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G46-10-01) indicates the type of threads used for connection. For Rc, leave the symbol blank, and for NPT, enter N. Please contact SMC concerning the supply of NPT pressure gauges. Relieving type is provided as standard for AU100.

) 2 to 60 psig (0.014 to 0.4 MPa) 5 to 100 psig (0.034 to 0.7 MPa) 15 to 200 psig (0.1 to 1.4 MPa) 15 to 300 psig (0.1 to 2.1 MPa) Code Bonnet Standard Panel installation 3) 01 02 06 10 20 30 No code P Connections (Inletq, Outletw) 3) Panel mounting hole: dia. 1.42 inch (36.1 mm).

Note 2) The mounting position of the name plate is on the top face of the cover for the terminal block box. 01 1 station The maximum number of stations differs depending on the electrical entry. Cylinder port size Input block COM.

Electrical entry SC (T only) Type SU Type SC Type SC Type SU Type SC Type SU AXT622-5A AXT336-4AStations AXT336-5Stations Description AXT336-1A-1 01 02 01 02 01 02 02 03 02 03 02 03 02 03 Manifold block assembly AXT336-1A-2 AXT336-1A-3 AXT336-2A-1AXT336-2A-2AXT336-3A-1AXT336-3A-2q End plate (U side) assembly w End plate (D side) assembly e Terminal assembly Junction cover assembly Tie-rod

Rc 1/8 Rc 1/8 Rc 1/8 Rc 1/4 VZ One-touch fitting for 4 C4 Port size 4(A), 2(B) port One-touch fitting for 6 C6 M5 x 0.8 VF One-touch fitting for 5/32" B3 One-touch fitting for 1/4" B7 Flow Characteristics VFR Flow characteristics 1 4/2 (P A/B) 4/2 5/3 (A/B R) Port size 1(P), 5/3(R) port Manifold 2(B), 4(A) port C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv VP4 VV5Z3-40 VV5Z3-41 VV5Z3-42-01

Model Pressure range *1 Indication unit Connection thread Note MPa Port size 01 Rc1/8 02 Rc1/4 R1/8 R1/4 G46-7-02-SRB 0 to 0.7 R1/4 G46-10-02-SRB 0 to 1.0 G46-4-01 to 02-SRB 0 to 0.4 MPa Set pressure range: 0.05 to 0.69 MPa 02 WR110 X215 *1: Do not apply more pressure than the max. pressure displayed. It may cause a malfunction.


The part number of the standard AR20 to AR60 round type pressure gauge is “G36-10-01,” or “G46-10-01”(for the R thread type).
For example, the part number of the AR30-03BG-A pressure gauge is “G36-10-01.” Details on the round type pressure gauge (with color zones) can be found https://www.smcpneumatics.com/Part-Builder-Links_ep_2458-1.html?https://smccatalog.partbuilder.smcpneumatics.com/support/faq/en-jp/?ca_id=vacuum-regulators&fa_id=10961


The part numbers of standard AR20 to AR60 round type pressure gauges are “G36-10-01” and “G46-10-01”(for the R thread type).
For example, the part number of the AR30-03BG-A pressure gauge is “G36-10-01.”
Details on the round type pressure gauge (with color zones) can be found https://www.smcpneumatics.com/Part-Builder-Links_ep_2458-1.html?https://smccatalog.partbuilder.smcpneumatics.com/support/faq/en-jp/?ca_id=combination-units&fa_id=10974

.· Y210-□01-A, 02-A applicable models: AC20-A, AC20B-A, AC20C-A.· Y310-□01-A, 02-A applicable models: AC25-A, AC25B-A, AC25C-A · Y310-□01-A, 02-A applicable models: AC30-A, AC30B-A, AC30C-A.· Y410-□02-A, 03-A applicable models: AC40-A, AC40B-A, AC40C-A.· Y510-□02-A, 03-A applicable models: AC40-06-A, AC40B-06-A.· Y510-□02-A, 03-A applicable models: AC40C-06-A.

a) (52) b) 28 c) (52) c) (16) e) (16) f) (/) g) () h) () i) j) k) l) m) -19No.EX-OML0010CN-C 4.

Outline of settings Piping J Indicator LED Never mount the product upside down. The straight piping length shall be 8 cm or longer. Otherwise, if a straight section of piping is not installed, the accuracy varies by approximately 2%F.S. Avoid sudden changes in the piping size on the IN side of the product.

