SMC Corporation of America
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Search Results "AFM20-02-6-A"

7 A*8 201 2~200L/min 8 2 (11) S () C8 8(5/16") *6 02*1 Rc1/4 M SI*7 N02*1 NPT1/4 6 F02*1 G1/4*2 SI 1 2ISO1179-1 7:L/min :L 1 (11) L*3 3 OUT1 OU2 A NPN NPN B PNP PNP C NPN (1~5V) D NPN (4~20mA) E*4 PNP (1~5V) F*4 PNP (4~20mA) G*4 NPN *5 H*4 PNP *5 4 5 -10No.PF-OMO0004CN-E 1 W N (2 m) (2 m) + () 2 R S () () T V () () -11No.PF-OMO0004CN-E / ZS-33-D 2m ZS-33-F ZS-33-J (

(mm) Port size Pressure valve ASR430F-02 ASR530F-02 ASR530F-03 ASR630F-03 ASR630F-04 6 8 10 12 Flow valve ASQ430F-02 ASQ530F-02 ASQ530F-03 ASQ630F-03 ASQ630F-04 R1/4 R1/4 R3/8 R3/8 R1/2 Pilot valve and two-way flow control valve integrated into a single construction Specifications Proof pressure 1.5 MPa Maximum operating pressure 1.0 MPa Variable 0.1 to 0.3 MPa Set pressure range Fixed (option

6 @9 r MTS $0 #6 MY A' CY $1 !1 !2 !0 !8 w $4 t e $2 !5 $3 y!7 @8 !4 !

B A B A B A B A B A B U 4.5 5.5 (10) 5 6 (10.5) 2 3 (7.5) 12 22 26 23 26.5 20.5 19.5 5 (7) 8 (6) 5.5 (7.5) 5 (3) 2.5 (4.5) 7.5 (5.5) 16 25 29 26 29.5 23.5 22.5 20 25 32 40 50 27 31 28 31.5 25.5 24.5 5 7 8 6.5 7.5 4 30 34 31 34.5 28.5 27.5 5 7.5 8 7 7.5 4.5 34 27 29 26.5 38 35 38.5 32.5 31.5 6.5 6.5 9.5 6 9 3.5 8 5 12 9 11 8 37.5 30.5 32.5 30 41.5 38.5 42 36 35 10.5 9 13.5 8.5 13 6 12 7.5

screw, use a watchmakers screwdriver with a grip diameter of 5 to 6 mm.

of band and screw) BMA2-050AS (A set of band and screw) BMA2-063AS (A set of band and screw) D-G5/K59 D-G5W/K59W D-G5BA/G59F D-G5NT D-B5/B64 D-B59W D-G5NB (A set of band and screw) BA-02 BA-01 (A set of band and screw) BA-32 (A set of band and screw) BA-04 (A set of band and screw) BA-05 (A set of band and screw) BA-06 (A set of band and screw) BA-08 (A set of band and screw) BA-10 (A

Contact protection box OUT() Brown(Red) 12 10 8 15 16 9 12 6 6 20 25 32 40 50 63 80 100 125 140 160 Reed switch 13 CDJ2, CDVJ CDQ2 to 10 12 6 6 6 6 12 12 6 6 6 6 12 13 12 6 6 6 6 12 13 12 12 12 11 10 12 12 13 13 13 CD-P11 CD-P12 OUT( ) Blue(Black) B P CDXW 6 6 6 CDY1S CY1L RSDQ MDU CE1 MK, MK2 CXT 6 6 6 6 6 6 11 13 11 11 11 Note) qIn the case operation load is an inductive load. wIn the

6.5 5 6 6.5 5 9.5 7 100 W W W 10 6 4.5 5.5 6 4.5 8 6 125 9 5 4 4.5 5 4 7 5.5 150 10.5 6 4.5 5 6 4.5 8.5 6.5 25 Reference: Even under a light load, if the piston rod has been stopped by an external stopper at the extending side of the cylinder, the maximum force generated by the cylinder will act upon the cylinder itself. 7 3.5 2.5 3 3.5 2.5 5.5 3.5 50 5 2.5 1.5 2 2.5 2 4 2.5 75 3 4 2 1 1.5

