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plug (16.5) 56 L type plug connector (L): SY5 40(R)-L-02 M type plug connector (M): SY5 40(R)-M-02 DIN terminal (D): 3 4 5 3 4 5 3 4 5 SY5 40(R)-D-02 Applicable cable O.D. 3.5 to 7 81.7 74.2 157.8 Max. 10 62.9 Pg.7 18 18 159.6 28 58.1 9.5 22 Grommet .

Bore size (mm) Dd9 L l m d Part no.

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: Differential pressure (P1-P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures

plunger VM220-02-05 VM230-02-05 Polyacetal roller Hard steel roller Roller plunger VM220-02-06 VM220-02-06S VM230-02-06 VM230-02-06S Cross roller plunger VM220-02-07 VM220-02-07S VM230-02-07 VM230-02-07S Polyacetal roller Hard steel roller Toggle lever VM220-02-08 VM230-02-08 VM230-02-30R VM230-02-30B VM230-02-30G VM230-02-30Y VM220-02-30R VM-30AR Red Push button (Mushroom) VM-30AB Black

When P2 + 0.1 b, choked flow P1 + 0.1 293 Q = 600 x C (P1 + 0.1) (1) 273 + t When P2 + 0.1 > b, subsonic flow P1 + 0.1 2 P2 + 0.1 b P1 + 0.1 Q = 600 x C (P1 + 0.1) 1 (2) 1 b 293 273 + t Q : Air flow rate [dm3/min (ANR)], dm3 (Cubic decimeter) of SI unit are also allowed to described by l (liter). 1 dm3 = 1 l .

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 sectional area (mm) P: Differential pressure (P1-P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures

When P2 + 0.1 b, choked flow P1 + 0.1 293 Q = 600 x C (P1 + 0.1) (1) 273 + t When P2 + 0.1 > b, subsonic flow P1 + 0.1 2 P2 + 0.1 b P1 + 0.1 Q = 600 x C (P1 + 0.1) 1 (2) 1 b 293 273 + t Q : Air flow rate [dm3/min (ANR)], dm3 (Cubic decimeter) of SI unit are also allowed to described by l (liter). 1 dm3 = 1 l .

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: Differential pressure (P1P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures

1 Filter Bowl assembly Lubricator AF11-2 AF11-3 AL12-2 AL12-3 14-3-11 2 Series AU Flow Characteristics Inlet pressure: 1.0 MPa Outlet pressure (MPa) Outlet pressure (MPa) Outlet pressure (MPa) Flow rate (l/min (ANR)) Flow rate (l/min (ANR)) Flow rate (l/min (ANR)) Pressure Characteristics Inlet pressure: 0.7 MPa, Outlet pressure: 0.2 MPa, Flow rate: 20 l/min (ANR) Outlet pressure (MPa) Outlet

1 Filter Bowl assembly Lubricator AF11-2 AF11-3 AL12-2 AL12-3 14-3-11 2 Series AU Flow Characteristics Inlet pressure: 1.0 MPa Outlet pressure (MPa) Outlet pressure (MPa) Outlet pressure (MPa) Flow rate (l/min (ANR)) Flow rate (l/min (ANR)) Flow rate (l/min (ANR)) Pressure Characteristics Inlet pressure: 0.7 MPa, Outlet pressure: 0.2 MPa, Flow rate: 20 l/min (ANR) Courtesy of Steven Engineering

(ANR) Orifice 3 (VXA3135 4)P1 0.1MPa Orifice 2.2 (VXA3125 4)P1 0.23MPa Orifice 1.5 (VXA311 5 4)P1 0.55MPa How to Calculate Flow/Air qEquation in the domain of subsonic flow P1+0.1013=(1 to 1.8941)(P2+0.1013) Calculation by Cv factor Q=4073.4Cv gP(P2+0.1013)l/min(ANR) Calculation by effective area Q=226.3S gP(P2+0.1013) l/min(ANR) wEquation in the domain of sonic flow P1+0.1013 1.8941

plunger VM220-02-05 VM230-02-05 Polyacetal roller Hard steel roller Roller plunger VM220-02-06 VM220-02-06S VM230-02-06 VM230-02-06S Cross roller plunger VM220-02-07 VM220-02-07S VM230-02-07 VM230-02-07S Polyacetal roller Hard steel roller Toggle lever VM220-02-08 VM230-02-08 VM230-02-30R VM230-02-30B VM230-02-30G VM230-02-30Y VM220-02-30R VM-30AR Red Push button (Mushroom) VM-30AB Black

For subsonic range Where P1 + 0.1013 = (1 to 1.8941) (P2 + 0.1013) Formula based on Cv factor Q = 4073.4Cv P (P2 + 0.1013) l/min (ANR) Other Formula based on effective area Q = 226.3S P (P2 + 0.1013) l/min (ANR) 1. Materials NBR: Nitrile rubber FKM: Fluoro rubber Trade names: Viton, Dai-el, etc. 2.

How to order: EX500-AP 050 S How to order: EX500-AC 030 SSPS How to order: EX500-AC000-S 1 How to order: EX9-AC 010 1 How to order: EX9-AP 010 7 Cable length (L) Connector specification 003 0.3 [m] 005 0.5 [m] 010 1 [m] 030 3 [m] 050 5 [m] Cable length (L) Connector specification 010 1 [m] 050 5 [m] Cable length (L) 010 1 [m] 030 3 [m] 050 5 [m] Cable length(L) 010 030 1[m] 3[m] S Straight

How to Find the Flow Rate (at air temperature of 20C) Choke flow: when (P2 + 0.1)/(P1 + 0.1) 0.5 293 273 + t Q = 120 x S x (P1 + 0.1) x Subsonic flow: when (P2 + 0.1)/(P1 + 0.1) > 0.5 Q = 240 x S x (P1 P2)(P2 + 0.1) x 293 273 + t Q : Air flow rate [l/min (ANR)] S : Effective area (mm) P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] t : Air temperature Note) Formulas above apply

OUT port size Material Symbol 01 02 Port size 1/8 (6A) 1/4 (8A) Stations D side U side 1 2 3 4 5 n Body material Brass Symbol D H Seal material FKM FKM 02 : 10 2 stations : 10 stations All IN ports are 3/8. Stainless steel Refer to the L dimensions on page 6 regarding the maximum number of stations.

OUT port size Material Symbol 01 02 Port size 1/8 (6A) 1/4 (8A) Stations D side U side 1 2 3 4 5 n Body material Brass Symbol D H Seal material FKM FKM 02 : 10 2 stations : 10 stations All IN ports are 3/8. Stainless steel Refer to the L dimensions on page 6 regarding the maximum number of stations.

1 Q=226S P(P2+0.1013) Sonic flow : P1+0.1013 1.89(P2+0.1013) Do not use in an explosive environment. 2 Q=113S(P1+0.1013) Q : Flow rate [ /min(ANR)] S : Effective area (mm2) P : Differential pressure (P1-P2) [MPa] P1 : Upstream pressure [MPa] P2 : Downstream pressure [MPa] Do not use in locations subject to heavy vibration and/or shock.

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 rate (P1P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures