SMC Corporation of America
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Search Results "SV2000-55-1-3"

8 / 3 S 3 0 7 0 T 2 Q K 7 1 5 . 9 2 0 3 5 3 8 / 1 S 1 0 9 0 T 2 Q K 2 1 2 . 5 1 2 1 3 2 5 . 4 2 8 2 5 . 8 1 6 6 1 6 1 / 5 4 / 1 S 2 0 9 0 T 2 Q K 4 1 5 . 8 2 0 3 4 2 8 / 3 S 3 0 9 0 T 2 Q K 7 1 5 . 0 3 5 . 1 3 6 3 4 / 1 S 2 0 1 1 T 2 Q K 7 1 9 . 7 1 7 1 5 . 5 2 5 . 9 2 5 . 2 3 1 2 7 9 2 8 / 3 8 / 3 S 3 0 1 1 T 2 Q K 5 . 1 3 5 . 4 3 8 3 2 / 1 S 4 0 1 1 T 2 Q K 2 2 5 . 5 3 5 . 6 3 4 6 4 /

Connector wiring diagram (mixed wiring) Connector type manifold 6 A 4 A 3 A 1 A 5 B 2 B Output 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 The use of multi-pin connectors to replace wiring inside manifold blocks provides flexibility when adding stations or changing

5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) (A) 4 (B) 2 VQ5451 VQ5450 (A) 4 (B) 2 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) VQ5551 (A) 4 (B) 2 VQ5550 (A) 4 (B) 2 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) Parts list Parts list Description Material Note No. 1 2 3 Description Material Note No. 1 2 3 Body Spool/Sleeve Piston Body Spool valve Piston Die cast aluminum Stainless steel Resin Die cast aluminum

0 5 (EA) 1 (P) 3 (EB) 5 (EA) 1 (P) 3 (EB) 4 (A) JIS Symbol 3 position closed center (A) 4 (B) 2 2 (B) 5 (EA) 1 (P) 3 (EB) 5 (EA) 1 (P) 3 (EB) i 3 position exhaust center 3 position exhaust center with back pressure check valve (A) 4 (B) 2 (A) 4 (B) 2 3 position closed center/exhaust center/pressure center r u !

Applicable shaft type: K (mm) L3 max X L1 max W1 (mm) Shaft type Y W2 L2 max L4 max Size J K T J K T J K T J K T Size W1 = L3 = L1 = CRB2 50 50 1 to 6 Y 3 L2 2 L1 2 11.5 to 39.5 1 to 6 X 3 11.5 to 39.5 L4 = L2 = Y = 63 63 1 to 7.5 Y 3 L2 2 L1 2 12.5 to 45 1 to 7.5 X 3 12.5 to 45 CRBU2 80 80 1 to 8.5 Y 3 L2 2 L1 2 13.5 to 53.5 1 to 8.5 X 3 13.5 to 53.5 X = 100 100 1 to 12.5 Y

-4 2.4 Operation display panel . 2-5 Chapter 3 Transport and Setting Up . 3-1 3.1 Transport. 3-1 3.1.1 Transportation using casters . 3-2 3.2 Installation . 3-3 3.2.1 Environment . 3-4 3.2.2 Location (Required ventilation rate) . 3-6 3.2.3 Installation and Maintenance Space . 3-7 3.3 Installation . 3-8 3.3.1 Mounting . 3-8 3.3.2 Electrical wiring . 3-9 3.3.3 Preparation and wiring of power

Applicable shaft type: K (mm) L3 max X L1 max W1 (mm) Shaft type Y W2 L2 max L4 max Size J K T J K T J K T J K T Size W1 = L3 = L1 = CRB2 50 50 1 to 6 Y 3 L2 2 L1 2 11.5 to 39.5 1 to 6 X 3 11.5 to 39.5 L4 = L2 = Y = 63 63 1 to 7.5 Y 3 L2 2 L1 2 12.5 to 45 1 to 7.5 X 3 12.5 to 45 CRBU2 80 80 1 to 8.5 Y 3 L2 2 L1 2 13.5 to 53.5 1 to 8.5 X 3 13.5 to 53.5 X = 100 100 1 to 12.5 Y

8 1/4 1/8 1/4 1/8 1/4 1/8 1/4 3/8 1/4 3/8 1/2 1/4 3/8 1/2 1/4 3/8 1/2 1/4 3/8 1/2 3/8 1/2 10 14 10 14 10 14 16.3 19.1 16.3 19.1 17.8 20.6 20.2 22 23 2.5 4 1.8 1.6 d 5 8 Applicable tube 3 4 2.3 2.6 H1 H2 4 6 3.3 6 5.8 10 M A L 14 6 8 5.3 6.6 14 17 Connection thread 17 25 17 7.5 10 6.8 30 22 27.1 7.6 17 25 17 8 10 7.3 35 22 27.1 26.6 17 9 12 8 45 22 28.7 8.5 17 26.6 17 10 12 9 57 28.7 28 29.9

-4 2.4 Operation display panel . 2-5 Chapter 3 Transport and Setting Up . 3-1 3.1 Transport. 3-1 3.1.1 Transportation using casters . 3-2 3.2 Installation . 3-3 3.2.1 Environment . 3-4 3.2.2 Location (Required ventilation rate) . 3-6 3.2.3 Installation and Maintenance Space . 3-7 3.3 Installation . 3-8 3.3.1 Mounting . 3-8 3.3.2 Electrical wiring . 3-9 3.3.3 Preparation and wiring of power

