Stations: 5 Stations, Manifold Type: FD2 (D-sub Connector 25 Pin 3.0m), Manifold Mount Style: E (Direct Mount Type), Option: S (Built-in Silencer, Direct Exhaust), One-touch Fitting: 00T (N9 5/16" One-touch Fitting)
Stations: 4 Stations, Manifold Type: D-sub Connector 25 Pin 3.0m, Manifold Mount Style: Direct Mount Type, Option: Built-in Silencer, Direct Exhaust, One-touch Fitting: ø8 (C8) One-touch Fitting, CE Compliant: CE Compliant
Stations: 5 Stations, Manifold Type: D-sub Connector 25 Pin 3.0m, Manifold Mount Style: Direct Mount Type, Option: Built-in Silencer, Direct Exhaust, One-touch Fitting: N9 5/16" One-touch Fitting, CE Compliant: -
Stations: 5 Stations, Manifold Type: Lead Wire Kit Cable 1.5m, Manifold Mount Style: Direct Mount Type, Option: Built-in Silencer, Direct Exhaust, One-touch Fitting: ø8 (C8) One-touch Fitting, CE Compliant: CE Compliant
E > Es E Es Note 3) Bore size determination Tentative determination of L type NG Determination of allowable stroke (W + WB) V 2 E = () 2 1000 E > Es Note 2) OK P > Ps Determination of pressure (P) when making intermediate stop P Ps Consider made-to-order products, depending on an operating condition.
E > Es E Es Note 3) Bore size determination Tentative determination of L type NG Determination of allowable stroke (W + WB) V 2 E = () 2 1000 E > Es Note 2) OK P > Ps Determination of pressure (P) when making intermediate stop P Ps Consider made-to-order products, depending on an operating condition.
Determination of kinetic energy of load (E) E > Es E Es Bore size determination Tentative determination of L type W V 2 E = () 2 1000 Note 2) E > Es Determination of pressure (P) when making intermediate stop P > Ps P Ps Consider made-to-order products, depending on an operating condition. Tentative determination of L type (For intermediate stops, refer to page 1193.)
Determination of kinetic energy of load (E) E > Es E Es Bore size determination Tentative determination of L type W V 2 E = () 2 1000 Note 2) E > Es Determination of pressure (P) when making intermediate stop P > Ps P Ps Consider made-to-order products, depending on an operating condition. Tentative determination of L type (For intermediate stops, refer to page 1205.)
Determination of load's kinetic energy (E) E > Es E Es Bore size determination Tentative determination of L type (W + WB) V 2 E = x () 2 1000 P Ps Note 2) E > Es Determination of pressure (P) when making intermediate stop P > Ps Review of order made products based on operating conditions Tentative determination of L type (Refer to page 5 for intermediate stops.)
Description Material Function EB ES wSeal 1 Hexagon head bolt Plug to release air in the housing Stainless steel or iron eNut 2 Seal Resin 3 Nut Tightens the cover.
I nput dat a occupi es 4 w ords, but uses onl y t he 1st w ord. The pressure i s m oni t ored by b15, b1, b0 dat a. ( b11 b0 cover 100% F.
t w o byt es respect i vel y.
G SD O ccupi ed area ( I nput /out put dat a) 1 w ord / 1 w ord Low er 2 bi t s of 7 byt es of di agnosi s area are f or di agnosi s i nf orm at i on.
FGF3-40 1 unit FN EB ES Step 3 Selecting the filter model Selecting the filter model Checking each item Select vessel and seal materials based on compatibility with the fluid.
Determination of kinetic energy of load (E) E > Es E Es Bore size determination Tentative determination of L type W V 2 E = () 2 1000 Note 2) E > Es Determination of pressure (P) when making intermediate stop P > Ps P Ps Consider made-to-order products, depending on an operating condition. Tentative determination of L type (For intermediate stops, refer to page 1515.)
Heavy-loaded shock absorber + Adjustment bolt MY3B Bore size Stroke H (Shock absorber stroke) TS S EY SD ES EC W FC TU Stroke adjustment unit h TR (mm) ES EC W FC EY h S SD TS TR TU Shock absorber model Applicable cylinder MY3B16 MY3B20 MY3B25 MY3B32 MY3B40 MY3B50 MY3B63 14.1 23 62 34.5 29.5 RB1007 2.4 46.7 7 0.9 25 31.7 14.1 27.5 72 41 34 RB1007 2.4 46.7 7 4.4 21.5 28.2 20.1 31.8 90 52.2
Determination of loads kinetic energy (E) bore size Determination of bore size Review of larger bore size E Es E Es E = m E 2 a ( ) 2 (Refer to page 29) 1000 P Ps P Ps Determination of pressure for intermediate stop (p) (Refer to page 29) Review of larger bore size and operating pressure Model determination 1 Magnetically Coupled Rodless Cylinder Low Profile Guide Type Series CY1F Types
E Female rear clevis (for ES accessory) Angled rear clevis with ball joint Angled rear clevis Foot bore Supplied with two pieces DS5032 DS5040 DS5050 DS5063 DS5080 DS5100 L5032 L5040 L5050 L5063 L5080 L5100 32 40 50 63 80 100 ES5032 ES5040 ES5050 ES5063 ES5080 ES5100 E5032 E5040 E5050 E5063 E5080 E5100 See page 12 for dim.
Filtration efficiency 99.9% Membrane FGH200 to 300 0.2 m EB ES X40 0.4 m Port size Element classification Note) 03 04 06 10 Rc3/8 Rc1/2 Rc3/4 Rc1 Element HEPO 2 Membrane Symbol J D Note) Refer to pages 70 to 73 for details about specifications, models, dimensions, etc. regarding the elements.