Inch Size Applicable tubing O.D. d Applicable tubing O.D. d T D1 D2 D3 L1 L2 L3 M1 L4 (3) A (2) D1 D2 L1 L2 L3 L4 (3) A (2) Weight (g) H (1) Weight (g) H (1) T M1 Model Model Min.
M1 = W1 x L1 M2 = W3 x L3 Dynamic Moment CV NO L3 L1 NO Moment generated by impact load at stroke end Reference formula [Dynamic moment at impact] Use the following formula to calculate dynamic moment when shock for stopper collision impact is taken into consideration. M1 MVGQ YES The product is operatable at 14.5 mT or less magnetic field ?
26 30 37 37 46 51 146 163 179 194 218 233 190 213 244 259 300 320 46 52 65 75 95 114 32.5 38 46.5 56.5 72 89 15 17 24 24 30 32 4 4 5 5 5 5 32 40 50 63 80 100 1.11-7 Series C95 With Mounting Bracket Foot L Centre Trunnion T Flange F Mounting at the back Mounting at the front Rear single clevis C Rear double clevis D Bore (mm) Z E1 R W MF ZF FB CD EB L XD UB CB EW MR TR AO AT XA SA AH AB L1
MHL MHR Model/Stroke Opening/Closing stroke (mm) L2 L1 Weight (g) Max. operating frequency (c.p.m.)
VSA4320, VSA4420 Applicable valve Manifold weight general equation M = 0.66n + 0.75 (kg) n: Station VVSA430N Dimensions (mm) n L L2 256 L1 214 2 stations 326 284 3 stations Pilot hole 396 354 4 stations 466 424 5 stations 70n + 116 70n + 74 n stations VSA4130, VSA4230 VSA4330, VSA4430 Applicable valve 4-10.5 mounting hole Manifold weight general equation M = 0.87n + 0.95 (kg) n: Station
Load weight (kg) m1 m2 m3 Moment (Nm) M1=F1 x L1 F1 F2 M3=F3 x L3 F3 M2=F2 x L2 L1 L2 L3 Maximum load weight
Do not short-circuit these terminals. [1] Main circuit power input terminals, L1, L2 and Control power input terminals, L1, L2: Connect the 200VAC external power supply to the power supply. Refer to the power supply specification for the size of the acceptable electric wire. [2] Connect the motor cable (U, V, W) to the servomotor connection terminals (U, V, W).
MAKER MADE IN IDF Series i-2 i-5 IDX-OM-W026 i i-3 HFC IDF Series i-3 i6 IDX-OM-W026 i i-4 / 1 1.5 () IDF Series i-4 / i7 IDX-OM-W026 1 1 1-1 OUT IDF22E75E IN (ONOFF ) (EVAPORATING TEMP) 5-2 IDF22E-20, IDF37E-20 IDF22E-30, IDF37E-30, IDF55E-30, AC200V IDF75E-30 AC200V L N PE L1 L2 L3 PE M3 M3 1.25-3 1.25-3 (6.5mm ) (6.5mm ) IDF Series 1-1 1 1 IDX-OM-W026 1 IDF22E75E OUT
IEC 11-2 AC200V / 2A DC24V / 2A ( 20V / 3mA) 11-3 ON ON/OFF 3 3 5 ( ) 11-1 IDU Series 11 1 IDX-OM-W029 11 T 11-4 1) 2) 3) 4) 1 2 3 PE L.N: PE: L2 1 2 3 PE L3 L1 LN Alarm Running LN PE PE:Ground LN L1,L2,L3: PE PE M3 6.5mm 2 :1.25mm :17 11-5 3 5-2 IDU55E/75E-23 11-4 IDU Series 11 2 IDX-OM-W029 11 T 11-6 IDU22E-23-T IDU37E-23-T GFCI For Option R GFCI R Operation
MY1B m2 m3 Moment (Nm) MY1M M1 = F1 x L1 F1 M2 = F2 x L2 M3 = F3 x L3 F3 F2 MY1C L2 L1 L3 MY1H 4. Accuracy Mechanically jointed rodless cylinders do not guarantee traveling parallelism. When accuracy in traveling parallelism and intermediate stroke position is required, please contact SMC sales representatives.
