SMC Corporation of America
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Pin, Mentfotd Block atignment. llcEslary lor al6gmblies ovgr lour i4) valvesI AXT 22&3 M0x60 MA 40$2 2 1 NXT 02(!144 NXT 0t&Sl P20 AXT 22S4A NXT 0t0.t7-, /.=.>Aiv EJ E) =:-:H8 I 10 l 1 I : i/b.a $n a ltfllon!. @nl6l t dory. DITENSIONS A B c D E F o H J t( T N o P B s r u 3.43 (87) 2.

115.5 (Plug lead type) 25 Thread type 12.5 73 Manifold Port size Nil Rc F G N NPT T NPTF 02 1/4 03 3/8 1 Plug-in type 5 Plug lead type 26.4 1(P) VVQ4000-P--02: 1/4 VVQ4000-P--03: 3/8 4(A) 2(B) 1(P') 5(R1) 3(R2) Plug-in type Plug lead type Circuit diagram Individual EXH spacer VVQ4000 R 1 02 163 (Plug-in type) Thread type 115.5 (Plug lead type) 25 Manifold Port size Nil Rc F G N NPT T NPTF

Optional Parts Clean Room Compliant (10-) 10-ARP20(K) 10-ARP30(K) 10-ARP40(K) Model Bracket assembly Note 1) ARP20P-270AS ARP30P-270AS ARP40P-270AS Set nut ARP20P-260S ARP30P-260S ARP40P-260S G49-4-01 G49-4-02 0.4 MPa G49-2-01 G49-2-02 0.2 MPa Round type Note 2) G49-7-01 G49-7-02 0.7 MPa Pressure gauge NPN output / Wiring bottom entry ISE35-N-25-MLA [ISE35-N-25-M (Switch body only)] NPN output

Optional Parts Clean Room Compliant (10-) 10-ARP20(K) 10-ARP30(K) 10-ARP40(K) Model Bracket assembly Note 1) ARP20P-270AS ARP30P-270AS ARP40P-270AS Set nut ARP20P-260S ARP30P-260S ARP40P-260S G49-4-01 G49-4-02 0.4 MPa G49-2-01 G49-2-02 0.2 MPa Round type Note 2) G49-7-01 G49-7-02 0.7 MPa Pressure gauge NPN output / Wiring bottom entry ISE35-N-25-MLA [ISE35-N-25-M (Switch body only)] NPN output

DC(+) 5 OUT1 4 OUT2 3 FUNC 2 DC(-) 1 -21No.PS-OMU0008CN-D ZSE20C(F)/ISE20C(H)-S/-R () NPN 2 DC(+) Max.28 V80 mA 1 V R15 V OUT1 1 k S420 mA OUT2 12 V 300 24 V 600 DC(-) 50 DC(+) -S/-R () OUT1 NPN 2 OUT2 Max.28 V80 mA 1 V DC(-) DC(+) -X () -S/-R () OUT1 NPN 2 OUT2 Max.28 V80 mA 1 V DC(-) -22No.PS-OMU0008CN-D -V/-T () PNP 2 DC(+) Max.80 mA 1 V T15 V OUT1 1 k V420 mA OUT2

V or less (Load current: 100 mA) Maximum applied voltage: 26.4 VDC Maximum load current: 100 mA Residual voltage: 1 V or less (Load current: 100 mA) Maximum applied voltage: 26.4 VDC Maximum load current: 100 mA Residual voltage: 1 V or less (Load current: 100 mA) Error signal Maximum load current: 100 mA Residual voltage: 1 V or less (Load current: 100 mA) Output signal Ambient temperature

Applicable model 02 03 04 06 10 1/4 3/8 1/2 3/4 1 8 3 Pressure gauge 3 4 5 6 1 AMR300-02/03 AMR400-02 to 04 AMR500-04 to 06 AMR600-10 3 4 5 6 1 2 Nil E2 E3 E4 E6 E10 None None With pressure switch S Nil 4 3 1/4 3/8 1/2 3/4 1 Port size Adapter assembly Thread type Symbol Port size Nil N F Rc NPT G Thread type 02 03 04 06 10 1/4 3/8 1/2 3/4 1 The port size of adapter assembly is same as the

