SMC Corporation of America
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Search Results "IZF21-P-Q"

High pressure 2.0 MPa (-X425) P.53 P.77 P.107 Low temperature 30 to 60C (-X430) P.53 P.77 P.106 High temperature 5 to 80C (-X440) P.53 P.77 P.106 Clean series (10-) P.54 P.63 P.80 P.80 P.111 P.111 Copper, fluorine and silicone-free + Low particle generation (21-) P.54 P.63 P.80 P.80 P.111 P.111 Related Product Modular adapter Example) Air filter + 3 port valve Easy modular connections for

In the case of liquid: $P Q = 1.9 x 106 Av .(9) G Q : Flow rate [L/min] Av : Flow coefficient [m2] $P : Pressure differential [MPa] G : Specific gravity [water = 1] In the case of saturated steam: Q = 8.3 x 106 Av $P (P2 + 0.1) .(10) Q : Flow rate [kg/h] Av : Flow coefficient [m2] $P : Pressure differential [MPa] P1 : Upstream pressure [MPa]: $P = P1 P2 P2 : Downstream pressure [MPa] 31

2 w MHZ Description Material Note No. q w e r t y u i o !0 !1 !2 !3 Push holder (P) Aluminum alloy Hard anodized !1 o MHF Piston (P) Aluminum alloy Hard anodized q Rod holder Aluminum alloy Hard anodized MHL u !0 !

N P R Port P (Pressure port) In case of double solenoid valve Port R (Exhaust port) Q K L M B EB EA P A In case of single solenoid valve Port R (Exhaust port) (mm) P K L M N Q R Model XLCV-50 XLCV-63 XLCV-80 12.5 9.5 9.5 1 1 23.5 52.6 17.4 9.5 9.5 1 1 18.6 62.3 23.5 9.5 9.5 1 1 12.4 70.8 Other dimensions are the same as the XLC.

(mm) Without auto switch With auto switch Bore (mm) Stroke range (mm) J K L C D M E I H P M5 X 0.8 A B F 5.5 P Q 11.5 B A F Q 5 10 to 50 75, 100 5 to 50 75, 100 10 to 50 75, 100 30 40 36.5 46.5 38.5 48.5 23 33 29.5 39.5 30.5 40.5 Rc(PT)1/8 M8 X 1.25 4.5 14 33 40 7.5 7 10.5 13 16 34 45 60 32 7.5 10.5 Rc(PT)1/8 8 11 Rc(PT)1/8 M8 X 1.25 5 14 39.5 46.5 8 7 11 13 16 40 52 69 Rc(PT)1/8 40 10.5

Subsonic flow at P1 + 0.1013 < 1.89(P2 + 0.1013) Q = 226S P(P2 + 0.1013) Sonic flow of P1+0.1013 1.89(P2+0.1013) Q = 113S(P1 + 0.1013) Q : Air flow rate [l/min(ANR)] S : Effective area [mm2] P: Amount of pressure drop P1-P2[MPa] P1 : Upstream pressure [MPa] P2 : Downstream pressure [MPa] Correction for varying air temperatures: Square the coefficient indicated in the table below with the

/Belt Drive LEFB Series Battery-less Absolute (Step Motor 24 VDC) p. 12 Model Selection p. 13 How to Order p. 43 Specifications p. 45 Weight p. 45 Construction p. 46 Dimensions p. 47 Rod Type LEY Series Battery-less Absolute (Step Motor 24 VDC) p. 54 Model Selection p. 55 How to Order p. 61 Specifications p. 63 Weight p. 64 Construction p. 65 Dimensions p. 67 Guide Rod Type

Unit Series AC10A to 40A Dimensions AC10A/20A A N F E P K C G G IN OUT Q Q F.R.L.

VQZ (A) 2 (A) 2 VZ 3 (R) 1 (P) 3 (R) 1 (P) VS VFN r e w q r e w q N.O. N.O. (A) 2 (A) 2 3 (R) 1 (P) 3 (R) 1 (P) Component Parts No.

Nil A B C D q w e q w q w w q e q w The number inside indicates the combination order counted from the inlet side.