20 . 8-1 8.1.2 Refrigerant with GWP reference. 8-2 8.1.3 Communication specifications . 8-2 8.2 Dimensions . 8-3 8.2.1 HRL100-A-20 . 8-3 8.2.2 HRL200-A-20 . 8-4 8.2.3 HRL300-A-20 . 8-5 8.3 Flow Diagram . 8-6 8.3.1 HRL-A-20 . 8-6 8.4 Cooling Capacity . 8-7 8.4.1 HRL100-A-20 CH1 . 8-7 8.4.2 HRL200-A-20 CH1 . 8-7 8.4.3 HRL300-A-20 CH1 . 8-8 8.4.4 HRL100/200/300-A-20 CH2 . 8-8 8.5 Pump Capacity

CLAD40SCLA40, #6 (#1+#6+#11) CLAD50SCLA50, #6 (#1+#6+#11) CLAD63SCLA63, #6 (#1+#6+#11) CLAD80 SCLA80, #6 (#1+#6+#11) CLAD100SCLA100, #6 (#1+#6+#11) Trunnion/CLAT MXF MXW MXP MG MGP MGQ MGG MGC MGF (mm) CY1 Bore (mm) Stroke range (mm) W/o rod boot BN K KA LZ J AL BP BQ C GB MM B D GC B1 E GD F GL GA GR H1 A W/ rod boot 40 50 63 80 100 6 7 7 11 11 14 18 18 22 26 71 80 99 117 131 M14 X 1.5 22

For a facility having a small installation area (that can not vent the air naturally): Make a forced air exhaust vent on a wall at a high level and an air inlet on a wall at a low level. 3.

20 . 8-1 8.1.2 Refrigerant with GWP reference. 8-2 8.1.3 Communication specifications . 8-2 8.2 Dimensions . 8-3 8.2.1 HRL100-A-20 . 8-3 8.2.2 HRL200-A-20 . 8-4 8.2.3 HRL300-A-20 . 8-5 8.3 Flow Diagram . 8-6 8.3.1 HRL-A-20 . 8-6 8.4 Cooling Capacity . 8-7 8.4.1 HRL100A20 CH1 . 8-7 8.4.2 HRL200A20 CH1 . 8-7 8.4.3 HRL300A20 CH1 . 8-8 8.4.4 HRL100/200/300-A-20 CH2 . 8-8 8.5 Pump Capacity . 8

No. 3 4 5 6 7 8 9 Note) When ordering a manifold ZZK2---A on page 3, q to e are delivered as a set.

O e b u t ) h c n I ( . n i M e l o h . a i d d a e r h T T P N . o N t r a P H ) . x e H ( D L A * M . t W ) f g ( 6 9 . 0 ) 5 . 4 2 ( 1 8 . 0 ) 5 . 0 2 ( 5 7 . 0 ) 9 1 ( 8 1 . 0 ) 6 . 4 ( 8 / 1 S 4 3 7 0 H R K 9/ 6 1 ) 9 2 . 4 1 ( 3 6 . 0 ) 6 1 ( 1 1 5 7 . 0 ) 9 1 ( 6 1 4 / 1 S 5 3 7 0 H R K 8 9 . 0 ) 5 2 ( 4 / 1 8 / 3 S 6 3 7 0 H R K 1 1 / 6 1 ) 6 4 . 7 1 ( 3 7 . 0 ) 5 . 8 1 ( 8 2 0 4

Set contact output signal 4 to 6. Contact output signal is continuously output. A Signal type for contact output signal 4 to 6 can be selected by the customer. Refer to Table 5.4-24 Signal type for contact output signals 4 to 6. Select the Contact type and Signal type for contact output signals 4 to 6. Contact output signal 4selects Signal type and N.O. (A contact ) or N.C.

W&F Contact B OUT6 N/A Output signal: OFF (open) for normal operation 4 OUT1 to OUT6 Contact A, B Output signal A: Contact A, B: Contact B Same as above Used to display the 5 [Enter] key MESSAGE screen to accept the setting. Used to display the MESSAGE screen to initialize the settings of RUN, REMOTE, and 6 [Initial] key OUT1 to OUT6. 7 [Cancel] key Used to cancel the setting.

It is also possible to manufacture a bidirectional lock-up cylinder. For details, refer to Made to Order on page 9-6-113. Due to the nature of its construction, a lock-up cylinder has a play of approximately 0.5 mm to 1 mm in the axial direction.

It is also possible to manufacture a bidirectional lock-up cylinder. For details, refer to Made to Order on page 9-6-113. Due to the nature of its construction, a lock-up cylinder has a play of approximately 0.5 mm to 1 mm in the axial direction.