SMC Corporation of America
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Search Results "VVQC2000-3A-1-C8"

3/8 5 AF4000 1/4, 3/8, 1/2 Float style auto drain AF4000-06 3/4 Pressure differential auto-drain 3/4, 1 AF5000 AF6000 1 Mist Separator Series AFM AFM2000 1/8, 1/4 Bracket AFM3000 1/4, 3/8 0.3 Float style auto drain AFM4000 1/4, 3/8, 1/2 Pressure differential auto-drain AFM4000-06 3/4 Micro Mist Separator Series AFD AFD2000 1/8, 1/4 Bracket AFD3000 1/4, 3/8 0.01 Float style auto drain AFD4000

Max. operating pressure difference MPa Port size Note 2) Note 1) Note 1) Effective area mm (Cv factor) Weight kg Max. system pressure MPa Orifice diameter Class Model 2 2.0 0.9 2.8 (0.16) 3 0.8 0.45 5.9 (0.33) 1/8 (6A) 1/4 (8A) 3.0 1/8: 0.21 1/4: 0.24 2 VCW2 4 0.5 0.25 9.2 (0.51) 5 0.3 0.15 11.7 (0.65) 3 2.0 0.8 6.3 (0.35) 4 0.8 0.42 9.7 (0.54) 1/4 (8A) 3/8 (10A) 1/2 (15A) 1/4: 0.42 3/8:

VCS414 VCS415 VCS 17 1 0 5 1 5 20 1 5 1 0 25 20 1 5 30 25 25 2.

How To Order Connector Ass y Number vJ1_g-2o--4A-@ ( 1 10VAC: VJ10-36-3A-') ---fvJ10-20-4AL type I a..l wira len.rrh.-i Lead wire length .

How To Order Connector Ass y Number vJ1_g-2o--4A-@ ( 1 10VAC: VJ10-36-3A-') ---fvJ10-20-4AL type I a..l wira len.rrh.-i Lead wire length .

How To Order Connector Ass y Number vJ1_g-2o--4A-@ ( 1 10VAC: VJ10-36-3A-') ---fvJ10-20-4AL type I a..l wira len.rrh.-i Lead wire length .

3 (0.12) 6.3 (0.35) 0.8 (116) 4 (0.16) 9.7 (0.54) 1/4 (8A) 3/8 (10A) 1/2 (15A) 1/4: 0.42 (0.93) 3/8: 0.40 (0.88) 1/2: 0.49 (1.08) 2.0 (290) 3 VCL3 0.5 (72) 5 (0.20) 14.4 (0.80) 0.2 (29) 7 (0.28) 24.8 (1.38) 0.1 (14) 10 (0.39) 37.8 (2.10) 2.0 (290) 3 (0.12) 6.3 (0.35) 1/4 (8A) 3/8 (10A) 1/2 (15A) 3/4 (20A) 1/4: 0.58 (1.28) 3/8: 0.55 (1.21) 1/2: 0.62 (1.37) 3/4: 0.78 (1.72) 1.1 (159) 4 (0.16

AXT661-1 VG Cover Locking slotted style (Option) Hook Pin VP TURN PUSH TURN Lead wire: 0.2 to 0.33mm 2 (Max. covering O.D.: 1.7mm) Groove 1 0 0 1 0 1 Lever VQ Socket Part No. DXT170-71-1 OFF ON VQZ It can be locked in the ON state by turning the manual override to the right, setting the E mark to 1 and pushing it.

Max. operating pressure difference MPa Port size Note 2) Note 1) Note 1) Effective area mm (Cv factor) Weight kg Max. system pressure MPa Orifice diameter Class Model 2 2.0 0.9 2.8 (0.16) 3 0.8 0.45 5.9 (0.33) 1/8 (6A) 1/4 (8A) 3.0 1/8: 0.21 1/4: 0.24 2 VCW2 4 0.5 0.25 9.2 (0.51) 5 0.3 0.15 11.7 (0.65) 3 2.0 0.8 6.3 (0.35) 4 0.8 0.42 9.7 (0.54) 1/4 (8A) 3/8 (10A) 1/2 (15A) 1/4: 0.42 3/8:

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(MPa) LQ 2 0.16 3.8 0.9 2.0 3 0.33 7.9 0.45 0.8 1/8 (6A) 1/4 (8A) 3.0 1/8: 0.21 1/4: 0.24 LVN 2 VCW2 4 0.51 12 0.25 0.5 TI/ TIL 5 0.65 16 0.15 0.3 3 0.35 8.4 0.8 2.0 PA 4 0.54 13 0.42 0.8 1/4 (8A) 3/8 (10A) 1/2 (15A) 1/4: 0.42 3/8: 0.40 1/2: 0.49 VCW3 3 5 0.80 19 0.23 0.5 3.0 PAX 7 1.4 33 0.13 0.2 10 2.1 50 0.1 PB 3 0.35 8.4 1.2 3.0 1/4 (8A) 3/8 (10A) 1/2 (15A) 3/4 (20A) 1/4: 0.58 3/8: 0.55

Max.operating pressure differential (MPa) Port size Flow characteristics Max.system pressure (MPa) Orifice size (mm) Weight (kg) Class Model PAX Cv converted Av x 10 -6(m 2) 2 0.16 3.8 1.5 PB 3 0.33 7.9 0.8 1/8 (6A) 1/4 (8A) 1/8 : 0.21 1/4 : 0.24 2 VCL2 2.0 4 0.51 12 0.4 5 0.65 16 0.25 3 0.35 8.4 1.5 4 0.54 13 0.8 1/4 (8A) 3/8 (10A) 1/2 (15A) 1/4 : 0.42 3/8 : 0.40 1/2 : 0.49 VCL3 3 5 0.80

3 (0.12) 6.3 (0.35) 0.8 (116) 4 (0.16) 9.7 (0.54) 1/4 (8A) 3/8 (10A) 1/2 (15A) 1/4: 0.42 (0.93) 3/8: 0.40 (0.88) 1/2: 0.49 (1.08) 2.0 (290) 3 VCL3 0.5 (72) 5 (0.20) 14.4 (0.80) 0.2 (29) 7 (0.28) 24.8 (1.38) 0.1 (14) 10 (0.39) 37.8 (2.10) 2.0 (290) 3 (0.12) 6.3 (0.35) 1/4 (8A) 3/8 (10A) 1/2 (15A) 3/4 (20A) 1/4: 0.58 (1.28) 3/8: 0.55 (1.21) 1/2: 0.62 (1.37) 3/4: 0.78 (1.72) 1.1 (159) 4 (0.16

Orifice and Port Size Combinations Class Orifice size (mm) T Conduit terminal (1) Port size 4 2 3 7 5 10 1/8 (6A) 2 1/4 (8A) 1/4 (8A) 3 3/8 (10A) 1/2 (15A) 1/4 (8A) Available types of electrical entry are either G, C and T.

HEC ii CONTENTS CONTENTS Pages 1 Preparation for Communication -1-1 2 Specifications of Communication Method -2-1 3 Communication Format -3-1 3.1 Control code used for communication -3-1 3.2 Command code list -3-1 3.3 Communication procedures and format -3-2 3.4 Calculation of checksum -3-3 4 Details of Communication format -4-1 4.1 Temperature setting (without writing EEPROM) -4-1 4.2 Reading