SMC Corporation of America
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Search Results "53-SY5220-L3-01T-F2"

152 17 6 198 187.5 168 15 7 210.5 200 184 13.5 9 248 237.5 216 16 10 260.5 250 232 14 (mm) (mm) 17 373 362.5 344 14.5 Stations L1 L2 L3 L4 11 273 262.5 248 12.5 12 298 287.5 264 17 13 310.5 300 280 15.5 14 323 312.5 296 13.5 15 335.5 325 312 12 16 360.5 350 328 16.5 18 385.5 375 360 13 19 398 387.5 376 11 20 423 412.5 392 15.5 8 210.5 200 184 13.5 Stations L1 L2 L3 L4 10 248 237.5 216 16

A 1.18 (30) 1.61 (41) B 1.34 (34) 1.57 (40) C D E F G 136314 2.76 (70) 2.97 (75.5) .21 (5.4) .26 (6.5) .61 (15.4) .31 (8) 2.17 (55) 2.09 (53) .09 (2.3) .09 (2.3) NARM2500 43.5 136414 NARM3000 30 15 Precautions 0 35.3 70.6 106 Be sure to read before handling.

L1 L2+A5 L3 Kinetic Energy 2 1 V 2 E = W () 2 1000 Collision speed V = 1.4 Va 1 420 2 E = x 1 () = 0.088 2 1000 Find the kinetic energy E (J) of the load. ) Correction factor (Reference values) V = 1.4 x 300 = 420 Ea = K E max Find the allowable kinetic energy Ea (J). Confirm that the kinetic energy of the load does not exceed the allowable kinetic energy.

B C D E F G H I J K L M N O P Symbol Model A ITVH ARM2500 ARM3000 6 17 44 56 42 126.5 58 45 17 21 38 42 29 48 68 33.5 ITVX 7 21 54 68 55 153.5 70 53 23.5 27.5 48.5 55 35 59 85.5 42.5 PVQ Manifold stations Dimensions by the Number of Stations 10 Model Symbol VY1 9 8 7 6 5 4 3 2 L1 454 412 370 328 286 244 202 160 118 VBA VBAT ARM2500 L2 442 400 358 316 274 232 190 148 106 L3 420 378 336 294

Actuation: 2 (2-Position Double), Electrical Entry: LL (L-type Plug Connector w/Cover), Lead Wire Length: 100 (10000mm, Semi-standard), Manual Override: Non-locking Push Type, A,B Port: 01 (1/8), Thread Type: T (NPTF), Bracket: F2 (w/Side Bracket)

Actuation: 2-Position Double, Electrical Entry: L-type Plug Connector w/Cover, Lead Wire Length: 10000mm, Semi-standard, Manual Override: Non-locking Push Type, A,B Port: 1/8, Thread Type: NPTF, Bracket: w/Side Bracket

53 53 74 74 74 3.7 3.7 3.7 7.4 7.4 7.5 Weight values are for the minimum T dimension (symbol 1) in each standard T dimension.

Pitch moment Roll moment NO NO M1 = W1 x L1 M2 = W3 x L3 L1 L3 YES The product is operatable at 14.5 mT or less magnetic field ? Is there any influence from magnetic fields ? (Refer to Caution on Handling on pages 706 and 707.) M1 M2 YES W1 NO W3 NO M1 = W4 x L3 M2 = W1 x L2 Do not use it since it will result in a miscount. L3 L2 YES Is water, oil, burr or dust present?

Weight (g) d T H D1 D2 D3 L1 L2 L3 Model 4 ASD230F-M5-04 9.3 29.4 12 17.5 12.9 25.5 28.6 25.8 10 9.6 7.8 11.7 M5 x 0.8 28.3 8 25 22.2 6 ASD230F-M5-06 11.6 32.5 13 13.7 20.6 6 34.6 ASD330F-01-06S 14 39.6 11.6 29 13.7 38.5 22.9 36.1 31.1 11.8 14.2 10.6 R 1/8 12 32.1 27.1 15.8 8 33.9 ASD330F-01-08S 38.9 15.2 31 18.5 44.8 28.2 6 ASD430F-02-06S 12.8 53 17 43.5 25.2 18 8 ASD430F-02-08S 36.7 41.7

L3 M M D2 D2 L1 L1 L4 L4 H H (Width across flats) (Width across flats) D3 D3 A1 L5 L5 A1 A2 D1 D1 A2 T T Inch L4 L5 A1 A2 M MAX.

