MXQ MXF Lateral Mounting (Body through-hole) Lateral Mounting (Body thread) MXW MXJ MXP L1 L L1 MXY MTS L1 12.7 15.6 20.6 24.0 Bolt M3 x 0.5 M4 x 0.7 M4 x 0.7 M5 x 0.8 Maximum tightening torque (Nm) 1.1 2.5 2.5 5.1 Model MXH6 MXH10 MXH16 MXH20 L1 12.7 15.6 20.6 24.0 L 9.4 11.2 16.2 16.0 Maximum tightening torque (Nm) 2.5 5.1 5.1 8.1 Bolt M4 x 0.7 M5 x 0.8 M5 x 0.8 M6 x 1 Model MXH6 MXH10
Connecting thread T L2 Uni thread H D1 D2 L1 L2 L5 A Max.
Dimensions LLHAStations 4 x Mounting hole for W Y K A D E L2 L1 N Non-locking type Locking type L3 G 60 (H1) (H2) C SMC SMC SMC SMC V 1/4 1/4 1/4 U 3/8 Pitch = B 2 x P port n x A port (mm) Dimensions (mm) A G D E C U Y W V N K H2 H1 B Model LLH2A LLH3A LLH4A Station 5 4 3 2 Model 10 67 19 65 19 5.5 M4 34 27 18 87 85.5 31 46.5 Symbol L1 L2 L3 L1 L2 L3 L1 L2 L3 19 76 27.5 94.5 27.5 6.5 M5 47
Distance from Top of Auto Switch l1 80 70 Safety distance (mm) 60 Operable range 50 40 l1 30 l1 20 Dangerous range 10 0 0 5000 10 15000 20 Welding current (A) l2 80 70 Safety distance (mm) 60 50 Operable range 40 l2 l2 30 20 10 Dangerous range 0 0 5000 10 15000 20 Welding current (A) 1314 Series CKQ /CLKQ Specific Product Precautions 7 Be sure to read before handling.
entry (5m) Electrical entry (5m) Bracket 34 L2 34 L1 Bracket 34 (18) Deflection level indicator 10 10 Rc1/8 SUP.
R 1/4 R 1/4 R 1/4 R 1/4 14 14 14 14 20 20 20 20 14 14 14 14 D 2 A Connection thread H1 L1 Copper extension nozzle: KNL (mm) Model Nozzle size D Outside diameter L1 Outside diameter KNL3-06-150 KNL3-06-200 KNL6-06-150 KNL6-06-200 1.5 2 1.5 2 6 6 6 6 300 300 600 600 D L1 Note) When a copper extension nozzle is ordered separately, a self-align fitting will also be required for connection with
) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Rc, NPT, G 1/8 24 36 36 n Stations 1 Left Right 1 46 2 84 38 3 122 38 76 4 160 76 114 5 198 114 152 6 236 152 190 Stations L1 L2 L3 63(Max. 65) 34 5 17 Detection port 19 For the bracket attachment position, refer to page 16-8-16.
VDW 2 0 1 C1 1 VC OUT (2) VDW Series Lead wire length 1 2 3 10 20, 200 30, 300 300 mm 600 mm Nil L1 (1) IN 2 Port Valve VQ Note) Note) Type L1 is optional.
entry (5m) Electrical entry (5m) Bracket 34 L2 34 L1 Bracket 34 (18) Deflection level indicator 10 10 Rc1/8 SUP.
VDW 2 0 1 B 1 Series Lead wire length OUT (2) 1 2 3 10 20, 200 30, 300 300mm 600mm Nil L1 Note) Note) Type L1 is optional. (1) IN 2 port valve Voltage Type Note 1) Maximum operating pressure differential MPa (psi) 1 2 3 4 5 6 100VAC 200VAC 110VAC 220VAC 24VDC 12VDC Orifice size mm B C1 C2 20, 200 10, 30 300 Model Pressure port 2 Note 1) Pressure port 1 1 0.4 (58) 0.9 (130.5) VDW10 1.6 0.2
The right side of the common port provides plug. 4.1-15 VVX21/22/23 Dimensions Common SUP Individual SUP n Mark L1 L2 L1 L2 Model 2 100 86 126 108 3 136 122 172 154 4 172 158 218 200 5 208 194 264 246 6 244 230 310 292 7 280 266 356 338 8 316 302 402 384 9 352 338 448 430 10 388 374 494 476 VVX22m VVX23m VVX21m Grommet Electrical entry Model A B D E F H J K M N Conduit S 39 41.5 44 Conduit
Load mass (kg) m1 m2 Moment (Nm) m3 M3 = F3 x L3 F3 F2 M1 = F1 x L1 F1 M2 = F2 x L2 L2 L1 L3 Calculation of Guide Load Factor 1) Maximum load mass (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. To evaluate, use a (average speed) for (1) and (2), and (collision speed = 1.4a) for (3).
