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Search Results "53-SY5120-TT15-N7-F2"

Moment (Nm) Moment (Nm) Moment (Nm) Load mass (kg) M1 = F1 x L1 Piston speed V (mm/s) ML1C/M2, M3 M2 = F2 x L2 M3 = F3 x L3 Piston speed V (mm/s) (How to calculate the load ratio) A. Consider (1) max. load mass, (2) static moment, (3) dynamic moment (when stopper collides) when calculating the max. allowable moment and load mass.

No.PS-OMU0002CN-D // ZSE20A(F) ISE20A 2 8 10 11 15 15 17 19 [] 22 23 3 24 26 28 28 28 F0 30 F1 OUT1 31 F2 OUT2 34 F3 36 F4 37 F5 FUNC 39 F6 41 F10 42 F11 48 F80 49 F81 50 F82 52 F90 53 F96 55 F97 56 F98 58 F99 60 61 65 65 66 75 75 78 -1No.PS-OMU0002CN-D 1 (ISO/IEC)(JIS) *1) *2) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems ISO

Analog voltage 1 to 5 V Analog voltage 1 to 5 V Or IO-Link hub (Commercially available) Process Data Bit offset 79 78 77 76 75 74 73 72 71 70 69 68 67 66 65 64 Item CH11 measured value: 16-bit signed integer Bit offset 63 62 61 60 59 58 57 56 55 54 53 52 51 50 49 48 Measurement data of sensors for 4 channels are combined and cyclically sent as a process data.

Station 2 52 43 Station 20 340 331 Station n L1 L2 3 68 59 4 84 75 5 100 91 6 116 107 7 132 123 8 148 139 9 164 155 10 180 171 11 196 187 12 212 203 13 228 219 14 244 235 15 260 251 16 276 267 17 292 283 18 308 299 19 324 315 41 Series SYJ5000 C6 N7 Type 42: Side Ported/SS5YJ5-42Stations -01, [ ]: AC C6 N7 Grommet (G) For 01 For (Built-in one-touch fitting 65.2 [67.4] Approx. 300 (Lead

Note 2) Except VQZ1000 VQD Cylinder port N1 N3 N7 N9 N11 M5 02 Symbol 1/8" 5/32" 1/4" 5/16" 3/8" 1/4 thread M5 thread Applicable tubing O.D.

Load (kg) m1 m4 m2 m3 Moment (Nm) F3 M3=F3 x L3 L3 F1 M1=F1 x L1 F2 M2=F2 x L2 L1 L2 1. Maximum allowable load (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. Maximum Allowable Load To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

Load (kg) m1 m4 m2 m3 Moment (Nm) F3 M3=F3 x L3 L3 F1 M1=F1 x L1 F2 M2=F2 x L2 L1 L2 1. Maximum allowable load (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. Maximum Allowable Load To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

Load weight (kg) m1 m2 m3 Moment (Nm) M3 = F3 x L3 F3 M1 = F1 x L1 F1 M2 = F2 x L2 F2 L1 L2 L3 1. Maximum load weight (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com m4 m2 m3 Moment (Nm) F3 M3=F3 x L3 L3 F1 M1=F1 x L1 F2 M2=F2 x L2 L1 L2 1.

Load (kg) m1 m4 m2 m3 Moment (Nm) F3 M3=F3 x L3 L3 F1 M1=F1 x L1 F2 M2=F2 x L2 L1 L2 1. Maximum allowable load (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. Maximum allowable load To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

F1 = X A1 X P . (1) F2 = X A2 X P . (2) 4 A1 = D2 . (3) 4 A2 = (D2 d2) . (4) F1 = Cylinder force generated on the extending side (N) F2 = Cylinder force generated on the retracting side (N) = Load rate A1 = Piston area on the extending side (mm2) A2 = Piston area on the retracting side (mm2) D = Tube bore size (mm) d = Piston rod diameter (mm) P = Operating pressure (MPa) While not

D1.6 x P First tentative bore size determination F1 D1.6 x P WB Inclined operation W+WBWV PPV W + WB>WV P>PV Allowable driving force table (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (cos + sin) Inclined F3 = (W + WB) x 9.8 x ( + 1) Vertical (Refer to page 4 for connection fitting weight.)

+ WB > WV P > PV Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal Inclined Vertical F2 = (W + WB) x 9.8 x (cos + sin) (See page 63 for vertical operation.)

How to Order Manifold Example/Valve VV5QZ15 08 N7 N C T VQZ2150R 5M 02 Thread (Cylinder ports and P, R ports) External pilot specification Example/Manifold 06C6C R Rc(PT) VV5QZ25 N NPT T NPTF F G(PF) External pilot specification. Cylinder ports (1) N1 N3 N7 N9 N11 M5 01 02 Symbol NM External pilot port 3/8 1/8 5/32 1/4 5/16 Mix Applicable tube O.D.

How to Order Manifold Example/Valve T C VV3QZ15 08 N7 VQZ215R 5M 02 Thread (Cylinder ports and P, R ports) External pilot specification Example/Manifold VV3QZ25 Rc(PT) 06C6C R N NPT T NPTF F G(PF) External pilot specification Cylinder ports (1) Symbol N1 N3 N7 N9 N11 NM M5 01 02 External pilot port 3/8" 1/8" 5/32" 1/4" 5/16" Mix M5 1/8 Tube O.D.

Actuation: 3 (3-Position Closed Center), Pilot Type: Internal Pilot, Electrical Entry: TT (Terminal Type), Lead Wire Length: 15 (1500mm)

Actuation: A (4-Position Dual 3 Port Valves, N.C./N.C.), Pilot Type: Internal Pilot, Electrical Entry: TT (Terminal Type), Lead Wire Length: 15 (1500mm)

Actuation: 1 (2-Position Single), Pilot Type: Internal Pilot, Electrical Entry: TT (Terminal Type), Lead Wire Length: 15 (1500mm)

Actuation: 1 (2-Position Single), Pilot Type: Internal Pilot, Electrical Entry: TT (Terminal Type), Lead Wire Length: 15 (1500mm)

Actuation: 3 (3-Position Closed Center), Pilot Type: Internal Pilot, Electrical Entry: TT (Terminal Type), Lead Wire Length: 15 (1500mm)