SMC Corporation of America
Elite Part Number Search
Search Results "VV100-S41-12-M5"

Model 6 Size: nominal size X length Number of pieces 8 12 4 6 8 10 12 TM-04 TM-06 TM-08 TM-10 TM-12 2 X 6 2.6 X 8 4 3 X 8 Tube Release Tool Series TG To remove tube in a confined space or from manifolded one-touch fittings.

x 0.8 Depth 5 24 28 2 43 48 36 112 100 76 3/8 50.5 27.5 68.5 M5 x 0.8 Depth 5 24 28 2 43 48 36 132 76 3/8 27.5 85.5 16 70.5 3.5 M5 x 0.8 Depth 5 24 28 2 43 48 36 132 76 3/8 27.5 87.5 20.5 M6 x 1 Depth 6 32 42 3 57 52 47 127 98 115 1/2 62.5 37 80.5 M6 x 1 Depth 6 32 42 3 57 52 47 147 98 1/2 37 97.5 6 82.5 M6 x 1 Depth 6 32 42 3 57 52 47 147 98 1/2 37 99.5 10.5 06 10

FKM (Standard seal material) Pilot pressure MPa 0.4 to 0.7 Pilot port size M5 Rc 1/8 Service life (million cycles) 200 (FKM seal material) XMA 0.61 1.40(1.76) 2.00 3.60(4.96) 6.20 0.33(0.37) Weight kg Note 2) XYA 0.66 1.42 2.40 4.30 7.70 Note 1) Conductance is the value for the molecular flow of an elbow having the same dimensions.

A 24 M5 thread, depth 8 With or without insert depending on base material. 32 A' Coding stud M5 x 10 DIN913-45H 12 2 8 M5 Drive flange face G1/4 DIN/ISO228/1 19.5 5.5 Solenoid valve flange face O-ring 16 x 2 1.5 IP 3 IW 1301 AW The solenoid valve can be attached with 2 mounting bolts.

Heavy-duty cord can be used up to the cable O.D. 6 to 12. Use the tightening torques below for each section.

4 53 12 6 5 3-Rc 1/8 Unclamp side port 47 45 45 9.5 M10 x 1.25 12 40 26 26 10 Width across flats 10 Width across flats 36 R12 0.040 0.076 +0.022 0 Shaft: 10d9 +0.5 +0.2 12 12 102 + Stroke 55 6 Hole: 10H8 26 41.2 169 + Stroke Unclamp side lock (F) 3-Rc 1/8 Unclamp side port 3-Rc 1/8 Clamp side port 25 60 34 + Stroke 20 Rear cushion valve 12 4 53 12 6 5 47 45 45 19 9.5 M10 x 1.25 12 40 26

Threshold for alarm generation generation and other settings Code Alarm name A.RUN P.RUN A.STP Display Default Settable OFF Display range AL39 Internal unit fan stoppage Set time AL40 Dust-proof filter maintenance 500 h 1 to 9 h 12 AL41 Power stoppage AL42 Compressor standby AL43 12 Fan breaker trip AL44 12 Fan inverter error AL45 Compressor breaker trip 13 AL46 Compressor inverter error

to 250 20 to 1000 12 to 500 6 to 250 24 to 1200 16 to 500 8 to 250 Actuator specification 501600 20 to 900 12 to 500 6 to 250 24 to 1200 16 to 500 8 to 250 Driver type LECPA Note2) 601700 20 to 630 12 to 420 6 to 230 24 to 930 16 to 500 8 to 250 Stroke Speed range 701800 20 to 550 12 to 330 6 to 180 24 to 750 16 to 500 8 to 250 [mm/s] 801900 24 to 610 16 to 410 8 to 200 9011000 24 to 500

HS 12 12 SMC SMC 24.5 24.5 A 33 B A 33 Auto switch B D-C73C/C80C type 20 to 40 D-H7C type 20 to 40 50 to 63 50 to 63 Approx. HS Approx.

(Put packing B w on the surface contacting to the end plate.) (11 stations) 4 stations (12 stations) 5 stations 3. For a style with a D-sub connector, open the cover !4 and insert the pin of lead wire assembly !0 as shown in the right figure.

4 port) 74.5 66.5 8.5 PE port 23 13.5 SMC 16 16 M5-2 ports 12, 14 port 1/8-2 ports 2, 4 port 1/8 1 port 1/8-2 ports 3, 5 port EVS1-02-FG-D-M0 EVS1-02-F G-D-M0 H J I 136 149 68 21.5 (14 port) 68 21.5 (12 port) 21.5 (14 port) 21.5 (12 port) 8.5 (4 port) 8.5 (2 port) 8.5 (4 port) 8.5 (2 port) 14 4 2 12 14 4 2 12 12 12 25 34 34 18 18 25 14 14 Indicator light Indicator light 5 1 3 5 1 3 32.5 29.5

