L2 [mm] L2 [mm] L2 [mm] 600 600 600 LER Y 400 400 400 Mer m LEH 200 200 200 0 0 0 LEY -X5 0 5 10 15 20 Work load [kg] 0 10 20 30 40 Work load [kg] 0 10 20 30 40 50 60 Work load [kg] 11LEFS 1500 1500 1500 Mep 11LEJS 1000 1000 1000 L3 [mm] L3 [mm] L3 [mm] m 25AL3 Z 500 500 500 LEC 0 0 0 0 10 20 30 40 50 60 Work load [kg] 0 5 10 15 20 Work load [kg] 0 10 20 30 40 Work load [kg] LEC S 1500 1500
N02 NPT 1/4 NPT 3/8 Note 2) N03 N04 NPT 3/8 NPT 1/2 NPT 3/8 NPT 1/2 Note 1) AS220-02 Note 2) AS320-02 597 Series AS20-D Construction AS3200-02-D Meter-out M5 type U10/32 type Meter-in M5 type U10/32 type AS3210-02-D Component Parts No.
L1, L2 max. overhang = 45 mm w Confirm that L1 and L2 are lower than the max. overhang. L1 = 20 mm and L2 = 30 mm OK (L1, L2 max. overhang = 45 mm) Selection method q Find the max. overhang of L1 and L2 from the selection graph. L1: Find the L at an operating pressure of 0.5 MPa from the graph, and multiply it by 1/2.
L2 [mm] L2 [mm] L2 [mm] L2 [mm] 300 300 300 300 LER m Y 200 200 200 200 LEH 100 100 100 100 0 0 5 10 15 20 0 0 2 4 6 8 10 0 0 5 10 15 20 0 0 2 4 6 8 10 LEY -X5 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 11LEFS 1000 1000 1000 1000 800 800 800 800 m 11LEJS L3 [mm] L3 [mm] L3 [mm] L3 [mm] 600 600 600 600 L3 Z 25A400 400 400 400 200 200 200 200 LEC 0 0 2 4 6 8 10 0 0 5 10 15
m2 x g x X M1 Static moment z y Y m1 x g x Y m2 x g x Y m3 x g x Z M2 Z m3 x g x X m4 x g x Y M3 m4 x g Note) m4 is a mass movable by thrust.
L2 [mm] L2 [mm] L2 [mm] L2 [mm] 120 120 120 120 Me m Y 80 80 80 80 40 40 40 40 0 0 0.2 0.4 0.6 0.8 1 0 0.0 0.4 0.8 1.2 1.6 2.0 0 0.0 0.4 0.8 1.2 1.6 2.0 0 0 0.2 0.4 0.6 0.8 1 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 300 300 200 200 250 250 160 160 Me 200 200 L3 [mm] L3 [mm] L3 [mm] L3 [mm] 120 120 m L3 150 150 Z 80 80 100 100 40 40 50 50 0 0 0.2 0.4 0.6 0.8 1 0 0.0 0.4
L2 [mm] L2 [mm] L2 [mm] L2 [mm] 600 600 600 600 LER Y 400 400 400 400 Mer m LEH 200 200 200 200 LEY -X5 0 0 0 0 0 10 20 30 40 50 0 10 20 30 40 50 60 0 2 4 6 8 10 12 14 16 0 4 8 12 16 20 24 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 11LEFS 2000 2000 2000 2000 11LEJS Mep 1500 1500 1500 1500 L3 [mm] L3 [mm] L3 [mm] L3 [mm] m 1000 1000 1000 1000 25AL3 Z 500 500 500 500 LEC 0
Applicable rod end nut Bore size (mm) I type single knuckle I-12 I-14 I-16 I-18 I-20 I-25 I-30 Y type double knuckle Y-12 Y-14 Y-16 Y-18 Y-20 Y-25 Y-30 I type single knuckle I-12A I-14A I-16A Y type double knuckle Y-12A Y-14A Y-16A 125 140 160 180 200 250 300 NT-12 NT-12 NT-16 NT-18 NT-20 NT-25 NT-30 125 65 100 181 18 CS1 CS2 125 65 105 186 18 140 76 110 198 21 155 83 125 223 23 -X -X 160
Thread Rc(PT) L1 L2 M 1 4 1 4 3 8 1 4 1 4 1 4 4 DHF04-02 27 DHF06-02 17 17 10 4 15 30.3 30.8 16 16.5 28 6 11 16 12 DHF06-03 31 19 32.8 18.5 8 DHF08-02 29.8 30 16 20 14 17 15.5 10 12 DHF10-02 30.8 37 DHF12-02 30.8 17 17 40 17 19 34 51 17 17 16.5 16.5 104 Series H, DL, L, LL Self-align Fittings Branch tee: DT Thread R(PT) Part No. Effective orifice (mm2) Applicable tube O.D.
) L1 = 50 [mm] L2 = 40 [mm] m L2 L1 Item Load factor an Note 1.
Coordinates and Moments z M3: Yawing M1: Pitching y x M2: Rolling Static Moment Ceiling mounting Horizontal mounting Wall mounting M2 M1 M1 M2 M2 M3 y x y x z x Y Y X X X Z m1 x g m2 x g m3 x g Vertical mounting Mounting orientation Horizontal Ceiling Wall Vertical m1 m2 m3 m4 Static load m m1 x g x X m2 x g x X m4 x g x Z Static moment M1 M3 M1 CY3B CY3R m3 x g x Z m1 x g x Y m2 x g x Y
B L2 1 = W/Wmax = 1/7 = 0.14 L3 C 2. Static moment Mr = W x 9.8 (L3 + C) Examine Mr. (Mp, My values do not apply to this example.)
B SMC A L1 Overall length of standard valve + L2 External pilot port position dimensions Series L1 dimension L2 dimension SY3000 41.5 6.5 SY5000 60.4 9 SY7000 71.9 9 JIS symbol Body ported 2 position single 3 position closed center X X B A B A EA EB P EA EB P 2 position double 3 position exhaust center X X B A B A EA EB P EA EB P 3 position pressure center X B A EA EB P 18
=50 {mm} L2 {B L3 Item Load factors n Note (1) Max. movable load W B L2 Examine W.
Coordinates and Moments z M3: Yawing M1: Pitching y x M2: Rolling Static moment Ceiling mounting Horizontal mounting Wall mounting M1 M2 M2 M1 M2 M3 y X x Y y z X x Y X x Z m1 x g m2 x g m3 x g Vertical mounting Mounting orientation Horizontal Ceiling Wall Vertical m1 m2 m3 m4 Static load m M3 M1 m1 x g x X m2 x g x X m4 x g x Z Static moment M1 m1 x g x Y m2 x g x Y m3 x g x Z y z M2 z Y
Valve mounting direction ( ) 02 2 stations Single solenoid coil is located on the opposite side of the A, B port. -: : Single solenoid coil is located on same side as the A, B port.
20 L2 (mm) Mer m Rolling Yawing 10 L2 0 1 2 3 4 5 Mer Transfer load m (kg) m 30 a = 1000 a = 500 20 L3 (mm) a = 2000 L3 10 m Mey a 0 1 2 3 4 5 Transfer load m (kg) Refer to page 145 for deflection data. 88 Standard Motor/Horizontal Mount Specification Series LJ1S10 Dimensions/LJ1S101SC Scale: 15% 10 6 Work piece mounting reference plane 80 5H10 depth 8 8-M5 x 0.8 thread depth 8 45 20 Cable
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.)
Elbow type Meter-out AS3201F-02 Meter-out AS3311F-02 Meter-out AS3301F-02 Component Parts Component Parts No.