load (kg) a : Work piece acceleration (mm/s) Me: Dynamic moment L : Overhang to work piece center of gravity (mm) a = 2000 m 1000 L1 a = 3000 0 10 20 30 Transfer load m (kg) 600 L2 400 Mer m 200 L2 Mer 0 10 20 30 m Transfer load m (kg) 2000 a = 1000 L3 1000 a = 2000 m a = 3000 Mey a 0 10 20 30 Transfer load m (kg) Refer to page 145 for deflection data. 16 17 Courtesy of Steven Engineering
Dimension Formula L n 10 9 8 7 6 5 4 3 1 2 P , R1, R2 port n: Stations L1 = 56n + 64 L2 = 56n + 80 n: Stations L1 = 56n + 90 L2 = 56n + 106 L1 624 568 512 456 400 344 288 232 120 176 1/2 L2 640 584 528 472 416 360 304 248 136 192 L1 650 594 538 482 426 370 314 258 146 202 3/4 L2 666 610 554 498 442 386 330 274 162 218 ( ): 3/4 Dimensions inside are for rubber seals. 3-10-28 29 ISO Standard
Molded cover L Seal (Length) 2 x M2.6 x 0.45 16 44 8 (2.4) 015 Connector JBZ-25S-3 made by J.S.T. Mfg. Co., Ltd. Connector hood L Terminal no.
N-04 N-06 L-04 L-06 S-04 S-06 LL-04 LL-06 4 6 N-08 8 N-10 10 N-12 12 4 6 L-08 8 L-10 10 L-12 12 4 6 S-08 8 S-10 10 S-12 12 4 6 LL-08 8 LL-10 10 LL-12 12 Precautions Be sure to read before handling.
AS 0 0.1 0.15 0.2 0.25 0.3 Return stroke pressure (MPa) ASP ASN v v w w a a o o l l v v l l F F e e AQ ASV u u r r e e s s v v s s a a e e l l v v r r P P e e AK ASS ASR ASF Working stroke Working stroke Return stroke Return stroke Pressure valve Flow valve 15-16-1 2 Cuts air consumption by operating the return stroke at a reduced pressure.
10 11 12 13 14 15 stations Stations L1 248 273 285.5 298 323 335.5 348 L2 237.5 337.5 262.5 275 287.5 312.5 325 R R + + + + + + L3 224 320 240 256 272 288 304 L4 12 14 16.5 14.5 13 17.5 15.5 16 stations 17 18 19 20 stations Stations 7.5 L1 360.5 385.5 398 410.5 435.5 L2 350 425 375 387.5 400 L3 336 400 352 368 384 L4 12 17.5 16.5 15 13 L plug connector (L) M plug connector (M) DIN terminal
B E E F G H L L M Min. port size 2 x B L, L LQ3T11 4 3.5 10 9 4.8 9.5 11 28.5 27.5 14 2.5 LQ3T12 3 2 LQ3T21 6 4 17 16 6 12 16 34.5 33.5 20 4 LQ3T31 10 5 22.5 19.5 9 18 21 47.5 44.5 25 7.5 LQ3T32 8 6.4 LQ3T41 12 6 24 22 10 20 24 52.5 50.5 29 9.5 LQ3T51 19 7 26.5 24 14 28 32 64 61.5 37 16 LQ3T61 25 8 30 26 18 36 41 78 74 49 22 M (E, E) (E, E) G H L, L L, L (E,E): Reference dimension for the
L1 max. overhang = 22.5 mm L2: Find an L at an operating pressure of 0.5 MPa from the graph, and multiply it by 1/2. L2 max. overhang = 22.5 mm * For end plate mounting, L1 and L2 are 1/2 of the L which is found from the graph. w Confirm that L1 and L2 are lower than the max. overhang.
H E R M A N I F O L D O P T I O N S : L A T C H I N G S O L E N O I D T Y P E L A T C H I N G T Y P E V A L V E L A T C H I N G T Y P E V A L V E W I T H M A N U A L O V E R R I D E M A N I F O L D O P T I O N P A R T S A V A I L A B L E : P E R F E C T C H E C K B L O C K P E R F E C T C H E C K B L O C K W I T H V A L V E O R M A N I F O L D Courtesy of Steven Engineering, Inc. !
h Model b (h9) h (h9) l ***!
h Model b (h9) h (h9) l ***!
h Model b (h9) h (h9) l ***!
(Pitch) P = 10.5 9 (Pitch) P = 10.5 12.5 L2 3.5 L1 (Station n) (Station 1) (Station 1) (Station n) (Light/surge voltage suppressor) (Light/surge voltage suppressor) 43.5[50.5] + + + + + + + 28.1 A A B B 15 15 12 12 B B A A 3 3 1 1 (Pitch) P = 10.5 13.5 (Pitch) P = 10.5 M3 x 0.5 (A, B port) M3 x 0.5 (A, B port) 14.5 L plug connector (L) M plug connector (M) M8 connector (WO) 48 M8 x 1 30.5
C4: 4 (SMC) C6: 6 (SMC) C8: 8 (SMC) N3: 5/32" (SMC) N7: 1/4" (SMC) N9: 5/16" (SMC) L: DIN Rail Overall Length n: Stations L n 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 L1 L2 L3 L4 L5 148 160.5 185.5 198 210.5 235.5 248 260.5 273 298 310.5 323 335.5 360.5 373 385.5 410.5 423 435.5 137.5 150 175 187.5 200 225 237.5 250 262.5 287.5 300 312.5 325 350 362.5 375 400 412.5 425 120.2 136.2
load (kg) a : Work piece acceleration (mm/s) Me: Dynamic moment L : Overhang to work piece center of gravity (mm) m a = 2000 1000 L1 a = 3000 0 10 20 30 Transfer load m (kg) 600 L2 400 Mer m 200 L2 Mer 0 10 20 30 m Transfer load m (kg) 2000 a = 1000 L3 1000 a = 2000 m a = 3000 Mey a 0 10 20 30 Transfer load m (kg) Refer to page 145 for deflection data. 16 17 Courtesy of Steven Engineering
M12 52 l M12 M12 48 6 6 32.3 28.3 16 M12 31.3 31.3 l 14.9 Terminal no.
Dimensions (mm) Side ported: L1 = n x 34.5 + 4.5 L2 = n x 34.5 + 14.5 Front ported: L1 = n x 34.5 + 44.5 L2 = n x 34.5 + 54.5 L n 9 2 4 5 10 3 6 8 7 IN port direction 315 325 355 365 142.5 152.5 182.5 192.5 177 187 217 227 73.5 83.5 113.5 123.5 L1 349.5 359.5 389.5 399.5 108 118 148 158 211.5 221.5 251.5 261.5 280.5 290.5 320.5 330.5 246 256 286 296 Side ported L2 L1 Front ported L2 17-2-