SMC Corporation of America
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Series: 350 [3 Port COM (Single Unit)], Voltage: 6 (12VDC), Electrical Entry: G (Grommet / Tape winding), Orifice: 3 [350 (3 Port) ø3], Port Size: 02 [1/4 (8A)], Thread: N (NPT), Material: A (Brass Body, FKM Seal, Class B Coil)

Series: 350 [3 Port COM (Single Unit)], Voltage: 6 (12VDC), Electrical Entry: G (Grommet / Tape winding), Orifice: 3 [350 (3 Port) ø3], Port Size: 02 [1/4 (8A)], Thread: N (NPT), Material: H (Stainless Steel Body, FKM Seal, Class B Coil)

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

Allowable Driving Force Table (Fn) (n=1,2,3) F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (COS + SIN) Inclined (Refer to page 1466 for the maximum load weight when loaded directly on the body and connection bracket.) F3 = (W + WB) x 9.8 x ( + 1) Vertical Refer to the allowable driving force table for the (Fn) of data K A .

Note 3) Make sure to indicate the type of solenoid valve when ordering. 3 5 F2 (When double solenoid is mounted) (mm) C2 C3 C1 Model (size) A1 A2 B1 B2 B3 D1 D2 E1 E2 F1 F2 G R CVRB1BW50 CVRB1BW63 CVRB1BW80 CVRB1BW100 120 (136.5) 60 (61) 82.5 78 67 18 36 2.8 12 24 11.5 30 52 (53) 104 (120.5) 25 1/8 102 (136.5) 60 (61) 82.5 98 82 18 36 2.8 16 24 11.5 30 52 (53) 104 (120.5) 27.5 1/8 140 (155

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).

(For cylinder port) Port size Electrical entry VVQ4000 50B 02 1/4 03 3/8 B Bottom ported 1/4 Note 4) F1 F kit Double wiring F2 F kit Single wiring T1 T kit Double wiring T2 T kit Single wiring S1 S kit Double wiring S2 S kit Single wiring L0l L0 kit l: Stations (1 to 16) L1l L1 kit l: Stations (1 to 16) L2l L2 kit l: Stations (1 to 16) C C kit (Plug lead type) Port size C6 Applicable tubing

stroke 6mm(for f2~rj>8) 20-0120 F Fluorine rubber K10-Non-fOtation type with buffer stroke 1Omm(for rj>10~rj>SO) 25-25 B Bellows type *GN-Electric NBR(2.16) 32-"32 ~'GS ~ Electric silicon rubber('2--416) 40-40 *20 or more:Special order 50-50 LisiO Pad Dia Pad Type Listf} Vacuum Entry Mounting 4 Nylon tube N4 6 Nylon tube N6 -el!'

Load (kg) Note: 1 Nm = 0.7375 ftlb 1 kg = 2.2046 lb 1 in = 25.4 mm W1 W W m Moment (Nm) M = F x L M = F x L M = F x L F3 F2 F1 L2 L1 L3 1. Maximum allowable load (1), static moment (2), and dynamic moment (at the time of impact with stopper) (3) must be examined for the selection calculations.

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 F1 = x A1 x P (1) F2 = x A2 x P (2) A1 = D2 (3) 4 A2 = (D2 d2) (4) 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