4 port) 74.5 66.5 8.5 PE port 23 13.5 SMC 16 16 M5-2 ports 12, 14 port 1/8-2 ports 2, 4 port 1/8 1 port 1/8-2 ports 3, 5 port EVS1-02-FG-D-M0 EVS1-02-F G-D-M0 H J I 136 149 68 21.5 (14 port) 68 21.5 (12 port) 21.5 (14 port) 21.5 (12 port) 8.5 (4 port) 8.5 (2 port) 8.5 (4 port) 8.5 (2 port) 14 4 2 12 14 4 2 12 12 12 25 34 34 18 18 25 14 14 Indicator light Indicator light 5 1 3 5 1 3 32.5

V 12 V IC circuit 5 V, 12 V Relay, PLC Diagnostic indication (2-color indicator) Yes Grommet 24 V 12 V IC circuit 5 V, 12 V Water resistant (2-color indicator) M9PAV1 M9PA1 M9BAV1 M9BA1 12 V 3-wire (NPN equivalent) Grommet 24 V A96V A96 IC circuit 5 V Yes A93V2 A93 A90 IC circuit 100 V Relay, PLC 2-wire 12 V A90V No 100 V or less 1 Water resistant type auto switches can be mounted

4 port) 74.5 66.5 8.5 PE port 23 13.5 SMC 16 16 M5-2 ports 12, 14 port 1/8-2 ports 2, 4 port 1/8 1 port 1/8-2 ports 3, 5 port EVS1-02-FG-D-M0 EVS1-02-F G-D-M0 H J I 136 149 68 21.5 (14 port) 68 21.5 (12 port) 21.5 (14 port) 21.5 (12 port) 8.5 (4 port) 8.5 (2 port) 8.5 (4 port) 8.5 (2 port) 14 4 2 12 14 4 2 12 12 12 25 34 34 18 18 25 14 14 Indicator light Indicator light 5 1 3 5 1 3 32.5 29.5

R 12 R 12-1 12-2 1 AC100V AC200V INOUT IDF22E/37E/55E-**-R 10A 30mA IDF75E-**-R 15A 30mA IDF Series 12-1 12 1 IDX-OM-W026 12 R 12-3 L01,L02,L03 M5 L03 L02 L01 9.5mm 2 1.25mm () L ,N N L () () M5 () 9.5mm 2 1.25mm M4 () (M3) L1 L2 PE L3 M3 6.5mm 2 1.25mm 12-4 () () ONOFF 12-5 R 6-4 6-3 T 13-6 13-3 IDF Series 12-3 12 2 IDX-OM-W026 13 T 13 T 13-1 IEC 13-2

16 20 24 1500 2000 2500 3000 1,000 2,000 3,000 Max. speed Vmax (mm/s) Graph 3:40 40 8 10 1/4, 3/8 h=0.7 6 500 30 0.5 40 (3/8) 12 18 24 30 36 1000 1500 2000 2500 3000 3/8 12 3/8 12 3/8 12 3/8 12 3/8 12 0.1 0.3 20 10 Note) Refer to p.4.10-5 for max. absorbed energy since cushioning ability may in some cases exceed the allowable cushioning ability if the cylinder is used under high speeds and

AWD ITV Wiring diagram Current signal type Voltage signal type VBA Brown Brown VE Blue Blue Vs Vs White White VY Black Black A Vin G 24V DC 12 to 15V DC 4 to 20mA DC 0 to 20mA DC Vs: Power supply Vs: Power supply 24V DC 12 to 15V DC 0 to 5V DC 0 to 10V DC AL Vin: Input signal A : Input signal Preset input type Brown Blue S1 White Vs Black S2 Vs: Power supply 24V DC 12 to 15V DC One of the

10 M6 x 1 8 5.5 6.5 M6 x 1 12 25 56 45 11 14 13 12 M8 x 1.25 10 6.5 7.5 M6 x 1 12 32 68 56 12 18 15 13 M10 x 1.5 12 7 8.5 M8 x 1.25 16 40 79 65 14 22.4 19 16 M12 x 1.75 15 8 10 M10 x 1.5 20 50 85 70 15 28 24 21 M16 x 2 20 9.5 11.5 M12 x 1.75 24 63 95 77 18 35.5 31 27 M20 x 2.5 24 11.5 14 M16 x 2 24 80 109 88 21 45 39 36 M27 x 3 33 15 17 M18 x 2.5 27 100 132 106 26 56 48 41 M30 x 3.5 36 17.5

I1 = 0.03 x (0.02 + 0.01)/12 = 1.25 x 10-kgm I2 = 0.006 x (0.005 + 0.005)/12 + 0.006 x 0.007 = 0.32 x 10-kgm I = 1.25 x 10+ 0.32 x 10-6 I1 = m x (a + b)/12 I2 = m x (a + b)/12 + m x H I = I1 + I2 Inertial moment = 1.57 x 10-kgm Kinetic energy 6 1/2 x I x Allowable energy = 2 /t (: Terminal angular velocity) : Rotation angle (rad) 1/2 x 1.57 x 10-6 x (2 x ( /2)/0.2) Confirm that the load's