1N X430 03 AR 30 BG F N X425 03 Regulator Regulator For high/low temperature For high pressure 25 30 40 50 60 Body size Body size X430 X440 Low temperature 20 25 30 40 50 60 High temperature Thread type Thread type Rc NPT G Nil N F Rc NPT G Nil N F Port size Port size Body size Port size Body size Symbol Port size 25 30 40 50 60 Symbol 20 25 30 40 50 60 02 03 04 06 10 1/4 01 02 03 04 06 10

power increases. *2 When the piping thread type "F (G thread)" or "N (NPT thread)" is selected, it becomes "G thread " or "NPT thread ". 3 When the option-T3 is selected, the weight increases by 18 kg . 4 No change in external dimensions.

F (mm) Weight (g) 65 72 81 91 97 112 Port B Min. port size L2 L3 L4 L5 L6 P Q1 Q2 M L1 KM12-04-02-6 6 17 40 89 110 99 125 108 139 1 4 6 4 10 18 29.5 19.5 29 10.6 16 12 KM12-04-02-10 10 KM12-06-02-6 6 KM12-06-02-10 10 KM12-08-03-6 6 KM12-08-03-10 10 61.5 47 1 4 17 7.5 6 10 19.5 31.5 21.5 31 13 17 13.5 73 55 3 8 19 9 8 11.5 22.5 35.5 24 34.5 15.5 18.5 14.7 86 Dimensions: KM13 Applicable tubing

*1: To use the power of the device, the total load current must be 500 mA or less.

voltage 1 V or less (Load current at 100 mA) Max. applied voltage: 26.4 VDC Max. load current: 100 mA Residual voltage 1 V or less (Load current at 100 mA) Max. applied voltage: 26.4 VDC Maintenance detection signal Max. load current: 100 mA Residual voltage 1 V or less (Load current at 100 mA) Max. load current: 100 mA Residual voltage 1 V or less (Load current at 100 mA) Output signal

Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Body size 2500 3000 IR Port size (OUT side) Symbol Port size 02 03 1/4 3/8 Applicable model ARM2500 ARM3000 VEX Number of stations 02 2 stations AMR Thread type 10 10 stations Nil Rc ITV F N G NPT IC Piping VBA Symbol

Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Body size 2500 3000 IR Port size (OUT side) Symbol Port size 02 03 1/4 3/8 Applicable model ARM2500 ARM3000 VEX Number of stations 02 2 stations AMR Thread type 10 10 stations Nil Rc ITV F N G NPT IC Piping VBA Symbol

), 0.95 W DC (40 mA) Note 3) Power consumption (Current) 12 VDC 0.4 W DC (34 mA), 0.95 W DC (80 mA) Note 3) Note 1) Use dry air to prevent condensation when operating at low temperatures.

or less 60 mA or less Weight 45 g Maximum load current: 80 mA Internal voltage drop: 1 V or less (with load current of 80 mA) Maximum applied voltage: 30 V 2 outputs Resistance Output Note 6) specifications NPN open collector (PF2A300, PF2A310) Switch output Maximum load current: 80 mA Internal voltage drop: 1.5 V or less (with load current of 80 mA) 2 outputs PNP open collector (PF2A301

Compact Pressure Switch Specifications (For further information, refer to Best Pneumatics No. 8) IS10-01 Model 0.1 to 0.4 MPa Set pressure range (OFF) 0.08 MPa Hysteresis 1a Contact point construction 2 VA AC, 2 W DC Max. contact point capacity 12 V 48 V 100 V Voltage (AC, DC) 24 V 50 mA 40 mA 20 mA Max. current 50 mA Symbol 2 1 AMR4000 AMR3000 L AMR5100 686 Regulator with Mist Separator

These vortexes are stable under certain conditions, and their frequency is proportional to the flow velocity, resulting the following formula. f = k x v f: Frequency of vortex v: Flow velocity k: Proportional constant (determined by the vortex generator's dimensions and shape). Therefore, the flow rate can be measured by detecting this frequency.