SMC Corporation of America
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l'::: 0 200 400 600 800 1000 1200 Air flow rate Qlmin (ANR) c :~: 0 AMH450 I I Inlet air pressure 0.3MPa / 0.5MPa 0.7MPa / V V '" 0.06 a. ::;; I '/V //V ~ ~ 0.04 02 8 0. -".,,-" : __-~\07MPi .,,"" . -~ ::-:.:." .~".-.r. 0 0 500 1000 1500 2000 2500 Air flow rate Qlmin (ANR) 3 SeriesAMH Construction AMH150 ~ AMH650 AMH850 OUT OUT IN IN ... ... ...

For detailed specifications, please contact SMC. 100 V Relay, PLC Yes 100 V, 200 V 12 V 24 V (B54) B54 B73C 2-wire 12 V C73C B59W H7A1 H7A2 H7B H7C H7NW H7PW H7BW H7BA H7NF PLC Grommet (B59W) G79 Diagnostic indication (2-color indication) 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V K79 Grommet 2-wire 12 V K79C Connector Relay, PLC Yes 24 V 3-wire (NPN) 3-wire (PNP) IC circuit

For detailed specifications, please contact SMC. 100 V Relay, PLC Yes 100 V, 200 V 12 V 24 V (B54) B54 B73C 2-wire 12 V C73C B59W H7A1 H7A2 H7B H7C H7NW H7PW H7BW H7BA H7NF PLC Grommet (B59W) G79 Diagnostic indication (2-color indication) 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V K79 Grommet 2-wire 12 V K79C Connector Relay, PLC Yes 24 V 3-wire (NPN) 3-wire (PNP) IC circuit

wire Connector Grommet Diagnostic indication (2-color indication) 3-wire (NPN) 3-wire (PNP) IC circuit 5 V, 12 V Grommet 2-wire 12 V Connector Relay, PLC 24 V 3-wire (NPN) 3-wire (PNP) IC circuit Diagnostic indication (2-color indication) 5 V, 12 V Grommet 2-wire 12 V Water resistant (2-color indication) With diagnostic output (2-color indication) 5 V, 12 V IC circuit 4-wire (NPN

Graph 1 10 500st 600st 700st 400st 4 5 300st 3 200st 2 Load movement time: t(s) 100st [Example] 1 Example) 0.4 0.5 0.3 0.2 300 0.1 V' 100 200 1000 400 500 Maximum speed: V(mm/s) V W Step 2 Find the cylinder bore size.

Recommended speed controller Model Elbow type 10-AS2201F-01-06-X214 10-AS2201F-02-06-X214 10-AS2201F-02-06-X214 10-AS3201F-02-08-X214 10-AS3201F-02-08-X214 Model Straight type 10-AS2301F-01-06-X214 10-AS2301F-02-06-X214 10-AS2301F-02-06-X214 10-AS3301F-02-08-X214 10-AS3301F-02-08-X214 In-line type 10-AS2001F-06-X214 10-AS2001F-06-X214 10-AS2001F-06-X214 10-AS3001F-08-X214 10-AS3001F-08-X214

20 30 40 Symbol Nil B* H* Symbol 02 03 04 *Note: Bracket and/or panel mount nut are not assembled and are supplied loose at time of shipment.

20 30 40 Symbol Nil B* H* Symbol 02 03 04 *Note: Bracket and/or panel mount nut are not assembled and are supplied loose at time of shipment.

VS3135 A01-01 A01-02 A07-52 q Description Electrical entry VS3145 Solenoid cover Body 100 VAC 200 VAC Grommet A12-01 A12-02 A08-52 w e Spool/Sleeve 24 VDC A01-01-63 A01-02-63 A07-52-63 100 VAC 200 VAC Conduit terminal 24 VDC A12-01-63 A12-02-63 A08-52-63 Replacement Parts Material Part no. VS3135 XT019-6 XT013-13-2 XT010-15 Description VS3145 No.

Graph 1 10 500st 600st 700st 400st 4 5 300st 3 200st 2 Load movement time: t(s) 100st [Example] 1 Example) 0.4 0.5 0.3 0.2 300 0.1 V' 100 200 1000 400 500 Maximum speed: V(mm/s) V W Step 2 Find the cylinder bore size.

ASP w"" P;lo' Ch.,k V,'v. efles Construction Parts list .QesCr;plian ' ''' fi1t~lal , . . . Parts list t f " ifote NO. f) 0 Body A PST Elbow body PST PST Knob 8 e Electroless nickel plated Pilot body Brass (1) SodyS Brass Electroless nickel plated 0 Electroless nickel plated Electroless nickel plated Brass Needle Eleclroless nickel plated 0 Needle guide Brass Guide Brass 0 (!)

Stations 02 03 2 stations 3 stations Station 3 2 1 D side U side 20 20 stations Note) Maximum of 20 stations Electrical entry Grommet/Plug lead C How to Order Valves S070 A 5 B G Electrical entry Body type Body type Base mounted with clips G C Grommet Plug lead with light/surge voltage suppressor Symbol A Coil voltage Power consumption Pressure specification Flow rate 5 6 V S R 24

Valve stations 02 2 stations VK A port size (Base mounted) 20 20 stations VZ Max. 20 01 02 common exhaust/individual exhaust 1 8 individual exhaust 1 4 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 Please indicate manifold base type, applicable manifold valve

function Fixed SI unit Note) Nil N F Rc NPT G 3m lead wire with connector Without lead wire Nil N Note) Fixed units: Real-time flow rate: l/min Accumulated flow: l Port size Output specification Applicable models Flow rate (l/min) Port size Applicable models Output specification Symbol Symbol 100 200 500 50 10 PF2A710/PF2A750 PF2A711/PF2A721, PF2A751 27 NPN open collector 2 outputs 01 02

Refer to electrical power wave form shown below. 24, 12V DC Coil rated voltage (V) SYJ Inrush 0.55 0.8 Power consumption (W) Holding 0.22 0.3 Electrical circuit (with power saving circuit ) VK Specifications except those mentioned above are same at standard.

Handle: Flame resistant PBT (Equivalent to UL-94,V-0) Handle: Flame resistant PBT (Equivalent to UL-94,V-0) Material: Resin (Handle, bonnet) Material: Resin (Handle, bonnet) Bonnet: Flame resistant PBT (Equivalent to UL-94,V-0) Bonnet: Flame resistant PBT (Equivalent to UL-94,V-0) 76 g 76 g Body: Aluminum Body: Aluminum VHS20 (Aluminum body is standard): 190 g VHS20 (Aluminum body is standard

V (2) Analog Output 2 Analog output signal 2 CH2 circulating fluid temperature 0C100C: 010 V 1 CH2 electric conductivity 0.150.0 S/cm: 0.0210.0 V 2: In the case of option D1 "CH1 with electrical conductivity control".

Connecting a servo motor of the wrong axis to U, V, W, or CN2 of the driver may cause a malfunction. 12. The illustration of the 24 V DC power supply is divided between input signal and output signal for convenience. However, they can be configured by one. -6- (2) Using 1-phase 200 V AC to 240 V AC power supply for LECSN2-T Note 1. Between P3 and P4 is connected by default. 2.

V SY SYJ V SX V Installation Insert the cover straight onto the pilot assembly making sure not to contact the pilot valve and lock into place. VK Lever Connector VZ O ring Light cover VF Caution VFR Internal Wiring Specifications VP7 Caution VP4 Changing the Pilot Valve (+) + () SOL V Removal of Pilot Valve 1. Light ass'y ZNR VQ Remove the light cover.

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