SMC Corporation of America
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Search Results "SV2000-55-1-14"

55 1000.3 Switch mounting bracket Note 2) 12 70 12 Fulcrum 13 40 15 10 F 2 x 4 x M10 x 1.5 depth 12 107 Note 3) 70 2 x 2 x 8H7 +0.015 0 ( ) depth 12 60 1 52 (58.7) (70) 95 700.05 85 75 330 270 0.3 193 (173) 133 25 100 100 (10) Rc1/ 4 Unclamp side port 306 (30.2) (30.2) 360 139 Limit switch Note 1) Rc1/ 4 Clamp side port +0.015 0 4 x 8H7( )through 820.05 143 115 50 4 x 14 through 320 (mm)

Note) Accumulated flow rate is reset when the power supply turns OFF. 46 Series PF2D How to Order 4-channel Flow Monitor Remote Type Display Unit PF2D20 M Output specification Option 2 (Refer to page 55.) 0 1 NPN4 outputs PNP4 outputs Accessory / Power supply output cable (2 m) Nil 4C None Sensor connector (4 pc.) Unit specification Option 1 (Refer to page 55.)

2 Rc 1/2 Rc 3/4 Rc 1 Rc 1 Rc 1 1/4 Rc 1 1/4 Rc 2 Rc 2 Rc 2 Rc 110 110 110 180 180 180 260 260 Rc 3 4 Rc 1 1 2 1 2 Rc 1 2B (JIS 10kFF) 2B (JIS 10kFF) 3B (JIS 10kFF) 4B (JIS 10kFF) 4B (JIS 10kFF) 14-16-2

2 3000[mm/s 2] 320%(F.S.) 450%~95% 7.2[]P41 LEY 5 6() 452000Hz 1 () 7 8 9 10 11 -14- 3.2.

N Terminal No. 6 7 8 9 1 0 0 0 0 2 1 0 0 0 3 0 1 0 0 4 1 1 0 0 5 0 0 1 0 6 1 0 1 0 7 0 1 1 0 8 1 1 1 0 9 0 0 0 1 10 1 0 0 1 11 0 1 0 1 12 1 1 0 1 13 0 0 1 1 14 1 0 1 1 15 0 1 1 1 16 1 1 1 1 0Open between IN6~9 and COM 1Short circuit between IN6~9 and COM Set Home When dip switch is set ON, origins signal is inputted. When dip switch is set OFF, origin input is not required.

11-2 11-3 . 11-2 11-4 . 11-2 12 R 12-1 . 12-1 12-2 . 12-1 12-3 . 12-2 12-4 . 12-2 12-5 . 12-2 13 T 13-1 . 13-1 13-2 . 13-1 13-3 . 13-1 13-4 . 13-2 13-5 . 13-2 13-6 . 13-3 14 14-1 . 14-1 2 IDX-OM-W026 i i i-1 () 3 i 1 1 3 IDF Series i-1 i-1 IDX-OM-W026 i i-2 5 i 2 1 IDF Series i-2 i-2 IDX-OM-W026 i i 2 2 i 2 3 50 i 2 4 i 2 5 0 IDF Series i-2 i-3 IDX-OM-W026

.38 5.3 <> NPNPNP LEFS16A-100 NPN -14- 2.4. 16/25/32 40 22 21 1 12 2 13 3 14 4 15 5 16 NBR 6 17 7 18 8 A 19 9 B 20 10 21 11 22 1 12 2 13 3 14 4 15 5 16 NBR 6 17 7 18 8 A 19 9 B 20 10 21 11 22 -15- 1 14 2 15 3 16 4 17 5 18 6 19 NBR 7 20 8 21 9 A 22 10 23 11 24 12 25 13 -16- 3. 3.1. 1 I/O LEC-CN5-* / PLC 1 2 DC24V

M2 M3 m2 m3 m4 10 15 25 1 2 1 2 2 2 1.4 CY1F 1.5 3 1.5 5 5 5 2 14 20 14 12 12 12 12 The above values are the maximum allowable values for moment and load. Refer to each graph regarding the maximum allowable moment and maximum allowable load for a particular piston speed.

Mounting (Male thread) ZP3 M5 x 0.8 Mounting Vacuum entry port Female thread Connection 10 to 16 20 to 32 40, 50 20 M8 x 1 ZP3E Male thread 24 M10 x 1 10 to 16 M8 x 1 ZP2 55 M14 x 1 Pad diameter 20 to 32 M5 x 0.8 M10 x 1 40, 50 M14 x 1 ZP2V Ball joint rotation ZP ZPT ZPR ZPT ZPR XT661 709 ZPT Series 20 25 32 10 13 16 ZPT F-B5-A8 (Without buffer/Male thread) ZPT F-B5-A10 (Without buffer/Male

M2 M3 m2 m3 m4 10 15 25 1 2 1 2 2 2 1.4 CY1F 1.5 3 1.5 5 5 5 2 14 20 14 12 12 12 12 The above values are the maximum allowable values for moment and load. Refer to each graph regarding the maximum allowable moment and maximum allowable load for a particular piston speed.

