246 |
40 |
250 |
487 |
290 |
10 |
28 |
423+3.14α |
117.8 |
M42×2 |
UBJKS160 |
120 |
33 |
170 |
220 |
255 |
330 |
274 |
45 |
280 |
543 |
314 |
10 |
32 |
484+3.49α |
134.8 |
M48×2 |
UBJKS180 |
125 |
33 |
180 |
240 |
330 |
380 |
303 |
45 |
304 |
601 |
380 |
12 |
32 |
578+3.77α |
139.8 |
M48×2 |
UBJKS200 |
140 |
33 |
200 |
260 |
365 |
440 |
333 |
45 |
340 |
661 |
438 |
12 |
36 |
610+4.40α |
156.8 |
M48×2 |
Schema Lineamentorum Actuatoris Rotatorii Hydraulici Seriei Cunei Bipedalis, cum Orificio et Cuneis Gemellis, una cum Unitate Potestatis Hydraulicae

Unitas Potestatis Hydraulicae Actuatoris Rotatorii Seriei Cunei et Pini Uncinati UB
I. Schema Lineamentorum

1. Motor (380V 50Hz), 2. Scatula Iunctionum, 3. Portus Hydraulicus, 4. Valva de Relatu, 5. Valva Riteantecedens, 6. Pons Hydraulicus, 7. Portus Immissionis Olei, 8. Reservoir Olei, 9. Taps Exoneratorius Olei
II. Schema Connexionum Motoris 
III. Praescriptiones Technicae
Model |
P01 |
P02 |
P03 |
P04 |
P05 |
P06 |
P07 |
P08 |
P09 |
P10 |
P11 |
|
Celeritas Fluminis (1/min) |
1.5 |
2 |
2.8 |
3.5 |
4.2 |
5 |
5.7 |
7 |
8.2 |
10 |
14 |
|
motor AC Trifasius |
Potestas (kw) |
0.55 |
0.75 |
1.1 |
1.5 |
2.0 |
2.2 |
3.0 |
4.0 |
|||
RPM r/min |
1400 |
1420 |
1440 |
|||||||||
φ mm |
165 |
165 |
180 |
180 |
180 |
220 |
220 |
240 |
||||
H mm |
120 |
120 |
130 |
130 |
130 |
180 |
180 |
190 |
||||
L mm |
275 |
275 |
280 |
305 |
310 |
370 |
370 |
380 |
||||
Pondus (kg) |
27 |
28 |
32 |
35 |
40 |
48 |
52 |
83 |
||||