SMC Corporation of America
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Search Results "VFN212N-5GS-02-Q"

(R) e r Port 3 (R) Port 2 (A) Port 1 (P) Port 23(P2) (Pilot air port) y i Port 2(A) u r y Port 1(P) t q VEX3320 (Air operated) VEX3420 (Air operated) w e q r y y t w r e u t t 12(P1), 23(P2) Port Port 3(R) y y (Pilot air port) r i Port 2(A) u r Port 1(P) t q Port 1(P) Port 2(A) Port 3(R) Component Parts No.

EX: NVM121-N01-01S NVM131-01-01 NVM131-01-35 NVMl51-01-35 NVMl21-01-02 NVM13t-01-02 NVM120-N01-00 130-N01-00 F.O.F.'lbs.

EX: NVM121-N01-01S NVM131-01-01 NVM131-01-35 NVMl51-01-35 NVMl21-01-02 NVM13t-01-02 NVM120-N01-00 130-N01-00 F.O.F.'lbs.

Description Material Aluminum die cast Aluminum die cast Top cover Bottom cover q w No.

(Nr'min): o L o [ r 1 l Lr e_l r Q,Q , = Q r = S x 11.1 (N/min) o, mean suction flow of a an ejector (Ny'min max suction flow spec for the ejector from the catalog (Nr'min), Vacuum Eiector System Circuit flow capacity tor the piping system (Nd/ min), Q, S the etfective cross-sectional area of tubing based on inside diameter and total lenoth (mm,). See graph below.

(Nr'min): o L o [ r 1 l Lr e_l r Q,Q , = Q r = S x 11.1 (N/min) o, mean suction flow of a an ejector (Ny'min) max suction flow spec for the ejector from the catalog (Nr'min), Vacuum Eiector System Circuit flow capacity tor the piping system (Nd/ min), Q, S the etfective cross-sectional area of tubing based on inside diameter and total lenoth (mm,). See graph below.

Tap water: Standard of The Japan Refrigeration And Air Conditioning Industry Association (JRA GL-02-1994) Deionized water: Electric conductivity 1 S/cm or higher (Electric resistivity 1 Mcm or lower) 2 q Ambient temperature: 32C, w Circulating fluid: Tap water, e Circulating fluid temperature: CH1 20C/CH2 25C, r Circulating fluid flow rate: Rated flow, t Power supply: 200 VAC 3 q Ambient

Elbow/Universal Type Air Flow/Effective Area Model AS121FM-M5 AS131FM-M5 AS221FM-01 AS231FM-01 AS221FM-02 AS231FM-02 RE A B 3.2, 4, 6 3.2, 4 6, 8 4 6 8, 10 Metric size Tubing O.D.

Elbow/Universal Type Air Flow/Effective Area Model AS121FM-M5 AS131FM-M5 AS221FM-01 AS231FM-01 AS221FM-02 AS231FM-02 RE A B 3.2, 4, 6 3.2, 4 6, 8 4 6 8, 10 Metric size Tubing O.D.

RE A B Model Recommended Speed Controller REC Model Elbow type Straight type In-line type CX REC20 AS2201F-01-06-X214 AS2301F-01-06-X214 AS2001F-06-X214 REC25 AS2201F-01-06-X214 AS2301F-01-06-X214 AS2001F-06-X214 CY REC32 AS2201F-01-06-X214 AS2301F-01-06-X214 AS3001F-08-X214 REC40 AS3201F-02-08-X214 AS3301F-02-08-X214 AS3001F-08-X214 MQQ M Courtesy of Steven Engineering, Inc.-230 Ryan Way

9 q q !7 !7 IN OUT IN1 OUT1 !0 !6 !3 o !3 q !8 !6 IN2 OUT2 !8 !7 !6 o IL220 !3 r e !2 w u y i !9 !5 @1 OUT IN1 !1 q @2 @0 IN2 !4 q Component Parts Replacement Parts No. Description Material Note 1 Body Aluminum alloy Silver baking finish Model Order no. Contents IL201 KT-IL201 Set of left nos. u, i, o, !2, !3, !6, !7, !8, !9 IL211 KT-IL211 Set of left nos. u, i, o, !0, !2, !3, !6, !7, !

In the case of liquid: P Q = 1.9 x 106Av (9) G Q : Flow rate [l/min] Av : Flow coefficient [m2] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av P(P2 + 0.1) (10) Q : Flow rate [m3/s] Av : Flow coefficient [m2] P : Pressure difference [Pa] P1 : Relative density [MPa]: P = P1 P2 P2 : Relative density [MPa] Front matter 4

In the case of liquid: P Q = 1.9 x 106Av (9) G Q : Flow rate [l/min] Av : Flow coefficient [m2] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av P(P2 + 0.1) (10) Q : Flow rate [m3/s] Av : Flow coefficient [m2] P : Pressure difference [Pa] P1 : Relative density [MPa]: P = P1 P2 P2 : Relative density [MPa] Front matter 4

2 t i q o !0 !1 i q o !0 !1 Component Parts No. Description Body A Handle Body B Needle Seat ring Needle guide Material Note No.

AP100 (13) Working principle When the MR units OUT side pressure is applied to piston q , piston q moves until it balances with the force of pressure adjustment spring w . The movement of piston q is detected by switch assembly e and outputs ON and OFF signals.

L1 L2 L3 L4 L5 L6 L7 L8 D Model Bore size ASS AS2000-01 AS2000-02 AS3000-02, 03 1 8 Rc Rc Rc , 40 40 56 30 30 45.5 5 5 5.25 17 23 25 10 11.5 13.2 15.5 17 20.6 54.5 56 68 50 51.5 61 16 20 26 4.5 4.5 5.5 1 4 1 4 ASR Effective thread depth 6 8 3 Dimensions: AS5000 ASF 2-1/4 to 1/2 2-M4 x 0.7 Effective thread depth 7 15-9-31

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