-2 2.3 Function of Parts . 2-3 2.4 Operation display panel . 2-4 Chapter 3 Transport and Setting Up . 3-1 3.1 Transport. 3-1 3.1.1 Transportation using casters . 3-2 3.2 Installation . 3-3 3.2.1 Environment . 3-4 3.2.2 Location (Required ventilation rate and facility water source) . 3-6 3.2.3 Installation and Maintenance Space . 3-7 3.3 Installation . 3-8 3.3.1 Mounting . 3-8 3.3.2 Electrical

W1 = L3 = L1 = 10 10 4.5 to 14 0.5 to 2 Y-1 L2-1 6.5 to 14 X-3 L1-1 0.5 to 2 L4 = 15 15 Y = 5.5 to 18 Y-1.5 L2-1 0.5 to 2.5 X-4 L1-1 8 to 18 0.5 to 2.5 L2 = 20 20 Y-1.5 L2-1 6 to 20 0.5 to 3 9 to 20 X-4.5 L1-1 0.5 to 3 X = 30 30 0.5 to 4 Y-2 L2-2 8.5 to 22 0.5 to 4 X-5 L1-2 11.5 to 22 W2 = 40 40 0.5 to 5 Y-4.5 L2-2 13.5 to 30 0.5 to 5 15.5 to 30 X-5.5 L1-2 29 Series CRB2 Axial: Top (Long-shaft

-3 2.4 Operation display panel . 2-4 Chapter 3 Transport and Setting Up . 3-1 3.1 Transport. 3-1 3.1.1 Transportation using casters . 3-2 3.2 Installation . 3-3 3.2.1 Environment . 3-4 3.2.2 Location (Required ventilation rate and facility water source) . 3-6 3.2.3 Installation and Maintenance Space . 3-7 3.3 Installation . 3-8 3.3.1 Mounting . 3-8 3.3.2 Electrical wiring . 3-9 3.3.3 Preparation

-2 2.3 Function of Parts . 2-3 2.4 Operation display panel . 2-4 Chapter 3 Transport and Setting Up . 3-1 3.1 Transport. 3-1 3.1.1 Transportation using casters . 3-2 3.2 Installation . 3-3 3.2.1 Environment . 3-4 3.2.2 Location (Required ventilation rate and facility water source) . 3-6 3.2.3 Installation and Maintenance Space . 3-7 3.3 Installation . 3-8 3.3.1 Mounting . 3-8 3.3.2 Electrical

2(B) port SMC 79 X PE 41.5 30.5 32 27 R1 R2 P 15.5 14.5 G1/2 Electrical entry 19.5 19.5 (21) Rc 1/8 External pilot port Rc 1/8 PE port (21) 31 31 5-Rc 1/4, 3/8 1(P), 4(A), 2(B), 5(R1), 3(R2) port ( ): Rc 3/8 3 position double check: VQ460 0 1 2 position double: VQ420 3 position closed center: VQ430 3 position exhaust center: VQ440 3 position pressure center: VQ450 0 1 0 1 0 1 0 1 181 108

1 2 3 4 5 1 2 3 4 5 1 2 3 4 5 5 2 1 3 4 32.4 32.6 15 18 M12 SPEEDCON w 4 3 5 1 2 Plug connector pin assignment A-coded (Normal key) 4.2 M12 SPEEDCON M12 SPEEDCON 17 3 4 Socket connector pin assignment A-coded (Normal key) Wiring #7 PCA-1557798 Y connector (2 x M8-M12) Socket connector pin assignment 40.7 9.9 15.8 8.3 14.8 1 q 1 3 3 4 1 2 3 4 1 2 1 4 21.8 21.7 13 12 M8 4 3 w 1 3 3 4 Plug connector

-3-A10 VS7-3-B04 VS7-3-B06 3/8 1/4 Piping specifications Symbol A02 A03 A04 A06 A10 B02 B03 B04 B06 Size 2 Size 3 Size 1 Horizontal 3/8 Side-ported 1/4 0.37 3/8 1/4 Side-ported 3/8 Bottom 3/8 Side-ported 1/2 3/8 Side-ported 3/4 0.68 1/2 Horizontal Side-ported 1 1.29 3/4 Bottom-ported 1/4 3/8 Bottom-ported 3/8 0.68 1/2 Bottom Bottom-ported 1/2 1.29 3/4 Bottom-ported 3/4 3/4 1/2 Thread

RX RX RX RX RX RX RX RX (n+2)8 (n+2)9 (n+2)7 (n+2)6 (n+2)5 (n+2)4 (n+2)3 (n+2)2 Point table No. output 3 (PT2) RX(n+2)4 0 0 0 0 0 0 1 0 1 1 0 0 0 0 0 2 0 0 Point table No. output 4 (PT3) RX(n+2)5 1 1 0 0 0 0 0 3 0 0 1 4 0 0 0 0 0 0 Point table No. output 5 (PT4) RX(n+2)6 Point table No. output 6 (PT5) RX(n+2)7 1 1 1 1 1 254 1 1 0 1 255 1 1 1 1 1 1 1 Point table No. output 7 (PT6) RX(n+2)8

Connector wiring diagram (mixed wiring) Connector type manifold 6 A 4 A 3 A 1 A 5 B 2 B Output 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 The use of multi-pin connectors to replace wiring inside manifold blocks provides flexibility when adding stations or changing

SOL.a Station 3 3 3 3 Station 1 SOL.b SOL.a Station 2 SOL.a Station 2 2 2 2 SOL.a SOL.a Station 1 SOL.a Station 1 1 1 1 Triangle mark Triangle mark Triangle mark The common polarity should be the same as the common specifications of the valve to be used.