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Note 2) Determination of pressure (P) when making intermediate stop P Ps P > Ps (Refer to page 1529.) (For intermediate stops, refer to page 1527.)

Standard equipped with shock absorber -X 75 100 125 150 200 250 300 20 25 32 40 50 63 80 100 20 25 32 40 50 20Series MGC P . 8-21-6 Data Series MGG V V V V V V V V V V V V V V Guide Cylinder Guide Table Cylinder with Turntable Series MGC Long stroke Bore size (mm) Standard stroke (mm) Compact type of series MGG Lightweight, space-saving 250 300 350 400 450 500 600 700 800 900 1000 1100 1200

Applicable for strong alkali-based cleaning fluid Suitable for filtering cutting fluids P.57 P.57 P.58 (For coarse filtration) (For coarse filtration) Leg Material: Stainless Steel X47 P.58 54 FGF Series Made to Order Please consult with SMC for details.

P.22~27 LJ1H202SCLC1-1B2M LJ1S20 Series. P.28~33 LJ1H202PFK LJ1S30 Series. P.34~39 LJ1H202NFK Option Specifications. P.40, 41 LC1-1B2V LJ1H202PAK Motor Reference Data, Nonstandard Motors . P.42~46 Order Made Specifications. P.47 LJ1H202NAK LJ1H303PDLC1-1B3H Dedicated Controller LC1 Series .P.49 LJ1H303NDTypical Equipment Configurations . P.50, 51 LJ1H303SELC1-1B3M LC1 Series.

= (P P) MPa Viewing the graph To generate a water flow of 4l/min at a differential pressure of 0.1MPa, an effective area with Cv factor 0.28 (VDW303) or more is required.

P = Thread pitch M3 x 0.5; M4 x 0.7; M5 x 0.8; M6 x 1 Enter the desired figures in the portion of the diagram. XA1 to XA24 are the standard products that have been additionally machined. Chamfer face of the parts machining additionally is C0.5. CRB2 2. CRBU2 L1 + (3 x P) L1 + (3 x P) Q1 = M Q1 = M 3. CRB1 L2 + (3 x P) L2 + (3 x P) 4. MSU L1 = L1 = L2 = L2 = CRJ 5.

1190 100 150 227 320 400 IDG100L-N04-P IDG100S-N04-P IDG100-N04-P IDG30L-N03-P IDG50L-N03-P IDG60L-N04-P IDG75L-N04-P IDG60S-N04-P IDG75S-N04-P IDG3-N02-PS IDG5-N02-PS IDG10-N03-P IDG20-N03-P IDG30-N03-P IDG50-N03-P IDG60-N04-P IDG75-N04-P IDG1-N02-P The membrane air dryer uses hollow fibers composed of a macro molecular membrane through which moisture passes easily, but is difficult for

A A afll-'h s-zl;lh P R P R (external pilot type) A A , A;Tt-Zb gzt;]ri! , P R P R Model Specifications Air and inert 20-100 PSI (1.5"7kgf/cm,) VAC-1 10Torr 20-1OoPS|(15-7ksflcm'?) N,lax. 120'F (50'C) 20 ms or less (7OPS|) 600 cpm , Slotted Knob locking type Individual, Common Not (Use turbine oil # 1 (lSO VG32) if lubrication is Drovided.)

A A afll-'h s-zl;lh P R P R (external pilot type) A A , A;Tt-Zb gzt;]ri! , P R P R Model Specifications Air and inert 20-100 PSI (1.5"7kgf/cm,) VAC-1 10Torr 20-1OoPS|(15-7ksflcm'?) N,lax. 120'F (50'C) 20 ms or less (7OPS|) 600 cpm , Slotted Knob locking type Individual, Common Not (Use turbine oil # 1 (lSO VG32) if lubrication is Drovided.)

P Dimensions (mm) DIN flange 80 A B C D E F G K L M N P Model IDFA150F Port size 950 1290 1332 268 720 1432 475 20 990 217 935 1030 100 IDFAE/F Series Options 1 For How to Order optional models, refer to pages 92, 95 and 98.

If supply pressure is other than P = 0.5 MPa, please figure out a max. stroke, using proportional calculation.

0.1 x mcos + msin P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m mv P Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 29) 1 Review of operating conditions Determination of load factor () = Load mass (m) Maximum allowable load (m max) + Static moment (M) Allowable static moment (Mmax)+ Dynamic moment (ME) Allowable dynamic moment (MEmax

Horizontal 10 10 P.10 Standard motor 6 6 P.18 Vertical 10 10 P.26 Frame-type linear guide LTF 6 6 P.34 Horizontal 10 10 P.42 Non-standard motor 6 6 P.50 Vertical 10 10 P.58 Options P.66 Construction P.67 Mounting P.68 Non-standard Motor Mounting P.69 Deflection Data P.71 Part Number Designations P 1 E F G LTF 6 100 R 2 X10 Motor specification Lead screw lead Series Series 6 Nil

m P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m > mv P > Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 8-16-8

m P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m > mv P > Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 1548

m P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m > mv P > Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 8-16-8