(mm/s) M: Static moment (Nm) = 1.4a (mm/s) FE = agm Note 4) 1.4 100 m 1 3 ME = FEL1 = 0.05a m L1 (Nm) FE L1 ME Note 4) a is a dimensionless coefficient for calculating impact force. 1.4 100 1 3 Note 5) Average load coefficient (= ): This coefficient is for averaging the maximum load moment at the time of stopper impact according to service life calculations. 3.
L2 L3 VN LVC 1 Stations D side U side 2 3 4 5 n LVA LVH LVD LVQ 21 5.5 LQ H H P = J 2 N-1/4 N-1/8 : Thread type LVN (pitch) TI/ TIL L Dimension (mm) PA n (stations) Model Dimensions 2 3 4 5 6 7 8 9 10 PAX L1 69 103.5 138 172.5 207 241.5 276 310.5 345 VV2CS2 L2 81 115.5 150 184.5 219 253.5 288 322.5 357 PB L3 93 127.5 162 196.5 231 265.5 300 334.5 369 L1 77 115.5 154 192.5 231 269.5 308 346.5
L2 L3 16 D side U side Stations 1 2 3 4 5 n 21 5.5 N-1/4 N-1/8 : Thread type H H P = J (pitch) 2 L dimensions (mm) n (stations) Model Dimensions 3 5 8 4 6 10 7 2 9 103.5 172.5 276 138 207 345 241.5 L1 69 310.5 VV2CS2 115.5 184.5 288 150 219 357 253.5 L2 81 322.5 127.5 196.5 300 162 231 369 265.5 L3 93 334.5 115.5 192.5 308 154 231 385 269.5 L1 77 346.5 VV2CS3 127.5 204.5 320 166 243 397
Number of mounting holes (N) = (L3/12.5 + 1): Decimal fractions are truncated DIN rail overall length (L1) = N x 12.5 + 23 [mm] Mounting screw length (L2) = L1 10.5 [mm] Rail length on one side (L4) = (L1 L3)/2 [mm] C1 Value Selection Separate wiring type 45 33 A NA Connector box type 4586 D-sub connector 25 pin type 45F 45P Flat cable type 54 Courtesy of Steven Engineering, Inc.-230 Ryan
Model T1 T2 D L1 L2 L3 XTO-2571-02 Rc1/4 52 52 21 57 XTO-2571-03 Rc3/8 XTO-1239-02 Rc1/4 84 80 37 79 XTO-1239-03 Rc3/8 Rc1/4 XTO-1239-04 Rc1/2 XTO-1719-06 Rc3/4 98 98 40 90 XTO-1719-10 Rc1 !
L2 L3 L4 A Model d T Weight (g) H D1 D2 L1 L2 L3 L4 A Max.
M1 M1 Applicable tubing O.D.: 3.2, 4, 6 1/8", 5/32" 2 x Applicable tubing O.D. d Front view Right side view Metric Size Model Applicable tubing O.D. d D1 Release button D2 D3 D4 D5 L1 L2 L3 L41 L5 L6 L7 L8 M1 W1 W2 X1 X2 Weight [g] X(X) Y Max.
(Not included.) 12 Series CG5-S Accessory Dimensions Single knuckle joint Double knuckle joint Material: SUS440 (pin) SUS304 (bracket, snap ring) Material: SUS304 MM ND hole H10 MM ND hole H10 L RR1 RR1 E1 E1 A L1 U1 A1 NX L1 U1 A1 NZ NX A (mm) (mm) Part no. Applicable bore size (mm) E1 Part no. Applicable bore size (mm) E1 Applicable pin no.
Keeper plate Rod end nut 30 d 2 x d L1 0.2 B D C m T H H B Material: Carbon steel Material: Rolled steel Rod series Bore size (mm) Bore size (mm) Cap bolt L1 d H T B m Part no.
Applicable bore size A1 L1 MM NDH10 NX R1 U1 Part no. Applicable bore size Dd9 d L L1 m t Included retaining ring Part no.