SMC Corporation of America
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Local Area: (800) 258-9200-www.stevenengineering.com Manifold gasket Manifold gasket Applicable base Applicable base VV3K3-20 21 VV5K3-20 21 VK300-45-1 Sub-plate VV3K3-40 (S) 42 VV5K3-40 (S) 41 (S) 42 Manifold base Manifold base Caution Mounting Screw Tightening Torques M3: 0.6 Nm Body ported VK300-41-1A Base mounted VK300-41-2A Manifold gasket and screw assembly Note 1) Mounting direction

Vacuum pressure Theoretical lifting force Horizontal lifting force [N]Safety factor 1/4 [kPa] [N] 1 cup gripping -50 40.2 10.0 2 cups gripping -67 53.8 13.4 3 cups gripping -73 58.7 14.6 (Calculated by W = P X S, S = r2, r = 32 / 2. Refer to 3.3 How to calculate theoretical lifting force for the detail.)

CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing

CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing

Metal bowl with level gauge Metal bowl Metal bowl Optional specifications B B B B B N.C.: Gray N.O.: Black B B O S O S M5 x 0.8 Width across flats 17 1/4 10 One-touch fitting Barb fitting Applicable tubing: T0604 Bracket mounting size Accessory specification With auto drain Standard specification Port size Model B 85 115 170 204 208 284 297 P 28 57 73 73 D 25 40 53 70 70 90 95 C 7 10 14

Also, do not use the filter when these chemicals are present in the atmosphere. 2 Series ZB How to Order Manifold S 01 ZZB 08 M5 Stations Pressure Sensor/Vacuum Pressure Switch Mountable Note) Sensor/switch non-mountable base Sensor/switch mountable base Nil S 01 02 1 station 2 stations Note) Select S when the model with either the pressure sensor or the vacuum pressure switch is selected

Cushion adjustment screw 4-J GA Air release GA V V Width across flats G Width across flats G MM MM R (max.) d W W D d E E D M MA a a M MA F NA NA F K A A K C H + Stroke S + Stroke H B ZZ + 2 strokes (mm) Bore size (mm) A a B C d E F G GA J K M MA MM NA P R S T V W H ZZ D 0 -0.018 0 -0.021 0 -0.021 0 -0.021 0 -0.025 0 -0.025 0 -0.025 0 -0.062 0 -0.062 0 -0.074 0 -0.074 0 -0.074 0 -0.074 0

Lock 1 S Couplers Variations Plug (P) Socket (S) Male thread type Male thread type Body size Part no. Body size Port size Part no.

JXC-C2VController/JXC73/83 To I/O To ENC VActuator cable p. 17 Robotic cable Standard cable LE-CP-LE-CP---S To USB To MOT To CI To C PWR V Motor control power supply connector (Accessory) AWG20 (0.5 mm2) p. 12 V Cable with main control power supply connector Cable length: 1.5 m (Accessory) p. 15 Part no. JXC-C1 Provided by customer.

LEHZ/LEHZJ: 5 to 50 mm/s LEHF10: 5 to 20 mm/s LEHF20/32/40: 5 to 30 mm/s LEHS: 5 to 50 mm/s Operation at the speed outside of the range can get the lead screw caught and cause operation failure. 9. Self-lock mechanism The product keeps a gripping force due to the self-lock mechanism in the lead screw.

R 2 mgh F1S S T t m m Nm C m/s kg MK(2) E1 + E2 mgS mgS F1S mgS F1S + mgS RS Q G E 2 2 E1 + E2 E1 + E2 E1 + E2 E1 + E2 E1 + E2 d p F T n t kg RS H A Me 2 2 2 E 2 2 E 2 2 E 2 2 E 2 E m = 20 kg = 0.7 m/s d = 40 mm p = 0.5 MPa n = 20 cycle/min t = 25C rad/s 2.

R 2 mgh F1S S T t m m Nm C m/s kg MK(2) E1 + E2 mgS mgS F1S mgS F1S + mgS RS Q G E 2 2 E1 + E2 E1 + E2 E1 + E2 E1 + E2 E1 + E2 d p F T n t kg RS H A Me 2 2 2 E 2 2 E 2 2 E 2 2 E 2 E m = 20 kg = 0.7 m/s d = 40 mm p = 0.5 MPa n = 20 cycle/min t = 25C rad/s 2.

Vacuum pressure Theoretical lifting force Horizontal lifting force [N]Safety factor 1/4 [kPa] [N] 1 cup gripping -50 40.2 10 2 cups gripping -67 53.8 13.4 3 cups gripping -73 58.7 14.6 (Calculated by W = P X S, S = r2, r = 32 / 2. Refer to 3.3 How to calculate theoretical lifting force for the detail.)

Vacuum pressure Theoretical lifting force Horizontal lifting force [N]Safety factor 1/4 [kPa] [N] 1 cup gripping -50 40.2 10 2 cups gripping -67 53.8 13.4 3 cups gripping -73 58.7 14.6 (Calculated by W = P X S, S = r2, r = 32 / 2. Refer to 3.3 How to calculate theoretical lifting force for the detail.)

TQ1230001-OM102-B Theoretical lifting force of vacuum cup diameter 32mm with ZP2V-B06-05 at supply pressure 0.5 MPa Vacuum pressure Theoretical lifting force Horizontal lifting force [N]Safety factor 1/4 [kPa] [N] 1 cup gripping -50 40.2 10 2 cups gripping -67 53.8 13.4 3 cups gripping -73 58.7 14.6 (Calculated by W = P X S, S = r2, r = 32 / 2.

Insulation oil A H Polyacetal Note 1) Note 1) Non-leak (10 6 Pam 3/s) Brake oil Water (up to 60C) B P A H Stainless steel Note 1) If using for other fluids, please contact SMC.

Refer to the table for each pressure specification (page 110) Display/set pressure range Display/min. setting unit Power supply Used as switch output device 12 to 24 VDC (10%), and voltage ripple (p-p) 10% at max. voltage Used as IO-Link device 18 to 30 VDC, including ripple (p-p) 10% Electric spec. Power supply voltage 12 to 24 VDC (10%), and ripple (p-p) 10% at max.