SMC Corporation of America
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Search Results "ISE20B-V-M-M5-W"

Mounting screw M5 hexagon socket head cap screw x 2 pcs. a. Housing assembly Body Caution M5 hexagon socket head cap screw q M6 special screw (Do not disassemble.) Caution M6 special screw (Do not disassemble.) M5 hexagon socket head cap screw w Fig.1 Caution 1. Before disassembling, be sure to shut off the pressure supply, and then release the residual pressure. 2.

CYRZ-V CYRZ-W CYRZ-X CYRZ-Y 12REA Warning 1. Do not disassemble the product because it may damage the air cushion mechanism.

A96 V V IC circuit 2-wire 24 V 12 V 100 V A93V*2 A93 V V V V Relay, PLC No 100 V or less A90V A90 V V IC circuit *1 Although it is possible to mount water resistant type auto switches, note that the rotary actuator itself is not of water resistant construction. *2 1 m type lead wire is only applicable to D-A93. * Lead wire length symbols: 0.5 m Nil (Example) M9NW 1 m M (Example

(example: If the Pressure switch with output impedance of 1 k is connected to the A/D converter to detect the analogue output of 5 V, the detected voltage by the A/D converter becomes 5(V) 1(M)/(1(k) + 1(M)) 4.995(V), and there is an error of approximate 0.005 V). Output impedance Output type The operation type of the switch output.

2 3 4 5 0 1 2 3 4 6 5 Flow velocity (m/s) Flow velocity (m/s) VNA Calculating the Flow Velocity VNB v = 21.2 x Q/d2 SGC (Symbol) v: flow velocity (m/s) Q: flow rate (l/min) d: piping inner diameter (mm) VNC VNH VND VCC 407 Series VNH High Pressure Coolant Valve 3.5 MPa, 7.0 MPa Corresponding to high speed grinding and long drilling processes Valve for high pressure coolant liquid (up to

(kg) 0.12 0.19 0.35 1( ) 2) -5m 5m 10% 3() 452000Hz 1 () 4 5 6 7 8 <-> LEFS 16 LEFS 25 LEFS 32 50 8 20 8 6 12 6 W(kg) W(kg) W(kg) W(kg) 40 5 5 W(kg) 10 W(kg) 15 30 8 16 10 16 10 10 20 6 12 5 12 10 4 2 0 0 0 100 200 300 400 500 600 V(mm/s) 0 100 200 300 400 500 600 V(mm/s) 0 0 100 200 300 400 500 600 V (mm/s) LEFS 16 LEFS 25 LEFS 32 50 12 20 W(kg) W(kg) 10 W(kg) W(kg)

Pin description Load is an analog input equipment such as a voltmeter, ammeter. 1 DC(+) PF2A7H-(-M) 68 69 2 Analog output 3 DC() Accumulated pulse output wiring examples 4 OUT1 4-I thread with depth J 40 Max. 30 V 80 mA or less OUT1 Load Black H 0 V or Blue 50 msec 50 msec PF2A7H-(-M) 28 29 A B C D E F G H I J Model Brown PF2A703H PF2A706H PF2A712H 55 160 40 92 67 55 Rc1, NPT1, G1 36 M5 x

ML2B Horizontal impact Vertical impact (down) Vertical impact (up) ML1C REA Configuration of impact REC RHC MTS W 2g Oparating energy E1 V2 CC Thrust energy E2 Fs Fs+Ws Fs-Ws Absorbing energy E E1+E2 Symbols V: Impact speed (m/s) g: Gravitational acceleration (9.8m/s2) W: Impact mass amount (kg) F: Cylinder thrust (N) s: Stroke length of shock absorber (m) Note) "Impact speed" means the speed

Temp. upper/lower 4 Fig.9-3 limit alarm occurrence 9-1 Alarm 9.2 Alarm indication Blink E R R 1 4 T h e r m o s t a t A l a r m M O D E < S h u t o f f Fig.9-1 Alarm indication in the event ERR14 arises Blink E R R 1 4 P B R a n g e M O D E < 2 . 0 C Fig.9-2 Alarm indication in the event ERR14 arises during PB range setting input Light W R N P V < 2 6 . 6 C # 1 S V 2 5 . 0 C M O D E N

