In common EB P EA SY7 40 Type 43 Stacking type Individual wiring SY9 40 + + + + P. 89 Manifold stations can be increased. Type 43P Stacking type Flat ribbon cable SY9 40 P. 103 Manifold stations can be increased. In common Type 45 Stacking type/DIN rail mounted Individual wiring SY3 40 SY5 40 + + + + + P. 115 Stations can be increased on the DIN rail.
5 132 169 144 32 20 40 40 18.5 130 74 M16 x 1.5 to 1200 (mm) Bore size (mm) Stroke range (mm) 125 140 160 K KA L N M MM P RR S U W H Z ZZ 15 31 65 19 M30 x 1.5 35 1/2 29 98 35 110 383 412 to 1000 8 15 31 75 19 M30 x 1.5 35 1/2 32 98 40 110 393 425 to 1000 9 17 36 80 22 M36 x 1.5 39 3/4 36 106 45 120 438 474 to 1200 With rod boot (mm) Stroke range (mm) Bore size (mm) 125 140 160 l ZZ1 h Z1
g] Stations: n W = 29n + 21 W = 51n + 35 W = 63n + 64 W = 97n + 80 W = 139n + 550 Note) Supply pressure to 1(P) ports and exhaust pressure from R ports on both sides for 10 stations or more (5 stations or more for the VFA5000).
Through holes Double end taps Extension locking Easy manual unlocking B Locked A 40 to 100 20 to 32 W Retraction locking Unlocked 40 to 100 20 to 32 W A B Wide variations from 20 to 100 Standard stroke (mm) Locking direction Bore size (mm) Mounting Series 5 10 15 20 25 30 35 40 45 50 75 100 20 Through holes, double end taps common 25 Extension locking 32 40 CLQ Through holes 50 Retraction
Nil T Nil W Motor specification G R Y Matsushita Electric Industrial Co., Ltd.
(otaloq l{0, lltlodell trl tl P 0 R 5 T U v w x CR 6.59 ?
q Nil None With vacuum switch t r e w q Number of ejector/valve stations E Alignment (for special specifications) U side D side 13-14-40 40 e Valve Model Fill in the blanks below with symbols of necessary specifications.
8 10 10 41 5 8 31 5 15.5 25 to 300 25 22 17 32 12 10 16 10 12 12 8 10 10 46 6 8 34 5.5 19.5 25 to 400 32 24 22 38 16 14 19 11 13 13 8 10 10 53 8 9 40 7.5 21 25 to 500 40 24 24 41 18 16 21 12 17 17 11 16 16 54 10 11 48 7.5 21 25 to 500 (mm) Bore size (mm) LH LS LT LX LZ MM NA NB P S T V W X Y ZZ LD 20 25 121 5.5 40 55 M8 x 1.25 17 15 1/8 81 9.5 4.5 6.5 20 9 151 7 25 28 121 5.5 40 55 M10 x
8.5 10.7 6-M5 x 0.8 depth 7 20 20 L (mm) L K J V H S Z M MA W Model 36 40 93 82 58 20 102 40 30 65 MXP16-20B 42 50 119 108 70 30 128 56 46 75 MXP16-30B 14
2 (n 4) 2 D-M9/M9W 20 + 40 85 + 40 95 + 40 100 + 40 105 + 40 115 + 40 "n" pcs.
M26 x 1.5 Rc(PT) 1/4 70 43 16 11 29 50 16 92 M6 x 1.0 x 10 21 46 19 M32 x 2.0 S W X ZZ R T Model REA25 REA32 REA40 111 50 30 137 8 17 124 50 40 156 8 17 150 60 40 182 10 19 REA 50, 63 14 2 -Rc(PT) 1/4 L 0 0.2 NA 33 14 E(h8) E(h8) X PD I 4 -TC Effective thread depth R 14 8 -Q Effective thread depth R 14 22 23 25 K W 23 25 4 -M8 x 1.25 Effective thread depth 12 C 0.1 14.5 B 2 S + Stroke 2
10 L/min 0.5 to 10.5 L/min 5 V 20 mA 90% 10% 80% 20% 70% 30% 60% 40% 40% 60% 0.1 to 6 L/min 0.3 to 6.3 L/min 5 V 20 mA 30% 70% PF2M710 92% 8% 0.3 to 25 L/min 1.3 to 26.3 L/min 5 V 20 mA 90% 10% 80% 20% 70% 30% 60% 40% 40% 60% 0.3 to 15 L/min 0.8 to 15.8 L/min 5 V 20 mA 30% 70% PF2M725 92% 8% 0.5 to 50 L/min 2.5 to 52.5 L/min 5 V 20 mA 90% 10% 80% 20% 70% 30% 60% 40% 40% 60% 0.5 to 30 L/min
9 #0 w #1 #0 t q e @9 #1 @1 !9 t @5@6 @1 #0 q !1 w#1 #0 @2 @9 #1 @1 ML2B #8 12 40 to 63 @0 @4 @8 i u o @3 !1 #1 #2 @8@4 !2 @7 !3#3 r !4 e !6 @6 #7 #6 !5 !9 @5 t @6 y #0 w @1 #0 #5 !7 #4 q @9@2 !8 #1 #2 !7 #5 #4 @1 Component Parts Component Parts Material Note No. Description Material Note No.
32 MLGP 30 40 50 30 40 50 25 40 RLQ Load weight: m (kg) Load weight: m (kg) 20 32 20 20 [Example] 25 MLU 10 10 20 ML1C 5 4 5 4 3 D3 2 2 -X 1 1 200.5 0.5 100 500 400 300 200 100 500 400 300 200 1000 1000 Data Maximum speed: V (mm/s) Maximum speed: V (mm/s) Graph (7) Graph (4) 0.5 MPa P 0.5 MPa P 200 200 40 100 100 32 30 40 50 30 40 50 40 25 20 32 Load weight: m (kg) Load weight: m (kg)
(kg) Fig. (2) Overhang: Ln (mm), Correction Values for Moment Center Distance: An (mm) Pitch moment Yaw moment Roll moment W My Mr Mp W W W L3 A5 L1 A1 Adjusting bolt Static moment L2 A3 W MX Mp Mr My MTS W W W MY L1 A2 L3 A5 W L2 A4 CY Mey Note) No need to consider this load factor in the case of using perpendicularly in a vertical position.
L 31 32 33 34 35 36 37 38 39 40 398 410.5 423 435.5 448 460.5 473 485.5 498 510.5 No.
Component Parts No. q w e r t y No. u i o !0 !
Component Parts No. q w e r t y u No. i o !0 !1 !2 !3 !
ML2B32 15N Va 0.25m/s 0.5MPa L1 0.05m L2 0.05m W W 1 L L1 W W W M We M3 V M1 V <> W max=60N( Va P 19) a1= W = 15 =0.25 W max 60 M 2 max=2Nm( Va P 19) a2= M = 0.75 =0.375 M max 2 <> We=1.410VaW=1.4100.2515=52.2N M max=3.5Nm( V=1.4Va) M 3 WeL 1 =52.50.05 1 =0.88Nm 3 3 a3= M 3 = 0.88 =0.25 M 3max 3.5 M max=12Nm( V=1.4Va) M 1 WeL 1 1 =52.50.05 1 =0.88Nm 3 3 a4= M 1 =