SMC Corporation of America
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Search Results "ISE77G-02-L2-MLB"

A B L L2 MM R1 R2 U L2 MM L1 NDd9 3 NDH10 3 NX Part no.

L2 Pin hole B = (0.045 + L2 x 0.0016) [mm] 8-19-59 Series MGPA Plate Displacement Amount (Reference values) Load from lateral direction Displacement (mm) MGPA12 MGPA32/40 0.4 0.8 Plate displacement amount (mm) Plate displacement amount (mm) 0.35 0.7 MGP MGPA12-250 MGPA12-250 MGPA -400 32 40 MGPA -400 32 32 40 40 0.3 0.6 MGPA -300 32 40 MGPA -300 32 32 40 40 0.25 0.5 MGPA12-150 MGPA12-100

L2 Model Applicable floating joint MGZR20 MGZR25 MGZR32 MGZR40 MGZR50 MGZR63 MGZR80 JB40-8-125 JB63-10-150 JB80-16-200 JB100-20-250 JB140-22-250 27 Series MGZ/MGZR Specific Product Precautions 2 Be sure to read before handing.

-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.

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com m1 m2 m3 Moment (Nm) M3 = F3 x L3 F3 M1 = F1 x L1 F1 M2 = F2 x L2 F2 L1 L2 L3 1.

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com CX Load weight (kg) Dm1 -X 20m2 m3 Moment (Nm) Data M3=F3 x L3 F3 F2 M1=F1 x L1 F1 M2=F2 x L2 L2 L1 L3 1.

D L1 L2 LPV21/22-mm-T3(A)-m 3.5 2.2 6.8 LPV21/22-mm-T4(A)-m 4.5 2.8 6.6 LPV21/22-mm-T6(A)-m 6.5 3.5 6 4 LPV Series Specific Product Precautions 1 Be sure to read this before handling the products. Refer to the back cover for safety instructions.

0 1 Body PVC 2 Housing PVC LVW LVW q 3 Poppet PTFE w 4 Union end PVC LQ1 5 Union nut PVC 6 O-ring EPDM FKM LQ3 7 O-ring EPDM FKM 8 O-ring EPDM FKM LVN 9 O-ring EPDM FKM 10 O-ring EPDM FKM LQHB OUT TL TIL TLM TILM Dimensions TD TID TH TIH D3 D2 D1 IN L1 L2 L4 L3 L1 2 x Rc1/8 (NPT1/8) Pilot port PA PB Dimensions (mm) Part no.

JMB W2 W1 Current product (Compared with the current product (MB)) W: Width L: Overall length Weight Bore size [mm] Current product W1 [mm] JMB W2 [mm] Current product L1 [mm] JMB L2 [mm] Current product [kg] JMB [kg] 32 46 42 235 209 0.59 0.43 40 52 48 239 214 0.84 0.64 45 52 214 0.68 50 65 60 256 229 1.43 1.00 56 65 229 1.09 63 75 70 256 235 1.69 1.28 67 75 235 1.51 80 95 88 290 258 2.95

Dimensions for installation n: number of valve stations n L 1 2 3 4 5 6 7 8 L1 120.7 136.7 152.7 168.7 184.7 200.7 216.7 L2 80 96 112 128 144 160 176 n L 9 10 11 12 13 14 15 16 L1 232.7 248.7 264.7 280.7 296.7 312.7 328.7 344.7 L2 192 208 224 240 256 272 288 304 (mm) The above table shows dimensions as an example for the SY5000 series valve manifold.

L2 = 21 x m + 89.8 L1 = 10.5 x n + 45 Do not operate in an atmosphere containing flammable or explosive gases. Fire or an explosion can result. This product is not designed to be explosion proof. Default settings At the time of factory shipment, the product is in "Remote Control Mode" and set to "Enable DHCP".

. 2. 3. 1. 2. 3. 4. 3 *3) 1 1.5 3) 1 1 () 4 1 1-1 MXQ6 MXQ8 MXQ12 MXQ16 MXQ20 MXQ25 1) 2) ( ) 3) 4) / / 2 ,3 ) 2 2 ,3 ) 1) 1 2) 20 ,0.150.6MPa 3) MXQ25(A)-150,MXQ6B-50,75MXQ8B-75,100MXQ16B-100,150MXQ20B-125,150 300mm/s 4) MXQ**B 50200mm/S 1 (MPa) MXQ8(A,C) 0.3 MXQ8B 0.3 MXQ12(A,C) 0.3 MXQ12B 0.3 MXQ16(A) 0.2 MXQ16B 0.2 MXQ20(A) 0.2 MXQ20B 0.2 MXQ25(A) 0.2 5 2. 2-1 ,2 L1 L2

/ mm mm mm c.p.m. mm(L1-L2) (L1) (L2) g MHL2-10D 60 20 56 76 280 MHL2-10D1 40 78 118 345 10 40 MHL2-10D2 60 96 156 425 MHL2-16D 60 30 68 98 585 MHL2-16D1 60 110 170 795 16 40 MHL2-16D2 80 130 210 935 MHL2-20D 60 40 82 122 1,025 MHL2-20D1 80 142 222 1,495 20 40 MHL2-20D2 100 162 262 1,690 MHL2-25D 60 50 100 150 1,690 MHL2-25D1 100 182 282 2,560 25 40 MHL2-25D2 120 200 320 2,775 MHL2-32D

In-line Type Applicable tubing O.D. d Inch Size Metric Size Applicable tubing O.D. d Applicable tubing O.D. d Model Weight D1 D2 L1 L2 M1 L3 Max. Min. (g) Model Weight D1 D2 L1 L2 M1 L3 Max. Min.

MHL MHR Model/Stroke Opening/Closing stroke (mm) L2 L1 Weight (g) Max. operating frequency (c.p.m.)

Weight (g) D1 D2 L1 L2 A M Nylon Urethane M5 X 0.8 M6 X 1.0 22.5 23 24 KXL04-M5 KXL04-M6 KXL04-01S KXL06-M5 KXL06-M6 KXL06-01S KXL06-02S KXL08-01S KXL08-02S KXL08-03S KXL10-02S KXL10-03S KXL10-04S KXL12-03S KXL12-04S 8 11 4 10.4 13 16 2.5 3.5 3.5 22 12 16 1 8 M5 X 0.8 M6 X 1.0 24 23.5 24 25 28 29 32 33 38 39 42 40 43 25 2.5 3 3.5 5.0 3.5 5.0 8 26 15 12.8 15 24 17 6 28 20 26 28 34

L1 L2 2. Do not gouge or scratch the mounting surfaces of the rod cover and head cover. Parallelism of the mounting surfaces will be degraded, causing increased operating resistance and wear of the bearings, etc. 3.

L1 FB1 = WS (1+ ) FB allowable L1 L2 FB1 allowable 32 62.5 34.5 + st 80 N 40 74.0 39.0 + st 125 N 50 76.0 44.5 + st 195 N 63 91.0 44.5 + st 310 N 80 93.0 53.0 + st 500 N 100 104.0 57.5 + st 785 N e.g. 63mm bore, 100mm stroke, Ws = 20N Ws = (2kgs) 20N 144.5 91 FB1 = 20 (1+ ) = 51.76N Replacement parts: Seal kits 32 includes order No. from to , 40 100 includes from to FB1 = 51.76N 310N

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 1. Maximum allowable load (1), static moment (2), and dynamic moment (at the time of acceleration/deceleration) (3) must be examined for the selection calculations.