M1 Weight (g) ASV120F-M3-04 ASV220F-M5-04 ASV220F-M5-06 Model 5 8 9 M3 x 0.5 M5 x 0.8 M5 x 0.8 5.5 8 8 9.3 9.3 11.6 7.2 9.6 9.6 21.4 22.8 23.6 25 27.6 28.4 9.8 11.1 11.1 28.6 31.4 31.4 26.1 28.6 28.6 25.8 27.7 27.7 23.3 24.9 24.9 12.7 12.7 13.5 4 4 6 Reference dimensions of M thread after installation. Inch Size Applicable tubing O.D. d T H D1 D2 L1 L2 L3 L4 A Max. Min. Max. Min.

W [ ] 3 BK 18AWG BK 8 8 3 W L1/L V M V 1 1 [ ] 2 WH 18AWG BK 18AWG BK 9 9 2 V G 3 U U [ ] 1 RD 18AWG BK 5 5 1 U (CN3) PM PUMP 7 7 Option T1 6 6 4 4 3 3 2 2 1 1 PM PUMP 2/2 PM PUMP (CN1) 16AWG G/Y G4 [ ] V G PM 16AWG G/Y G4 [ ] G U DC Power Supply Standard BL DCPS [ ] 18AWG G/Y G2 5 5 Condenser 18AWG BK 1 1 3 3 3 3 18AWG BK 3 3 1 1 1 1 C3 (CN51) (CN1) (CN6) Compressor CM CM AC Power Board

Tank capacity (l) Tc [s] = L W Obtain the tank capacity V. Select tank from table below.

N Model Q 30 32 R 36 41 S 50 52 T 32 38 U 54 57 V 66 69 W 30 36 X 71 74 Y 101 104 Z 65.5 71 55 62 26 31 17 19 19.5 21 33 39.5 26 31 35 43 23.5 27 39.5 43.5 57.5 65.5 35 41 26.5 29 41.5 48 50 55 VV2CA3 VV2CA4 8 Series VCA Manifold Exploded View Series VCA20 Description No. 1 2 3 4 Part no.

(example: If the pressure switch with output impedance of 1k is connected to the A/D converter to detect the analog output of 5V, the detected voltage by the A/D converter becomes 5(V) x 1(M)/(1(k) + 1(M)) 4.995(V), and there is an error of approximate 0.005 V). Output impedance The operation principle of the switch output. Normal output and reverse output can be selected.

01 M5 x 0.8 Rc(PT) 1/8 (port A) VKF332 (with bracket) Body ported (single type) 5 G M5 Body ported (for manifold) 5 G M5 VKF333 5 G 01 VKF334 Base mounted Light/Surge voltage suppressor Valve option Port size For vacuum For low power consumption For vacuum/low power consumption For long loading time 01 Nil V Y Rc(PT) 1/8 (with sub plate) Without sub plate None With surge voltage suppressor

For example, when analogue output is 1 to 5 V, F.S. = 5[V] 1[V] = 4[V], (ref. 1%F.S. = 4[V] x 1% = 0.04[V]) F.S. (Full span, Full scale) H A function to store the accumulated flow value in the products internal memory. The flow value will be stored at a set time interval of either 2 or 5 minutes.

For EE (ZSE4E) 24 V 12 V 6 V 5 V 3 V 5 6 V S R Lead wire length 0.5 (2.9) m NPN output Analog output PNP output 27 26 67 Lead wire length 0.5 (2.9) m Lead wire length 0.5 (2.9) m Not required for Nil, vacuum adapter (GN) and vacuum pressure gauge (G).

SQ Pilot Valve/Spacifications AXT511C-4 (V) AXT511C-1 (V) AXT511C-2 (V) AXT511C-3 (V) AXT511C-4 (V) 24V DC 12V DC AXT511C-1 (V) 100V AC 50/60 Hz 200V AC 50/60 Hz 0.049/0.043 0.024/0.021 0.031/0.02 0.015/0.01 Part No.

Apparent power (VA) Volt-ampere is the product of voltage (V) and current (A). Power dissipation (W): For AC , W = V/A cos. For DC, W = V/A (Note) cos shows power factor. LVD LVQ 2. Surge voltage The surge voltage is a high voltage generated momentarily when cutting the power supply. LQ 3.