L Dimension (mm) n (stations) Dimension 2 3 4 5 6 7 8 9 10 L1 44 66 88 110 132 154 176 198 220 L2 53 75 97 119 141 163 185 207 229 L3 62 84 106 128 150 172 194 216 238 2 stns. x 1 Manifold composition 2 stns. + 3 stns. 2 stns. x 2 + 3 stns. 2 stns. + 3 stns. x 2 2 stns. x 2 + 3 stns. x 2 3 stns. x 1 2 stns. x 2 3 stns. x 2 3 stns. x 3 Note) Manifold base is consisted of the junction of 2

L dimensions n (stations) Dimensions 3 8 9 2 6 10 4 7 5 L1 66 176 198 44 132 220 88 154 110 L2 75 185 207 53 141 229 97 163 119 L3 84 194 216 62 150 238 106 172 128 Manifold composition 3 stns. x 1 2 stns. + 3 stns. x 2 3 stns. x 3 2 stns. x 1 3 stns. x 2 2 stns. x 2 + 3 stns. x 2 2 stns. x 2 2 stns. x 2 + 3 stns. 2 stns. + 3 stns.

73 93 112.5 123 4 72 83 103 125 135.5 5 82 93 113 137.5 148 6 92 103 123 150 160.5 7 102 113 133 162.5 173 8 112 123 143 162.5 173 9 122 133 153 175 185.5 10 132 143 163 187.5 198 L1 L2 (L3) (L4) (L5) 10 Base Mounted Plug-in SI Unit Series VQ100 VV3Q11-X11 (L5) (L4) (L3) L2 L2 (5.5) (35.0) (45.0) (23.5) (12.3) (21.5) Manual Override D Side U Side 1 2 3 4 5 n 2-M5x0.8 (E Port) 2-M5x0.8 (P

L dimensions n (stations) Dimensions 3 8 9 2 6 10 4 7 5 L1 66 176 198 44 132 220 88 154 110 L2 75 185 207 53 141 229 97 163 119 L3 84 194 216 62 150 238 106 172 128 Manifold composition 3 stns. x 1 2 stns. + 3 stns. x 2 3 stns. x 3 2 stns. x 1 3 stns. x 2 2 stns. x 2 + 3 stns. x 2 2 stns. x 2 2 stns. x 2 + 3 stns. 2 stns. + 3 stns.

LECSB1: Single phase 100 to 120 VAC, 50/60 Hz Connection terminal: L1,L2 LECSB2: Single phase 200 to 230 VAC, 50/60 Hz Connection terminal: L1,L2 Three phase 200 to 230 VAC, 50/60 Hz Connection terminal: L1,L2,L3 Do not connect. L1 L2 L2 Main circuit power supply L3 L3 Regenerative converter N P1 P2 N DC reactor Connect between P1 and P2. (Connected at time of shipping.)

J E C T O R M A N I F O L D (N)ZZM B NUMBER OF STATIONS 01 ... 1 Station 02 ... 2 Stations to 10 ... 10 Stations EXHAUST PORT 04 ... 1/2 06 ... 3/4 PORT THREAD Nil ...PT* Remove (N) when ordering T .NPTF Fitted with an Optional Silencer Series NAN: see section Air Preparation Accessories n 1 2 3 4 5 6 7 8 9 10 L1 28 44 60 76 92 108 124 140 156 172 L2 40 56 72 88 104 120 136 152 168 184 L3

F2: The force that is ceated by the port A pressure (PA) that passes through the feedback passage and acts on the spool surface, and the spring force. OFF state { A R1 (Exhaust air) P B (Supply air) F1 < F2 condition: See figure q. ON state { { Immediately after turning on F1 > F2: See figure e.

F2: The force that is ceated by the port 4 pressure (PA) that passes through the feedback passage and acts on the spool surface, and the spring force. VER VEA 5 (R1) 4 (A) 1 (P) 2 (B) VY2 OFF state VBA VBAT F1 < F2 condition: See figure q. 2 (B) 3 (R2) AP100 4 (A) ON state Immediately after turning on F1 > F2: See figure e.

-X 20m2 m3 Data Moment (Nm) M1 = F1 x L1 F1 F2 M3 = F3 x L3 F3 M2 = F2 x L2 L1 L2 L3 Maximum Load Weight Select the load from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes be exceeded even within the operating limits shown in the graphs. Therefore, also check the allowable moment for the selected conditions.

MY1 HT m2 m3 MY1 W MY1 W Moment (Nm) M3=F3 x L3 F3 F2 M1=F1 x L1 F1 M2=F2 x L2 MY2C L2 L1 L3 Maximum Load Mass MY2 H/HT Select the load from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes be exceeded even within the operating limits shown in the graphs. Therefore, also check the allowable moment for the selected conditions.