) 12 With filter (80 mesh) 23 15 , 8 1 4 1 48 (P, A, R port) 5-4-8 1 3 Port Air Operated Valve Series VZA200/400 Specifications SA Fluid Air 1 2 1 2 VZA4 2, 4 4 1 2 1 2 VZA2 2, 2 4 1 2 1 2 VZA4 2, 4 4 1 2 1 2 VA Operating pressure range (MPa) 0.1 to 1.0 0.15 to 1.0 VZA2 2, 2 4 0.1 to 1.0 0.15 to 1.0 SA Pilot pressure range (MPa) Impact/Vibration resistance (m/s2) Note) 150/50 VA Operating
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
VEX1-17 1 pc. 0 1 For VY1B0 B 01 1 8 2 Common external pilot 210 2 Note 1) 10 stations 2 stations 1 Internal pilot 0 1 For VY120 2 1 4 02 Piping thread type 2 Common external pilot 8 2 8 stations Nil Rc G Note 2) A B C 3 8 1 4 2 stations 1 F N Internal pilot 0 1 For VY140 4 3 8 NPTF NPT 2 Common external pilot T 6 3 8 1 2 6 stations VY manifold pilot type Body size B, 2 Note 1) In the case
. 2 2 2 2 1 Location . 2 2 2 2 2 Anchorage . 2 2 2 2 3 Air piping . 2 3 2 2 4 Drain Tube . 2 3 2 2 5 Electric wiring . 2 4 2 3 Cautions about Reinstallation . 2 6 Chapter 3 Operation / Shutdown 3 1 Check points before operation . 3 1 3 2 Operation . 3 1 3 3 Shutdown . 3 2 3 4 Cautions about restart . 3 2 3 5 Check points before restart . 3 2 3 6 Precautions for long-term non-operation .
2 2 Installation . 2 2 2 2 1 Location . 2 2 2 2 2 Anchorage . 2 2 2 2 3 Air piping. 2 2 2 2 4 Drain Tube . 2 3 2 2 5 Electric Wiring . 2 4 2 3 Cautions for Reinstallation . 2 5 Chapter 3 Operation / Shutdown 3 1 Check points before operation . 3 1 3 2 Operation . 3 1 3 3 Shutdown . 3 2 3 4 Cautions about restart . 3 2 3 5 Check points before restart . 3 2 3 6 Precautions for long-term non-operation
their components *2) JIS B8370 URLhttps://www.smcworld.com/ i i-1 . i-1 i-1-1 . i-2 i-2 . i-3 i-2-1 . i-3 i-2-2 . i-4 i-2-3 . i-4 i-2-4 . i-4 i-2-5 . i-4 i-2-6 . i-5 i-2-7 . i-5 i-2-8 . i-6 i-2-9 . i-6 i-3 . i-7 i-4 / . i-8 1 1-1 . 1-1 2 2-1 . 2-1 2-2 . 2-1 2-2-1 . 2-1 2-2-2 . 2-2 2-2-3 . 2-2 2-2-4 . 2-2 2-2-5 . 2-3 2-3 . 2-4 3 / 3-1 . 3-1 3-2 . 3-1 3-3 . 3-2
for systems and their components *2) JIS B8370 URLhttps://www.smcworld.com/ i i-1 . i-1 i-1-1 . i-1 i-2 . i-2 i-2-1 . i-2 i-2-2 . i-3 i-2-3 . i-3 i-2-4 . i-3 i-2-5 . i-3 i-2-6 . i-4 i-2-7 . i-4 i-2-8 . i-5 i-2-9 . i-5 i-3 . i-6 i-4 / . i-7 1-1 . 1-1 2-1 . 2-1 2-2 . 2-1 2-2-1 . 2-1 2-2-2 . 2-2 2-2-3 . 2-2 2-2-4 . 2-2 2-2-5 . 2-3 2-3 . 2-4 3 / 3-1 . 3-1 3-2 . 3
/www.smcworld.com/ i i-1 . i-1 i-1-1 . i-1 i-2 . i-2 i-2-1 . i-2 i-2-2 . i-3 i-2-3 . i-3 i-2-4 . i-3 i-2-5 . i-3 i-2-6 . i-4 i-2-7 . i-4 i-2-8 . i-5 i-2-9 . i-5 i-3 . i-6 i-4 / . i-7 1 1-1 . 1-1 2-1 . 2-1 2-2 . 2-1 2-2-1 . 2-1 2-2-2 . 2-2 2-2-3 . 2-2 2-2-4 . 2-2 2-2-5 . 2-3 2-3 . 2-4 3 / 3-1 . 3-1 3-2 . 3-1 3-3 . 3-2 3-4 . 3-2 3-5 . 3-2 3-6 . 3-2 4 4-
1 . i-2 i-2-2 . i-3 i-2-3 . i-3 i-2-4 . i-3 i-2-5 . i-3 i-2-6 . i-4 i-2-7 . i-4 i-2-8 . i-5 i-2-9 . i-5 i-3 . i-6 i-4 / . i-7 1 1-1 . 1-1 2 2-1 . 2-1 2-2 . 2-1 2-2-1 . 2-1 2-2-2 . 2-2 2-2-3 . 2-2 2-2-4 . 2-2 2-2-5 . 2-3 2-3 . 2-4 3 / 3-1 . 3-1 3-2 . 3-1 3-3 . 3-2 3-4 . 3-2 3-5 . 3-2 3-6 . 3-2 4 4-1 . 4-1 4-2 . 4-1 4-2-1 . 4-1 4-2-2 . 4-1 4-2-3 . 4-1 5
) 0 2 Digital output unit EX600-DYF (16 outputs) 0 2 EX600-DME (8 inputs/8 outputs) 1 1 Digital I/O unit EX600-DMF (8 inputs/8 outputs) 1 1 Analogue input Unit EX600-AXA (2 channels) 4 (2 bytes per channel) 0 Analogue output Unit EX600-AYA (2 channels) 0 4 (2 bytes per channel) Analogue I/O Unit EX600-AMB (2/2 channels) 4 (2 bytes per channel) 4 (2 bytes per channel) -58No.EX-OMS0027 When
No.CE*-OMQ0011-A : : ML2B CEU2 SMC 1 4 2 2-1. 10 2-2. 11 2-3. 11 2-4. 11 3 3-1. 1213 3-2. 14 3-3. 1516 4 4-1. 17 4-2. 1819 4-3. 2021 5 5-1. () 22 5-2. 22 5-3. 23 6 6-1. () 24 6-2 24 6-3 25 7 7-1 26 7-2 27 7-3 28 8 8-1 29 8-2 29 - 9 9-1 9-1-1. 3031 9-1-2. 32 9-2. 9-2-1. 32 9-2-2. 32 9-3. 9-3-1. 33 9-3-2. 34 9-3-3.