VQ 1M1 2 3 X2 17-2-89 Series VQ20/30 Dimensions Plug lead unit manifold (VV2Q22) Mounting hole 2-4.5 through A port C6: One-touch fitting for 6 C8: One-touch fitting for 8 DIN rail mounting 4-M3 x 0.5 Formulas L1 = (n 1) x 29 + 49 L2 = L1 10 L3 = L4 10.5 L5 = L1 11.2 Dotted line: DIN rail mounting (-D) 1 2 3 4 5 6 7 8 9 10 Dimensions n: Station (Max. 20) L n 11 12 13 14 15 16 17 18 19
S l =280 (X) l =300 2.5 (N) E C D G Q SMC SMC C A B 16 L1 L2 L3 L3 1 Stations D side U side 2 3 4 5 n 21 5.5 H H P = J N x 1/4 N x 1/8 : Thread type 2 (pitch) L Dimension (mm) n (stations) Model Dimensions 3 4 5 6 7 8 9 10 2 L1 350 70 105 140 175 210 245 280 315 VV2CS2 L2 362 82 117 152 187 222 257 292 327 L3 374 94 129 164 199 234 269 304 339 L1 390 78 117 156 195 234 273 312 351 VV2CS3
= m N a 1 ME = N FE N L1 (NNm) 3 The graph value is for calculating the guide load factors.
[mm] L1 [mm] L1 [mm] m 150 300 L1 100 200 50 100 0 0 Pitching 0 1 2 3 4 5 Work load m [kg] Work load m [kg] Work load m [kg] 0 0.2 0.4 0.6 0.8 1 0 0.5 1 1.5 2 2.5 3 300 0 50 100 150 200 250 300 350 600 L2 250 500 200 400 L2 [mm] L2 [mm] L2 [mm] 150 300 Mep 100 200 50 100 m 0 0 0 0.2 0.4 0.6 0.8 1 0 1 2 3 4 5 0 0.5 1 1.5 2 2.5 3 Work load m [kg] Work load m [kg] Work load m [kg] 300 0 50
A1 + Stroke CJ5 CG5 HY C M Rod End Male Thread (mm) Bore size A1 72 75 MM M6 x 1.0 M8 x 1.25 20 25 B1 10 13 C1 10 12 H1 3.6 5 K 5 5 KA 6 8 L1 22 24 X 12 14 (mm) Bore size A 60 61 H M4 x 0.7 M5 x 0.8 20 25 B 50 51 C 8 10 D 8 10 E 33 40 F 6 6 I 42 50 K 5 5 KA 6 8 L 10 10 M 22 26 N 4.4 5.4 OA M5 x 0.8 M6 x 1.0 Q 14 14 R 10 10 Stroke range 50 or less 50 or less DNote 1) Refer to pages 885 to
L3 Max. 1 4 1 2 L1 L2 D Min. L3 Max.
Pivoting Nozzle with Self-Align Fitting / KNK (mm) Model Nozzle diameter D Connection size L1 L2 With across flats H1 H2 H3 17 19 24 27 KNK-10-600 KNK-12-600 KNK-16-600 KNK-20-600 10 12 16 20 6 6 6 6 17 17 17 17 17 17 24 27 17 17 17 17 41.7 41.2 41.8 43.8 35 D H3 H1 H2 L1 L2 8.5 Pivoting Nozzle with Male Thread / KNK (mm) Model Nozzle diameter D Connection size L1 A With across flats H1 H2