PF3W720S 112 54 63.6(Max.68.6) 74.2 34 62.5 18 13.6 2.7 10 19 6 PF3W740S 142 71 75.25(Max.81) 94.5 44 79 28 16.8 2.7 10 28 7 S T PF3W704S 56.5 22 PF3W720S 60.5 22 PF3W740S 78 30 -84No.PF-OMM0004-D PF3W704/720/740(+) A AA D K S PF3W704S--T 115 50 81.2 69.5 67.5 PF3W720S--T 123 54 85.2 73.5 71.5 PF3W740S--T 153 71 105.5 90 89 -85No.PF-OMM0004-D PF3W711-U25/PF3W721-U30(PVC ) A B D E F J

1 V 1.5 V 5 V 4 mA 6 mA 20 mA (PF3W511) A B C 1 V 1.4 V 5 V 4 mA 5.6 mA 20 mA (PF3W521-12/14) A B C 1 V 1.8 V 5 V 4 mA 7.2 mA 20 mA (PF3W521-U30) A B C 1 V 1.48 V 5 V 4 mA 5.92 mA 20 mA [L/min] PF3W504 0.5 4 PF3W520 2 16 PF3W540 5 40 PF3W511 10 100 PF3W521-12/14 50 250 PF3W521-U30 30 250 () A B C D 0.6 V 1 V 5 V 5.4 V -40No.PF-OMN0009CN-F PF3W504/520/540/511 2X A AA B DD E F G H J

(Strong electric field/ strong magnetic field/ surge.) j. The place where electricity is discharged. The situation which causes electric discharge on the 150 150 200 200 (mm) Wiring and piping Environment product. k. The place where strong high frequency is generated. l. The place where lightning disaster is expected. m.

c. 6. 1. 7. a.060 b.2585%RH c. d. e. 8. ,, f. g.( 9. ) h. i. j. k. l. 2. 1. 2. 1. 3 2. 1. 3. 4. 1. 12:0.071.0MPa 2063:0.051.0MPa :060 5. 2. 1. 5m 1. 2. 2. 3. F.G. 4. 1. 1. 2. 12 10N [102kgfcm] 1. 2032 20N [204kgfcm] () 40,50,63 30N [306kgfcm] 2. 3. 2. 1.52 1. 2. 1. 1()ISO VG32 3. 4. 5. 6. 1. 2.14.5mT CE1 3. 4. (DC1224V) [] 1. 2. 3. 4. 2.

MODEL 4-1 Monosahi-kun with Brake CE2 B 40 100 J No. of Auto switch Mounting None 2 B Standard s 1 L Plate n n F Rod Flange G Head Frange Auto switchs Type C Single Clevis D Double Clevis (Refer to Catalog) T Center Trunnion Cylinder Accessories J Nylon Tarpaulin Tube Bore Gaiter K Neoprene 40 40mm None Both Sides 50 50mm N None 63 63mm Cushion R Cushion at Rod side 80 80mm H Cushion at Head

i. 7. j. k. l. 2. 8. ,,, 9. 1. 10. 2. 11. 3. 1. 1. 0.11.0MPa 0.30.5MPa :060 2. 3 2. 1. 3. 5 2. 35% 1. ( 6 ) ()70% ()35% 2. 50% ( 6 ) 15% 3. 1. 4. () 0.5 3. 5. F.G. 4. 1. 1. 2. 2. 3. 1. 1. 2. 2 3. 2. 1.52 4. 5. 1. 1ISO VG32 1. 2. 1. 2. 3. 1. 2. 1. 2. 14.5mT CE2 3. 15,000 18cm 4. 3. 4. IP65 5.

Please refer below for calculation of kinetic energy. 2 I 2 1 E = E : Kinetic energy J : Angular speed rad/s I: Inertia moment kg/m2 Allowable kinetic energy for the rotary actuator is limited. The limit of rotation time is obtained by calculating inertia moment. Please refer following for obtaining inertia moment.

Please refer below for calculation of kinetic energy. 2 I 2 1 E E : Kinetic energy J I: Inertia moment kg/m2 : Angular speed rad/s Allowable kinetic energy for the rotary actuator is limited. The limit of rotation time is obtained by calculating inertia moment. Please refer following for obtaining inertia moment.

Please refer below for calculation of kinetic energy. 2 I 2 1 E = E : Kinetic energy J : Angular speed rad/s I: Inertia moment kg/m2 Allowable kinetic energy for the rotary actuator is limited. The limit of rotation time is obtained by calculating inertia moment. Please refer following for obtaining inertia moment.