CDRBU2W10, 15-S CDRBU2W20, 30-S CRB2 CRBU2 CRB1 2 x S2 2 x S1 2 x S1 MSU 2 x S2 CRJ Rotary actuator CRA1 CRQ2 2 x S1 2 x S1 2 x S1 2 x S1 Rotary actuator MSQ (34.5: Connector type) MSZ A port B port CRQ2X MSQX 2 x R A port B port 2 x R MRQ 1 Auto switch Auto switch 2 5 20.5 (26.5: Connector type) 1.
3 q !4 !2 !8 !7 !2 y o !1 !6 !5 u Parts list No. Description No.
/Specifications K TFU 0805B-3 3 cores 4 6 8 2.5 4 5 TFU 0805B-2 2 cores TFU 0604B-3 3 cores TFU 0604B-2 2 cores TFU 0425B-3 3 cores TFU 0425B-2 2 cores Model M Burst Pressure Characteristics Curve and Operating Pressure Max. operating pressure (at 20C) Fluid Tubing I.D.
2) 2 Note 2) 2 Note 2) Number of elements 1 1 1 1 FGE 65 x L500 (L250 x 2) 65 x L500 (L250 x 2) 65 x L500 (L250 x 2) 65 x L500 (L250 x 2) Element size 65 x L250 65 x L250 65 x L250 65 x L250 Cover SCS14 Aluminum FGG Case Stainless steel 316 SPCE Main materials Gasket/O-ring Fluororesin NBR FGA Seal Nylon/Fluororesin Nylon Fluororesin FGC Weight (kg) 1.3 2.2 2.3 3.8 2.3 3.8 1.3 2.2 1.7 3.4
D-A9 30 Note 1) 15 5 (n = 2, 3, 4, 5) (n = 2, 4, 6) Note 3) (n 2) 2 35 + 35 (n 2) 20 + 35 D-M9V 35 20 5 (n = 2, 3, 4, 5) (n = 2, 4, 6) Note 3) (n 2) 2 25 + 35 (n 2) 15 + 35 D-A9V 25 15 5 (n = 2, 3, 4, 5) (n = 2, 4, 6) Note 3) (n 2) 2 D-M9WV D-M9AV 35 + 35 (n 2) 20 + 35 35 20 10 (n = 2, 3, 4, 5) (n = 2, 4, 6) Note 3) (n 2) 2 D-C7 D-C80 60 + 45 (n 2) 20 + 45 60 20 5 (n = 2, 3, 4, 5
With regulator + 2 port solenoid valve With 2 port solenoid valve 16-8-2 3 Air catch sensor Series ISA2 Optimum position is known at a glance.
/OUT2 White Not connected/Switch output 2 (SIO)/Analogue output/External input 3 LBlue 0 V 4 C/Q Black Communication data (IO-Link)/Switch output 1 (SIO) : When using the lead wire with M8 connector included with the PFMC7 series. -21No.PF-OMZ0002-A Internal circuit and wiring examples PF2MC7###-##-A#-### NPN (2 outputs) type Maximum applied voltage: 28 V Maximum load current: 80 mA Internal
D-J5 D-F5 W D-J59W D-F5BAL D-F59F 110 115 120 95 90 (n4) 2 110 + 55 (n4) 2 (n4) 2 115 + 55 (n4) 2 120 + 55 (n4) 2 (n4) 2 130 + 55 90 + 55 95 + 55 n = 4,8,12,16... n (same side) n = 4,8,12,16... n = 4,8,12,16... n = 4,8,12,16... n = 4,8,12,16... n = 4,8,12,16... 1 90 110 115 120 95 130 140 120 125 130 2 (different side or same side) 105 100 (n4) 2 120 + 55 (n4) 2 (n4) 2 125 + 55 (n4) 2 130
For OUT2, all "1" in the chart will be changed to "2".