49 115.5 134 135.5 13 32 35 Additional Dimensions by Stroke (mm) Additional Dimensions by Stroke (mm) K P Q: 6 Q: 8 K P 5.1 K P Q: 6 Q: 8 K P 5.1 Stroke H I Stroke H I 20 20 +10 3.6 +10 3.6 0 0 30 30 +1 1 +1 1 +20 +4.9 +6.4 +20 +4.9 +6.4 50 50 +25 +25 +40 +49.9 +51.4 +40 + 9.9 +51.4 13-11-110 New New Vacuum Pad More shapes and sizes of pads.

How to Find the Flow Rate (at air temperature of 20C) Subsonic flow when P1 + 0.1013 < 1.89 (P2 + 0.1013) Q = 226S P(P2 + 0.1013) Sonic flow when P1 +0.1013 1.89 (P2 + 0.1013) Q = 113S (P1 + 0.1013) Q : Air flow rate [l/min (ANR)] S : Effective area (mm) P : Pressure drop (P1 P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures Multiply

Dimensions: Without Buffer ZP2-R W-A5 04 06 ZP2-R 20 W-A5 04 06 ZP2-R 30 W-A5 04 06 Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 10 (Hexagon) Q Q Q Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) 4 4 4 4 4 4 21 21 21 M5 x 0.8 M5 x 0.8 M5 x 0.8 P P P (60) (60) (60) S S 31 8 31 S 31 14.9 A 14.9 14.9 R R R 6 6 6 M5

P ZP3 P Vacuum Ejector or Pump and Number of Vacuum Pads ZP3E ZP3E Ejector and number of pads Vacuum pump and number of pads Vacuum line ZP2 ZP2V Tank ZP ZPT ZPR XT661 P P P P P P P P P Ideally, one pad should be used for each line. When more than one pad is attached to a single vacuum line, take the countermeasures listed below.

D 5.0 x P First tentative bore size determination 0.1 x W + W D 5.0 x P W W > WV P > PV Determination of allowable load weight & pressure Inclined operation W WV P PV (For vertical operation, refer to page 10-2-79.)

HP L 4-J Effective thread length E TC MQQ M X F WP WP RHC GW GP QW PW D 4-LD Piping port P Operating direction A MK(2) 7 W K G RS Q G HS CR Piping port P Operating direction B Piping port P (Plug) Operating direction B With switch rail Q + Stroke Z + Stroke HR Plug RS H A RZQ 22 8 Piping port P Operating direction B Piping port P (Plug) Operating direction B 8 Piping port P Operating direction

In the case of liquid: P Q = 53Kv (9) G Q : Flow rate [L/min] Kv : Flow coefficient [m3/h] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 232Kv P(P2 + 0.1) (10) Q : Flow rate [kg/h] Kv : Flow coefficient [m3/h] P : Pressure difference [MPa] P1 : Upstream pressure [MPa]: P = P1 P2 P2 : Downstream pressure [MPa] 160 Solenoid Valve

Note) Refer to page 568 for How to Order Pilot Valve Assembly. 564 VQ1000/2000 10211021-VQ2000 Plug-in Unit: Main Parts/Replacement Parts Metal seal Rubber seal e q w e q w 1021-VQ2101 (B) 2 (A) 4 1021-VQ2100 (B) 2 (A) 4 r r 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) e q w e q w 1021-VQ2200 1021-VQ2201 (B) 2 (A) 4 (B) 2 (A) 4 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) r r e q w e q w 1021-VQ2300

Note) Refer to page 568 for How to Order Pilot Valve Assembly. 564 VQ1000/2000 10211021-VQ2000 Plug-in Unit: Main Parts/Replacement Parts Metal seal Rubber seal e q w e q w 1021-VQ2101 (B) 2 (A) 4 1021-VQ2100 (B) 2 (A) 4 r r 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) e q w e q w 1021-VQ2200 1021-VQ2201 (B) 2 (A) 4 (B) 2 (A) 4 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) r r e q w e q w 1021-VQ2300