M2 M3 m2 m3 m4 10 15 25 1 2 1 2 2 2 1.4 CY1F 1.5 3 1.5 5 5 5 2 14 20 14 12 12 12 12 The above values are the maximum allowable values for moment and load. Refer to each graph regarding the maximum allowable moment and maximum allowable load for a particular piston speed.

F(N) F(N) Stroke 105 15 9 110 115 14 120 8 125 130 13 140 150 7 12 175 5 200 11 0 1 2 Rotation angle Linear motion Number of Auto Switches Mounted 02 0S 0 S2 SS S0 1 Nil 2S 20 2 n2 nS n0 n Combinations of made-to-order products No. 1 to 4 are available. Please contact SMC for further information. 11-10-19

MH*-OMM0056 MHS2-D MHS3-D MHS4-D MHSJ3-D MHSH(J)3-D 1. 23 2. 2-1. 45 3. 3-1. 6 3-2. 67 3-3. 713 3-4. 13 3-5. 14 3-6. 14 3-7. 14 4. 4-1. 14 4-2. 1518 4-3. 1922 4-4. 2326 1 [ ][][] ISO4414*1)JISB8370*2) 1) ISO4414Pneumatic fluid power-Recommendations for the application of equipment to transmission and control systems. 2) JIS B8370 2 1. 2. 3. 4. 3 2 2-1 MHS2 MHS2 -16D MHS2 -20D MHS2 -25D

4.7 8.0 12 18 29 48 [kPa] -55 2.7 4.3 7.3 11 17 27 44 -50 2.5 3.9 6.7 10 15 24 40 -45 2.2 3.5 6.0 9.0 14 22 36 -40 2.0 3.1 5.3 8.0 12 19 32 -6No.

Environment Clean Room Specification ISO Class 4*1 (ISO14644-1) Built-in vacuum piping Possible to mount the main body without removing the external cover etc. Body-integrated linear guide specification *1 Changes depending on the suction flow rate.

Regenerative error (Note 1) (Note 1) (Note 1) Alarms AL.31 1 0 1 Overspeed AL.32 1 0 0 Overcurrent AL.33 0 0 1 Overvoltage AL.35 1 0 1 Command pulse frequency alarm AL.37 0 0 0 Parameter error AL.45 0 1 1 Main circuit device overheat (Note 1) (Note 1) (Note 1) AL.46 0 1 1 Servo motor overheat (Note 1) (Note 1) (Note 1) AL.47 0 1 1 Cooling fan alarm AL.50 0 1 1 Overload 1 (Note 1) (Note 1)

30 11 14 14 16 16 5.2 49 78 (13) 76 16 47 18.5 55 40.4 Size K Q S W Keyway dimensions TF (H9) TG (H9) TL Rotating angle JJ US TA TD UW G L TB TC M N b l 90 180 90 180 90 180 3 29 104 130 122 153 20 0 0.03 20 11.5 4 1 13.5 27 4 4 2.5 15 59 24.5 74 8 11 9.6 M5 x 0.8 depth 6 0 0.03 30 4 33 4 20 13.5 2 19 36 4 4 2.5 18 83 65 27 10 13 11.4 40 139 177 5 37 5 M6 x 1 depth 7 0 0.03 17 25 73 32.5

1 2 3 5 8 0 0 0 1 1 3 5 8 16 27 53 84 1 0 0 1 1 0 ZF ZP SP ZCUK Add or deduct the mass shown in the table on the left for order materials.

stroke 14 15 CXSJM CXSJL Graph V = over 400 mm/s; up to 75 mm stroke 1 1 Weight m (kg) Weight m (kg) 32 32 0.1 0.1 25 25 20 20 10 15 15 0.01 0.01 0 20 40 100 60 80 0 20 40 100 60 80 Overhang L (mm) Overhang L (mm) 6 Series CXSJ Construction: Standard Piping CXSJM (Slide bearing) CXSJL (Ball bushing bearing) CXSJM6 CXSJL6 !

0.4MPapsi 0.4MPapsi 5 10 N 1 2 3 4 5 6 1 2 NPN2 PNP2 P 6 10 3 4 0.2MPapsi 0.2MPapsi 10 7 4 5 6 M SI 5 8 10 1 7 L 7 L N S 6 7 8 R 6 7 8 2 T 9 B -9No.PS-OMT0001CN-E 2 1F 2GH 3ISO1179-1 4 5kPa 61 7 8M12 9 10 11 12ISO16030 -10No.PS-OMT0001CN-E 2 / (2 2 2 1 ) ((3x8)3 ) ISA-16 ISA-14 2 ISA-16-2 3 ISA-16-3 4 ISA-16-4 5 ISA-16-5 6 ISA-16-6 ZS-31-B ZS-31-C 4 6